id	sid	tid	token	lemma	pos
fuelectenerg-10413	1	1	10413	10413	NUM
fuelectenerg-10413	1	2	facta	facta	PROPN
fuelectenerg-10413	1	3	universitatis	universitatis	PROPN
fuelectenerg-10413	1	4	series	series	NOUN
fuelectenerg-10413	1	5	:	:	PUNCT
fuelectenerg-10413	1	6	electronics	electronic	NOUN
fuelectenerg-10413	1	7	and	and	CCONJ
fuelectenerg-10413	1	8	energetics	energetics	NOUN
fuelectenerg-10413	1	9	vol	vol	NOUN
fuelectenerg-10413	1	10	.	.	PROPN
fuelectenerg-10413	1	11	35	35	NUM
fuelectenerg-10413	1	12	,	,	PUNCT
fuelectenerg-10413	1	13	no	no	DET
fuelectenerg-10413	1	14	4	4	NUM
fuelectenerg-10413	1	15	,	,	PUNCT
fuelectenerg-10413	1	16	december	december	PROPN
fuelectenerg-10413	1	17	2022	2022	NUM
fuelectenerg-10413	1	18	,	,	PUNCT
fuelectenerg-10413	1	19	pp	pp	ADV
fuelectenerg-10413	1	20	.	.	PUNCT
fuelectenerg-10413	2	1	469	469	NUM
fuelectenerg-10413	2	2	-	-	SYM
fuelectenerg-10413	2	3	482	482	NUM
fuelectenerg-10413	2	4	https://doi.org/10.2298/fuee2204469	https://doi.org/10.2298/fuee2204469	NOUN
fuelectenerg-10413	2	5	g	g	NOUN
fuelectenerg-10413	2	6	©	©	PROPN
fuelectenerg-10413	2	7	2022	2022	NUM
fuelectenerg-10413	2	8	by	by	ADP
fuelectenerg-10413	2	9	university	university	PROPN
fuelectenerg-10413	2	10	of	of	ADP
fuelectenerg-10413	2	11	niš	niš	PROPN
fuelectenerg-10413	2	12	,	,	PUNCT
fuelectenerg-10413	2	13	serbia	serbia	PROPN
fuelectenerg-10413	2	14	|	|	ADV
fuelectenerg-10413	2	15	creative	creative	ADJ
fuelectenerg-10413	2	16	commons	common	NOUN
fuelectenerg-10413	2	17	license	license	NOUN
fuelectenerg-10413	2	18	:	:	PUNCT
fuelectenerg-10413	2	19	cc	cc	VERB
fuelectenerg-10413	2	20	by	by	ADP
fuelectenerg-10413	2	21	-	-	PUNCT
fuelectenerg-10413	2	22	nc	nc	VERB
fuelectenerg-10413	2	23	-	-	PUNCT
fuelectenerg-10413	2	24	nd	nd	ADV
fuelectenerg-10413	2	25	original	original	ADJ
fuelectenerg-10413	2	26	scientific	scientific	ADJ
fuelectenerg-10413	2	27	paper	paper	NOUN
fuelectenerg-10413	2	28	design	design	NOUN
fuelectenerg-10413	2	29	of	of	ADP
fuelectenerg-10413	2	30	a	a	DET
fuelectenerg-10413	2	31	four	four	NUM
fuelectenerg-10413	2	32	stages	stage	NOUN
fuelectenerg-10413	2	33	vco	vco	NOUN
fuelectenerg-10413	2	34	using	use	VERB
fuelectenerg-10413	2	35	a	a	DET
fuelectenerg-10413	2	36	novel	novel	ADJ
fuelectenerg-10413	2	37	delay	delay	NOUN
fuelectenerg-10413	2	38	circuit	circuit	NOUN
fuelectenerg-10413	2	39	for	for	ADP
fuelectenerg-10413	2	40	operation	operation	NOUN
fuelectenerg-10413	2	41	in	in	ADP
fuelectenerg-10413	2	42	distributed	distribute	VERB
fuelectenerg-10413	2	43	band	band	NOUN
fuelectenerg-10413	2	44	frequencies	frequency	NOUN
fuelectenerg-10413	2	45	mriganka	mriganka	PROPN
fuelectenerg-10413	2	46	gogoi1,2	gogoi1,2	PROPN
fuelectenerg-10413	2	47	,	,	PUNCT
fuelectenerg-10413	2	48	pranab	pranab	PROPN
fuelectenerg-10413	2	49	kishore	kishore	PROPN
fuelectenerg-10413	2	50	dutta1	dutta1	PROPN
fuelectenerg-10413	3	1	1assam	1assam	PROPN
fuelectenerg-10413	3	2	don	don	PROPN
fuelectenerg-10413	3	3	bosco	bosco	PROPN
fuelectenerg-10413	3	4	university	university	PROPN
fuelectenerg-10413	3	5	,	,	PUNCT
fuelectenerg-10413	3	6	department	department	PROPN
fuelectenerg-10413	3	7	of	of	ADP
fuelectenerg-10413	3	8	ece	ece	PROPN
fuelectenerg-10413	3	9	,	,	PUNCT
fuelectenerg-10413	3	10	india	india	PROPN
fuelectenerg-10413	3	11	2north	2north	NUM
fuelectenerg-10413	3	12	eastern	eastern	ADJ
fuelectenerg-10413	3	13	regional	regional	PROPN
fuelectenerg-10413	3	14	institute	institute	PROPN
fuelectenerg-10413	3	15	of	of	ADP
fuelectenerg-10413	3	16	science	science	NOUN
fuelectenerg-10413	3	17	and	and	CCONJ
fuelectenerg-10413	3	18	technology	technology	NOUN
fuelectenerg-10413	3	19	,	,	PUNCT
fuelectenerg-10413	3	20	department	department	PROPN
fuelectenerg-10413	3	21	of	of	ADP
fuelectenerg-10413	3	22	ece	ece	PROPN
fuelectenerg-10413	3	23	,	,	PUNCT
fuelectenerg-10413	3	24	india	india	PROPN
fuelectenerg-10413	3	25	abstract	abstract	PROPN
fuelectenerg-10413	3	26	the	the	DET
fuelectenerg-10413	3	27	manuscript	manuscript	NOUN
fuelectenerg-10413	3	28	proposes	propose	VERB
fuelectenerg-10413	3	29	a	a	DET
fuelectenerg-10413	3	30	novel	novel	ADJ
fuelectenerg-10413	3	31	architecture	architecture	NOUN
fuelectenerg-10413	3	32	of	of	ADP
fuelectenerg-10413	3	33	a	a	DET
fuelectenerg-10413	3	34	delay	delay	NOUN
fuelectenerg-10413	3	35	cell	cell	NOUN
fuelectenerg-10413	3	36	that	that	PRON
fuelectenerg-10413	3	37	is	be	AUX
fuelectenerg-10413	3	38	implemented	implement	VERB
fuelectenerg-10413	3	39	in	in	ADP
fuelectenerg-10413	3	40	4	4	NUM
fuelectenerg-10413	3	41	-	-	PUNCT
fuelectenerg-10413	3	42	stage	stage	NOUN
fuelectenerg-10413	3	43	vco	vco	NOUN
fuelectenerg-10413	3	44	which	which	PRON
fuelectenerg-10413	3	45	has	have	VERB
fuelectenerg-10413	3	46	the	the	DET
fuelectenerg-10413	3	47	ability	ability	NOUN
fuelectenerg-10413	3	48	to	to	PART
fuelectenerg-10413	3	49	operate	operate	VERB
fuelectenerg-10413	3	50	in	in	ADP
fuelectenerg-10413	3	51	two	two	NUM
fuelectenerg-10413	3	52	distributed	distribute	VERB
fuelectenerg-10413	3	53	frequency	frequency	NOUN
fuelectenerg-10413	3	54	bands	band	NOUN
fuelectenerg-10413	3	55	.	.	PUNCT
fuelectenerg-10413	4	1	the	the	DET
fuelectenerg-10413	4	2	operating	operating	NOUN
fuelectenerg-10413	4	3	frequency	frequency	NOUN
fuelectenerg-10413	4	4	is	be	AUX
fuelectenerg-10413	4	5	chosen	choose	VERB
fuelectenerg-10413	4	6	based	base	VERB
fuelectenerg-10413	4	7	on	on	ADP
fuelectenerg-10413	4	8	the	the	DET
fuelectenerg-10413	4	9	principle	principle	NOUN
fuelectenerg-10413	4	10	of	of	ADP
fuelectenerg-10413	4	11	carrier	carrier	NOUN
fuelectenerg-10413	4	12	mobility	mobility	NOUN
fuelectenerg-10413	4	13	and	and	CCONJ
fuelectenerg-10413	4	14	the	the	DET
fuelectenerg-10413	4	15	transistor	transistor	NOUN
fuelectenerg-10413	4	16	resistance	resistance	NOUN
fuelectenerg-10413	4	17	.	.	PUNCT
fuelectenerg-10413	5	1	the	the	DET
fuelectenerg-10413	5	2	vco	vco	PROPN
fuelectenerg-10413	5	3	uses	use	VERB
fuelectenerg-10413	5	4	dual	dual	ADJ
fuelectenerg-10413	5	5	delay	delay	NOUN
fuelectenerg-10413	5	6	input	input	NOUN
fuelectenerg-10413	5	7	techniques	technique	NOUN
fuelectenerg-10413	5	8	to	to	PART
fuelectenerg-10413	5	9	improve	improve	VERB
fuelectenerg-10413	5	10	the	the	DET
fuelectenerg-10413	5	11	frequency	frequency	NOUN
fuelectenerg-10413	5	12	of	of	ADP
fuelectenerg-10413	5	13	operation	operation	NOUN
fuelectenerg-10413	5	14	.	.	PUNCT
fuelectenerg-10413	6	1	the	the	DET
fuelectenerg-10413	6	2	design	design	NOUN
fuelectenerg-10413	6	3	is	be	AUX
fuelectenerg-10413	6	4	implemented	implement	VERB
fuelectenerg-10413	6	5	in	in	ADP
fuelectenerg-10413	6	6	cadence	cadence	NOUN
fuelectenerg-10413	6	7	90	90	NUM
fuelectenerg-10413	6	8	nm	nm	ADV
fuelectenerg-10413	6	9	gpdk	gpdk	VERB
fuelectenerg-10413	6	10	cmos	cmos	PROPN
fuelectenerg-10413	6	11	technology	technology	PROPN
fuelectenerg-10413	6	12	and	and	CCONJ
fuelectenerg-10413	6	13	simulated	simulate	VERB
fuelectenerg-10413	6	14	results	result	NOUN
fuelectenerg-10413	6	15	show	show	VERB
fuelectenerg-10413	6	16	that	that	SCONJ
fuelectenerg-10413	6	17	it	it	PRON
fuelectenerg-10413	6	18	is	be	AUX
fuelectenerg-10413	6	19	capable	capable	ADJ
fuelectenerg-10413	6	20	of	of	ADP
fuelectenerg-10413	6	21	operating	operate	VERB
fuelectenerg-10413	6	22	in	in	ADP
fuelectenerg-10413	6	23	dual	dual	ADJ
fuelectenerg-10413	6	24	frequency	frequency	NOUN
fuelectenerg-10413	6	25	bands	band	NOUN
fuelectenerg-10413	6	26	of	of	ADP
fuelectenerg-10413	6	27	55	55	NUM
fuelectenerg-10413	6	28	mhz	mhz	NOUN
fuelectenerg-10413	6	29	to	to	ADP
fuelectenerg-10413	6	30	606	606	NUM
fuelectenerg-10413	6	31	mhz	mhz	ADJ
fuelectenerg-10413	6	32	and	and	CCONJ
fuelectenerg-10413	6	33	857	857	NUM
fuelectenerg-10413	6	34	mhz	mhz	NOUN
fuelectenerg-10413	6	35	to	to	ADP
fuelectenerg-10413	6	36	1049	1049	NUM
fuelectenerg-10413	6	37	mhz	mhz	NOUN
fuelectenerg-10413	6	38	.	.	PUNCT
fuelectenerg-10413	7	1	at	at	ADP
fuelectenerg-10413	7	2	normal	normal	ADJ
fuelectenerg-10413	7	3	temperature	temperature	NOUN
fuelectenerg-10413	7	4	(	(	PUNCT
fuelectenerg-10413	7	5	270	270	NUM
fuelectenerg-10413	7	6	)	)	PUNCT
fuelectenerg-10413	7	7	power	power	NOUN
fuelectenerg-10413	7	8	consumption	consumption	NOUN
fuelectenerg-10413	7	9	of	of	ADP
fuelectenerg-10413	7	10	the	the	DET
fuelectenerg-10413	7	11	circuit	circuit	NOUN
fuelectenerg-10413	7	12	is	be	AUX
fuelectenerg-10413	7	13	found	find	VERB
fuelectenerg-10413	7	14	to	to	PART
fuelectenerg-10413	7	15	be	be	AUX
fuelectenerg-10413	7	16	151μw	151μw	NOUN
fuelectenerg-10413	7	17	at	at	ADP
fuelectenerg-10413	7	18	606	606	NUM
fuelectenerg-10413	7	19	mhz	mhz	NOUN
fuelectenerg-10413	7	20	and	and	CCONJ
fuelectenerg-10413	7	21	157μw	157μw	ADJ
fuelectenerg-10413	7	22	at	at	ADP
fuelectenerg-10413	7	23	1049	1049	NUM
fuelectenerg-10413	7	24	mhz	mhz	NOUN
fuelectenerg-10413	7	25	respectively	respectively	ADV
fuelectenerg-10413	7	26	and	and	CCONJ
fuelectenerg-10413	7	27	consumes	consume	VERB
fuelectenerg-10413	7	28	an	an	DET
fuelectenerg-10413	7	29	area	area	NOUN
fuelectenerg-10413	7	30	of	of	ADP
fuelectenerg-10413	7	31	171.42µm2	171.42µm2	NUM
fuelectenerg-10413	7	32	.	.	PUNCT
fuelectenerg-10413	8	1	the	the	DET
fuelectenerg-10413	8	2	design	design	NOUN
fuelectenerg-10413	8	3	shows	show	VERB
fuelectenerg-10413	8	4	good	good	ADJ
fuelectenerg-10413	8	5	tradeoff	tradeoff	NOUN
fuelectenerg-10413	8	6	between	between	ADP
fuelectenerg-10413	8	7	the	the	DET
fuelectenerg-10413	8	8	parameters	parameter	NOUN
fuelectenerg-10413	8	9	-	-	PUNCT
fuelectenerg-10413	8	10	operating	operate	VERB
fuelectenerg-10413	8	11	frequency	frequency	NOUN
fuelectenerg-10413	8	12	,	,	PUNCT
fuelectenerg-10413	8	13	phase	phase	NOUN
fuelectenerg-10413	8	14	noise	noise	NOUN
fuelectenerg-10413	8	15	and	and	CCONJ
fuelectenerg-10413	8	16	power	power	NOUN
fuelectenerg-10413	8	17	consumption	consumption	NOUN
fuelectenerg-10413	8	18	.	.	PUNCT
fuelectenerg-10413	9	1	key	key	ADJ
fuelectenerg-10413	9	2	words	word	NOUN
fuelectenerg-10413	9	3	:	:	PUNCT
fuelectenerg-10413	9	4	ring	ring	NOUN
fuelectenerg-10413	9	5	oscillator	oscillator	NOUN
fuelectenerg-10413	9	6	,	,	PUNCT
fuelectenerg-10413	9	7	voltage	voltage	NOUN
fuelectenerg-10413	9	8	controlled	control	VERB
fuelectenerg-10413	9	9	oscillator	oscillator	NOUN
fuelectenerg-10413	9	10	(	(	PUNCT
fuelectenerg-10413	9	11	vco	vco	PROPN
fuelectenerg-10413	9	12	)	)	PUNCT
fuelectenerg-10413	9	13	,	,	PUNCT
fuelectenerg-10413	9	14	tuning	tune	VERB
fuelectenerg-10413	9	15	range	range	NOUN
fuelectenerg-10413	9	16	1	1	NUM
fuelectenerg-10413	9	17	.	.	PUNCT
fuelectenerg-10413	9	18	introduction	introduction	NOUN
fuelectenerg-10413	9	19	phase	phase	NOUN
fuelectenerg-10413	9	20	lock	lock	NOUN
fuelectenerg-10413	9	21	loop	loop	PROPN
fuelectenerg-10413	9	22	(	(	PUNCT
fuelectenerg-10413	9	23	pll	pll	PROPN
fuelectenerg-10413	9	24	)	)	PUNCT
fuelectenerg-10413	9	25	,	,	PUNCT
fuelectenerg-10413	9	26	one	one	NUM
fuelectenerg-10413	9	27	of	of	ADP
fuelectenerg-10413	9	28	the	the	DET
fuelectenerg-10413	9	29	key	key	ADJ
fuelectenerg-10413	9	30	elements	element	NOUN
fuelectenerg-10413	9	31	of	of	ADP
fuelectenerg-10413	9	32	contemporary	contemporary	PROPN
fuelectenerg-10413	9	33	wireless	wireless	ADJ
fuelectenerg-10413	9	34	digital	digital	ADJ
fuelectenerg-10413	9	35	signal	signal	NOUN
fuelectenerg-10413	9	36	processing	processing	NOUN
fuelectenerg-10413	9	37	and	and	CCONJ
fuelectenerg-10413	9	38	instrumentation	instrumentation	NOUN
fuelectenerg-10413	9	39	systems	system	NOUN
fuelectenerg-10413	9	40	,	,	PUNCT
fuelectenerg-10413	9	41	is	be	AUX
fuelectenerg-10413	9	42	crucial	crucial	ADJ
fuelectenerg-10413	9	43	for	for	ADP
fuelectenerg-10413	9	44	improving	improve	VERB
fuelectenerg-10413	9	45	the	the	DET
fuelectenerg-10413	9	46	performance	performance	NOUN
fuelectenerg-10413	9	47	of	of	ADP
fuelectenerg-10413	9	48	this	this	DET
fuelectenerg-10413	9	49	electronic	electronic	ADJ
fuelectenerg-10413	9	50	component	component	NOUN
fuelectenerg-10413	9	51	.	.	PUNCT
fuelectenerg-10413	10	1	the	the	DET
fuelectenerg-10413	10	2	parameters	parameter	NOUN
fuelectenerg-10413	10	3	associated	associate	VERB
fuelectenerg-10413	10	4	with	with	ADP
fuelectenerg-10413	10	5	vco	vco	PROPN
fuelectenerg-10413	10	6	like	like	ADP
fuelectenerg-10413	10	7	operating	operating	NOUN
fuelectenerg-10413	10	8	frequency	frequency	NOUN
fuelectenerg-10413	10	9	range	range	NOUN
fuelectenerg-10413	10	10	,	,	PUNCT
fuelectenerg-10413	10	11	power	power	NOUN
fuelectenerg-10413	10	12	dissipation	dissipation	NOUN
fuelectenerg-10413	10	13	and	and	CCONJ
fuelectenerg-10413	10	14	phase	phase	NOUN
fuelectenerg-10413	10	15	noise	noise	NOUN
fuelectenerg-10413	10	16	have	have	VERB
fuelectenerg-10413	10	17	important	important	ADJ
fuelectenerg-10413	10	18	contribution	contribution	NOUN
fuelectenerg-10413	10	19	towards	towards	ADP
fuelectenerg-10413	10	20	the	the	DET
fuelectenerg-10413	10	21	improvement	improvement	NOUN
fuelectenerg-10413	10	22	of	of	ADP
fuelectenerg-10413	10	23	the	the	DET
fuelectenerg-10413	10	24	pll	pll	PROPN
fuelectenerg-10413	10	25	.	.	PUNCT
fuelectenerg-10413	11	1	there	there	PRON
fuelectenerg-10413	11	2	are	be	VERB
fuelectenerg-10413	11	3	two	two	NUM
fuelectenerg-10413	11	4	widely	widely	ADV
fuelectenerg-10413	11	5	used	use	VERB
fuelectenerg-10413	11	6	vcos	vcos	PROPN
fuelectenerg-10413	11	7	topologies	topology	NOUN
fuelectenerg-10413	11	8	and	and	CCONJ
fuelectenerg-10413	11	9	they	they	PRON
fuelectenerg-10413	11	10	are	be	AUX
fuelectenerg-10413	11	11	lc	lc	NOUN
fuelectenerg-10413	11	12	and	and	CCONJ
fuelectenerg-10413	11	13	ring	ring	NOUN
fuelectenerg-10413	11	14	vcos	vcos	PROPN
fuelectenerg-10413	11	15	.	.	PUNCT
fuelectenerg-10413	12	1	the	the	DET
fuelectenerg-10413	12	2	former	former	NOUN
fuelectenerg-10413	12	3	has	have	VERB
fuelectenerg-10413	12	4	a	a	DET
fuelectenerg-10413	12	5	high	high	ADJ
fuelectenerg-10413	12	6	resolution	resolution	NOUN
fuelectenerg-10413	12	7	and	and	CCONJ
fuelectenerg-10413	12	8	frequency	frequency	NOUN
fuelectenerg-10413	12	9	,	,	PUNCT
fuelectenerg-10413	12	10	but	but	CCONJ
fuelectenerg-10413	12	11	the	the	DET
fuelectenerg-10413	12	12	operating	operate	VERB
fuelectenerg-10413	12	13	frequency	frequency	NOUN
fuelectenerg-10413	12	14	range	range	NOUN
fuelectenerg-10413	12	15	is	be	AUX
fuelectenerg-10413	12	16	limited	limit	VERB
fuelectenerg-10413	12	17	and	and	CCONJ
fuelectenerg-10413	12	18	the	the	DET
fuelectenerg-10413	12	19	chip	chip	NOUN
fuelectenerg-10413	12	20	surface	surface	NOUN
fuelectenerg-10413	12	21	is	be	AUX
fuelectenerg-10413	12	22	big	big	ADJ
fuelectenerg-10413	12	23	.	.	PUNCT
fuelectenerg-10413	13	1	the	the	DET
fuelectenerg-10413	13	2	latter	latter	ADJ
fuelectenerg-10413	13	3	has	have	VERB
fuelectenerg-10413	13	4	many	many	ADJ
fuelectenerg-10413	13	5	advantages	advantage	NOUN
fuelectenerg-10413	13	6	like	like	ADP
fuelectenerg-10413	13	7	wide	wide	ADJ
fuelectenerg-10413	13	8	tuning	tuning	NOUN
fuelectenerg-10413	13	9	range	range	NOUN
fuelectenerg-10413	13	10	,	,	PUNCT
fuelectenerg-10413	13	11	easy	easy	ADJ
fuelectenerg-10413	13	12	integration	integration	NOUN
fuelectenerg-10413	13	13	,	,	PUNCT
fuelectenerg-10413	13	14	low	low	ADJ
fuelectenerg-10413	13	15	chip	chip	NOUN
fuelectenerg-10413	13	16	area	area	NOUN
fuelectenerg-10413	13	17	,	,	PUNCT
fuelectenerg-10413	13	18	multiphase	multiphase	NOUN
fuelectenerg-10413	13	19	clock	clock	NOUN
fuelectenerg-10413	13	20	and	and	CCONJ
fuelectenerg-10413	13	21	low	low	ADJ
fuelectenerg-10413	13	22	power	power	NOUN
fuelectenerg-10413	13	23	consumption	consumption	NOUN
fuelectenerg-10413	13	24	;	;	PUNCT
fuelectenerg-10413	13	25	however	however	ADV
fuelectenerg-10413	13	26	,	,	PUNCT
fuelectenerg-10413	13	27	it	it	PRON
fuelectenerg-10413	13	28	has	have	VERB
fuelectenerg-10413	13	29	a	a	DET
fuelectenerg-10413	13	30	low	low	ADJ
fuelectenerg-10413	13	31	resolution	resolution	NOUN
fuelectenerg-10413	13	32	and	and	CCONJ
fuelectenerg-10413	13	33	poor	poor	ADJ
fuelectenerg-10413	13	34	phase	phase	NOUN
fuelectenerg-10413	13	35	noise	noise	NOUN
fuelectenerg-10413	13	36	performance	performance	NOUN
fuelectenerg-10413	13	37	[	[	X
fuelectenerg-10413	13	38	1	1	NUM
fuelectenerg-10413	13	39	]	]	PUNCT
fuelectenerg-10413	13	40	.	.	PUNCT
fuelectenerg-10413	14	1	ring	ring	NOUN
fuelectenerg-10413	14	2	vcos	vco	NOUN
fuelectenerg-10413	14	3	are	be	AUX
fuelectenerg-10413	14	4	divided	divide	VERB
fuelectenerg-10413	14	5	into	into	ADP
fuelectenerg-10413	14	6	two	two	NUM
fuelectenerg-10413	14	7	sorts	sort	NOUN
fuelectenerg-10413	14	8	based	base	VERB
fuelectenerg-10413	14	9	on	on	ADP
fuelectenerg-10413	14	10	their	their	PRON
fuelectenerg-10413	14	11	delay	delay	NOUN
fuelectenerg-10413	14	12	stages	stage	NOUN
fuelectenerg-10413	14	13	.	.	PUNCT
fuelectenerg-10413	15	1	1	1	X
fuelectenerg-10413	15	2	)	)	PUNCT
fuelectenerg-10413	15	3	vco	vco	NOUN
fuelectenerg-10413	15	4	with	with	ADP
fuelectenerg-10413	15	5	a	a	DET
fuelectenerg-10413	15	6	single	single	ADJ
fuelectenerg-10413	15	7	-	-	PUNCT
fuelectenerg-10413	15	8	ended	end	VERB
fuelectenerg-10413	15	9	ring	ring	NOUN
fuelectenerg-10413	15	10	(	(	PUNCT
fuelectenerg-10413	15	11	sero	sero	NOUN
fuelectenerg-10413	15	12	)	)	PUNCT
fuelectenerg-10413	15	13	and	and	CCONJ
fuelectenerg-10413	15	14	2	2	X
fuelectenerg-10413	15	15	)	)	PUNCT
fuelectenerg-10413	15	16	vco	vco	NOUN
fuelectenerg-10413	15	17	with	with	ADP
fuelectenerg-10413	15	18	a	a	DET
fuelectenerg-10413	15	19	differential	differential	ADJ
fuelectenerg-10413	15	20	ring	ring	NOUN
fuelectenerg-10413	15	21	received	receive	VERB
fuelectenerg-10413	15	22	january	january	PROPN
fuelectenerg-10413	15	23	10	10	NUM
fuelectenerg-10413	15	24	,	,	PUNCT
fuelectenerg-10413	15	25	2022	2022	NUM
fuelectenerg-10413	15	26	;	;	PUNCT
fuelectenerg-10413	15	27	revised	revise	VERB
fuelectenerg-10413	15	28	june	june	PROPN
fuelectenerg-10413	15	29	22	22	NUM
fuelectenerg-10413	15	30	,	,	PUNCT
fuelectenerg-10413	15	31	2022	2022	NUM
fuelectenerg-10413	15	32	and	and	CCONJ
fuelectenerg-10413	15	33	november	november	PROPN
fuelectenerg-10413	15	34	15	15	NUM
fuelectenerg-10413	15	35	,	,	PUNCT
fuelectenerg-10413	15	36	2022	2022	NUM
fuelectenerg-10413	15	37	;	;	PUNCT
fuelectenerg-10413	15	38	accepted	accept	VERB
fuelectenerg-10413	15	39	december	december	PROPN
fuelectenerg-10413	15	40	3	3	NUM
fuelectenerg-10413	15	41	,	,	PUNCT
fuelectenerg-10413	15	42	2022	2022	NUM
fuelectenerg-10413	15	43	corresponding	correspond	VERB
fuelectenerg-10413	15	44	author	author	NOUN
fuelectenerg-10413	15	45	:	:	PUNCT
fuelectenerg-10413	15	46	pranab	pranab	PROPN
fuelectenerg-10413	15	47	kishore	kishore	PROPN
fuelectenerg-10413	15	48	dutta	dutta	PROPN
fuelectenerg-10413	15	49	associate	associate	PROPN
fuelectenerg-10413	15	50	professor	professor	PROPN
fuelectenerg-10413	15	51	,	,	PUNCT
fuelectenerg-10413	15	52	department	department	PROPN
fuelectenerg-10413	15	53	of	of	ADP
fuelectenerg-10413	15	54	ece	ece	PROPN
fuelectenerg-10413	15	55	,	,	PUNCT
fuelectenerg-10413	15	56	nerist	nerist	NOUN
fuelectenerg-10413	15	57	,	,	PUNCT
fuelectenerg-10413	15	58	itanagar	itanagar	PROPN
fuelectenerg-10413	15	59	,	,	PUNCT
fuelectenerg-10413	15	60	arunachal	arunachal	PROPN
fuelectenerg-10413	15	61	pradesh	pradesh	PROPN
fuelectenerg-10413	15	62	,	,	PUNCT
fuelectenerg-10413	15	63	791109,india	791109,india	PROPN
fuelectenerg-10413	15	64	e	e	NOUN
fuelectenerg-10413	15	65	-	-	NOUN
fuelectenerg-10413	15	66	mail	mail	NOUN
fuelectenerg-10413	15	67	:	:	PUNCT
fuelectenerg-10413	15	68	pkdutta07@gmail.com	pkdutta07@gmail.com	X
fuelectenerg-10413	15	69	470	470	NUM
fuelectenerg-10413	15	70	m.	m.	NOUN
fuelectenerg-10413	15	71	gogoi	gogoi	NOUN
fuelectenerg-10413	15	72	,	,	PUNCT
fuelectenerg-10413	15	73	p.	p.	PROPN
fuelectenerg-10413	15	74	k.	k.	PROPN
fuelectenerg-10413	16	1	dutta	dutta	PROPN
fuelectenerg-10413	16	2	(	(	PUNCT
fuelectenerg-10413	16	3	dro	dro	PROPN
fuelectenerg-10413	16	4	)	)	PUNCT
fuelectenerg-10413	16	5	.	.	PUNCT
fuelectenerg-10413	17	1	seros	sero	NOUN
fuelectenerg-10413	17	2	consume	consume	VERB
fuelectenerg-10413	17	3	less	less	ADJ
fuelectenerg-10413	17	4	area	area	NOUN
fuelectenerg-10413	17	5	compared	compare	VERB
fuelectenerg-10413	17	6	to	to	ADP
fuelectenerg-10413	17	7	dros	dros	PROPN
fuelectenerg-10413	17	8	but	but	CCONJ
fuelectenerg-10413	17	9	have	have	VERB
fuelectenerg-10413	17	10	more	more	ADJ
fuelectenerg-10413	17	11	noise	noise	NOUN
fuelectenerg-10413	17	12	and	and	CCONJ
fuelectenerg-10413	17	13	hence	hence	ADV
fuelectenerg-10413	17	14	less	less	ADV
fuelectenerg-10413	17	15	efficient	efficient	ADJ
fuelectenerg-10413	17	16	[	[	X
fuelectenerg-10413	17	17	3	3	NUM
fuelectenerg-10413	17	18	-	-	SYM
fuelectenerg-10413	17	19	7	7	NUM
fuelectenerg-10413	17	20	]	]	PUNCT
fuelectenerg-10413	17	21	.	.	PUNCT
fuelectenerg-10413	18	1	dros	dros	PROPN
fuelectenerg-10413	18	2	are	be	AUX
fuelectenerg-10413	18	3	more	more	ADV
fuelectenerg-10413	18	4	resilient	resilient	ADJ
fuelectenerg-10413	18	5	to	to	ADP
fuelectenerg-10413	18	6	common	common	ADJ
fuelectenerg-10413	18	7	mode	mode	NOUN
fuelectenerg-10413	18	8	noise	noise	NOUN
fuelectenerg-10413	18	9	and	and	CCONJ
fuelectenerg-10413	18	10	have	have	VERB
fuelectenerg-10413	18	11	a	a	DET
fuelectenerg-10413	18	12	lower	low	ADJ
fuelectenerg-10413	18	13	swing	swing	NOUN
fuelectenerg-10413	18	14	.	.	PUNCT
fuelectenerg-10413	19	1	delay	delay	NOUN
fuelectenerg-10413	19	2	cell	cell	NOUN
fuelectenerg-10413	19	3	is	be	AUX
fuelectenerg-10413	19	4	the	the	DET
fuelectenerg-10413	19	5	basic	basic	ADJ
fuelectenerg-10413	19	6	element	element	NOUN
fuelectenerg-10413	19	7	of	of	ADP
fuelectenerg-10413	19	8	differential	differential	ADJ
fuelectenerg-10413	19	9	configuration	configuration	NOUN
fuelectenerg-10413	19	10	oscillators	oscillator	NOUN
fuelectenerg-10413	19	11	.	.	PUNCT
fuelectenerg-10413	20	1	many	many	ADJ
fuelectenerg-10413	20	2	such	such	ADJ
fuelectenerg-10413	20	3	delay	delay	NOUN
fuelectenerg-10413	20	4	cells	cell	NOUN
fuelectenerg-10413	20	5	were	be	AUX
fuelectenerg-10413	20	6	proposed	propose	VERB
fuelectenerg-10413	20	7	by	by	ADP
fuelectenerg-10413	20	8	different	different	ADJ
fuelectenerg-10413	20	9	researchers	researcher	NOUN
fuelectenerg-10413	20	10	at	at	ADP
fuelectenerg-10413	20	11	different	different	ADJ
fuelectenerg-10413	20	12	times	time	NOUN
fuelectenerg-10413	20	13	.	.	PUNCT
fuelectenerg-10413	21	1	maneatis	maneatis	NOUN
fuelectenerg-10413	21	2	et	et	PROPN
fuelectenerg-10413	21	3	al	al	PROPN
fuelectenerg-10413	21	4	proposed	propose	VERB
fuelectenerg-10413	21	5	a	a	DET
fuelectenerg-10413	21	6	delay	delay	NOUN
fuelectenerg-10413	21	7	cell	cell	NOUN
fuelectenerg-10413	21	8	that	that	PRON
fuelectenerg-10413	21	9	was	be	AUX
fuelectenerg-10413	21	10	used	use	VERB
fuelectenerg-10413	21	11	to	to	PART
fuelectenerg-10413	21	12	design	design	VERB
fuelectenerg-10413	21	13	a	a	DET
fuelectenerg-10413	21	14	ring	ring	NOUN
fuelectenerg-10413	21	15	oscillator	oscillator	NOUN
fuelectenerg-10413	21	16	which	which	PRON
fuelectenerg-10413	21	17	could	could	AUX
fuelectenerg-10413	21	18	oscillate	oscillate	VERB
fuelectenerg-10413	21	19	with	with	ADP
fuelectenerg-10413	21	20	an	an	DET
fuelectenerg-10413	21	21	operating	operate	VERB
fuelectenerg-10413	21	22	frequency	frequency	NOUN
fuelectenerg-10413	21	23	of	of	ADP
fuelectenerg-10413	21	24	141	141	NUM
fuelectenerg-10413	21	25	mhz	mhz	NOUN
fuelectenerg-10413	21	26	.	.	PUNCT
fuelectenerg-10413	22	1	the	the	DET
fuelectenerg-10413	22	2	delay	delay	NOUN
fuelectenerg-10413	22	3	cell	cell	NOUN
fuelectenerg-10413	22	4	was	be	AUX
fuelectenerg-10413	22	5	based	base	VERB
fuelectenerg-10413	22	6	on	on	ADP
fuelectenerg-10413	22	7	a	a	DET
fuelectenerg-10413	22	8	source	source	NOUN
fuelectenerg-10413	22	9	coupled	couple	VERB
fuelectenerg-10413	22	10	pair	pair	NOUN
fuelectenerg-10413	22	11	[	[	X
fuelectenerg-10413	22	12	8	8	NUM
fuelectenerg-10413	22	13	]	]	PUNCT
fuelectenerg-10413	22	14	.	.	PUNCT
fuelectenerg-10413	23	1	a	a	DET
fuelectenerg-10413	23	2	wide	wide	ADJ
fuelectenerg-10413	23	3	operating	operating	NOUN
fuelectenerg-10413	23	4	frequency	frequency	NOUN
fuelectenerg-10413	23	5	three	three	NUM
fuelectenerg-10413	23	6	stage	stage	NOUN
fuelectenerg-10413	23	7	vco	vco	PROPN
fuelectenerg-10413	23	8	was	be	AUX
fuelectenerg-10413	23	9	proposed	propose	VERB
fuelectenerg-10413	23	10	by	by	ADP
fuelectenerg-10413	23	11	yan	yan	PROPN
fuelectenerg-10413	23	12	et	et	PROPN
fuelectenerg-10413	23	13	al	al	PROPN
fuelectenerg-10413	23	14	that	that	PRON
fuelectenerg-10413	23	15	could	could	AUX
fuelectenerg-10413	23	16	operate	operate	VERB
fuelectenerg-10413	23	17	in	in	ADP
fuelectenerg-10413	23	18	frequency	frequency	ADJ
fuelectenerg-10413	23	19	range	range	NOUN
fuelectenerg-10413	23	20	of	of	ADP
fuelectenerg-10413	23	21	1.3	1.3	NUM
fuelectenerg-10413	23	22	to	to	PART
fuelectenerg-10413	23	23	1.8	1.8	NUM
fuelectenerg-10413	23	24	ghz	ghz	NOUN
fuelectenerg-10413	23	25	,	,	PUNCT
fuelectenerg-10413	23	26	however	however	ADV
fuelectenerg-10413	23	27	the	the	DET
fuelectenerg-10413	23	28	power	power	NOUN
fuelectenerg-10413	23	29	consumption	consumption	NOUN
fuelectenerg-10413	23	30	was	be	AUX
fuelectenerg-10413	23	31	comparatively	comparatively	ADV
fuelectenerg-10413	23	32	high	high	ADJ
fuelectenerg-10413	23	33	[	[	X
fuelectenerg-10413	23	34	9	9	NUM
fuelectenerg-10413	23	35	]	]	PUNCT
fuelectenerg-10413	23	36	.	.	PUNCT
fuelectenerg-10413	24	1	park	park	PROPN
fuelectenerg-10413	24	2	et	et	PROPN
fuelectenerg-10413	24	3	al	al	PROPN
fuelectenerg-10413	24	4	designed	design	VERB
fuelectenerg-10413	24	5	a	a	DET
fuelectenerg-10413	24	6	4	4	NUM
fuelectenerg-10413	24	7	stage	stage	NOUN
fuelectenerg-10413	24	8	ring	ring	NOUN
fuelectenerg-10413	24	9	oscillator	oscillator	NOUN
fuelectenerg-10413	24	10	with	with	ADP
fuelectenerg-10413	24	11	low	low	ADJ
fuelectenerg-10413	24	12	phase	phase	NOUN
fuelectenerg-10413	24	13	noise	noise	NOUN
fuelectenerg-10413	24	14	and	and	CCONJ
fuelectenerg-10413	24	15	operates	operate	VERB
fuelectenerg-10413	24	16	in	in	ADP
fuelectenerg-10413	24	17	900	900	NUM
fuelectenerg-10413	24	18	mhz	mhz	NOUN
fuelectenerg-10413	24	19	.	.	PUNCT
fuelectenerg-10413	25	1	the	the	DET
fuelectenerg-10413	25	2	phase	phase	NOUN
fuelectenerg-10413	25	3	noise	noise	NOUN
fuelectenerg-10413	25	4	was	be	AUX
fuelectenerg-10413	25	5	found	find	VERB
fuelectenerg-10413	25	6	to	to	PART
fuelectenerg-10413	25	7	be	be	AUX
fuelectenerg-10413	25	8	-101	-101	PROPN
fuelectenerg-10413	25	9	dbc	dbc	PROPN
fuelectenerg-10413	25	10	/	/	SYM
fuelectenerg-10413	25	11	hz	hz	VERB
fuelectenerg-10413	25	12	at	at	ADP
fuelectenerg-10413	25	13	100	100	NUM
fuelectenerg-10413	25	14	khz	khz	NOUN
fuelectenerg-10413	25	15	[	[	X
fuelectenerg-10413	25	16	10	10	NUM
fuelectenerg-10413	25	17	]	]	PUNCT
fuelectenerg-10413	25	18	.	.	PUNCT
fuelectenerg-10413	26	1	tu	tu	PROPN
fuelectenerg-10413	26	2	et	et	PROPN
fuelectenerg-10413	26	3	al	al	PROPN
fuelectenerg-10413	26	4	.	.	PROPN
fuelectenerg-10413	26	5	proposed	propose	VERB
fuelectenerg-10413	26	6	a	a	DET
fuelectenerg-10413	26	7	novel	novel	ADJ
fuelectenerg-10413	26	8	delay	delay	NOUN
fuelectenerg-10413	26	9	circuit	circuit	NOUN
fuelectenerg-10413	26	10	and	and	CCONJ
fuelectenerg-10413	26	11	used	use	VERB
fuelectenerg-10413	26	12	it	it	PRON
fuelectenerg-10413	26	13	to	to	PART
fuelectenerg-10413	26	14	design	design	VERB
fuelectenerg-10413	26	15	two	two	NUM
fuelectenerg-10413	26	16	stages	stage	NOUN
fuelectenerg-10413	26	17	voltage	voltage	NOUN
fuelectenerg-10413	26	18	controlled	control	VERB
fuelectenerg-10413	26	19	oscillator	oscillator	NOUN
fuelectenerg-10413	26	20	whose	whose	DET
fuelectenerg-10413	26	21	operating	operating	NOUN
fuelectenerg-10413	26	22	range	range	NOUN
fuelectenerg-10413	26	23	was	be	AUX
fuelectenerg-10413	26	24	from	from	ADP
fuelectenerg-10413	26	25	2.5	2.5	NUM
fuelectenerg-10413	26	26	ghz	ghz	NOUN
fuelectenerg-10413	26	27	to	to	ADP
fuelectenerg-10413	26	28	5.2	5.2	NUM
fuelectenerg-10413	26	29	ghz	ghz	NOUN
fuelectenerg-10413	26	30	for	for	ADP
fuelectenerg-10413	26	31	a	a	DET
fuelectenerg-10413	26	32	supply	supply	NOUN
fuelectenerg-10413	26	33	voltage	voltage	NOUN
fuelectenerg-10413	26	34	of	of	ADP
fuelectenerg-10413	26	35	1.8v	1.8v	NUM
fuelectenerg-10413	26	36	.	.	PUNCT
fuelectenerg-10413	27	1	however	however	ADV
fuelectenerg-10413	27	2	due	due	ADP
fuelectenerg-10413	27	3	to	to	ADP
fuelectenerg-10413	27	4	lesser	less	ADJ
fuelectenerg-10413	27	5	number	number	NOUN
fuelectenerg-10413	27	6	of	of	ADP
fuelectenerg-10413	27	7	stages	stage	NOUN
fuelectenerg-10413	27	8	the	the	DET
fuelectenerg-10413	27	9	phase	phase	NOUN
fuelectenerg-10413	27	10	noise	noise	NOUN
fuelectenerg-10413	27	11	achieved	achieve	VERB
fuelectenerg-10413	27	12	was	be	AUX
fuelectenerg-10413	27	13	-90.1	-90.1	PROPN
fuelectenerg-10413	27	14	dbc	dbc	PROPN
fuelectenerg-10413	27	15	/	/	PUNCT
fuelectenerg-10413	27	16	hz	hz	VERB
fuelectenerg-10413	27	17	at	at	ADP
fuelectenerg-10413	27	18	offset	offset	ADJ
fuelectenerg-10413	27	19	frequency	frequency	NOUN
fuelectenerg-10413	27	20	of	of	ADP
fuelectenerg-10413	27	21	1	1	NUM
fuelectenerg-10413	27	22	mhz	mhz	NOUN
fuelectenerg-10413	27	23	[	[	X
fuelectenerg-10413	27	24	11	11	NUM
fuelectenerg-10413	27	25	]	]	PUNCT
fuelectenerg-10413	27	26	.	.	PUNCT
fuelectenerg-10413	28	1	sheu	sheu	PROPN
fuelectenerg-10413	28	2	et	et	PROPN
fuelectenerg-10413	28	3	al	al	PROPN
fuelectenerg-10413	28	4	proposed	propose	VERB
fuelectenerg-10413	28	5	a	a	DET
fuelectenerg-10413	28	6	new	new	ADJ
fuelectenerg-10413	28	7	differential	differential	NOUN
fuelectenerg-10413	28	8	delay	delay	NOUN
fuelectenerg-10413	28	9	cell	cell	NOUN
fuelectenerg-10413	28	10	which	which	PRON
fuelectenerg-10413	28	11	was	be	AUX
fuelectenerg-10413	28	12	implemented	implement	VERB
fuelectenerg-10413	28	13	in	in	ADP
fuelectenerg-10413	28	14	three	three	NUM
fuelectenerg-10413	28	15	stages	stage	NOUN
fuelectenerg-10413	28	16	vco	vco	PROPN
fuelectenerg-10413	28	17	,	,	PUNCT
fuelectenerg-10413	28	18	the	the	DET
fuelectenerg-10413	28	19	tuning	tuning	NOUN
fuelectenerg-10413	28	20	range	range	NOUN
fuelectenerg-10413	28	21	was	be	AUX
fuelectenerg-10413	28	22	found	find	VERB
fuelectenerg-10413	28	23	to	to	PART
fuelectenerg-10413	28	24	be	be	AUX
fuelectenerg-10413	28	25	479	479	NUM
fuelectenerg-10413	28	26	mhz	mhz	NOUN
fuelectenerg-10413	28	27	to	to	ADP
fuelectenerg-10413	28	28	4.09	4.09	NUM
fuelectenerg-10413	28	29	ghz	ghz	NOUN
fuelectenerg-10413	28	30	with	with	ADP
fuelectenerg-10413	28	31	phase	phase	NOUN
fuelectenerg-10413	28	32	noise	noise	NOUN
fuelectenerg-10413	28	33	-93.3	-93.3	PROPN
fuelectenerg-10413	28	34	dbc	dbc	PROPN
fuelectenerg-10413	28	35	/	/	SYM
fuelectenerg-10413	28	36	hz	hz	VERB
fuelectenerg-10413	28	37	at	at	ADP
fuelectenerg-10413	28	38	offset	offset	ADJ
fuelectenerg-10413	28	39	frequency	frequency	NOUN
fuelectenerg-10413	28	40	of	of	ADP
fuelectenerg-10413	28	41	1	1	NUM
fuelectenerg-10413	28	42	mhz	mhz	NOUN
fuelectenerg-10413	28	43	[	[	X
fuelectenerg-10413	28	44	12	12	NUM
fuelectenerg-10413	28	45	]	]	PUNCT
fuelectenerg-10413	28	46	.	.	PUNCT
fuelectenerg-10413	29	1	parvizi	parvizi	NOUN
fuelectenerg-10413	29	2	et	et	PROPN
fuelectenerg-10413	29	3	al	al	PROPN
fuelectenerg-10413	29	4	.	.	PROPN
fuelectenerg-10413	29	5	proposed	propose	VERB
fuelectenerg-10413	29	6	design	design	NOUN
fuelectenerg-10413	29	7	of	of	ADP
fuelectenerg-10413	29	8	ring	ring	NOUN
fuelectenerg-10413	29	9	oscillators	oscillator	NOUN
fuelectenerg-10413	29	10	using	use	VERB
fuelectenerg-10413	29	11	two	two	NUM
fuelectenerg-10413	29	12	topologies	topology	NOUN
fuelectenerg-10413	29	13	which	which	PRON
fuelectenerg-10413	29	14	are	be	AUX
fuelectenerg-10413	29	15	differential	differential	ADJ
fuelectenerg-10413	29	16	and	and	CCONJ
fuelectenerg-10413	29	17	single	single	ADJ
fuelectenerg-10413	29	18	-	-	PUNCT
fuelectenerg-10413	29	19	ended	ended	ADJ
fuelectenerg-10413	29	20	.	.	PUNCT
fuelectenerg-10413	30	1	to	to	PART
fuelectenerg-10413	30	2	reduce	reduce	VERB
fuelectenerg-10413	30	3	stage	stage	NOUN
fuelectenerg-10413	30	4	delay	delay	NOUN
fuelectenerg-10413	30	5	and	and	CCONJ
fuelectenerg-10413	30	6	boost	boost	VERB
fuelectenerg-10413	30	7	tuning	tune	VERB
fuelectenerg-10413	30	8	range	range	NOUN
fuelectenerg-10413	30	9	,	,	PUNCT
fuelectenerg-10413	30	10	the	the	DET
fuelectenerg-10413	30	11	vco	vco	PROPN
fuelectenerg-10413	30	12	used	use	VERB
fuelectenerg-10413	30	13	a	a	DET
fuelectenerg-10413	30	14	feed	feed	NOUN
fuelectenerg-10413	30	15	-	-	PUNCT
fuelectenerg-10413	30	16	forward	forward	NOUN
fuelectenerg-10413	30	17	technique	technique	NOUN
fuelectenerg-10413	30	18	and	and	CCONJ
fuelectenerg-10413	30	19	load	load	NOUN
fuelectenerg-10413	30	20	in	in	ADP
fuelectenerg-10413	30	21	terms	term	NOUN
fuelectenerg-10413	30	22	of	of	ADP
fuelectenerg-10413	30	23	inductive	inductive	ADJ
fuelectenerg-10413	30	24	impedance	impedance	NOUN
fuelectenerg-10413	30	25	[	[	X
fuelectenerg-10413	30	26	13	13	NUM
fuelectenerg-10413	30	27	]	]	PUNCT
fuelectenerg-10413	30	28	.	.	PUNCT
fuelectenerg-10413	31	1	a	a	DET
fuelectenerg-10413	31	2	pll	pll	PROPN
fuelectenerg-10413	31	3	was	be	AUX
fuelectenerg-10413	31	4	designed	design	VERB
fuelectenerg-10413	31	5	by	by	ADP
fuelectenerg-10413	31	6	shruti	shruti	PROPN
fuelectenerg-10413	31	7	suman	suman	PROPN
fuelectenerg-10413	31	8	et	et	PROPN
fuelectenerg-10413	31	9	al	al	PROPN
fuelectenerg-10413	31	10	by	by	ADP
fuelectenerg-10413	31	11	proposing	propose	VERB
fuelectenerg-10413	31	12	an	an	DET
fuelectenerg-10413	31	13	improved	improved	ADJ
fuelectenerg-10413	31	14	performance	performance	NOUN
fuelectenerg-10413	31	15	vco	vco	NOUN
fuelectenerg-10413	31	16	.	.	PUNCT
fuelectenerg-10413	32	1	the	the	DET
fuelectenerg-10413	32	2	operating	operate	VERB
fuelectenerg-10413	32	3	frequency	frequency	NOUN
fuelectenerg-10413	32	4	varied	varied	ADJ
fuelectenerg-10413	32	5	from	from	ADP
fuelectenerg-10413	32	6	2.26	2.26	NUM
fuelectenerg-10413	32	7	ghz	ghz	NOUN
fuelectenerg-10413	32	8	to	to	ADP
fuelectenerg-10413	32	9	3.44	3.44	NUM
fuelectenerg-10413	32	10	ghz	ghz	NOUN
fuelectenerg-10413	32	11	with	with	ADP
fuelectenerg-10413	32	12	the	the	DET
fuelectenerg-10413	32	13	help	help	NOUN
fuelectenerg-10413	32	14	of	of	ADP
fuelectenerg-10413	32	15	a	a	DET
fuelectenerg-10413	32	16	controlled	control	VERB
fuelectenerg-10413	32	17	voltage	voltage	NOUN
fuelectenerg-10413	32	18	changed	change	VERB
fuelectenerg-10413	32	19	from	from	ADP
fuelectenerg-10413	32	20	1v	1v	NUM
fuelectenerg-10413	32	21	to	to	ADP
fuelectenerg-10413	32	22	3v	3v	NUM
fuelectenerg-10413	32	23	but	but	CCONJ
fuelectenerg-10413	32	24	they	they	PRON
fuelectenerg-10413	32	25	did	do	AUX
fuelectenerg-10413	32	26	not	not	PART
fuelectenerg-10413	32	27	focus	focus	VERB
fuelectenerg-10413	32	28	on	on	ADP
fuelectenerg-10413	32	29	phase	phase	NOUN
fuelectenerg-10413	32	30	noise[14	noise[14	PROPN
fuelectenerg-10413	32	31	]	]	PUNCT
fuelectenerg-10413	32	32	.	.	PUNCT
fuelectenerg-10413	33	1	a	a	DET
fuelectenerg-10413	33	2	delay	delay	NOUN
fuelectenerg-10413	33	3	cell	cell	NOUN
fuelectenerg-10413	33	4	for	for	ADP
fuelectenerg-10413	33	5	using	use	VERB
fuelectenerg-10413	33	6	in	in	ADP
fuelectenerg-10413	33	7	ring	ring	NOUN
fuelectenerg-10413	33	8	oscillator	oscillator	NOUN
fuelectenerg-10413	33	9	with	with	ADP
fuelectenerg-10413	33	10	dual	dual	ADJ
fuelectenerg-10413	33	11	loop	loop	NOUN
fuelectenerg-10413	33	12	was	be	AUX
fuelectenerg-10413	33	13	proposed	propose	VERB
fuelectenerg-10413	33	14	by	by	ADP
fuelectenerg-10413	33	15	gao	gao	PROPN
fuelectenerg-10413	33	16	et	et	PROPN
fuelectenerg-10413	33	17	al	al	PROPN
fuelectenerg-10413	33	18	,	,	PUNCT
fuelectenerg-10413	33	19	where	where	SCONJ
fuelectenerg-10413	33	20	they	they	PRON
fuelectenerg-10413	33	21	also	also	ADV
fuelectenerg-10413	33	22	used	use	VERB
fuelectenerg-10413	33	23	controlled	control	VERB
fuelectenerg-10413	33	24	voltage	voltage	NOUN
fuelectenerg-10413	33	25	to	to	PART
fuelectenerg-10413	33	26	tune	tune	VERB
fuelectenerg-10413	33	27	the	the	DET
fuelectenerg-10413	33	28	frequency	frequency	NOUN
fuelectenerg-10413	33	29	range	range	NOUN
fuelectenerg-10413	33	30	.	.	PUNCT
fuelectenerg-10413	34	1	the	the	DET
fuelectenerg-10413	34	2	design	design	NOUN
fuelectenerg-10413	34	3	was	be	AUX
fuelectenerg-10413	34	4	efficient	efficient	ADJ
fuelectenerg-10413	34	5	enough	enough	ADV
fuelectenerg-10413	34	6	to	to	PART
fuelectenerg-10413	34	7	achieve	achieve	VERB
fuelectenerg-10413	34	8	wideband	wideband	NOUN
fuelectenerg-10413	34	9	tuning	tuning	NOUN
fuelectenerg-10413	34	10	range	range	NOUN
fuelectenerg-10413	34	11	while	while	SCONJ
fuelectenerg-10413	34	12	maintaning	maintane	VERB
fuelectenerg-10413	34	13	low	low	ADJ
fuelectenerg-10413	34	14	phase	phase	NOUN
fuelectenerg-10413	34	15	noise	noise	NOUN
fuelectenerg-10413	34	16	[	[	X
fuelectenerg-10413	34	17	15	15	NUM
fuelectenerg-10413	34	18	]	]	PUNCT
fuelectenerg-10413	34	19	.	.	PUNCT
fuelectenerg-10413	35	1	to	to	PART
fuelectenerg-10413	35	2	determine	determine	VERB
fuelectenerg-10413	35	3	the	the	DET
fuelectenerg-10413	35	4	optimal	optimal	ADJ
fuelectenerg-10413	35	5	dimensions	dimension	NOUN
fuelectenerg-10413	35	6	of	of	ADP
fuelectenerg-10413	35	7	the	the	DET
fuelectenerg-10413	35	8	vco	vco	PROPN
fuelectenerg-10413	35	9	,	,	PUNCT
fuelectenerg-10413	35	10	gargouri	gargouri	PROPN
fuelectenerg-10413	35	11	et	et	PROPN
fuelectenerg-10413	35	12	al	al	PROPN
fuelectenerg-10413	35	13	proposed	propose	VERB
fuelectenerg-10413	35	14	a	a	DET
fuelectenerg-10413	35	15	systematic	systematic	ADJ
fuelectenerg-10413	35	16	and	and	CCONJ
fuelectenerg-10413	35	17	efficient	efficient	ADJ
fuelectenerg-10413	35	18	optimization	optimization	NOUN
fuelectenerg-10413	35	19	method	method	NOUN
fuelectenerg-10413	35	20	and	and	CCONJ
fuelectenerg-10413	35	21	found	find	VERB
fuelectenerg-10413	35	22	an	an	DET
fuelectenerg-10413	35	23	optimal	optimal	ADJ
fuelectenerg-10413	35	24	trade	trade	NOUN
fuelectenerg-10413	35	25	-	-	PUNCT
fuelectenerg-10413	35	26	off	off	NOUN
fuelectenerg-10413	35	27	between	between	ADP
fuelectenerg-10413	35	28	various	various	ADJ
fuelectenerg-10413	35	29	specifications	specification	NOUN
fuelectenerg-10413	35	30	[	[	X
fuelectenerg-10413	35	31	16	16	NUM
fuelectenerg-10413	35	32	]	]	PUNCT
fuelectenerg-10413	35	33	.	.	PUNCT
fuelectenerg-10413	36	1	salem	salem	PROPN
fuelectenerg-10413	36	2	et	et	PROPN
fuelectenerg-10413	36	3	al	al	PROPN
fuelectenerg-10413	36	4	proposed	propose	VERB
fuelectenerg-10413	36	5	a	a	DET
fuelectenerg-10413	36	6	fault	fault	NOUN
fuelectenerg-10413	36	7	tolerant	tolerant	ADJ
fuelectenerg-10413	36	8	delay	delay	NOUN
fuelectenerg-10413	36	9	cell	cell	NOUN
fuelectenerg-10413	36	10	to	to	PART
fuelectenerg-10413	36	11	be	be	AUX
fuelectenerg-10413	36	12	used	use	VERB
fuelectenerg-10413	36	13	for	for	ADP
fuelectenerg-10413	36	14	designing	design	VERB
fuelectenerg-10413	36	15	ring	ring	NOUN
fuelectenerg-10413	36	16	oscillator	oscillator	NOUN
fuelectenerg-10413	36	17	that	that	PRON
fuelectenerg-10413	36	18	uses	uses	AUX
fuelectenerg-10413	36	19	redundant	redundant	ADJ
fuelectenerg-10413	36	20	transistor	transistor	NOUN
fuelectenerg-10413	36	21	methods	method	NOUN
fuelectenerg-10413	36	22	to	to	PART
fuelectenerg-10413	36	23	improve	improve	VERB
fuelectenerg-10413	36	24	relaibility	relaibility	NOUN
fuelectenerg-10413	36	25	,	,	PUNCT
fuelectenerg-10413	36	26	power	power	NOUN
fuelectenerg-10413	36	27	dissipation	dissipation	NOUN
fuelectenerg-10413	36	28	and	and	CCONJ
fuelectenerg-10413	36	29	phase	phase	NOUN
fuelectenerg-10413	36	30	noise	noise	NOUN
fuelectenerg-10413	36	31	[	[	X
fuelectenerg-10413	36	32	17	17	NUM
fuelectenerg-10413	36	33	]	]	PUNCT
fuelectenerg-10413	36	34	.	.	PUNCT
fuelectenerg-10413	37	1	kumar	kumar	PROPN
fuelectenerg-10413	37	2	et	et	PROPN
fuelectenerg-10413	37	3	al	al	PROPN
fuelectenerg-10413	37	4	presented	present	VERB
fuelectenerg-10413	37	5	a	a	DET
fuelectenerg-10413	37	6	vco	vco	NOUN
fuelectenerg-10413	37	7	using	use	VERB
fuelectenerg-10413	37	8	nor	nor	CCONJ
fuelectenerg-10413	37	9	gate	gate	VERB
fuelectenerg-10413	37	10	and	and	CCONJ
fuelectenerg-10413	37	11	varactor	varactor	NOUN
fuelectenerg-10413	37	12	tuning	tuning	NOUN
fuelectenerg-10413	37	13	method	method	NOUN
fuelectenerg-10413	37	14	with	with	ADP
fuelectenerg-10413	37	15	inversion	inversion	NOUN
fuelectenerg-10413	37	16	mode	mode	NOUN
fuelectenerg-10413	37	17	[	[	X
fuelectenerg-10413	37	18	18	18	NUM
fuelectenerg-10413	37	19	]	]	PUNCT
fuelectenerg-10413	37	20	.	.	PUNCT
fuelectenerg-10413	38	1	the	the	DET
fuelectenerg-10413	38	2	changes	change	NOUN
fuelectenerg-10413	38	3	in	in	ADP
fuelectenerg-10413	38	4	the	the	DET
fuelectenerg-10413	38	5	varactor	varactor	NOUN
fuelectenerg-10413	38	6	width	width	NOUN
fuelectenerg-10413	38	7	is	be	AUX
fuelectenerg-10413	38	8	considered	consider	VERB
fuelectenerg-10413	38	9	for	for	ADP
fuelectenerg-10413	38	10	variation	variation	NOUN
fuelectenerg-10413	38	11	in	in	ADP
fuelectenerg-10413	38	12	the	the	DET
fuelectenerg-10413	38	13	operating	operating	NOUN
fuelectenerg-10413	38	14	frequency	frequency	NOUN
fuelectenerg-10413	38	15	.	.	PUNCT
fuelectenerg-10413	39	1	however	however	ADV
fuelectenerg-10413	39	2	there	there	PRON
fuelectenerg-10413	39	3	is	be	VERB
fuelectenerg-10413	39	4	still	still	ADV
fuelectenerg-10413	39	5	scope	scope	NOUN
fuelectenerg-10413	39	6	for	for	ADP
fuelectenerg-10413	39	7	improve	improve	VERB
fuelectenerg-10413	39	8	in	in	ADP
fuelectenerg-10413	39	9	the	the	DET
fuelectenerg-10413	39	10	phase	phase	NOUN
fuelectenerg-10413	39	11	noise	noise	NOUN
fuelectenerg-10413	39	12	.	.	PUNCT
fuelectenerg-10413	40	1	a	a	DET
fuelectenerg-10413	40	2	low	low	ADJ
fuelectenerg-10413	40	3	noise	noise	NOUN
fuelectenerg-10413	40	4	injection	injection	NOUN
fuelectenerg-10413	40	5	locked	lock	VERB
fuelectenerg-10413	40	6	vco	vco	PROPN
fuelectenerg-10413	40	7	was	be	AUX
fuelectenerg-10413	40	8	proposed	propose	VERB
fuelectenerg-10413	40	9	by	by	ADP
fuelectenerg-10413	40	10	lee	lee	PROPN
fuelectenerg-10413	40	11	et	et	PROPN
fuelectenerg-10413	40	12	al	al	PROPN
fuelectenerg-10413	40	13	in	in	ADP
fuelectenerg-10413	40	14	which	which	PRON
fuelectenerg-10413	40	15	a	a	DET
fuelectenerg-10413	40	16	separate	separate	ADJ
fuelectenerg-10413	40	17	injection	injection	NOUN
fuelectenerg-10413	40	18	signal	signal	NOUN
fuelectenerg-10413	40	19	is	be	AUX
fuelectenerg-10413	40	20	employed	employ	VERB
fuelectenerg-10413	40	21	and	and	CCONJ
fuelectenerg-10413	40	22	the	the	DET
fuelectenerg-10413	40	23	oscillator	oscillator	NOUN
fuelectenerg-10413	40	24	output	output	NOUN
fuelectenerg-10413	40	25	locks	lock	NOUN
fuelectenerg-10413	40	26	to	to	ADP
fuelectenerg-10413	40	27	the	the	DET
fuelectenerg-10413	40	28	frequency	frequency	NOUN
fuelectenerg-10413	40	29	of	of	ADP
fuelectenerg-10413	40	30	the	the	DET
fuelectenerg-10413	40	31	injection	injection	NOUN
fuelectenerg-10413	40	32	signal	signal	NOUN
fuelectenerg-10413	40	33	[	[	X
fuelectenerg-10413	40	34	19	19	NUM
fuelectenerg-10413	40	35	]	]	PUNCT
fuelectenerg-10413	40	36	.	.	PUNCT
fuelectenerg-10413	41	1	the	the	DET
fuelectenerg-10413	41	2	circuit	circuit	NOUN
fuelectenerg-10413	41	3	showed	show	VERB
fuelectenerg-10413	41	4	tuning	tune	VERB
fuelectenerg-10413	41	5	range	range	NOUN
fuelectenerg-10413	41	6	having	have	VERB
fuelectenerg-10413	41	7	wide	wide	ADJ
fuelectenerg-10413	41	8	frequency	frequency	NOUN
fuelectenerg-10413	41	9	and	and	CCONJ
fuelectenerg-10413	41	10	low	low	ADJ
fuelectenerg-10413	41	11	phase	phase	NOUN
fuelectenerg-10413	41	12	noise	noise	NOUN
fuelectenerg-10413	41	13	with	with	ADP
fuelectenerg-10413	41	14	low	low	ADJ
fuelectenerg-10413	41	15	power	power	NOUN
fuelectenerg-10413	41	16	consumption	consumption	NOUN
fuelectenerg-10413	41	17	.	.	PUNCT
fuelectenerg-10413	42	1	ramazani	ramazani	NOUN
fuelectenerg-10413	42	2	et	et	PROPN
fuelectenerg-10413	42	3	al	al	PROPN
fuelectenerg-10413	42	4	presented	present	VERB
fuelectenerg-10413	42	5	some	some	DET
fuelectenerg-10413	42	6	delay	delay	NOUN
fuelectenerg-10413	42	7	cells	cell	NOUN
fuelectenerg-10413	42	8	using	use	VERB
fuelectenerg-10413	42	9	basic	basic	ADJ
fuelectenerg-10413	42	10	inverters	inverter	NOUN
fuelectenerg-10413	42	11	and	and	CCONJ
fuelectenerg-10413	42	12	current	current	ADJ
fuelectenerg-10413	42	13	starved	starve	VERB
fuelectenerg-10413	42	14	inverters	inverter	NOUN
fuelectenerg-10413	42	15	to	to	PART
fuelectenerg-10413	42	16	be	be	AUX
fuelectenerg-10413	42	17	used	use	VERB
fuelectenerg-10413	42	18	for	for	ADP
fuelectenerg-10413	42	19	designing	design	VERB
fuelectenerg-10413	42	20	vco	vco	PROPN
fuelectenerg-10413	42	21	to	to	PART
fuelectenerg-10413	42	22	achieve	achieve	VERB
fuelectenerg-10413	42	23	better	well	ADJ
fuelectenerg-10413	42	24	frequency	frequency	NOUN
fuelectenerg-10413	42	25	stability	stability	NOUN
fuelectenerg-10413	42	26	[	[	X
fuelectenerg-10413	42	27	20	20	NUM
fuelectenerg-10413	42	28	]	]	PUNCT
fuelectenerg-10413	42	29	.	.	PUNCT
fuelectenerg-10413	43	1	the	the	DET
fuelectenerg-10413	43	2	proposed	propose	VERB
fuelectenerg-10413	43	3	circuit	circuit	NOUN
fuelectenerg-10413	43	4	is	be	AUX
fuelectenerg-10413	43	5	oriented	orient	VERB
fuelectenerg-10413	43	6	towards	towards	ADP
fuelectenerg-10413	43	7	designing	design	VERB
fuelectenerg-10413	43	8	of	of	ADP
fuelectenerg-10413	43	9	ring	ring	PROPN
fuelectenerg-10413	43	10	vco	vco	PROPN
fuelectenerg-10413	43	11	with	with	ADP
fuelectenerg-10413	43	12	the	the	DET
fuelectenerg-10413	43	13	ability	ability	NOUN
fuelectenerg-10413	43	14	to	to	PART
fuelectenerg-10413	43	15	operate	operate	VERB
fuelectenerg-10413	43	16	in	in	ADP
fuelectenerg-10413	43	17	disributed	disributed	ADJ
fuelectenerg-10413	43	18	tuning	tuning	NOUN
fuelectenerg-10413	43	19	range	range	NOUN
fuelectenerg-10413	43	20	while	while	SCONJ
fuelectenerg-10413	43	21	maintaininng	maintaininng	ADJ
fuelectenerg-10413	43	22	decent	decent	ADJ
fuelectenerg-10413	43	23	tradeoff	tradeoff	NOUN
fuelectenerg-10413	43	24	between	between	ADP
fuelectenerg-10413	43	25	phase	phase	NOUN
fuelectenerg-10413	43	26	noise	noise	NOUN
fuelectenerg-10413	43	27	and	and	CCONJ
fuelectenerg-10413	43	28	power	power	NOUN
fuelectenerg-10413	43	29	consumption	consumption	NOUN
fuelectenerg-10413	43	30	in	in	ADP
fuelectenerg-10413	43	31	differential	differential	ADJ
fuelectenerg-10413	43	32	configuration	configuration	NOUN
fuelectenerg-10413	43	33	.	.	PUNCT
fuelectenerg-10413	44	1	thus	thus	ADV
fuelectenerg-10413	44	2	the	the	DET
fuelectenerg-10413	44	3	novelty	novelty	NOUN
fuelectenerg-10413	44	4	of	of	ADP
fuelectenerg-10413	44	5	the	the	DET
fuelectenerg-10413	44	6	work	work	NOUN
fuelectenerg-10413	44	7	lies	lie	VERB
fuelectenerg-10413	44	8	in	in	ADP
fuelectenerg-10413	44	9	allowing	allow	VERB
fuelectenerg-10413	44	10	the	the	DET
fuelectenerg-10413	44	11	same	same	ADJ
fuelectenerg-10413	44	12	vco	vco	NOUN
fuelectenerg-10413	44	13	to	to	PART
fuelectenerg-10413	44	14	work	work	VERB
fuelectenerg-10413	44	15	in	in	ADP
fuelectenerg-10413	44	16	the	the	DET
fuelectenerg-10413	44	17	high	high	ADJ
fuelectenerg-10413	44	18	as	as	ADV
fuelectenerg-10413	44	19	well	well	ADV
fuelectenerg-10413	44	20	as	as	ADP
fuelectenerg-10413	44	21	low	low	ADJ
fuelectenerg-10413	44	22	frequency	frequency	NOUN
fuelectenerg-10413	44	23	ranges	range	VERB
fuelectenerg-10413	44	24	without	without	ADP
fuelectenerg-10413	44	25	altering	alter	VERB
fuelectenerg-10413	44	26	the	the	DET
fuelectenerg-10413	44	27	physical	physical	ADJ
fuelectenerg-10413	44	28	design	design	NOUN
fuelectenerg-10413	44	29	of	of	ADP
fuelectenerg-10413	44	30	the	the	DET
fuelectenerg-10413	44	31	circuit	circuit	NOUN
fuelectenerg-10413	44	32	.	.	PUNCT
fuelectenerg-10413	45	1	the	the	DET
fuelectenerg-10413	45	2	subsequent	subsequent	ADJ
fuelectenerg-10413	45	3	sections	section	NOUN
fuelectenerg-10413	45	4	of	of	ADP
fuelectenerg-10413	45	5	the	the	DET
fuelectenerg-10413	45	6	paper	paper	NOUN
fuelectenerg-10413	45	7	are	be	AUX
fuelectenerg-10413	45	8	organized	organize	VERB
fuelectenerg-10413	45	9	as	as	SCONJ
fuelectenerg-10413	45	10	follows	follow	VERB
fuelectenerg-10413	45	11	:	:	PUNCT
fuelectenerg-10413	45	12	section	section	NOUN
fuelectenerg-10413	45	13	2	2	NUM
fuelectenerg-10413	45	14	deals	deal	NOUN
fuelectenerg-10413	45	15	with	with	ADP
fuelectenerg-10413	45	16	proposed	propose	VERB
fuelectenerg-10413	45	17	vco	vco	PROPN
fuelectenerg-10413	45	18	,	,	PUNCT
fuelectenerg-10413	45	19	section	section	NOUN
fuelectenerg-10413	45	20	3	3	NUM
fuelectenerg-10413	45	21	deals	deal	NOUN
fuelectenerg-10413	45	22	with	with	ADP
fuelectenerg-10413	45	23	delay	delay	NOUN
fuelectenerg-10413	45	24	circuit	circuit	NOUN
fuelectenerg-10413	45	25	analysis	analysis	NOUN
fuelectenerg-10413	45	26	,	,	PUNCT
fuelectenerg-10413	45	27	section	section	NOUN
fuelectenerg-10413	45	28	4	4	NUM
fuelectenerg-10413	45	29	deals	deal	NOUN
fuelectenerg-10413	45	30	with	with	ADP
fuelectenerg-10413	45	31	implementation	implementation	NOUN
fuelectenerg-10413	45	32	and	and	CCONJ
fuelectenerg-10413	45	33	section	section	NOUN
fuelectenerg-10413	45	34	5	5	NUM
fuelectenerg-10413	45	35	deals	deal	NOUN
fuelectenerg-10413	45	36	with	with	ADP
fuelectenerg-10413	45	37	conclusion	conclusion	NOUN
fuelectenerg-10413	45	38	.	.	PUNCT
fuelectenerg-10413	46	1	design	design	NOUN
fuelectenerg-10413	46	2	of	of	ADP
fuelectenerg-10413	46	3	a	a	DET
fuelectenerg-10413	46	4	four	four	NUM
fuelectenerg-10413	46	5	stages	stage	NOUN
fuelectenerg-10413	46	6	vco	vco	NOUN
fuelectenerg-10413	46	7	using	use	VERB
fuelectenerg-10413	46	8	a	a	DET
fuelectenerg-10413	46	9	novel	novel	ADJ
fuelectenerg-10413	46	10	delay	delay	NOUN
fuelectenerg-10413	46	11	circuit	circuit	NOUN
fuelectenerg-10413	46	12	for	for	ADP
fuelectenerg-10413	46	13	operation	operation	NOUN
fuelectenerg-10413	46	14	in	in	ADP
fuelectenerg-10413	46	15	distributed	distribute	VERB
fuelectenerg-10413	46	16	band	band	NOUN
fuelectenerg-10413	46	17	frequencies	frequency	NOUN
fuelectenerg-10413	46	18	471	471	NUM
fuelectenerg-10413	46	19	2	2	NUM
fuelectenerg-10413	46	20	.	.	PUNCT
fuelectenerg-10413	46	21	proposed	propose	VERB
fuelectenerg-10413	46	22	vco	vco	PROPN
fuelectenerg-10413	46	23	even	even	ADV
fuelectenerg-10413	46	24	and	and	CCONJ
fuelectenerg-10413	46	25	odd	odd	ADJ
fuelectenerg-10413	46	26	numbers	number	NOUN
fuelectenerg-10413	46	27	of	of	ADP
fuelectenerg-10413	46	28	stages	stage	NOUN
fuelectenerg-10413	46	29	can	can	AUX
fuelectenerg-10413	46	30	be	be	AUX
fuelectenerg-10413	46	31	used	use	VERB
fuelectenerg-10413	46	32	in	in	ADP
fuelectenerg-10413	46	33	differential	differential	ADJ
fuelectenerg-10413	46	34	ring	ring	NOUN
fuelectenerg-10413	46	35	oscillators	oscillator	NOUN
fuelectenerg-10413	46	36	,	,	PUNCT
fuelectenerg-10413	46	37	but	but	CCONJ
fuelectenerg-10413	46	38	an	an	DET
fuelectenerg-10413	46	39	odd	odd	ADJ
fuelectenerg-10413	46	40	number	number	NOUN
fuelectenerg-10413	46	41	of	of	ADP
fuelectenerg-10413	46	42	stages	stage	NOUN
fuelectenerg-10413	46	43	can	can	AUX
fuelectenerg-10413	46	44	not	not	PART
fuelectenerg-10413	46	45	produce	produce	VERB
fuelectenerg-10413	46	46	both	both	PRON
fuelectenerg-10413	46	47	in	in	ADP
fuelectenerg-10413	46	48	phase	phase	NOUN
fuelectenerg-10413	46	49	and	and	CCONJ
fuelectenerg-10413	46	50	quadrature	quadrature	NOUN
fuelectenerg-10413	46	51	phase	phase	NOUN
fuelectenerg-10413	46	52	outputs	output	NOUN
fuelectenerg-10413	46	53	.	.	PUNCT
fuelectenerg-10413	47	1	frequency	frequency	NOUN
fuelectenerg-10413	47	2	of	of	ADP
fuelectenerg-10413	47	3	oscillation	oscillation	NOUN
fuelectenerg-10413	47	4	depends	depend	VERB
fuelectenerg-10413	47	5	on	on	ADP
fuelectenerg-10413	47	6	factors	factor	NOUN
fuelectenerg-10413	47	7	like	like	ADP
fuelectenerg-10413	47	8	driving	drive	VERB
fuelectenerg-10413	47	9	capability	capability	NOUN
fuelectenerg-10413	47	10	,	,	PUNCT
fuelectenerg-10413	47	11	load	load	NOUN
fuelectenerg-10413	47	12	and	and	CCONJ
fuelectenerg-10413	47	13	number	number	NOUN
fuelectenerg-10413	47	14	of	of	ADP
fuelectenerg-10413	47	15	stages	stage	NOUN
fuelectenerg-10413	47	16	.	.	PUNCT
fuelectenerg-10413	48	1	in	in	ADP
fuelectenerg-10413	48	2	addition	addition	NOUN
fuelectenerg-10413	48	3	,	,	PUNCT
fuelectenerg-10413	48	4	when	when	SCONJ
fuelectenerg-10413	48	5	the	the	DET
fuelectenerg-10413	48	6	number	number	NOUN
fuelectenerg-10413	48	7	of	of	ADP
fuelectenerg-10413	48	8	phases	phase	NOUN
fuelectenerg-10413	48	9	increase	increase	VERB
fuelectenerg-10413	48	10	,	,	PUNCT
fuelectenerg-10413	48	11	the	the	DET
fuelectenerg-10413	48	12	quantity	quantity	NOUN
fuelectenerg-10413	48	13	of	of	ADP
fuelectenerg-10413	48	14	energy	energy	NOUN
fuelectenerg-10413	48	15	used	use	VERB
fuelectenerg-10413	48	16	,	,	PUNCT
fuelectenerg-10413	48	17	the	the	DET
fuelectenerg-10413	48	18	amount	amount	NOUN
fuelectenerg-10413	48	19	of	of	ADP
fuelectenerg-10413	48	20	space	space	NOUN
fuelectenerg-10413	48	21	needed	need	VERB
fuelectenerg-10413	48	22	,	,	PUNCT
fuelectenerg-10413	48	23	and	and	CCONJ
fuelectenerg-10413	48	24	the	the	DET
fuelectenerg-10413	48	25	cost	cost	NOUN
fuelectenerg-10413	48	26	increased	increase	VERB
fuelectenerg-10413	48	27	.	.	PUNCT
fuelectenerg-10413	49	1	additionally	additionally	ADV
fuelectenerg-10413	49	2	,	,	PUNCT
fuelectenerg-10413	49	3	there	there	PRON
fuelectenerg-10413	49	4	will	will	AUX
fuelectenerg-10413	49	5	be	be	AUX
fuelectenerg-10413	49	6	greater	great	ADJ
fuelectenerg-10413	49	7	phase	phase	NOUN
fuelectenerg-10413	49	8	noise	noise	NOUN
fuelectenerg-10413	49	9	with	with	ADP
fuelectenerg-10413	49	10	fewer	few	ADJ
fuelectenerg-10413	49	11	stages	stage	NOUN
fuelectenerg-10413	49	12	.	.	PUNCT
fuelectenerg-10413	50	1	therefore	therefore	ADV
fuelectenerg-10413	50	2	,	,	PUNCT
fuelectenerg-10413	50	3	maintaining	maintain	VERB
fuelectenerg-10413	50	4	adequate	adequate	ADJ
fuelectenerg-10413	50	5	tradeoff	tradeoff	NOUN
fuelectenerg-10413	50	6	between	between	ADP
fuelectenerg-10413	50	7	the	the	DET
fuelectenerg-10413	50	8	various	various	ADJ
fuelectenerg-10413	50	9	performance	performance	NOUN
fuelectenerg-10413	50	10	characteristics	characteristic	NOUN
fuelectenerg-10413	50	11	requires	require	VERB
fuelectenerg-10413	50	12	an	an	DET
fuelectenerg-10413	50	13	optimal	optimal	ADJ
fuelectenerg-10413	50	14	design	design	NOUN
fuelectenerg-10413	50	15	.	.	PUNCT
fuelectenerg-10413	51	1	two	two	NUM
fuelectenerg-10413	51	2	stages	stage	NOUN
fuelectenerg-10413	51	3	dro	dro	PROPN
fuelectenerg-10413	51	4	will	will	AUX
fuelectenerg-10413	51	5	have	have	VERB
fuelectenerg-10413	51	6	tight	tight	ADJ
fuelectenerg-10413	51	7	constrains	constrain	NOUN
fuelectenerg-10413	51	8	particularly	particularly	ADV
fuelectenerg-10413	51	9	in	in	ADP
fuelectenerg-10413	51	10	oscillations	oscillation	NOUN
fuelectenerg-10413	51	11	to	to	PART
fuelectenerg-10413	51	12	occur	occur	VERB
fuelectenerg-10413	51	13	,	,	PUNCT
fuelectenerg-10413	51	14	while	while	SCONJ
fuelectenerg-10413	51	15	three	three	NUM
fuelectenerg-10413	51	16	stages	stage	NOUN
fuelectenerg-10413	51	17	limit	limit	VERB
fuelectenerg-10413	51	18	the	the	DET
fuelectenerg-10413	51	19	output	output	NOUN
fuelectenerg-10413	51	20	of	of	ADP
fuelectenerg-10413	51	21	in	in	ADP
fuelectenerg-10413	51	22	phase	phase	NOUN
fuelectenerg-10413	51	23	and	and	CCONJ
fuelectenerg-10413	51	24	quadrature	quadrature	NOUN
fuelectenerg-10413	51	25	phase	phase	NOUN
fuelectenerg-10413	51	26	,	,	PUNCT
fuelectenerg-10413	51	27	hence	hence	ADV
fuelectenerg-10413	51	28	we	we	PRON
fuelectenerg-10413	51	29	choose	choose	VERB
fuelectenerg-10413	51	30	to	to	PART
fuelectenerg-10413	51	31	design	design	VERB
fuelectenerg-10413	51	32	a	a	DET
fuelectenerg-10413	51	33	four	four	NUM
fuelectenerg-10413	51	34	stages	stage	NOUN
fuelectenerg-10413	51	35	vco	vco	PROPN
fuelectenerg-10413	52	1	[	[	X
fuelectenerg-10413	52	2	21	21	NUM
fuelectenerg-10413	52	3	-	-	SYM
fuelectenerg-10413	52	4	23	23	NUM
fuelectenerg-10413	52	5	]	]	PUNCT
fuelectenerg-10413	52	6	.	.	PUNCT
fuelectenerg-10413	53	1	the	the	DET
fuelectenerg-10413	53	2	designed	design	VERB
fuelectenerg-10413	53	3	vco	vco	PROPN
fuelectenerg-10413	53	4	will	will	AUX
fuelectenerg-10413	53	5	be	be	AUX
fuelectenerg-10413	53	6	applicable	applicable	ADJ
fuelectenerg-10413	53	7	in	in	ADP
fuelectenerg-10413	53	8	communication	communication	NOUN
fuelectenerg-10413	53	9	systems	system	NOUN
fuelectenerg-10413	53	10	where	where	SCONJ
fuelectenerg-10413	53	11	multiphase	multiphase	NOUN
fuelectenerg-10413	53	12	signals	signal	NOUN
fuelectenerg-10413	53	13	are	be	AUX
fuelectenerg-10413	53	14	needed	need	VERB
fuelectenerg-10413	53	15	like	like	ADP
fuelectenerg-10413	53	16	phase	phase	NOUN
fuelectenerg-10413	53	17	array	array	VERB
fuelectenerg-10413	53	18	transceivers	transceiver	NOUN
fuelectenerg-10413	53	19	,	,	PUNCT
fuelectenerg-10413	53	20	fractional	fractional	ADJ
fuelectenerg-10413	53	21	frequency	frequency	NOUN
fuelectenerg-10413	53	22	synthesizers	synthesizer	NOUN
fuelectenerg-10413	53	23	and	and	CCONJ
fuelectenerg-10413	53	24	clock	clock	NOUN
fuelectenerg-10413	53	25	data	datum	NOUN
fuelectenerg-10413	53	26	recovery	recovery	NOUN
fuelectenerg-10413	53	27	circuits	circuit	NOUN
fuelectenerg-10413	53	28	.	.	PUNCT
fuelectenerg-10413	54	1	moreover	moreover	ADV
fuelectenerg-10413	54	2	,	,	PUNCT
fuelectenerg-10413	54	3	communication	communication	NOUN
fuelectenerg-10413	54	4	systems	system	NOUN
fuelectenerg-10413	54	5	demand	demand	VERB
fuelectenerg-10413	54	6	the	the	DET
fuelectenerg-10413	54	7	need	need	NOUN
fuelectenerg-10413	54	8	of	of	ADP
fuelectenerg-10413	54	9	wide	wide	ADJ
fuelectenerg-10413	54	10	range	range	NOUN
fuelectenerg-10413	54	11	oscillators	oscillator	NOUN
fuelectenerg-10413	54	12	to	to	PART
fuelectenerg-10413	54	13	cover	cover	VERB
fuelectenerg-10413	54	14	a	a	DET
fuelectenerg-10413	54	15	variety	variety	NOUN
fuelectenerg-10413	54	16	of	of	ADP
fuelectenerg-10413	54	17	standards	standard	NOUN
fuelectenerg-10413	54	18	across	across	ADP
fuelectenerg-10413	54	19	multiple	multiple	ADJ
fuelectenerg-10413	54	20	frequency	frequency	NOUN
fuelectenerg-10413	54	21	bands	band	NOUN
fuelectenerg-10413	54	22	[	[	X
fuelectenerg-10413	54	23	24	24	NUM
fuelectenerg-10413	54	24	]	]	PUNCT
fuelectenerg-10413	54	25	.	.	PUNCT
fuelectenerg-10413	55	1	proposed	propose	VERB
fuelectenerg-10413	55	2	delay	delay	NOUN
fuelectenerg-10413	55	3	cell	cell	NOUN
fuelectenerg-10413	55	4	of	of	ADP
fuelectenerg-10413	55	5	the	the	DET
fuelectenerg-10413	55	6	vco	vco	PROPN
fuelectenerg-10413	55	7	is	be	AUX
fuelectenerg-10413	55	8	designed	design	VERB
fuelectenerg-10413	55	9	using	use	VERB
fuelectenerg-10413	55	10	two	two	NUM
fuelectenerg-10413	55	11	control	control	NOUN
fuelectenerg-10413	55	12	frequencies	frequency	NOUN
fuelectenerg-10413	55	13	hence	hence	ADV
fuelectenerg-10413	55	14	this	this	DET
fuelectenerg-10413	55	15	technique	technique	NOUN
fuelectenerg-10413	55	16	is	be	AUX
fuelectenerg-10413	55	17	also	also	ADV
fuelectenerg-10413	55	18	known	know	VERB
fuelectenerg-10413	55	19	as	as	ADP
fuelectenerg-10413	55	20	dual	dual	ADJ
fuelectenerg-10413	55	21	frequency	frequency	NOUN
fuelectenerg-10413	55	22	control	control	NOUN
fuelectenerg-10413	55	23	technique	technique	NOUN
fuelectenerg-10413	56	1	[	[	X
fuelectenerg-10413	56	2	25	25	NUM
fuelectenerg-10413	56	3	-	-	SYM
fuelectenerg-10413	56	4	26	26	NUM
fuelectenerg-10413	56	5	]	]	PUNCT
fuelectenerg-10413	56	6	.	.	PUNCT
fuelectenerg-10413	57	1	it	it	PRON
fuelectenerg-10413	57	2	comprises	comprise	VERB
fuelectenerg-10413	57	3	of	of	ADP
fuelectenerg-10413	57	4	input	input	NOUN
fuelectenerg-10413	57	5	vin1	vin1	NOUN
fuelectenerg-10413	57	6	+	+	PROPN
fuelectenerg-10413	57	7	,	,	PUNCT
fuelectenerg-10413	57	8	vin2	vin2	PROPN
fuelectenerg-10413	57	9	+	+	PROPN
fuelectenerg-10413	57	10	,	,	PUNCT
fuelectenerg-10413	57	11	vin1and	vin1and	NOUN
fuelectenerg-10413	57	12	vin2-	vin2-	ADJ
fuelectenerg-10413	57	13	,	,	PUNCT
fuelectenerg-10413	57	14	output	output	NOUN
fuelectenerg-10413	57	15	voltages	voltage	NOUN
fuelectenerg-10413	57	16	vout+	vout+	NUM
fuelectenerg-10413	57	17	,	,	PUNCT
fuelectenerg-10413	57	18	and	and	CCONJ
fuelectenerg-10413	57	19	vout	vout	NOUN
fuelectenerg-10413	57	20	,	,	PUNCT
fuelectenerg-10413	57	21	control	control	NOUN
fuelectenerg-10413	57	22	voltages	voltage	NOUN
fuelectenerg-10413	57	23	vcntr1	vcntr1	ADV
fuelectenerg-10413	57	24	and	and	CCONJ
fuelectenerg-10413	57	25	vcntr2	vcntr2	PROPN
fuelectenerg-10413	57	26	.	.	PUNCT
fuelectenerg-10413	58	1	considering	consider	VERB
fuelectenerg-10413	58	2	tdelay	tdelay	NOUN
fuelectenerg-10413	58	3	as	as	ADP
fuelectenerg-10413	58	4	the	the	DET
fuelectenerg-10413	58	5	delay	delay	NOUN
fuelectenerg-10413	58	6	time	time	NOUN
fuelectenerg-10413	58	7	of	of	ADP
fuelectenerg-10413	58	8	the	the	DET
fuelectenerg-10413	58	9	cell	cell	NOUN
fuelectenerg-10413	58	10	then	then	ADV
fuelectenerg-10413	58	11	total	total	ADJ
fuelectenerg-10413	58	12	delay	delay	NOUN
fuelectenerg-10413	58	13	time	time	NOUN
fuelectenerg-10413	58	14	of	of	ADP
fuelectenerg-10413	58	15	four	four	NUM
fuelectenerg-10413	58	16	stages	stage	NOUN
fuelectenerg-10413	58	17	vco	vco	PROPN
fuelectenerg-10413	58	18	will	will	AUX
fuelectenerg-10413	58	19	be	be	AUX
fuelectenerg-10413	58	20	4tdelay	4tdelay	NUM
fuelectenerg-10413	58	21	and	and	CCONJ
fuelectenerg-10413	58	22	hence	hence	ADV
fuelectenerg-10413	58	23	the	the	DET
fuelectenerg-10413	58	24	operating	operating	NOUN
fuelectenerg-10413	58	25	frequency	frequency	NOUN
fuelectenerg-10413	58	26	will	will	AUX
fuelectenerg-10413	58	27	be	be	AUX
fuelectenerg-10413	58	28	1/(4tdelay	1/(4tdelay	NUM
fuelectenerg-10413	58	29	)	)	PUNCT
fuelectenerg-10413	58	30	.	.	PUNCT
fuelectenerg-10413	59	1	the	the	DET
fuelectenerg-10413	59	2	proposed	propose	VERB
fuelectenerg-10413	59	3	delay	delay	NOUN
fuelectenerg-10413	59	4	cell	cell	NOUN
fuelectenerg-10413	59	5	and	and	CCONJ
fuelectenerg-10413	59	6	four	four	NUM
fuelectenerg-10413	59	7	-	-	PUNCT
fuelectenerg-10413	59	8	stage	stage	NOUN
fuelectenerg-10413	59	9	vco	vco	NOUN
fuelectenerg-10413	59	10	are	be	AUX
fuelectenerg-10413	59	11	depicted	depict	VERB
fuelectenerg-10413	59	12	in	in	ADP
fuelectenerg-10413	59	13	fig.1	fig.1	PROPN
fuelectenerg-10413	59	14	and	and	CCONJ
fuelectenerg-10413	59	15	fig.2	fig.2	PROPN
fuelectenerg-10413	59	16	.	.	PUNCT
fuelectenerg-10413	60	1	the	the	DET
fuelectenerg-10413	60	2	time	time	NOUN
fuelectenerg-10413	60	3	constants	constant	VERB
fuelectenerg-10413	60	4	τc	τc	X
fuelectenerg-10413	60	5	and	and	CCONJ
fuelectenerg-10413	60	6	τd	τd	SCONJ
fuelectenerg-10413	60	7	estimated	estimate	VERB
fuelectenerg-10413	60	8	during	during	ADP
fuelectenerg-10413	60	9	charging	charge	VERB
fuelectenerg-10413	60	10	and	and	CCONJ
fuelectenerg-10413	60	11	discharging	discharge	VERB
fuelectenerg-10413	60	12	provide	provide	VERB
fuelectenerg-10413	60	13	a	a	DET
fuelectenerg-10413	60	14	generic	generic	ADJ
fuelectenerg-10413	60	15	equation	equation	NOUN
fuelectenerg-10413	60	16	for	for	ADP
fuelectenerg-10413	60	17	finding	find	VERB
fuelectenerg-10413	60	18	the	the	DET
fuelectenerg-10413	60	19	oscillation	oscillation	NOUN
fuelectenerg-10413	60	20	frequency	frequency	NOUN
fuelectenerg-10413	60	21	.	.	PUNCT
fuelectenerg-10413	61	1	the	the	DET
fuelectenerg-10413	61	2	following	follow	VERB
fuelectenerg-10413	61	3	formula	formula	NOUN
fuelectenerg-10413	61	4	is	be	AUX
fuelectenerg-10413	61	5	used	use	VERB
fuelectenerg-10413	61	6	to	to	PART
fuelectenerg-10413	61	7	compute	compute	VERB
fuelectenerg-10413	61	8	the	the	DET
fuelectenerg-10413	61	9	time	time	NOUN
fuelectenerg-10413	61	10	constant	constant	ADJ
fuelectenerg-10413	61	11	:	:	PUNCT
fuelectenerg-10413	61	12	τ	τ	PROPN
fuelectenerg-10413	61	13	=	=	SYM
fuelectenerg-10413	61	14	rc	rc	PROPN
fuelectenerg-10413	61	15	(	(	PUNCT
fuelectenerg-10413	61	16	1	1	NUM
fuelectenerg-10413	61	17	)	)	PUNCT
fuelectenerg-10413	61	18	where	where	SCONJ
fuelectenerg-10413	61	19	,	,	PUNCT
fuelectenerg-10413	61	20	r	r	NOUN
fuelectenerg-10413	61	21	is	be	AUX
fuelectenerg-10413	61	22	the	the	DET
fuelectenerg-10413	61	23	resistance	resistance	NOUN
fuelectenerg-10413	61	24	offered	offer	VERB
fuelectenerg-10413	61	25	by	by	ADP
fuelectenerg-10413	61	26	the	the	DET
fuelectenerg-10413	61	27	charging	charging	NOUN
fuelectenerg-10413	61	28	and	and	CCONJ
fuelectenerg-10413	61	29	discharging	discharge	VERB
fuelectenerg-10413	61	30	path	path	NOUN
fuelectenerg-10413	61	31	,	,	PUNCT
fuelectenerg-10413	61	32	c	c	PROPN
fuelectenerg-10413	61	33	is	be	AUX
fuelectenerg-10413	61	34	the	the	DET
fuelectenerg-10413	61	35	lumped	lump	VERB
fuelectenerg-10413	61	36	capacitance	capacitance	NOUN
fuelectenerg-10413	61	37	that	that	PRON
fuelectenerg-10413	61	38	is	be	AUX
fuelectenerg-10413	61	39	the	the	DET
fuelectenerg-10413	61	40	combined	combined	ADJ
fuelectenerg-10413	61	41	parasitic	parasitic	ADJ
fuelectenerg-10413	61	42	capacitances	capacitance	NOUN
fuelectenerg-10413	61	43	.	.	PUNCT
fuelectenerg-10413	62	1	using	use	VERB
fuelectenerg-10413	62	2	τc	τc	PRON
fuelectenerg-10413	62	3	and	and	CCONJ
fuelectenerg-10413	62	4	τd	τd	ADP
fuelectenerg-10413	62	5	,	,	PUNCT
fuelectenerg-10413	62	6	time	time	NOUN
fuelectenerg-10413	62	7	intervals	interval	NOUN
fuelectenerg-10413	62	8	t1	t1	VERB
fuelectenerg-10413	62	9	and	and	CCONJ
fuelectenerg-10413	62	10	t2	t2	NOUN
fuelectenerg-10413	62	11	which	which	PRON
fuelectenerg-10413	62	12	are	be	AUX
fuelectenerg-10413	62	13	the	the	DET
fuelectenerg-10413	62	14	charging	charging	NOUN
fuelectenerg-10413	62	15	and	and	CCONJ
fuelectenerg-10413	62	16	discharging	discharge	VERB
fuelectenerg-10413	62	17	time	time	NOUN
fuelectenerg-10413	62	18	intervals	interval	NOUN
fuelectenerg-10413	62	19	of	of	ADP
fuelectenerg-10413	62	20	the	the	DET
fuelectenerg-10413	62	21	delay	delay	NOUN
fuelectenerg-10413	62	22	cell	cell	NOUN
fuelectenerg-10413	62	23	are	be	AUX
fuelectenerg-10413	62	24	calculated	calculate	VERB
fuelectenerg-10413	62	25	.	.	PUNCT
fuelectenerg-10413	63	1	they	they	PRON
fuelectenerg-10413	63	2	are	be	AUX
fuelectenerg-10413	63	3	used	use	VERB
fuelectenerg-10413	63	4	for	for	ADP
fuelectenerg-10413	63	5	determining	determine	VERB
fuelectenerg-10413	63	6	the	the	DET
fuelectenerg-10413	63	7	oscillating	oscillate	VERB
fuelectenerg-10413	63	8	frequency	frequency	NOUN
fuelectenerg-10413	63	9	which	which	PRON
fuelectenerg-10413	63	10	is	be	AUX
fuelectenerg-10413	63	11	given	give	VERB
fuelectenerg-10413	63	12	by	by	ADP
fuelectenerg-10413	63	13	:	:	PUNCT
fuelectenerg-10413	63	14	𝑓𝑎	𝑓𝑎	ADP
fuelectenerg-10413	63	15	=	=	NOUN
fuelectenerg-10413	63	16	1	1	NUM
fuelectenerg-10413	63	17	𝑇1	𝑇1	NOUN
fuelectenerg-10413	63	18	+	+	CCONJ
fuelectenerg-10413	63	19	𝑇2	𝑇2	PROPN
fuelectenerg-10413	63	20	(	(	PUNCT
fuelectenerg-10413	63	21	2	2	NUM
fuelectenerg-10413	63	22	)	)	PUNCT
fuelectenerg-10413	63	23	resistance(r	resistance(r	PROPN
fuelectenerg-10413	63	24	)	)	PUNCT
fuelectenerg-10413	63	25	in	in	ADP
fuelectenerg-10413	63	26	the	the	DET
fuelectenerg-10413	63	27	time	time	NOUN
fuelectenerg-10413	63	28	constant	constant	ADJ
fuelectenerg-10413	63	29	formula	formula	NOUN
fuelectenerg-10413	63	30	is	be	AUX
fuelectenerg-10413	63	31	the	the	DET
fuelectenerg-10413	63	32	resistance	resistance	NOUN
fuelectenerg-10413	63	33	of	of	ADP
fuelectenerg-10413	63	34	pmos	pmos	PROPN
fuelectenerg-10413	63	35	and	and	CCONJ
fuelectenerg-10413	63	36	nmos	nmos	NOUN
fuelectenerg-10413	63	37	transistors	transistor	NOUN
fuelectenerg-10413	63	38	respectively	respectively	ADV
fuelectenerg-10413	63	39	,	,	PUNCT
fuelectenerg-10413	63	40	and	and	CCONJ
fuelectenerg-10413	63	41	is	be	AUX
fuelectenerg-10413	63	42	given	give	VERB
fuelectenerg-10413	63	43	by	by	ADP
fuelectenerg-10413	63	44	:	:	PUNCT
fuelectenerg-10413	63	45	𝑟𝑝	𝑟𝑝	PROPN
fuelectenerg-10413	63	46	=	=	SYM
fuelectenerg-10413	63	47	1	1	NUM
fuelectenerg-10413	63	48	𝜇𝑝𝐶𝑜𝑥	𝜇𝑝𝐶𝑜𝑥	NOUN
fuelectenerg-10413	63	49	𝑊	𝑊	PROPN
fuelectenerg-10413	63	50	𝐿	𝐿	PROPN
fuelectenerg-10413	63	51	(	(	PUNCT
fuelectenerg-10413	63	52	|𝑉𝑔𝑠|	|𝑉𝑔𝑠|	PROPN
fuelectenerg-10413	63	53	−	−	PROPN
fuelectenerg-10413	63	54	|𝑉𝑡𝑝|	|𝑉𝑡𝑝|	PROPN
fuelectenerg-10413	63	55	)	)	PUNCT
fuelectenerg-10413	63	56	(	(	PUNCT
fuelectenerg-10413	63	57	3	3	X
fuelectenerg-10413	63	58	)	)	PUNCT
fuelectenerg-10413	64	1	𝑟𝑛	𝑟𝑛	NOUN
fuelectenerg-10413	64	2	=	=	SYM
fuelectenerg-10413	64	3	1	1	NUM
fuelectenerg-10413	64	4	𝜇𝑛𝐶𝑜𝑥	𝜇𝑛𝐶𝑜𝑥	NOUN
fuelectenerg-10413	64	5	𝑊	𝑊	PROPN
fuelectenerg-10413	64	6	𝐿	𝐿	PROPN
fuelectenerg-10413	64	7	(	(	PUNCT
fuelectenerg-10413	64	8	|𝑉𝑔𝑠|	|𝑉𝑔𝑠|	NOUN
fuelectenerg-10413	64	9	−	−	PROPN
fuelectenerg-10413	64	10	|𝑉𝑡𝑛|	|𝑉𝑡𝑛|	PROPN
fuelectenerg-10413	64	11	)	)	PUNCT
fuelectenerg-10413	64	12	(	(	PUNCT
fuelectenerg-10413	64	13	4	4	X
fuelectenerg-10413	64	14	)	)	PUNCT
fuelectenerg-10413	64	15	where	where	SCONJ
fuelectenerg-10413	64	16	𝜇𝑝	𝜇𝑝	PROPN
fuelectenerg-10413	64	17	and	and	CCONJ
fuelectenerg-10413	64	18	𝜇𝑛	𝜇𝑛	PROPN
fuelectenerg-10413	64	19	are	be	AUX
fuelectenerg-10413	64	20	the	the	DET
fuelectenerg-10413	64	21	mobility	mobility	NOUN
fuelectenerg-10413	64	22	of	of	ADP
fuelectenerg-10413	64	23	pmos	pmos	NOUN
fuelectenerg-10413	64	24	and	and	CCONJ
fuelectenerg-10413	64	25	nmos	nmos	NOUN
fuelectenerg-10413	64	26	transistors	transistor	NOUN
fuelectenerg-10413	64	27	,	,	PUNCT
fuelectenerg-10413	64	28	cox	cox	PROPN
fuelectenerg-10413	64	29	is	be	AUX
fuelectenerg-10413	64	30	the	the	DET
fuelectenerg-10413	64	31	oxide	oxide	NOUN
fuelectenerg-10413	64	32	capacitances	capacitance	NOUN
fuelectenerg-10413	64	33	,	,	PUNCT
fuelectenerg-10413	64	34	both	both	DET
fuelectenerg-10413	64	35	transistors	transistor	NOUN
fuelectenerg-10413	64	36	channel	channel	VERB
fuelectenerg-10413	64	37	width	width	NOUN
fuelectenerg-10413	64	38	and	and	CCONJ
fuelectenerg-10413	64	39	length	length	NOUN
fuelectenerg-10413	64	40	are	be	AUX
fuelectenerg-10413	64	41	w	w	NOUN
fuelectenerg-10413	64	42	and	and	CCONJ
fuelectenerg-10413	64	43	l	l	NOUN
fuelectenerg-10413	64	44	,	,	PUNCT
fuelectenerg-10413	64	45	respectively	respectively	ADV
fuelectenerg-10413	64	46	.	.	PUNCT
fuelectenerg-10413	65	1	vgs	vgs	PROPN
fuelectenerg-10413	65	2	is	be	AUX
fuelectenerg-10413	65	3	the	the	DET
fuelectenerg-10413	65	4	applied	applied	ADJ
fuelectenerg-10413	65	5	gate	gate	NOUN
fuelectenerg-10413	65	6	to	to	PART
fuelectenerg-10413	65	7	source	source	NOUN
fuelectenerg-10413	65	8	voltage	voltage	NOUN
fuelectenerg-10413	65	9	,	,	PUNCT
fuelectenerg-10413	65	10	vtp	vtp	PROPN
fuelectenerg-10413	65	11	and	and	CCONJ
fuelectenerg-10413	65	12	vtn	vtn	NOUN
fuelectenerg-10413	65	13	are	be	AUX
fuelectenerg-10413	65	14	the	the	DET
fuelectenerg-10413	65	15	pmos	pmos	PROPN
fuelectenerg-10413	65	16	and	and	CCONJ
fuelectenerg-10413	65	17	nmos	nmos	NOUN
fuelectenerg-10413	65	18	threshold	threshold	NOUN
fuelectenerg-10413	65	19	voltages	voltage	NOUN
fuelectenerg-10413	65	20	.	.	PUNCT
fuelectenerg-10413	66	1	the	the	DET
fuelectenerg-10413	66	2	472	472	NUM
fuelectenerg-10413	66	3	m.	m.	NOUN
fuelectenerg-10413	66	4	gogoi	gogoi	NOUN
fuelectenerg-10413	66	5	,	,	PUNCT
fuelectenerg-10413	66	6	p.	p.	PROPN
fuelectenerg-10413	66	7	k.	k.	PROPN
fuelectenerg-10413	67	1	dutta	dutta	PROPN
fuelectenerg-10413	67	2	transistors	transistor	NOUN
fuelectenerg-10413	67	3	are	be	AUX
fuelectenerg-10413	67	4	assumed	assume	VERB
fuelectenerg-10413	67	5	to	to	PART
fuelectenerg-10413	67	6	be	be	AUX
fuelectenerg-10413	67	7	working	work	VERB
fuelectenerg-10413	67	8	in	in	ADP
fuelectenerg-10413	67	9	triode	triode	NOUN
fuelectenerg-10413	67	10	region	region	NOUN
fuelectenerg-10413	67	11	and	and	CCONJ
fuelectenerg-10413	67	12	small	small	ADJ
fuelectenerg-10413	67	13	drain	drain	NOUN
fuelectenerg-10413	67	14	to	to	PART
fuelectenerg-10413	67	15	source	source	VERB
fuelectenerg-10413	67	16	voltage	voltage	NOUN
fuelectenerg-10413	67	17	vds	vds	NOUN
fuelectenerg-10413	67	18	is	be	AUX
fuelectenerg-10413	67	19	neglected	neglect	VERB
fuelectenerg-10413	67	20	.	.	PUNCT
fuelectenerg-10413	68	1	thus	thus	ADV
fuelectenerg-10413	68	2	,	,	PUNCT
fuelectenerg-10413	68	3	from	from	ADP
fuelectenerg-10413	68	4	the	the	DET
fuelectenerg-10413	68	5	formulae	formulae	NOUN
fuelectenerg-10413	68	6	it	it	PRON
fuelectenerg-10413	68	7	can	can	AUX
fuelectenerg-10413	68	8	be	be	AUX
fuelectenerg-10413	68	9	clearly	clearly	ADV
fuelectenerg-10413	68	10	interpreted	interpret	VERB
fuelectenerg-10413	68	11	that	that	SCONJ
fuelectenerg-10413	68	12	higher	high	ADJ
fuelectenerg-10413	68	13	the	the	DET
fuelectenerg-10413	68	14	mobility	mobility	NOUN
fuelectenerg-10413	68	15	lower	low	ADJ
fuelectenerg-10413	68	16	will	will	AUX
fuelectenerg-10413	68	17	be	be	AUX
fuelectenerg-10413	68	18	the	the	DET
fuelectenerg-10413	68	19	resistance	resistance	NOUN
fuelectenerg-10413	68	20	or	or	CCONJ
fuelectenerg-10413	68	21	in	in	ADP
fuelectenerg-10413	68	22	other	other	ADJ
fuelectenerg-10413	68	23	words	word	NOUN
fuelectenerg-10413	68	24	resistance	resistance	NOUN
fuelectenerg-10413	68	25	is	be	AUX
fuelectenerg-10413	68	26	inversely	inversely	ADV
fuelectenerg-10413	68	27	proportional	proportional	ADJ
fuelectenerg-10413	68	28	to	to	ADP
fuelectenerg-10413	68	29	mobility	mobility	NOUN
fuelectenerg-10413	68	30	.	.	PUNCT
fuelectenerg-10413	69	1	moreover	moreover	ADV
fuelectenerg-10413	69	2	,	,	PUNCT
fuelectenerg-10413	69	3	resistance	resistance	NOUN
fuelectenerg-10413	69	4	is	be	AUX
fuelectenerg-10413	69	5	directly	directly	ADV
fuelectenerg-10413	69	6	proportional	proportional	ADJ
fuelectenerg-10413	69	7	to	to	ADP
fuelectenerg-10413	69	8	time	time	NOUN
fuelectenerg-10413	69	9	constant	constant	ADJ
fuelectenerg-10413	69	10	hence	hence	ADV
fuelectenerg-10413	69	11	oscillating	oscillate	VERB
fuelectenerg-10413	69	12	frequency	frequency	NOUN
fuelectenerg-10413	69	13	is	be	AUX
fuelectenerg-10413	69	14	inversely	inversely	ADV
fuelectenerg-10413	69	15	dependent	dependent	ADJ
fuelectenerg-10413	69	16	on	on	ADP
fuelectenerg-10413	69	17	resistance	resistance	NOUN
fuelectenerg-10413	69	18	and	and	CCONJ
fuelectenerg-10413	69	19	directly	directly	ADV
fuelectenerg-10413	69	20	dependent	dependent	ADJ
fuelectenerg-10413	69	21	on	on	ADP
fuelectenerg-10413	69	22	mobility	mobility	NOUN
fuelectenerg-10413	69	23	.	.	PUNCT
fuelectenerg-10413	70	1	so	so	ADV
fuelectenerg-10413	70	2	,	,	PUNCT
fuelectenerg-10413	70	3	transistor	transistor	NOUN
fuelectenerg-10413	70	4	with	with	ADP
fuelectenerg-10413	70	5	higher	high	ADJ
fuelectenerg-10413	70	6	mobility	mobility	NOUN
fuelectenerg-10413	70	7	can	can	AUX
fuelectenerg-10413	70	8	play	play	VERB
fuelectenerg-10413	70	9	crucial	crucial	ADJ
fuelectenerg-10413	70	10	role	role	NOUN
fuelectenerg-10413	70	11	in	in	ADP
fuelectenerg-10413	70	12	improving	improve	VERB
fuelectenerg-10413	70	13	the	the	DET
fuelectenerg-10413	70	14	oscillating	oscillate	VERB
fuelectenerg-10413	70	15	frequency	frequency	NOUN
fuelectenerg-10413	70	16	.	.	PUNCT
fuelectenerg-10413	71	1	since	since	SCONJ
fuelectenerg-10413	71	2	the	the	DET
fuelectenerg-10413	71	3	mobility	mobility	NOUN
fuelectenerg-10413	71	4	of	of	ADP
fuelectenerg-10413	71	5	electrons	electron	NOUN
fuelectenerg-10413	71	6	is	be	AUX
fuelectenerg-10413	71	7	larger	large	ADJ
fuelectenerg-10413	71	8	than	than	ADP
fuelectenerg-10413	71	9	that	that	PRON
fuelectenerg-10413	71	10	of	of	ADP
fuelectenerg-10413	71	11	holes	hole	NOUN
fuelectenerg-10413	71	12	,	,	PUNCT
fuelectenerg-10413	71	13	this	this	PRON
fuelectenerg-10413	71	14	has	have	VERB
fuelectenerg-10413	71	15	an	an	DET
fuelectenerg-10413	71	16	effect	effect	NOUN
fuelectenerg-10413	71	17	on	on	ADP
fuelectenerg-10413	71	18	the	the	DET
fuelectenerg-10413	71	19	current	current	ADJ
fuelectenerg-10413	71	20	flow	flow	NOUN
fuelectenerg-10413	71	21	and	and	CCONJ
fuelectenerg-10413	71	22	time	time	NOUN
fuelectenerg-10413	71	23	constant	constant	ADJ
fuelectenerg-10413	71	24	,	,	PUNCT
fuelectenerg-10413	71	25	or	or	CCONJ
fuelectenerg-10413	71	26	delay	delay	NOUN
fuelectenerg-10413	71	27	time	time	NOUN
fuelectenerg-10413	71	28	,	,	PUNCT
fuelectenerg-10413	71	29	which	which	PRON
fuelectenerg-10413	71	30	has	have	VERB
fuelectenerg-10413	71	31	an	an	DET
fuelectenerg-10413	71	32	additional	additional	ADJ
fuelectenerg-10413	71	33	impact	impact	NOUN
fuelectenerg-10413	71	34	on	on	ADP
fuelectenerg-10413	71	35	oscillation	oscillation	NOUN
fuelectenerg-10413	71	36	frequency	frequency	NOUN
fuelectenerg-10413	71	37	.	.	PUNCT
fuelectenerg-10413	72	1	lowering	lower	VERB
fuelectenerg-10413	72	2	the	the	DET
fuelectenerg-10413	72	3	resistance	resistance	NOUN
fuelectenerg-10413	72	4	will	will	AUX
fuelectenerg-10413	72	5	result	result	VERB
fuelectenerg-10413	72	6	in	in	ADP
fuelectenerg-10413	72	7	a	a	DET
fuelectenerg-10413	72	8	shorter	short	ADJ
fuelectenerg-10413	72	9	delay	delay	NOUN
fuelectenerg-10413	72	10	time	time	NOUN
fuelectenerg-10413	72	11	and	and	CCONJ
fuelectenerg-10413	72	12	a	a	DET
fuelectenerg-10413	72	13	greater	great	ADJ
fuelectenerg-10413	72	14	oscillation	oscillation	NOUN
fuelectenerg-10413	72	15	frequency	frequency	NOUN
fuelectenerg-10413	72	16	.	.	PUNCT
fuelectenerg-10413	73	1	since	since	SCONJ
fuelectenerg-10413	73	2	the	the	DET
fuelectenerg-10413	73	3	nmos	nmos	PROPN
fuelectenerg-10413	73	4	time	time	NOUN
fuelectenerg-10413	73	5	constant	constant	ADJ
fuelectenerg-10413	73	6	is	be	AUX
fuelectenerg-10413	73	7	lower	low	ADJ
fuelectenerg-10413	73	8	than	than	SCONJ
fuelectenerg-10413	73	9	the	the	DET
fuelectenerg-10413	73	10	pmos	pmos	ADJ
fuelectenerg-10413	73	11	time	time	NOUN
fuelectenerg-10413	73	12	constant	constant	ADJ
fuelectenerg-10413	73	13	,	,	PUNCT
fuelectenerg-10413	73	14	the	the	DET
fuelectenerg-10413	73	15	oscillation	oscillation	NOUN
fuelectenerg-10413	73	16	frequency	frequency	NOUN
fuelectenerg-10413	73	17	will	will	AUX
fuelectenerg-10413	73	18	be	be	AUX
fuelectenerg-10413	73	19	higher	high	ADJ
fuelectenerg-10413	73	20	.	.	PUNCT
fuelectenerg-10413	74	1	this	this	DET
fuelectenerg-10413	74	2	idea	idea	NOUN
fuelectenerg-10413	74	3	inspired	inspire	VERB
fuelectenerg-10413	74	4	us	we	PRON
fuelectenerg-10413	74	5	to	to	PART
fuelectenerg-10413	74	6	suggest	suggest	VERB
fuelectenerg-10413	74	7	the	the	DET
fuelectenerg-10413	74	8	delay	delay	NOUN
fuelectenerg-10413	74	9	circuit	circuit	NOUN
fuelectenerg-10413	74	10	depicted	depict	VERB
fuelectenerg-10413	74	11	in	in	ADP
fuelectenerg-10413	74	12	figure	figure	NOUN
fuelectenerg-10413	74	13	1	1	NUM
fuelectenerg-10413	74	14	and	and	CCONJ
fuelectenerg-10413	74	15	utilise	utilise	VERB
fuelectenerg-10413	74	16	it	it	PRON
fuelectenerg-10413	74	17	to	to	PART
fuelectenerg-10413	74	18	create	create	VERB
fuelectenerg-10413	74	19	the	the	DET
fuelectenerg-10413	74	20	vco	vco	PROPN
fuelectenerg-10413	74	21	depicted	depict	VERB
fuelectenerg-10413	74	22	in	in	ADP
fuelectenerg-10413	74	23	figure	figure	NOUN
fuelectenerg-10413	74	24	2	2	NUM
fuelectenerg-10413	74	25	.	.	PUNCT
fuelectenerg-10413	74	26	fig	fig	NOUN
fuelectenerg-10413	74	27	.	.	PUNCT
fuelectenerg-10413	75	1	1	1	NUM
fuelectenerg-10413	75	2	delay	delay	NOUN
fuelectenerg-10413	75	3	cell	cell	NOUN
fuelectenerg-10413	75	4	fig	fig	NOUN
fuelectenerg-10413	75	5	.	.	PUNCT
fuelectenerg-10413	76	1	2	2	NUM
fuelectenerg-10413	76	2	four	four	NUM
fuelectenerg-10413	76	3	stages	stage	NOUN
fuelectenerg-10413	76	4	vco	vco	PROPN
fuelectenerg-10413	76	5	design	design	NOUN
fuelectenerg-10413	76	6	of	of	ADP
fuelectenerg-10413	76	7	a	a	DET
fuelectenerg-10413	76	8	four	four	NUM
fuelectenerg-10413	76	9	stages	stage	NOUN
fuelectenerg-10413	76	10	vco	vco	NOUN
fuelectenerg-10413	76	11	using	use	VERB
fuelectenerg-10413	76	12	a	a	DET
fuelectenerg-10413	76	13	novel	novel	ADJ
fuelectenerg-10413	76	14	delay	delay	NOUN
fuelectenerg-10413	76	15	circuit	circuit	NOUN
fuelectenerg-10413	76	16	for	for	ADP
fuelectenerg-10413	76	17	operation	operation	NOUN
fuelectenerg-10413	76	18	in	in	ADP
fuelectenerg-10413	76	19	distributed	distribute	VERB
fuelectenerg-10413	76	20	band	band	NOUN
fuelectenerg-10413	76	21	frequencies	frequency	NOUN
fuelectenerg-10413	76	22	473	473	NUM
fuelectenerg-10413	76	23	3	3	NUM
fuelectenerg-10413	76	24	.	.	PUNCT
fuelectenerg-10413	76	25	delay	delay	PROPN
fuelectenerg-10413	76	26	circuit	circuit	NOUN
fuelectenerg-10413	76	27	analysis	analysis	NOUN
fuelectenerg-10413	76	28	the	the	DET
fuelectenerg-10413	76	29	proposed	propose	VERB
fuelectenerg-10413	76	30	delay	delay	NOUN
fuelectenerg-10413	76	31	cell	cell	NOUN
fuelectenerg-10413	76	32	is	be	AUX
fuelectenerg-10413	76	33	for	for	ADP
fuelectenerg-10413	76	34	dual	dual	ADJ
fuelectenerg-10413	76	35	loop	loop	NOUN
fuelectenerg-10413	76	36	ring	ring	NOUN
fuelectenerg-10413	76	37	based	base	VERB
fuelectenerg-10413	76	38	voltage	voltage	NOUN
fuelectenerg-10413	76	39	controlled	control	VERB
fuelectenerg-10413	76	40	oscillator	oscillator	NOUN
fuelectenerg-10413	76	41	[	[	X
fuelectenerg-10413	76	42	27	27	NUM
fuelectenerg-10413	76	43	-	-	SYM
fuelectenerg-10413	76	44	29	29	NUM
fuelectenerg-10413	76	45	]	]	PUNCT
fuelectenerg-10413	76	46	.	.	PUNCT
fuelectenerg-10413	77	1	the	the	DET
fuelectenerg-10413	77	2	primary	primary	ADJ
fuelectenerg-10413	77	3	loop	loop	NOUN
fuelectenerg-10413	77	4	’s	’s	PART
fuelectenerg-10413	77	5	inputs	input	NOUN
fuelectenerg-10413	77	6	are	be	AUX
fuelectenerg-10413	77	7	m1	m1	PROPN
fuelectenerg-10413	77	8	and	and	CCONJ
fuelectenerg-10413	77	9	m2	m2	PROPN
fuelectenerg-10413	77	10	,	,	PUNCT
fuelectenerg-10413	77	11	while	while	SCONJ
fuelectenerg-10413	77	12	the	the	DET
fuelectenerg-10413	77	13	secondary	secondary	ADJ
fuelectenerg-10413	77	14	loop	loop	PROPN
fuelectenerg-10413	77	15	’s	’s	PART
fuelectenerg-10413	77	16	inputs	input	NOUN
fuelectenerg-10413	77	17	are	be	AUX
fuelectenerg-10413	77	18	m3	m3	PROPN
fuelectenerg-10413	77	19	and	and	CCONJ
fuelectenerg-10413	77	20	m4	m4	PROPN
fuelectenerg-10413	77	21	.	.	PUNCT
fuelectenerg-10413	78	1	the	the	DET
fuelectenerg-10413	78	2	dual	dual	ADJ
fuelectenerg-10413	78	3	-	-	PUNCT
fuelectenerg-10413	78	4	loop	loop	NOUN
fuelectenerg-10413	78	5	technique	technique	NOUN
fuelectenerg-10413	78	6	amplifies	amplify	VERB
fuelectenerg-10413	78	7	the	the	DET
fuelectenerg-10413	78	8	oscillation	oscillation	NOUN
fuelectenerg-10413	78	9	.	.	PUNCT
fuelectenerg-10413	79	1	m13	m13	NOUN
fuelectenerg-10413	79	2	controls	control	VERB
fuelectenerg-10413	79	3	the	the	DET
fuelectenerg-10413	79	4	ring	ring	NOUN
fuelectenerg-10413	79	5	vco	vco	PROPN
fuelectenerg-10413	79	6	’s	’s	PART
fuelectenerg-10413	79	7	frequency	frequency	NOUN
fuelectenerg-10413	79	8	.	.	PUNCT
fuelectenerg-10413	80	1	the	the	DET
fuelectenerg-10413	80	2	latch	latch	NOUN
fuelectenerg-10413	80	3	’s	’s	PART
fuelectenerg-10413	80	4	feedback	feedback	NOUN
fuelectenerg-10413	80	5	strength	strength	NOUN
fuelectenerg-10413	80	6	is	be	AUX
fuelectenerg-10413	80	7	made	make	VERB
fuelectenerg-10413	80	8	up	up	ADP
fuelectenerg-10413	80	9	of	of	ADP
fuelectenerg-10413	80	10	m5	m5	NOUN
fuelectenerg-10413	80	11	,	,	PUNCT
fuelectenerg-10413	80	12	m6	m6	PROPN
fuelectenerg-10413	80	13	,	,	PUNCT
fuelectenerg-10413	80	14	m7	m7	PROPN
fuelectenerg-10413	80	15	,	,	PUNCT
fuelectenerg-10413	80	16	m8	m8	PROPN
fuelectenerg-10413	80	17	,	,	PUNCT
fuelectenerg-10413	80	18	m9	m9	PROPN
fuelectenerg-10413	80	19	,	,	PUNCT
fuelectenerg-10413	80	20	m10	m10	PROPN
fuelectenerg-10413	80	21	,	,	PUNCT
fuelectenerg-10413	80	22	m11	m11	NOUN
fuelectenerg-10413	80	23	and	and	CCONJ
fuelectenerg-10413	80	24	m12	m12	PROPN
fuelectenerg-10413	80	25	.	.	PUNCT
fuelectenerg-10413	81	1	thus	thus	ADV
fuelectenerg-10413	81	2	,	,	PUNCT
fuelectenerg-10413	81	3	it	it	PRON
fuelectenerg-10413	81	4	is	be	AUX
fuelectenerg-10413	81	5	simple	simple	ADJ
fuelectenerg-10413	81	6	to	to	PART
fuelectenerg-10413	81	7	control	control	VERB
fuelectenerg-10413	81	8	the	the	DET
fuelectenerg-10413	81	9	delay	delay	NOUN
fuelectenerg-10413	81	10	time	time	NOUN
fuelectenerg-10413	81	11	of	of	ADP
fuelectenerg-10413	81	12	the	the	DET
fuelectenerg-10413	81	13	latch	latch	NOUN
fuelectenerg-10413	81	14	by	by	ADP
fuelectenerg-10413	81	15	controlling	control	VERB
fuelectenerg-10413	81	16	vcntr2	vcntr2	PROPN
fuelectenerg-10413	81	17	while	while	SCONJ
fuelectenerg-10413	81	18	vcntr1	vcntr1	NOUN
fuelectenerg-10413	81	19	helps	help	VERB
fuelectenerg-10413	81	20	in	in	ADP
fuelectenerg-10413	81	21	maintaining	maintain	VERB
fuelectenerg-10413	81	22	the	the	DET
fuelectenerg-10413	81	23	vco	vco	PROPN
fuelectenerg-10413	81	24	to	to	PART
fuelectenerg-10413	81	25	operate	operate	VERB
fuelectenerg-10413	81	26	both	both	PRON
fuelectenerg-10413	81	27	in	in	ADP
fuelectenerg-10413	81	28	the	the	DET
fuelectenerg-10413	81	29	low	low	ADJ
fuelectenerg-10413	81	30	frequency	frequency	NOUN
fuelectenerg-10413	81	31	and	and	CCONJ
fuelectenerg-10413	81	32	high	high	ADJ
fuelectenerg-10413	81	33	frequency	frequency	NOUN
fuelectenerg-10413	81	34	bands	band	NOUN
fuelectenerg-10413	81	35	.	.	PUNCT
fuelectenerg-10413	82	1	considering	consider	VERB
fuelectenerg-10413	82	2	the	the	DET
fuelectenerg-10413	82	3	left	left	ADJ
fuelectenerg-10413	82	4	part	part	NOUN
fuelectenerg-10413	82	5	of	of	ADP
fuelectenerg-10413	82	6	the	the	DET
fuelectenerg-10413	82	7	delay	delay	NOUN
fuelectenerg-10413	82	8	circuit	circuit	NOUN
fuelectenerg-10413	82	9	which	which	PRON
fuelectenerg-10413	82	10	deals	deal	VERB
fuelectenerg-10413	82	11	with	with	ADP
fuelectenerg-10413	82	12	vout-	vout-	X
fuelectenerg-10413	82	13	,	,	PUNCT
fuelectenerg-10413	82	14	the	the	DET
fuelectenerg-10413	82	15	charging	charging	NOUN
fuelectenerg-10413	82	16	and	and	CCONJ
fuelectenerg-10413	82	17	discharging	discharge	VERB
fuelectenerg-10413	82	18	time	time	NOUN
fuelectenerg-10413	82	19	can	can	AUX
fuelectenerg-10413	82	20	be	be	AUX
fuelectenerg-10413	82	21	calculated	calculate	VERB
fuelectenerg-10413	82	22	as	as	SCONJ
fuelectenerg-10413	82	23	shown	show	VERB
fuelectenerg-10413	82	24	below	below	ADP
fuelectenerg-10413	82	25	:	:	PUNCT
fuelectenerg-10413	82	26	initial	initial	ADJ
fuelectenerg-10413	82	27	condition	condition	NOUN
fuelectenerg-10413	82	28	be	be	AUX
fuelectenerg-10413	82	29	vout-=vl	vout-=vl	ADJ
fuelectenerg-10413	82	30	and	and	CCONJ
fuelectenerg-10413	82	31	vout+=vo	vout+=vo	NOUN
fuelectenerg-10413	82	32	,	,	PUNCT
fuelectenerg-10413	82	33	vl	vl	PROPN
fuelectenerg-10413	82	34	and	and	CCONJ
fuelectenerg-10413	82	35	vo	vo	NOUN
fuelectenerg-10413	82	36	being	be	AUX
fuelectenerg-10413	82	37	the	the	DET
fuelectenerg-10413	82	38	minimum	minimum	ADJ
fuelectenerg-10413	82	39	and	and	CCONJ
fuelectenerg-10413	82	40	maximum	maximum	ADJ
fuelectenerg-10413	82	41	output	output	NOUN
fuelectenerg-10413	82	42	voltages	voltage	NOUN
fuelectenerg-10413	82	43	.	.	PUNCT
fuelectenerg-10413	83	1	the	the	DET
fuelectenerg-10413	83	2	charging	charging	NOUN
fuelectenerg-10413	83	3	time	time	NOUN
fuelectenerg-10413	83	4	is	be	AUX
fuelectenerg-10413	83	5	controlled	control	VERB
fuelectenerg-10413	83	6	by	by	ADP
fuelectenerg-10413	83	7	vin2and	vin2and	NOUN
fuelectenerg-10413	83	8	the	the	DET
fuelectenerg-10413	83	9	transistor	transistor	NOUN
fuelectenerg-10413	83	10	m3	m3	NOUN
fuelectenerg-10413	83	11	,	,	PUNCT
fuelectenerg-10413	83	12	based	base	VERB
fuelectenerg-10413	83	13	on	on	ADP
fuelectenerg-10413	83	14	the	the	DET
fuelectenerg-10413	83	15	initial	initial	ADJ
fuelectenerg-10413	83	16	condition	condition	NOUN
fuelectenerg-10413	83	17	m5	m5	NOUN
fuelectenerg-10413	83	18	will	will	AUX
fuelectenerg-10413	83	19	be	be	AUX
fuelectenerg-10413	83	20	off	off	ADV
fuelectenerg-10413	83	21	,	,	PUNCT
fuelectenerg-10413	83	22	is	be	AUX
fuelectenerg-10413	83	23	given	give	VERB
fuelectenerg-10413	83	24	by	by	ADP
fuelectenerg-10413	83	25	𝜏1	𝜏1	NOUN
fuelectenerg-10413	83	26	=	=	PROPN
fuelectenerg-10413	83	27	𝑟3𝐶𝑙𝑜𝑎𝑑	𝑟3𝐶𝑙𝑜𝑎𝑑	PROPN
fuelectenerg-10413	83	28	(	(	PUNCT
fuelectenerg-10413	83	29	5	5	NUM
fuelectenerg-10413	83	30	)	)	PUNCT
fuelectenerg-10413	83	31	𝑟3is	𝑟3is	X
fuelectenerg-10413	83	32	equivalent	equivalent	ADJ
fuelectenerg-10413	83	33	resistance	resistance	NOUN
fuelectenerg-10413	83	34	of	of	ADP
fuelectenerg-10413	83	35	mosfet	mosfet	ADJ
fuelectenerg-10413	83	36	m3	m3	PROPN
fuelectenerg-10413	83	37	and	and	CCONJ
fuelectenerg-10413	83	38	cload	cload	NOUN
fuelectenerg-10413	83	39	is	be	AUX
fuelectenerg-10413	83	40	the	the	DET
fuelectenerg-10413	83	41	parasitic	parasitic	ADJ
fuelectenerg-10413	83	42	capacitive	capacitive	ADJ
fuelectenerg-10413	83	43	load	load	NOUN
fuelectenerg-10413	83	44	associated	associate	VERB
fuelectenerg-10413	83	45	with	with	ADP
fuelectenerg-10413	83	46	vout-	vout-	X
fuelectenerg-10413	83	47	.	.	PUNCT
fuelectenerg-10413	83	48	𝑟3	𝑟3	NOUN
fuelectenerg-10413	84	1	=	=	SYM
fuelectenerg-10413	84	2	1	1	NUM
fuelectenerg-10413	84	3	𝜇𝑝𝐶𝑜𝑥	𝜇𝑝𝐶𝑜𝑥	NOUN
fuelectenerg-10413	84	4	𝑊	𝑊	PROPN
fuelectenerg-10413	84	5	𝐿	𝐿	PROPN
fuelectenerg-10413	84	6	(	(	PUNCT
fuelectenerg-10413	84	7	|𝑉𝑔𝑠|	|𝑉𝑔𝑠|	PROPN
fuelectenerg-10413	84	8	−	−	PROPN
fuelectenerg-10413	84	9	|𝑉𝑡𝑝|	|𝑉𝑡𝑝|	PROPN
fuelectenerg-10413	84	10	)	)	PUNCT
fuelectenerg-10413	84	11	(	(	PUNCT
fuelectenerg-10413	84	12	6	6	X
fuelectenerg-10413	84	13	)	)	PUNCT
fuelectenerg-10413	84	14	𝐶𝐿𝑜𝑎𝑑	𝐶𝐿𝑜𝑎𝑑	PROPN
fuelectenerg-10413	84	15	=	=	SYM
fuelectenerg-10413	84	16	𝐶𝑑𝑏1	𝐶𝑑𝑏1	PROPN
fuelectenerg-10413	84	17	+	+	CCONJ
fuelectenerg-10413	84	18	𝐶𝑔𝑑1	𝐶𝑔𝑑1	PROPN
fuelectenerg-10413	84	19	+	+	CCONJ
fuelectenerg-10413	84	20	𝐶𝑑𝑏3	𝐶𝑑𝑏3	NOUN
fuelectenerg-10413	84	21	+	+	CCONJ
fuelectenerg-10413	84	22	𝐶𝑔𝑑3	𝐶𝑔𝑑3	NUM
fuelectenerg-10413	84	23	+	+	CCONJ
fuelectenerg-10413	84	24	𝐶𝑑𝑠3	𝐶𝑑𝑠3	NOUN
fuelectenerg-10413	84	25	+	+	NUM
fuelectenerg-10413	84	26	𝐶𝑑𝑏5	𝐶𝑑𝑏5	NOUN
fuelectenerg-10413	84	27	+	+	CCONJ
fuelectenerg-10413	84	28	𝐶𝑔𝑑5	𝐶𝑔𝑑5	PROPN
fuelectenerg-10413	84	29	+	+	CCONJ
fuelectenerg-10413	84	30	𝐶𝑑𝑏7	𝐶𝑑𝑏7	NOUN
fuelectenerg-10413	84	31	+	+	CCONJ
fuelectenerg-10413	84	32	𝐶𝑔𝑑7	𝐶𝑔𝑑7	PROPN
fuelectenerg-10413	84	33	+	+	CCONJ
fuelectenerg-10413	84	34	𝐶𝑑𝑏9	𝐶𝑑𝑏9	ADJ
fuelectenerg-10413	84	35	+	+	CCONJ
fuelectenerg-10413	84	36	𝐶𝑔𝑑9	𝐶𝑔𝑑9	NOUN
fuelectenerg-10413	84	37	+	+	CCONJ
fuelectenerg-10413	84	38	𝐶𝑑𝑏11	𝐶𝑑𝑏11	PROPN
fuelectenerg-10413	84	39	+	+	NUM
fuelectenerg-10413	84	40	𝐶𝑔𝑑11	𝐶𝑔𝑑11	X
fuelectenerg-10413	84	41	+	+	ADJ
fuelectenerg-10413	84	42	𝐶𝑖𝑛_𝑥	𝐶𝑖𝑛_𝑥	X
fuelectenerg-10413	84	43	(	(	PUNCT
fuelectenerg-10413	84	44	7	7	NUM
fuelectenerg-10413	84	45	)	)	PUNCT
fuelectenerg-10413	84	46	where	where	SCONJ
fuelectenerg-10413	84	47	,	,	PUNCT
fuelectenerg-10413	84	48	cin_x	cin_x	NOUN
fuelectenerg-10413	84	49	is	be	AUX
fuelectenerg-10413	84	50	the	the	DET
fuelectenerg-10413	84	51	next	next	ADJ
fuelectenerg-10413	84	52	stage	stage	NOUN
fuelectenerg-10413	84	53	input	input	NOUN
fuelectenerg-10413	84	54	capacitance	capacitance	NOUN
fuelectenerg-10413	84	55	,	,	PUNCT
fuelectenerg-10413	84	56	cdb	cdb	PROPN
fuelectenerg-10413	84	57	is	be	AUX
fuelectenerg-10413	84	58	drain	drain	NOUN
fuelectenerg-10413	84	59	to	to	ADP
fuelectenerg-10413	84	60	body	body	NOUN
fuelectenerg-10413	84	61	,	,	PUNCT
fuelectenerg-10413	84	62	cgd	cgd	PROPN
fuelectenerg-10413	84	63	is	be	AUX
fuelectenerg-10413	84	64	gate	gate	ADJ
fuelectenerg-10413	84	65	to	to	PART
fuelectenerg-10413	84	66	drain	drain	VERB
fuelectenerg-10413	84	67	and	and	CCONJ
fuelectenerg-10413	84	68	cgs	cgs	NOUN
fuelectenerg-10413	84	69	is	be	AUX
fuelectenerg-10413	84	70	gate	gate	ADJ
fuelectenerg-10413	84	71	to	to	PART
fuelectenerg-10413	84	72	source	source	NOUN
fuelectenerg-10413	84	73	capacitances	capacitance	NOUN
fuelectenerg-10413	84	74	of	of	ADP
fuelectenerg-10413	84	75	the	the	DET
fuelectenerg-10413	84	76	transistor	transistor	NOUN
fuelectenerg-10413	84	77	.	.	PUNCT
fuelectenerg-10413	85	1	across	across	ADP
fuelectenerg-10413	85	2	the	the	DET
fuelectenerg-10413	85	3	load	load	NOUN
fuelectenerg-10413	85	4	capacitance	capacitance	NOUN
fuelectenerg-10413	85	5	voltage	voltage	NOUN
fuelectenerg-10413	85	6	will	will	AUX
fuelectenerg-10413	85	7	be	be	AUX
fuelectenerg-10413	85	8	𝑉𝐶𝐿𝑜𝑎𝑑	𝑉𝐶𝐿𝑜𝑎𝑑	PROPN
fuelectenerg-10413	85	9	=	=	PUNCT
fuelectenerg-10413	85	10	𝑉0	𝑉0	NOUN
fuelectenerg-10413	85	11	−	−	PROPN
fuelectenerg-10413	85	12	(	(	PUNCT
fuelectenerg-10413	85	13	𝑉0	𝑉0	PROPN
fuelectenerg-10413	85	14	−	−	PROPN
fuelectenerg-10413	85	15	𝑉𝑙)exp	𝑉𝑙)exp	NOUN
fuelectenerg-10413	85	16	(	(	PUNCT
fuelectenerg-10413	85	17	−	−	PROPN
fuelectenerg-10413	85	18	𝑇1	𝑇1	NOUN
fuelectenerg-10413	85	19	𝜏1	𝜏1	NOUN
fuelectenerg-10413	85	20	)	)	PUNCT
fuelectenerg-10413	85	21	(	(	PUNCT
fuelectenerg-10413	85	22	8)	8)	NUM
fuelectenerg-10413	85	23	suppose	suppose	VERB
fuelectenerg-10413	85	24	in	in	ADP
fuelectenerg-10413	85	25	the	the	DET
fuelectenerg-10413	85	26	time	time	NOUN
fuelectenerg-10413	85	27	interval	interval	NOUN
fuelectenerg-10413	85	28	𝑇1capacitor	𝑇1capacitor	NOUN
fuelectenerg-10413	85	29	charges	charge	NOUN
fuelectenerg-10413	85	30	upto	upto	VERB
fuelectenerg-10413	85	31	αv0	αv0	ADV
fuelectenerg-10413	85	32	then	then	ADV
fuelectenerg-10413	85	33	α𝑉0	α𝑉0	PROPN
fuelectenerg-10413	85	34	=	=	PUNCT
fuelectenerg-10413	85	35	𝑉0	𝑉0	NOUN
fuelectenerg-10413	86	1	−	−	PROPN
fuelectenerg-10413	86	2	(	(	PUNCT
fuelectenerg-10413	86	3	𝑉0	𝑉0	PROPN
fuelectenerg-10413	86	4	−	−	PROPN
fuelectenerg-10413	86	5	𝑉𝑙)exp	𝑉𝑙)exp	NOUN
fuelectenerg-10413	86	6	(	(	PUNCT
fuelectenerg-10413	86	7	−	−	PROPN
fuelectenerg-10413	86	8	𝑇1	𝑇1	NOUN
fuelectenerg-10413	86	9	𝜏1	𝜏1	NOUN
fuelectenerg-10413	86	10	)	)	PUNCT
fuelectenerg-10413	86	11	(	(	PUNCT
fuelectenerg-10413	86	12	9	9	X
fuelectenerg-10413	86	13	)	)	PUNCT
fuelectenerg-10413	86	14	α	α	NOUN
fuelectenerg-10413	86	15	is	be	AUX
fuelectenerg-10413	86	16	a	a	DET
fuelectenerg-10413	86	17	constant	constant	ADJ
fuelectenerg-10413	86	18	with	with	ADP
fuelectenerg-10413	86	19	a	a	DET
fuelectenerg-10413	86	20	value	value	NOUN
fuelectenerg-10413	86	21	ranging	range	VERB
fuelectenerg-10413	86	22	from	from	ADP
fuelectenerg-10413	86	23	0	0	NUM
fuelectenerg-10413	86	24	to	to	ADP
fuelectenerg-10413	86	25	1	1	NUM
fuelectenerg-10413	86	26	.	.	PUNCT
fuelectenerg-10413	86	27	𝑇1	𝑇1	NOUN
fuelectenerg-10413	86	28	=	=	SYM
fuelectenerg-10413	86	29	𝜏1ln	𝜏1ln	X
fuelectenerg-10413	86	30	{	{	PUNCT
fuelectenerg-10413	86	31	𝑉0	𝑉0	NOUN
fuelectenerg-10413	86	32	−	−	PROPN
fuelectenerg-10413	87	1	𝑉𝑙	𝑉𝑙	INTJ
fuelectenerg-10413	87	2	𝑉0(1	𝑉0(1	NOUN
fuelectenerg-10413	87	3	−	−	NOUN
fuelectenerg-10413	87	4	𝛼	𝛼	NOUN
fuelectenerg-10413	87	5	)	)	PUNCT
fuelectenerg-10413	87	6	}	}	PUNCT
fuelectenerg-10413	87	7	(	(	PUNCT
fuelectenerg-10413	87	8	10	10	NUM
fuelectenerg-10413	87	9	)	)	PUNCT
fuelectenerg-10413	87	10	in	in	ADP
fuelectenerg-10413	87	11	the	the	DET
fuelectenerg-10413	87	12	next	next	ADJ
fuelectenerg-10413	87	13	state	state	NOUN
fuelectenerg-10413	87	14	when	when	SCONJ
fuelectenerg-10413	87	15	vout-=v0	vout-=v0	PROPN
fuelectenerg-10413	87	16	and	and	CCONJ
fuelectenerg-10413	87	17	vout+=vl	vout+=vl	NOUN
fuelectenerg-10413	87	18	.	.	PUNCT
fuelectenerg-10413	88	1	the	the	DET
fuelectenerg-10413	88	2	discharging	discharge	VERB
fuelectenerg-10413	88	3	phenomenon	phenomenon	NOUN
fuelectenerg-10413	88	4	comprises	comprise	NOUN
fuelectenerg-10413	88	5	of	of	ADP
fuelectenerg-10413	88	6	both	both	DET
fuelectenerg-10413	88	7	charging	charge	VERB
fuelectenerg-10413	88	8	and	and	CCONJ
fuelectenerg-10413	88	9	discharging	discharge	VERB
fuelectenerg-10413	88	10	time	time	NOUN
fuelectenerg-10413	88	11	constants	constant	NOUN
fuelectenerg-10413	88	12	and	and	CCONJ
fuelectenerg-10413	88	13	the	the	DET
fuelectenerg-10413	88	14	effective	effective	ADJ
fuelectenerg-10413	88	15	discharging	discharge	VERB
fuelectenerg-10413	88	16	time	time	NOUN
fuelectenerg-10413	88	17	τ2	τ2	PROPN
fuelectenerg-10413	88	18	is	be	AUX
fuelectenerg-10413	88	19	𝜏2	𝜏2	ADJ
fuelectenerg-10413	88	20	=	=	SYM
fuelectenerg-10413	88	21	{	{	PUNCT
fuelectenerg-10413	88	22	(	(	PUNCT
fuelectenerg-10413	88	23	𝑟1||(𝑟7	𝑟1||(𝑟7	X
fuelectenerg-10413	88	24	+	+	NOUN
fuelectenerg-10413	88	25	𝑟13	𝑟13	NUM
fuelectenerg-10413	88	26	)	)	PUNCT
fuelectenerg-10413	88	27	)	)	PUNCT
fuelectenerg-10413	89	1	−	−	PROPN
fuelectenerg-10413	89	2	(	(	PUNCT
fuelectenerg-10413	89	3	𝑟3||𝑟5)}𝐶′𝐿𝑜𝑎𝑑	𝑟3||𝑟5)}𝐶′𝐿𝑜𝑎𝑑	NOUN
fuelectenerg-10413	89	4	(	(	PUNCT
fuelectenerg-10413	89	5	11	11	NUM
fuelectenerg-10413	89	6	)	)	PUNCT
fuelectenerg-10413	89	7	r1	r1	PROPN
fuelectenerg-10413	89	8	,	,	PUNCT
fuelectenerg-10413	89	9	r5	r5	PROPN
fuelectenerg-10413	89	10	,	,	PUNCT
fuelectenerg-10413	89	11	r7	r7	PROPN
fuelectenerg-10413	89	12	and	and	CCONJ
fuelectenerg-10413	89	13	r13	r13	NOUN
fuelectenerg-10413	89	14	represents	represent	VERB
fuelectenerg-10413	89	15	the	the	DET
fuelectenerg-10413	89	16	equivalent	equivalent	ADJ
fuelectenerg-10413	89	17	resistances	resistance	NOUN
fuelectenerg-10413	89	18	of	of	ADP
fuelectenerg-10413	89	19	mosfet	mosfet	ADJ
fuelectenerg-10413	89	20	m1	m1	NOUN
fuelectenerg-10413	89	21	,	,	PUNCT
fuelectenerg-10413	89	22	m5	m5	PROPN
fuelectenerg-10413	89	23	,	,	PUNCT
fuelectenerg-10413	89	24	m7	m7	NOUN
fuelectenerg-10413	89	25	and	and	CCONJ
fuelectenerg-10413	89	26	m13	m13	NOUN
fuelectenerg-10413	89	27	.	.	PUNCT
fuelectenerg-10413	90	1	474	474	NUM
fuelectenerg-10413	90	2	m.	m.	NOUN
fuelectenerg-10413	90	3	gogoi	gogoi	PROPN
fuelectenerg-10413	90	4	,	,	PUNCT
fuelectenerg-10413	90	5	p.	p.	PROPN
fuelectenerg-10413	90	6	k.	k.	PROPN
fuelectenerg-10413	91	1	dutta	dutta	PROPN
fuelectenerg-10413	91	2	𝐶′𝐿𝑜𝑎𝑑	𝐶′𝐿𝑜𝑎𝑑	NOUN
fuelectenerg-10413	91	3	=	=	SYM
fuelectenerg-10413	91	4	𝐶𝑑𝑏1	𝐶𝑑𝑏1	PROPN
fuelectenerg-10413	91	5	+	+	CCONJ
fuelectenerg-10413	91	6	𝐶𝑔𝑑1	𝐶𝑔𝑑1	PROPN
fuelectenerg-10413	91	7	+	+	CCONJ
fuelectenerg-10413	91	8	𝐶𝑑𝑠1	𝐶𝑑𝑠1	PROPN
fuelectenerg-10413	91	9	+	+	NOUN
fuelectenerg-10413	91	10	𝐶𝑑𝑏3	𝐶𝑑𝑏3	ADJ
fuelectenerg-10413	91	11	+	+	CCONJ
fuelectenerg-10413	91	12	𝐶𝑔𝑑3	𝐶𝑔𝑑3	NUM
fuelectenerg-10413	91	13	+	+	NUM
fuelectenerg-10413	91	14	𝐶𝑑𝑏5	𝐶𝑑𝑏5	NOUN
fuelectenerg-10413	91	15	+	+	CCONJ
fuelectenerg-10413	91	16	𝐶𝑔𝑑5	𝐶𝑔𝑑5	PROPN
fuelectenerg-10413	91	17	+	+	CCONJ
fuelectenerg-10413	91	18	𝐶𝑑𝑏7	𝐶𝑑𝑏7	NOUN
fuelectenerg-10413	91	19	+	+	CCONJ
fuelectenerg-10413	91	20	𝐶𝑔𝑑7	𝐶𝑔𝑑7	PROPN
fuelectenerg-10413	91	21	+	+	SYM
fuelectenerg-10413	91	22	𝐶𝑔𝑑9	𝐶𝑔𝑑9	NUM
fuelectenerg-10413	91	23	+	+	CCONJ
fuelectenerg-10413	91	24	𝐶𝑑𝑏9	𝐶𝑑𝑏9	ADJ
fuelectenerg-10413	91	25	+	+	CCONJ
fuelectenerg-10413	91	26	𝐶𝑑𝑏11	𝐶𝑑𝑏11	NUM
fuelectenerg-10413	91	27	+	+	NUM
fuelectenerg-10413	91	28	𝐶𝑔𝑑11	𝐶𝑔𝑑11	NUM
fuelectenerg-10413	91	29	+	+	X
fuelectenerg-10413	91	30	𝐶𝑖𝑛𝑥	𝐶𝑖𝑛𝑥	PROPN
fuelectenerg-10413	91	31	(	(	PUNCT
fuelectenerg-10413	91	32	12	12	NUM
fuelectenerg-10413	91	33	)	)	PUNCT
fuelectenerg-10413	91	34	c’load	c’load	NOUN
fuelectenerg-10413	91	35	is	be	AUX
fuelectenerg-10413	91	36	node	node	ADJ
fuelectenerg-10413	91	37	capacitance	capacitance	NOUN
fuelectenerg-10413	91	38	during	during	ADP
fuelectenerg-10413	91	39	time	time	NOUN
fuelectenerg-10413	91	40	t2	t2	PROPN
fuelectenerg-10413	91	41	now	now	ADV
fuelectenerg-10413	91	42	voltage	voltage	VERB
fuelectenerg-10413	91	43	across	across	ADP
fuelectenerg-10413	91	44	capacitor	capacitor	NOUN
fuelectenerg-10413	91	45	c’load	c’load	NOUN
fuelectenerg-10413	91	46	can	can	AUX
fuelectenerg-10413	91	47	be	be	AUX
fuelectenerg-10413	91	48	given	give	VERB
fuelectenerg-10413	91	49	by	by	ADP
fuelectenerg-10413	91	50	𝑉𝐶′𝐿	𝑉𝐶′𝐿	NOUN
fuelectenerg-10413	91	51	=	=	PUNCT
fuelectenerg-10413	92	1	𝑉𝑙	𝑉𝑙	ADV
fuelectenerg-10413	92	2	−	−	PROPN
fuelectenerg-10413	93	1	(	(	PUNCT
fuelectenerg-10413	93	2	𝑉𝑙	𝑉𝑙	ADV
fuelectenerg-10413	93	3	−	−	NOUN
fuelectenerg-10413	93	4	𝛼𝑉0)exp	𝛼𝑉0)exp	PROPN
fuelectenerg-10413	93	5	(	(	PUNCT
fuelectenerg-10413	93	6	−	−	PROPN
fuelectenerg-10413	93	7	𝑇2	𝑇2	PROPN
fuelectenerg-10413	93	8	𝜏2	𝜏2	PROPN
fuelectenerg-10413	93	9	)	)	PUNCT
fuelectenerg-10413	93	10	(	(	PUNCT
fuelectenerg-10413	93	11	123	123	NUM
fuelectenerg-10413	93	12	)	)	PUNCT
fuelectenerg-10413	93	13	suppose	suppose	VERB
fuelectenerg-10413	93	14	the	the	DET
fuelectenerg-10413	93	15	capacitor	capacitor	NOUN
fuelectenerg-10413	93	16	c’load	c’load	NOUN
fuelectenerg-10413	93	17	discharges	discharge	NOUN
fuelectenerg-10413	93	18	to	to	PART
fuelectenerg-10413	93	19	,	,	PUNCT
fuelectenerg-10413	93	20	βvl	βvl	NOUN
fuelectenerg-10413	93	21	in	in	ADP
fuelectenerg-10413	93	22	the	the	DET
fuelectenerg-10413	93	23	time	time	NOUN
fuelectenerg-10413	93	24	interval	interval	NOUN
fuelectenerg-10413	93	25	t2	t2	PROPN
fuelectenerg-10413	93	26	such	such	ADJ
fuelectenerg-10413	93	27	that	that	DET
fuelectenerg-10413	93	28	β>1	β>1	NOUN
fuelectenerg-10413	93	29	then	then	ADV
fuelectenerg-10413	93	30	β𝑉𝑙	β𝑉𝑙	NOUN
fuelectenerg-10413	93	31	=	=	PUNCT
fuelectenerg-10413	94	1	𝑉𝑙	𝑉𝑙	ADV
fuelectenerg-10413	94	2	−	−	PROPN
fuelectenerg-10413	95	1	(	(	PUNCT
fuelectenerg-10413	95	2	𝑉𝑙	𝑉𝑙	ADV
fuelectenerg-10413	95	3	−	−	NOUN
fuelectenerg-10413	95	4	𝛼𝑉0)exp	𝛼𝑉0)exp	PROPN
fuelectenerg-10413	95	5	(	(	PUNCT
fuelectenerg-10413	95	6	−	−	PROPN
fuelectenerg-10413	95	7	𝑇2	𝑇2	PROPN
fuelectenerg-10413	95	8	𝜏2	𝜏2	PROPN
fuelectenerg-10413	95	9	)	)	PUNCT
fuelectenerg-10413	95	10	(	(	PUNCT
fuelectenerg-10413	95	11	14	14	NUM
fuelectenerg-10413	95	12	)	)	PUNCT
fuelectenerg-10413	95	13	𝑇2	𝑇2	NOUN
fuelectenerg-10413	95	14	=	=	SYM
fuelectenerg-10413	95	15	𝜏2ln	𝜏2ln	PUNCT
fuelectenerg-10413	95	16	{	{	PUNCT
fuelectenerg-10413	95	17	𝑉𝑙	𝑉𝑙	ADV
fuelectenerg-10413	95	18	−	−	PROPN
fuelectenerg-10413	95	19	𝛼𝑉0	𝛼𝑉0	PROPN
fuelectenerg-10413	95	20	𝑉𝑙(1	𝑉𝑙(1	NOUN
fuelectenerg-10413	95	21	−	−	PART
fuelectenerg-10413	95	22	β	β	NOUN
fuelectenerg-10413	95	23	)	)	PUNCT
fuelectenerg-10413	95	24	}	}	PUNCT
fuelectenerg-10413	95	25	(	(	PUNCT
fuelectenerg-10413	95	26	15	15	X
fuelectenerg-10413	95	27	)	)	PUNCT
fuelectenerg-10413	95	28	𝑇	𝑇	NOUN
fuelectenerg-10413	95	29	=	=	SYM
fuelectenerg-10413	95	30	𝑇1	𝑇1	NOUN
fuelectenerg-10413	95	31	+	+	CCONJ
fuelectenerg-10413	95	32	𝑇2	𝑇2	NOUN
fuelectenerg-10413	95	33	=	=	PUNCT
fuelectenerg-10413	95	34	𝜏1ln	𝜏1ln	X
fuelectenerg-10413	95	35	{	{	PUNCT
fuelectenerg-10413	95	36	𝑉0	𝑉0	NOUN
fuelectenerg-10413	95	37	−	−	PROPN
fuelectenerg-10413	96	1	𝑉𝑙	𝑉𝑙	INTJ
fuelectenerg-10413	96	2	𝑉0(1	𝑉0(1	NOUN
fuelectenerg-10413	96	3	−	−	NOUN
fuelectenerg-10413	96	4	𝛼	𝛼	NOUN
fuelectenerg-10413	96	5	)	)	PUNCT
fuelectenerg-10413	96	6	}	}	PUNCT
fuelectenerg-10413	97	1	+	+	CCONJ
fuelectenerg-10413	97	2	𝜏2ln	𝜏2ln	NOUN
fuelectenerg-10413	97	3	{	{	PUNCT
fuelectenerg-10413	97	4	𝑉𝑙	𝑉𝑙	ADV
fuelectenerg-10413	97	5	−	−	PROPN
fuelectenerg-10413	97	6	𝛼𝑉0	𝛼𝑉0	PROPN
fuelectenerg-10413	97	7	𝑉𝑙(1	𝑉𝑙(1	NOUN
fuelectenerg-10413	97	8	−	−	PART
fuelectenerg-10413	97	9	β	β	NOUN
fuelectenerg-10413	97	10	)	)	PUNCT
fuelectenerg-10413	97	11	}	}	PUNCT
fuelectenerg-10413	97	12	(	(	PUNCT
fuelectenerg-10413	97	13	16	16	NUM
fuelectenerg-10413	97	14	)	)	PUNCT
fuelectenerg-10413	97	15	and	and	CCONJ
fuelectenerg-10413	97	16	finally	finally	ADV
fuelectenerg-10413	97	17	,	,	PUNCT
fuelectenerg-10413	97	18	fosc=1/4	fosc=1/4	PROPN
fuelectenerg-10413	97	19	t	t	PROPN
fuelectenerg-10413	97	20	,	,	PUNCT
fuelectenerg-10413	97	21	for	for	ADP
fuelectenerg-10413	97	22	four	four	NUM
fuelectenerg-10413	97	23	stage	stage	NOUN
fuelectenerg-10413	97	24	ring	ring	NOUN
fuelectenerg-10413	97	25	vco	vco	PROPN
fuelectenerg-10413	97	26	.	.	PUNCT
fuelectenerg-10413	98	1	fig	fig	PROPN
fuelectenerg-10413	98	2	.	.	PUNCT
fuelectenerg-10413	99	1	3	3	NUM
fuelectenerg-10413	99	2	delay	delay	NOUN
fuelectenerg-10413	99	3	circuit	circuit	NOUN
fuelectenerg-10413	99	4	for	for	ADP
fuelectenerg-10413	99	5	low	low	ADJ
fuelectenerg-10413	99	6	voltage	voltage	NOUN
fuelectenerg-10413	99	7	of	of	ADP
fuelectenerg-10413	99	8	vcntr1	vcntr1	NOUN
fuelectenerg-10413	99	9	case	case	NOUN
fuelectenerg-10413	99	10	1	1	NUM
fuelectenerg-10413	99	11	:	:	PUNCT
fuelectenerg-10413	99	12	when	when	SCONJ
fuelectenerg-10413	99	13	vcntr1	vcntr1	PROPN
fuelectenerg-10413	99	14	is	be	AUX
fuelectenerg-10413	99	15	low	low	ADJ
fuelectenerg-10413	99	16	(	(	PUNCT
fuelectenerg-10413	99	17	0	0	NUM
fuelectenerg-10413	99	18	to	to	ADP
fuelectenerg-10413	99	19	0.3v	0.3v	PROPN
fuelectenerg-10413	99	20	)	)	PUNCT
fuelectenerg-10413	99	21	,	,	PUNCT
fuelectenerg-10413	99	22	the	the	DET
fuelectenerg-10413	99	23	transistors	transistor	NOUN
fuelectenerg-10413	99	24	m9	m9	PROPN
fuelectenerg-10413	99	25	and	and	CCONJ
fuelectenerg-10413	99	26	m10	m10	NOUN
fuelectenerg-10413	99	27	become	become	VERB
fuelectenerg-10413	99	28	more	more	ADV
fuelectenerg-10413	99	29	dominant	dominant	ADJ
fuelectenerg-10413	99	30	as	as	SCONJ
fuelectenerg-10413	99	31	both	both	PRON
fuelectenerg-10413	99	32	are	be	AUX
fuelectenerg-10413	99	33	pmos	pmos	ADJ
fuelectenerg-10413	99	34	transistors	transistor	NOUN
fuelectenerg-10413	99	35	and	and	CCONJ
fuelectenerg-10413	99	36	they	they	PRON
fuelectenerg-10413	99	37	operate	operate	VERB
fuelectenerg-10413	99	38	in	in	ADP
fuelectenerg-10413	99	39	low	low	ADJ
fuelectenerg-10413	99	40	gate	gate	NOUN
fuelectenerg-10413	99	41	voltage	voltage	NOUN
fuelectenerg-10413	99	42	than	than	ADP
fuelectenerg-10413	99	43	the	the	DET
fuelectenerg-10413	99	44	m11	m11	NOUN
fuelectenerg-10413	99	45	and	and	CCONJ
fuelectenerg-10413	99	46	m12	m12	NOUN
fuelectenerg-10413	99	47	transistors	transistor	NOUN
fuelectenerg-10413	99	48	.	.	PUNCT
fuelectenerg-10413	100	1	hence	hence	ADV
fuelectenerg-10413	100	2	the	the	DET
fuelectenerg-10413	100	3	circuit	circuit	NOUN
fuelectenerg-10413	100	4	is	be	AUX
fuelectenerg-10413	100	5	found	find	VERB
fuelectenerg-10413	100	6	to	to	PART
fuelectenerg-10413	100	7	operate	operate	VERB
fuelectenerg-10413	100	8	similar	similar	ADJ
fuelectenerg-10413	100	9	to	to	ADP
fuelectenerg-10413	100	10	the	the	DET
fuelectenerg-10413	100	11	circuit	circuit	NOUN
fuelectenerg-10413	100	12	shown	show	VERB
fuelectenerg-10413	100	13	in	in	ADP
fuelectenerg-10413	100	14	fig	fig	NOUN
fuelectenerg-10413	100	15	.	.	PUNCT
fuelectenerg-10413	101	1	3	3	X
fuelectenerg-10413	101	2	.	.	X
fuelectenerg-10413	101	3	the	the	DET
fuelectenerg-10413	101	4	normal	normal	ADJ
fuelectenerg-10413	101	5	delay	delay	NOUN
fuelectenerg-10413	101	6	loop	loop	PROPN
fuelectenerg-10413	101	7	’s	’s	PART
fuelectenerg-10413	101	8	input	input	NOUN
fuelectenerg-10413	101	9	pair	pair	NOUN
fuelectenerg-10413	101	10	is	be	AUX
fuelectenerg-10413	101	11	m1	m1	PROPN
fuelectenerg-10413	101	12	and	and	CCONJ
fuelectenerg-10413	101	13	m2	m2	PROPN
fuelectenerg-10413	101	14	,	,	PUNCT
fuelectenerg-10413	101	15	while	while	SCONJ
fuelectenerg-10413	101	16	the	the	DET
fuelectenerg-10413	101	17	skewed	skewed	ADJ
fuelectenerg-10413	101	18	delay	delay	PROPN
fuelectenerg-10413	101	19	loop	loop	PROPN
fuelectenerg-10413	101	20	’s	’s	PART
fuelectenerg-10413	101	21	input	input	NOUN
fuelectenerg-10413	101	22	pair	pair	NOUN
fuelectenerg-10413	101	23	is	be	AUX
fuelectenerg-10413	101	24	m7	m7	ADJ
fuelectenerg-10413	101	25	and	and	CCONJ
fuelectenerg-10413	101	26	m8	m8	PROPN
fuelectenerg-10413	101	27	in	in	ADP
fuelectenerg-10413	101	28	the	the	DET
fuelectenerg-10413	101	29	circuit	circuit	NOUN
fuelectenerg-10413	101	30	depicted	depict	VERB
fuelectenerg-10413	101	31	in	in	ADP
fuelectenerg-10413	101	32	fig	fig	NOUN
fuelectenerg-10413	101	33	.	.	PUNCT
fuelectenerg-10413	102	1	3	3	X
fuelectenerg-10413	102	2	.	.	X
fuelectenerg-10413	102	3	transistor	transistor	NOUN
fuelectenerg-10413	102	4	m1	m1	NOUN
fuelectenerg-10413	102	5	shuts	shut	VERB
fuelectenerg-10413	102	6	off	off	ADP
fuelectenerg-10413	102	7	when	when	SCONJ
fuelectenerg-10413	102	8	the	the	DET
fuelectenerg-10413	102	9	voltage	voltage	NOUN
fuelectenerg-10413	102	10	connected	connect	VERB
fuelectenerg-10413	102	11	to	to	PART
fuelectenerg-10413	102	12	gate	gate	VERB
fuelectenerg-10413	102	13	terminal	terminal	PROPN
fuelectenerg-10413	102	14	of	of	ADP
fuelectenerg-10413	102	15	m1	m1	PROPN
fuelectenerg-10413	102	16	,	,	PUNCT
fuelectenerg-10413	102	17	vin1	vin1	PROPN
fuelectenerg-10413	102	18	+	+	PROPN
fuelectenerg-10413	102	19	,	,	PUNCT
fuelectenerg-10413	102	20	is	be	AUX
fuelectenerg-10413	102	21	less	less	ADJ
fuelectenerg-10413	102	22	than	than	ADP
fuelectenerg-10413	102	23	the	the	DET
fuelectenerg-10413	102	24	threshold	threshold	NOUN
fuelectenerg-10413	102	25	value	value	NOUN
fuelectenerg-10413	102	26	.	.	PUNCT
fuelectenerg-10413	103	1	the	the	DET
fuelectenerg-10413	103	2	source	source	NOUN
fuelectenerg-10413	103	3	current	current	ADJ
fuelectenerg-10413	103	4	design	design	NOUN
fuelectenerg-10413	103	5	of	of	ADP
fuelectenerg-10413	103	6	a	a	DET
fuelectenerg-10413	103	7	four	four	NUM
fuelectenerg-10413	103	8	stages	stage	NOUN
fuelectenerg-10413	103	9	vco	vco	NOUN
fuelectenerg-10413	103	10	using	use	VERB
fuelectenerg-10413	103	11	a	a	DET
fuelectenerg-10413	103	12	novel	novel	ADJ
fuelectenerg-10413	103	13	delay	delay	NOUN
fuelectenerg-10413	103	14	circuit	circuit	NOUN
fuelectenerg-10413	103	15	for	for	ADP
fuelectenerg-10413	103	16	operation	operation	NOUN
fuelectenerg-10413	103	17	in	in	ADP
fuelectenerg-10413	103	18	distributed	distribute	VERB
fuelectenerg-10413	103	19	band	band	NOUN
fuelectenerg-10413	103	20	frequencies	frequency	NOUN
fuelectenerg-10413	103	21	475	475	NUM
fuelectenerg-10413	103	22	of	of	ADP
fuelectenerg-10413	103	23	the	the	DET
fuelectenerg-10413	103	24	secondary	secondary	ADJ
fuelectenerg-10413	103	25	input	input	NOUN
fuelectenerg-10413	103	26	transistor	transistor	NOUN
fuelectenerg-10413	103	27	m3	m3	PROPN
fuelectenerg-10413	103	28	is	be	AUX
fuelectenerg-10413	103	29	already	already	ADV
fuelectenerg-10413	103	30	flowing	flow	VERB
fuelectenerg-10413	103	31	towards	towards	ADP
fuelectenerg-10413	103	32	the	the	DET
fuelectenerg-10413	103	33	capacitor	capacitor	NOUN
fuelectenerg-10413	103	34	associated	associate	VERB
fuelectenerg-10413	103	35	with	with	ADP
fuelectenerg-10413	103	36	output	output	NOUN
fuelectenerg-10413	103	37	node	node	PROPN
fuelectenerg-10413	103	38	,	,	PUNCT
fuelectenerg-10413	103	39	vout-	vout-	X
fuelectenerg-10413	103	40	,	,	PUNCT
fuelectenerg-10413	103	41	because	because	SCONJ
fuelectenerg-10413	103	42	the	the	DET
fuelectenerg-10413	103	43	input	input	NOUN
fuelectenerg-10413	103	44	voltage	voltage	NOUN
fuelectenerg-10413	103	45	at	at	ADP
fuelectenerg-10413	103	46	vin2reaches	vin2reaches	PROPN
fuelectenerg-10413	103	47	earlier	early	ADV
fuelectenerg-10413	103	48	than	than	ADP
fuelectenerg-10413	103	49	at	at	ADP
fuelectenerg-10413	103	50	vin1	vin1	NOUN
fuelectenerg-10413	103	51	+	+	PROPN
fuelectenerg-10413	103	52	.	.	PUNCT
fuelectenerg-10413	104	1	this	this	DET
fuelectenerg-10413	104	2	results	result	VERB
fuelectenerg-10413	104	3	in	in	ADP
fuelectenerg-10413	104	4	reduction	reduction	NOUN
fuelectenerg-10413	104	5	of	of	ADP
fuelectenerg-10413	104	6	the	the	DET
fuelectenerg-10413	104	7	output	output	NOUN
fuelectenerg-10413	104	8	node	node	PROPN
fuelectenerg-10413	104	9	’s	’s	PART
fuelectenerg-10413	104	10	rise	rise	NOUN
fuelectenerg-10413	104	11	time	time	NOUN
fuelectenerg-10413	104	12	.	.	PUNCT
fuelectenerg-10413	105	1	in	in	ADP
fuelectenerg-10413	105	2	the	the	DET
fuelectenerg-10413	105	3	delay	delay	NOUN
fuelectenerg-10413	105	4	cell	cell	NOUN
fuelectenerg-10413	105	5	,	,	PUNCT
fuelectenerg-10413	105	6	m5	m5	PROPN
fuelectenerg-10413	105	7	and	and	CCONJ
fuelectenerg-10413	105	8	m6	m6	PROPN
fuelectenerg-10413	105	9	combine	combine	VERB
fuelectenerg-10413	105	10	to	to	PART
fuelectenerg-10413	105	11	form	form	VERB
fuelectenerg-10413	105	12	a	a	DET
fuelectenerg-10413	105	13	latch	latch	NOUN
fuelectenerg-10413	105	14	.	.	PUNCT
fuelectenerg-10413	106	1	m9	m9	PROPN
fuelectenerg-10413	106	2	and	and	CCONJ
fuelectenerg-10413	106	3	m10	m10	PROPN
fuelectenerg-10413	106	4	are	be	AUX
fuelectenerg-10413	106	5	cross	cross	ADJ
fuelectenerg-10413	106	6	-	-	ADJ
fuelectenerg-10413	106	7	coupled	couple	VERB
fuelectenerg-10413	106	8	transistors	transistor	NOUN
fuelectenerg-10413	106	9	that	that	PRON
fuelectenerg-10413	106	10	control	control	VERB
fuelectenerg-10413	106	11	the	the	DET
fuelectenerg-10413	106	12	load	load	NOUN
fuelectenerg-10413	106	13	transistors	transistor	NOUN
fuelectenerg-10413	106	14	'	'	PART
fuelectenerg-10413	106	15	maximum	maximum	PROPN
fuelectenerg-10413	106	16	gate	gate	NOUN
fuelectenerg-10413	106	17	voltages	voltage	NOUN
fuelectenerg-10413	106	18	,	,	PUNCT
fuelectenerg-10413	106	19	as	as	ADV
fuelectenerg-10413	106	20	well	well	ADV
fuelectenerg-10413	106	21	as	as	ADP
fuelectenerg-10413	106	22	the	the	DET
fuelectenerg-10413	106	23	latch	latch	NOUN
fuelectenerg-10413	106	24	strength	strength	NOUN
fuelectenerg-10413	106	25	and	and	CCONJ
fuelectenerg-10413	106	26	frequency	frequency	NOUN
fuelectenerg-10413	106	27	of	of	ADP
fuelectenerg-10413	106	28	operation	operation	NOUN
fuelectenerg-10413	106	29	.	.	PUNCT
fuelectenerg-10413	107	1	now	now	ADV
fuelectenerg-10413	107	2	varying	vary	VERB
fuelectenerg-10413	107	3	the	the	DET
fuelectenerg-10413	107	4	control	control	NOUN
fuelectenerg-10413	107	5	voltage	voltage	NOUN
fuelectenerg-10413	107	6	vcntr2	vcntr2	NOUN
fuelectenerg-10413	107	7	will	will	AUX
fuelectenerg-10413	107	8	vary	vary	VERB
fuelectenerg-10413	107	9	the	the	DET
fuelectenerg-10413	107	10	frequency	frequency	NOUN
fuelectenerg-10413	107	11	of	of	ADP
fuelectenerg-10413	107	12	oscillation	oscillation	NOUN
fuelectenerg-10413	107	13	.	.	PUNCT
fuelectenerg-10413	108	1	the	the	DET
fuelectenerg-10413	108	2	path	path	NOUN
fuelectenerg-10413	108	3	delay	delay	NOUN
fuelectenerg-10413	108	4	increases	increase	NOUN
fuelectenerg-10413	108	5	due	due	ADJ
fuelectenerg-10413	108	6	to	to	ADP
fuelectenerg-10413	108	7	the	the	DET
fuelectenerg-10413	108	8	action	action	NOUN
fuelectenerg-10413	108	9	of	of	ADP
fuelectenerg-10413	108	10	pmos	pmos	PROPN
fuelectenerg-10413	108	11	transistors	transistor	NOUN
fuelectenerg-10413	108	12	m9	m9	PROPN
fuelectenerg-10413	108	13	and	and	CCONJ
fuelectenerg-10413	108	14	m10	m10	PROPN
fuelectenerg-10413	108	15	,	,	PUNCT
fuelectenerg-10413	108	16	which	which	PRON
fuelectenerg-10413	108	17	causes	cause	VERB
fuelectenerg-10413	108	18	the	the	DET
fuelectenerg-10413	108	19	vco	vco	PROPN
fuelectenerg-10413	108	20	to	to	PART
fuelectenerg-10413	108	21	operate	operate	VERB
fuelectenerg-10413	108	22	in	in	ADP
fuelectenerg-10413	108	23	the	the	DET
fuelectenerg-10413	108	24	low	low	ADJ
fuelectenerg-10413	108	25	frequency	frequency	NOUN
fuelectenerg-10413	108	26	band	band	NOUN
fuelectenerg-10413	108	27	.	.	PUNCT
fuelectenerg-10413	109	1	fig	fig	NOUN
fuelectenerg-10413	109	2	.	.	PUNCT
fuelectenerg-10413	110	1	4	4	NUM
fuelectenerg-10413	110	2	delay	delay	NOUN
fuelectenerg-10413	110	3	cell	cell	NOUN
fuelectenerg-10413	110	4	due	due	ADP
fuelectenerg-10413	110	5	to	to	ADP
fuelectenerg-10413	110	6	high	high	ADJ
fuelectenerg-10413	110	7	vcntr2	vcntr2	NOUN
fuelectenerg-10413	110	8	case	case	NOUN
fuelectenerg-10413	110	9	2	2	NUM
fuelectenerg-10413	110	10	:	:	PUNCT
fuelectenerg-10413	110	11	when	when	SCONJ
fuelectenerg-10413	110	12	vcntr1	vcntr1	PROPN
fuelectenerg-10413	110	13	is	be	AUX
fuelectenerg-10413	110	14	high	high	ADJ
fuelectenerg-10413	110	15	(	(	PUNCT
fuelectenerg-10413	110	16	0.7v	0.7v	NUM
fuelectenerg-10413	110	17	to	to	ADP
fuelectenerg-10413	110	18	1v	1v	NUM
fuelectenerg-10413	110	19	)	)	PUNCT
fuelectenerg-10413	110	20	the	the	DET
fuelectenerg-10413	110	21	transistors	transistor	NOUN
fuelectenerg-10413	110	22	m11	m11	VERB
fuelectenerg-10413	110	23	and	and	CCONJ
fuelectenerg-10413	110	24	m12	m12	NOUN
fuelectenerg-10413	110	25	are	be	AUX
fuelectenerg-10413	110	26	more	more	ADV
fuelectenerg-10413	110	27	dominant	dominant	ADJ
fuelectenerg-10413	110	28	as	as	SCONJ
fuelectenerg-10413	110	29	both	both	PRON
fuelectenerg-10413	110	30	are	be	AUX
fuelectenerg-10413	110	31	nmos	nmos	NOUN
fuelectenerg-10413	110	32	transistors	transistor	NOUN
fuelectenerg-10413	110	33	and	and	CCONJ
fuelectenerg-10413	110	34	they	they	PRON
fuelectenerg-10413	110	35	operate	operate	VERB
fuelectenerg-10413	110	36	in	in	ADP
fuelectenerg-10413	110	37	higher	high	ADJ
fuelectenerg-10413	110	38	gate	gate	NOUN
fuelectenerg-10413	110	39	voltage	voltage	NOUN
fuelectenerg-10413	110	40	than	than	ADP
fuelectenerg-10413	110	41	m9	m9	PROPN
fuelectenerg-10413	110	42	and	and	CCONJ
fuelectenerg-10413	110	43	m10	m10	PROPN
fuelectenerg-10413	110	44	.	.	PUNCT
fuelectenerg-10413	111	1	the	the	DET
fuelectenerg-10413	111	2	delay	delay	NOUN
fuelectenerg-10413	111	3	circuit	circuit	NOUN
fuelectenerg-10413	111	4	is	be	AUX
fuelectenerg-10413	111	5	found	find	VERB
fuelectenerg-10413	111	6	to	to	PART
fuelectenerg-10413	111	7	work	work	VERB
fuelectenerg-10413	111	8	as	as	SCONJ
fuelectenerg-10413	111	9	shown	show	VERB
fuelectenerg-10413	111	10	in	in	ADP
fuelectenerg-10413	111	11	fig	fig	NOUN
fuelectenerg-10413	111	12	.	.	PUNCT
fuelectenerg-10413	112	1	4	4	X
fuelectenerg-10413	112	2	.	.	X
fuelectenerg-10413	112	3	in	in	ADP
fuelectenerg-10413	112	4	this	this	DET
fuelectenerg-10413	112	5	case	case	NOUN
fuelectenerg-10413	112	6	m11	m11	NOUN
fuelectenerg-10413	112	7	and	and	CCONJ
fuelectenerg-10413	112	8	m12	m12	PROPN
fuelectenerg-10413	112	9	are	be	AUX
fuelectenerg-10413	112	10	cross	cross	ADJ
fuelectenerg-10413	112	11	-	-	ADJ
fuelectenerg-10413	112	12	coupled	couple	VERB
fuelectenerg-10413	112	13	transistors	transistor	NOUN
fuelectenerg-10413	112	14	that	that	PRON
fuelectenerg-10413	112	15	govern	govern	VERB
fuelectenerg-10413	112	16	the	the	DET
fuelectenerg-10413	112	17	maximum	maximum	ADJ
fuelectenerg-10413	112	18	voltages	voltage	NOUN
fuelectenerg-10413	112	19	associated	associate	VERB
fuelectenerg-10413	112	20	with	with	ADP
fuelectenerg-10413	112	21	the	the	DET
fuelectenerg-10413	112	22	gate	gate	PROPN
fuelectenerg-10413	112	23	terminal	terminal	NOUN
fuelectenerg-10413	112	24	of	of	ADP
fuelectenerg-10413	112	25	the	the	DET
fuelectenerg-10413	112	26	transistors	transistor	NOUN
fuelectenerg-10413	112	27	in	in	ADP
fuelectenerg-10413	112	28	the	the	DET
fuelectenerg-10413	112	29	load	load	NOUN
fuelectenerg-10413	112	30	and	and	CCONJ
fuelectenerg-10413	112	31	hence	hence	ADV
fuelectenerg-10413	112	32	the	the	DET
fuelectenerg-10413	112	33	latch	latch	NOUN
fuelectenerg-10413	112	34	strength	strength	NOUN
fuelectenerg-10413	112	35	and	and	CCONJ
fuelectenerg-10413	112	36	so	so	ADV
fuelectenerg-10413	112	37	the	the	DET
fuelectenerg-10413	112	38	frequency	frequency	NOUN
fuelectenerg-10413	112	39	of	of	ADP
fuelectenerg-10413	112	40	operation	operation	NOUN
fuelectenerg-10413	112	41	.	.	PUNCT
fuelectenerg-10413	113	1	phase	phase	NOUN
fuelectenerg-10413	113	2	noise	noise	NOUN
fuelectenerg-10413	113	3	:	:	PUNCT
fuelectenerg-10413	113	4	several	several	ADJ
fuelectenerg-10413	113	5	noise	noise	NOUN
fuelectenerg-10413	113	6	elements	element	NOUN
fuelectenerg-10413	113	7	influence	influence	VERB
fuelectenerg-10413	113	8	the	the	DET
fuelectenerg-10413	113	9	phase	phase	NOUN
fuelectenerg-10413	113	10	noise	noise	NOUN
fuelectenerg-10413	113	11	in	in	ADP
fuelectenerg-10413	113	12	a	a	DET
fuelectenerg-10413	113	13	ring	ring	NOUN
fuelectenerg-10413	113	14	oscillator	oscillator	NOUN
fuelectenerg-10413	113	15	.	.	PUNCT
fuelectenerg-10413	114	1	the	the	DET
fuelectenerg-10413	114	2	most	most	ADV
fuelectenerg-10413	114	3	prevalent	prevalent	ADJ
fuelectenerg-10413	114	4	types	type	NOUN
fuelectenerg-10413	114	5	of	of	ADP
fuelectenerg-10413	114	6	noise	noise	NOUN
fuelectenerg-10413	114	7	are	be	AUX
fuelectenerg-10413	114	8	white	white	ADJ
fuelectenerg-10413	114	9	noise	noise	NOUN
fuelectenerg-10413	114	10	and	and	CCONJ
fuelectenerg-10413	114	11	flicker	flicker	NOUN
fuelectenerg-10413	114	12	noise	noise	NOUN
fuelectenerg-10413	114	13	.	.	PUNCT
fuelectenerg-10413	115	1	in	in	ADP
fuelectenerg-10413	115	2	contrast	contrast	NOUN
fuelectenerg-10413	115	3	to	to	ADP
fuelectenerg-10413	115	4	inverter	inverter	ADV
fuelectenerg-10413	115	5	-	-	PUNCT
fuelectenerg-10413	115	6	based	base	VERB
fuelectenerg-10413	115	7	delay	delay	NOUN
fuelectenerg-10413	115	8	cells	cell	NOUN
fuelectenerg-10413	115	9	,	,	PUNCT
fuelectenerg-10413	115	10	differential	differential	ADJ
fuelectenerg-10413	115	11	delay	delay	NOUN
fuelectenerg-10413	115	12	cells	cell	NOUN
fuelectenerg-10413	115	13	operate	operate	VERB
fuelectenerg-10413	115	14	in	in	ADP
fuelectenerg-10413	115	15	class	class	NOUN
fuelectenerg-10413	115	16	a	a	NOUN
fuelectenerg-10413	115	17	and	and	CCONJ
fuelectenerg-10413	115	18	consume	consume	VERB
fuelectenerg-10413	115	19	a	a	DET
fuelectenerg-10413	115	20	steady	steady	ADJ
fuelectenerg-10413	115	21	state	state	NOUN
fuelectenerg-10413	115	22	current	current	NOUN
fuelectenerg-10413	115	23	[	[	X
fuelectenerg-10413	115	24	30	30	NUM
fuelectenerg-10413	115	25	]	]	PUNCT
fuelectenerg-10413	115	26	.	.	PUNCT
fuelectenerg-10413	116	1	the	the	DET
fuelectenerg-10413	116	2	main	main	ADJ
fuelectenerg-10413	116	3	source	source	NOUN
fuelectenerg-10413	116	4	of	of	ADP
fuelectenerg-10413	116	5	flicker	flicker	ADJ
fuelectenerg-10413	116	6	noise	noise	NOUN
fuelectenerg-10413	116	7	is	be	AUX
fuelectenerg-10413	116	8	the	the	DET
fuelectenerg-10413	116	9	fet	fet	NOUN
fuelectenerg-10413	116	10	that	that	PRON
fuelectenerg-10413	116	11	powers	power	VERB
fuelectenerg-10413	116	12	the	the	DET
fuelectenerg-10413	116	13	common	common	ADJ
fuelectenerg-10413	116	14	gate	gate	NOUN
fuelectenerg-10413	116	15	line	line	NOUN
fuelectenerg-10413	116	16	for	for	ADP
fuelectenerg-10413	116	17	all	all	DET
fuelectenerg-10413	116	18	the	the	DET
fuelectenerg-10413	116	19	currents	current	NOUN
fuelectenerg-10413	116	20	in	in	ADP
fuelectenerg-10413	116	21	the	the	DET
fuelectenerg-10413	116	22	delay	delay	NOUN
fuelectenerg-10413	116	23	cells	cell	NOUN
fuelectenerg-10413	116	24	[	[	X
fuelectenerg-10413	116	25	31	31	NUM
fuelectenerg-10413	116	26	]	]	PUNCT
fuelectenerg-10413	116	27	.	.	PUNCT
fuelectenerg-10413	117	1	equation	equation	NOUN
fuelectenerg-10413	117	2	(	(	PUNCT
fuelectenerg-10413	117	3	17	17	NUM
fuelectenerg-10413	117	4	)	)	PUNCT
fuelectenerg-10413	117	5	and	and	CCONJ
fuelectenerg-10413	117	6	(	(	PUNCT
fuelectenerg-10413	117	7	18	18	NUM
fuelectenerg-10413	117	8	)	)	PUNCT
fuelectenerg-10413	117	9	shows	show	VERB
fuelectenerg-10413	117	10	the	the	DET
fuelectenerg-10413	117	11	ssb	ssb	PROPN
fuelectenerg-10413	117	12	(	(	PUNCT
fuelectenerg-10413	117	13	single	single	ADJ
fuelectenerg-10413	117	14	side	side	NOUN
fuelectenerg-10413	117	15	band	band	NOUN
fuelectenerg-10413	117	16	)	)	PUNCT
fuelectenerg-10413	117	17	phase	phase	NOUN
fuelectenerg-10413	117	18	noise	noise	NOUN
fuelectenerg-10413	117	19	because	because	SCONJ
fuelectenerg-10413	117	20	of	of	ADP
fuelectenerg-10413	117	21	white	white	ADJ
fuelectenerg-10413	117	22	noise	noise	NOUN
fuelectenerg-10413	117	23	and	and	CCONJ
fuelectenerg-10413	117	24	flicker	flicker	NOUN
fuelectenerg-10413	117	25	noise	noise	NOUN
fuelectenerg-10413	117	26	respectively	respectively	ADV
fuelectenerg-10413	117	27	in	in	ADP
fuelectenerg-10413	117	28	differential	differential	ADJ
fuelectenerg-10413	117	29	oscillators	oscillator	NOUN
fuelectenerg-10413	117	30	.	.	PUNCT
fuelectenerg-10413	118	1	l(f	l(f	PROPN
fuelectenerg-10413	118	2	)	)	PUNCT
fuelectenerg-10413	119	1	=	=	PUNCT
fuelectenerg-10413	119	2	2kt	2kt	ADJ
fuelectenerg-10413	119	3	i.	i.	NOUN
fuelectenerg-10413	119	4	ln2	ln2	PROPN
fuelectenerg-10413	120	1	[	[	X
fuelectenerg-10413	120	2	ɤ	ɤ	X
fuelectenerg-10413	120	3	(	(	PUNCT
fuelectenerg-10413	120	4	3	3	NUM
fuelectenerg-10413	120	5	4	4	NUM
fuelectenerg-10413	120	6	veffd	veffd	NOUN
fuelectenerg-10413	120	7	+	+	CCONJ
fuelectenerg-10413	120	8	1	1	NUM
fuelectenerg-10413	120	9	vefft	vefft	NOUN
fuelectenerg-10413	120	10	)	)	PUNCT
fuelectenerg-10413	121	1	+	+	CCONJ
fuelectenerg-10413	121	2	1	1	NUM
fuelectenerg-10413	121	3	vop	vop	NOUN
fuelectenerg-10413	121	4	]	]	PUNCT
fuelectenerg-10413	121	5	(	(	PUNCT
fuelectenerg-10413	121	6	f0	f0	PROPN
fuelectenerg-10413	121	7	f	f	PROPN
fuelectenerg-10413	121	8	)	)	PUNCT
fuelectenerg-10413	121	9	2	2	NUM
fuelectenerg-10413	121	10	(	(	PUNCT
fuelectenerg-10413	121	11	17	17	NUM
fuelectenerg-10413	121	12	)	)	PUNCT
fuelectenerg-10413	121	13	476	476	NUM
fuelectenerg-10413	121	14	m.	m.	NOUN
fuelectenerg-10413	121	15	gogoi	gogoi	NOUN
fuelectenerg-10413	121	16	,	,	PUNCT
fuelectenerg-10413	121	17	p.	p.	PROPN
fuelectenerg-10413	121	18	k.	k.	PROPN
fuelectenerg-10413	122	1	dutta	dutta	PROPN
fuelectenerg-10413	122	2	l(f	l(f	PROPN
fuelectenerg-10413	122	3	)	)	PUNCT
fuelectenerg-10413	123	1	=	=	PUNCT
fuelectenerg-10413	123	2	a	a	DET
fuelectenerg-10413	123	3	kf	kf	PROPN
fuelectenerg-10413	123	4	wlc′oxf	wlc′oxf	NOUN
fuelectenerg-10413	123	5	(	(	PUNCT
fuelectenerg-10413	123	6	1	1	NUM
fuelectenerg-10413	123	7	vefft	vefft	NOUN
fuelectenerg-10413	123	8	2	2	NUM
fuelectenerg-10413	123	9	)	)	PUNCT
fuelectenerg-10413	123	10	2	2	NUM
fuelectenerg-10413	123	11	f0	f0	PROPN
fuelectenerg-10413	123	12	2	2	NUM
fuelectenerg-10413	123	13	f	f	NOUN
fuelectenerg-10413	123	14	3	3	NUM
fuelectenerg-10413	123	15	(	(	PUNCT
fuelectenerg-10413	123	16	18	18	NUM
fuelectenerg-10413	123	17	)	)	PUNCT
fuelectenerg-10413	123	18	where	where	SCONJ
fuelectenerg-10413	123	19	,	,	PUNCT
fuelectenerg-10413	123	20	ɤ	ɤ	X
fuelectenerg-10413	123	21	is	be	AUX
fuelectenerg-10413	123	22	noise	noise	NOUN
fuelectenerg-10413	123	23	factor	factor	NOUN
fuelectenerg-10413	123	24	of	of	ADP
fuelectenerg-10413	123	25	fet	fet	PROPN
fuelectenerg-10413	123	26	,	,	PUNCT
fuelectenerg-10413	123	27	veffd	veffd	PROPN
fuelectenerg-10413	123	28	and	and	CCONJ
fuelectenerg-10413	123	29	vefft	vefft	NOUN
fuelectenerg-10413	123	30	are	be	AUX
fuelectenerg-10413	123	31	the	the	DET
fuelectenerg-10413	123	32	effective	effective	ADJ
fuelectenerg-10413	123	33	gate	gate	NOUN
fuelectenerg-10413	123	34	voltages	voltage	NOUN
fuelectenerg-10413	123	35	of	of	ADP
fuelectenerg-10413	123	36	the	the	DET
fuelectenerg-10413	123	37	differential	differential	ADJ
fuelectenerg-10413	123	38	delay	delay	NOUN
fuelectenerg-10413	123	39	cell	cell	NOUN
fuelectenerg-10413	123	40	at	at	ADP
fuelectenerg-10413	123	41	balance	balance	NOUN
fuelectenerg-10413	123	42	and	and	CCONJ
fuelectenerg-10413	123	43	unbalanced	unbalanced	ADJ
fuelectenerg-10413	123	44	conditions	condition	NOUN
fuelectenerg-10413	123	45	,	,	PUNCT
fuelectenerg-10413	123	46	vop	vop	PROPN
fuelectenerg-10413	123	47	is	be	AUX
fuelectenerg-10413	123	48	actual	actual	ADJ
fuelectenerg-10413	123	49	output	output	NOUN
fuelectenerg-10413	123	50	voltage	voltage	NOUN
fuelectenerg-10413	123	51	,	,	PUNCT
fuelectenerg-10413	123	52	i	i	PRON
fuelectenerg-10413	123	53	is	be	AUX
fuelectenerg-10413	123	54	tail	tail	NOUN
fuelectenerg-10413	123	55	current	current	ADJ
fuelectenerg-10413	123	56	,	,	PUNCT
fuelectenerg-10413	123	57	f0	f0	PROPN
fuelectenerg-10413	123	58	is	be	AUX
fuelectenerg-10413	123	59	oscillation	oscillation	NOUN
fuelectenerg-10413	123	60	frequency	frequency	NOUN
fuelectenerg-10413	123	61	,	,	PUNCT
fuelectenerg-10413	123	62	w	w	NOUN
fuelectenerg-10413	123	63	and	and	CCONJ
fuelectenerg-10413	123	64	l	l	PROPN
fuelectenerg-10413	123	65	stand	stand	NOUN
fuelectenerg-10413	123	66	for	for	ADP
fuelectenerg-10413	123	67	fet	fet	PROPN
fuelectenerg-10413	123	68	’s	’s	PART
fuelectenerg-10413	123	69	width	width	NOUN
fuelectenerg-10413	123	70	and	and	CCONJ
fuelectenerg-10413	123	71	length	length	NOUN
fuelectenerg-10413	123	72	,	,	PUNCT
fuelectenerg-10413	123	73	a	a	PRON
fuelectenerg-10413	123	74	is	be	AUX
fuelectenerg-10413	123	75	the	the	DET
fuelectenerg-10413	123	76	ratio	ratio	NOUN
fuelectenerg-10413	123	77	of	of	ADP
fuelectenerg-10413	123	78	width	width	NOUN
fuelectenerg-10413	123	79	of	of	ADP
fuelectenerg-10413	123	80	fet	fet	NOUN
fuelectenerg-10413	123	81	to	to	ADP
fuelectenerg-10413	123	82	that	that	PRON
fuelectenerg-10413	123	83	of	of	ADP
fuelectenerg-10413	123	84	tail	tail	NOUN
fuelectenerg-10413	123	85	fet	fet	PROPN
fuelectenerg-10413	123	86	and	and	CCONJ
fuelectenerg-10413	123	87	c’ox	c’ox	PROPN
fuelectenerg-10413	123	88	is	be	AUX
fuelectenerg-10413	123	89	the	the	DET
fuelectenerg-10413	123	90	oxide	oxide	NOUN
fuelectenerg-10413	123	91	capacitance	capacitance	NOUN
fuelectenerg-10413	123	92	of	of	ADP
fuelectenerg-10413	123	93	nfet	nfet	NOUN
fuelectenerg-10413	123	94	(	(	PUNCT
fuelectenerg-10413	123	95	tail	tail	NOUN
fuelectenerg-10413	123	96	transistor	transistor	NOUN
fuelectenerg-10413	123	97	)	)	PUNCT
fuelectenerg-10413	123	98	.	.	PUNCT
fuelectenerg-10413	124	1	in	in	ADP
fuelectenerg-10413	124	2	our	our	PRON
fuelectenerg-10413	124	3	design	design	NOUN
fuelectenerg-10413	124	4	a	a	PRON
fuelectenerg-10413	124	5	is	be	AUX
fuelectenerg-10413	124	6	considered	consider	VERB
fuelectenerg-10413	124	7	to	to	PART
fuelectenerg-10413	124	8	be	be	AUX
fuelectenerg-10413	124	9	1	1	NUM
fuelectenerg-10413	124	10	as	as	SCONJ
fuelectenerg-10413	124	11	both	both	DET
fuelectenerg-10413	124	12	w	w	NOUN
fuelectenerg-10413	124	13	and	and	CCONJ
fuelectenerg-10413	124	14	l	l	NOUN
fuelectenerg-10413	124	15	are	be	AUX
fuelectenerg-10413	124	16	of	of	ADP
fuelectenerg-10413	124	17	same	same	ADJ
fuelectenerg-10413	124	18	length	length	NOUN
fuelectenerg-10413	124	19	.	.	PUNCT
fuelectenerg-10413	125	1	figure	figure	NOUN
fuelectenerg-10413	125	2	of	of	ADP
fuelectenerg-10413	125	3	merit	merit	NOUN
fuelectenerg-10413	125	4	which	which	PRON
fuelectenerg-10413	125	5	is	be	AUX
fuelectenerg-10413	125	6	used	use	VERB
fuelectenerg-10413	125	7	for	for	ADP
fuelectenerg-10413	125	8	characterizing	characterize	VERB
fuelectenerg-10413	125	9	vco	vco	PROPN
fuelectenerg-10413	125	10	performance	performance	NOUN
fuelectenerg-10413	125	11	can	can	AUX
fuelectenerg-10413	125	12	be	be	AUX
fuelectenerg-10413	125	13	obtained	obtain	VERB
fuelectenerg-10413	125	14	from	from	ADP
fuelectenerg-10413	125	15	the	the	DET
fuelectenerg-10413	125	16	equation	equation	NOUN
fuelectenerg-10413	125	17	(	(	PUNCT
fuelectenerg-10413	125	18	19	19	NUM
fuelectenerg-10413	125	19	)	)	PUNCT
fuelectenerg-10413	126	1	[	[	X
fuelectenerg-10413	126	2	32	32	NUM
fuelectenerg-10413	126	3	]	]	PUNCT
fuelectenerg-10413	126	4	.	.	PUNCT
fuelectenerg-10413	127	1	𝐹𝑂𝑀	𝐹𝑂𝑀	PROPN
fuelectenerg-10413	127	2	=	=	SYM
fuelectenerg-10413	127	3	l(f	l(f	PROPN
fuelectenerg-10413	127	4	)	)	PUNCT
fuelectenerg-10413	128	1	−	−	NUM
fuelectenerg-10413	128	2	20log	20log	NOUN
fuelectenerg-10413	128	3	(	(	PUNCT
fuelectenerg-10413	128	4	f0	f0	PROPN
fuelectenerg-10413	128	5	f	f	PROPN
fuelectenerg-10413	128	6	)	)	PUNCT
fuelectenerg-10413	129	1	+	+	NUM
fuelectenerg-10413	129	2	10log	10log	NUM
fuelectenerg-10413	129	3	(	(	PUNCT
fuelectenerg-10413	129	4	𝑃𝑑𝑐	𝑃𝑑𝑐	PROPN
fuelectenerg-10413	129	5	1𝑚𝑊	1𝑚𝑊	NUM
fuelectenerg-10413	129	6	)	)	PUNCT
fuelectenerg-10413	129	7	(	(	PUNCT
fuelectenerg-10413	129	8	19	19	NUM
fuelectenerg-10413	129	9	)	)	PUNCT
fuelectenerg-10413	129	10	pdc	pdc	PROPN
fuelectenerg-10413	129	11	is	be	AUX
fuelectenerg-10413	129	12	the	the	DET
fuelectenerg-10413	129	13	dc	dc	PROPN
fuelectenerg-10413	129	14	power	power	NOUN
fuelectenerg-10413	129	15	consumption	consumption	NOUN
fuelectenerg-10413	129	16	.	.	PUNCT
fuelectenerg-10413	130	1	the	the	DET
fuelectenerg-10413	130	2	dimension	dimension	NOUN
fuelectenerg-10413	130	3	of	of	ADP
fuelectenerg-10413	130	4	both	both	PRON
fuelectenerg-10413	130	5	,	,	PUNCT
fuelectenerg-10413	130	6	nmos	nmos	PROPN
fuelectenerg-10413	130	7	and	and	CCONJ
fuelectenerg-10413	130	8	pmos	pmos	NOUN
fuelectenerg-10413	130	9	,	,	PUNCT
fuelectenerg-10413	130	10	shown	show	VERB
fuelectenerg-10413	130	11	in	in	ADP
fuelectenerg-10413	130	12	table	table	NOUN
fuelectenerg-10413	130	13	1	1	NUM
fuelectenerg-10413	130	14	are	be	AUX
fuelectenerg-10413	130	15	maintained	maintain	VERB
fuelectenerg-10413	130	16	same	same	ADJ
fuelectenerg-10413	130	17	as	as	SCONJ
fuelectenerg-10413	130	18	the	the	DET
fuelectenerg-10413	130	19	goal	goal	NOUN
fuelectenerg-10413	130	20	is	be	AUX
fuelectenerg-10413	130	21	to	to	PART
fuelectenerg-10413	130	22	get	get	VERB
fuelectenerg-10413	130	23	the	the	DET
fuelectenerg-10413	130	24	functional	functional	ADJ
fuelectenerg-10413	130	25	circuit	circuit	NOUN
fuelectenerg-10413	130	26	in	in	ADP
fuelectenerg-10413	130	27	order	order	NOUN
fuelectenerg-10413	130	28	to	to	PART
fuelectenerg-10413	130	29	confirm	confirm	VERB
fuelectenerg-10413	130	30	the	the	DET
fuelectenerg-10413	130	31	topological	topological	ADJ
fuelectenerg-10413	130	32	idea	idea	NOUN
fuelectenerg-10413	130	33	.	.	PUNCT
fuelectenerg-10413	131	1	table	table	NOUN
fuelectenerg-10413	131	2	1	1	NUM
fuelectenerg-10413	131	3	device	device	NOUN
fuelectenerg-10413	131	4	dimension	dimension	NOUN
fuelectenerg-10413	131	5	device	device	NOUN
fuelectenerg-10413	131	6	aspect	aspect	PROPN
fuelectenerg-10413	131	7	ratio	ratio	NOUN
fuelectenerg-10413	131	8	nmos	nmos	PROPN
fuelectenerg-10413	131	9	pmos	pmos	PROPN
fuelectenerg-10413	131	10	m1,m2,m7,m8	m1,m2,m7,m8	PROPN
fuelectenerg-10413	131	11	,	,	PUNCT
fuelectenerg-10413	131	12	m11,m12,m13	m11,m12,m13	PROPN
fuelectenerg-10413	131	13	m3,m4,m5,m6	m3,m4,m5,m6	PROPN
fuelectenerg-10413	131	14	,	,	PUNCT
fuelectenerg-10413	131	15	m9,m10	m9,m10	PROPN
fuelectenerg-10413	131	16	120/100	120/100	NUM
fuelectenerg-10413	131	17	120/100	120/100	NUM
fuelectenerg-10413	131	18	table	table	NOUN
fuelectenerg-10413	131	19	2	2	NUM
fuelectenerg-10413	131	20	variation	variation	NOUN
fuelectenerg-10413	131	21	of	of	ADP
fuelectenerg-10413	131	22	the	the	DET
fuelectenerg-10413	131	23	parameters	parameter	NOUN
fuelectenerg-10413	131	24	at	at	ADP
fuelectenerg-10413	131	25	different	different	ADJ
fuelectenerg-10413	131	26	temperatures	temperature	NOUN
fuelectenerg-10413	131	27	when	when	SCONJ
fuelectenerg-10413	131	28	vcntr1=0.2v	vcntr1=0.2v	PROPN
fuelectenerg-10413	131	29	and	and	CCONJ
fuelectenerg-10413	131	30	vcntr2	vcntr2	NOUN
fuelectenerg-10413	131	31	is	be	AUX
fuelectenerg-10413	131	32	varied	varied	ADJ
fuelectenerg-10413	131	33	from	from	ADP
fuelectenerg-10413	131	34	0	0	NUM
fuelectenerg-10413	131	35	to	to	ADP
fuelectenerg-10413	131	36	1v	1v	NUM
fuelectenerg-10413	131	37	(	(	PUNCT
fuelectenerg-10413	131	38	pre	pre	X
fuelectenerg-10413	131	39	layout	layout	ADJ
fuelectenerg-10413	131	40	)	)	PUNCT
fuelectenerg-10413	131	41	temp	temp	NOUN
fuelectenerg-10413	131	42	tuning	tune	VERB
fuelectenerg-10413	131	43	range	range	NOUN
fuelectenerg-10413	131	44	power	power	NOUN
fuelectenerg-10413	131	45	consumption	consumption	NOUN
fuelectenerg-10413	131	46	phase	phase	NOUN
fuelectenerg-10413	131	47	noise	noise	NOUN
fuelectenerg-10413	131	48	1	1	NUM
fuelectenerg-10413	131	49	m	m	NOUN
fuelectenerg-10413	131	50	phase	phase	NOUN
fuelectenerg-10413	131	51	noise	noise	NOUN
fuelectenerg-10413	131	52	10	10	NUM
fuelectenerg-10413	131	53	m	m	NOUN
fuelectenerg-10413	131	54	00	00	NUM
fuelectenerg-10413	131	55	42	42	NUM
fuelectenerg-10413	131	56	mhz-672	mhz-672	NOUN
fuelectenerg-10413	131	57	mhz	mhz	NOUN
fuelectenerg-10413	131	58	(	(	PUNCT
fuelectenerg-10413	131	59	93.75	93.75	NUM
fuelectenerg-10413	131	60	%	%	NOUN
fuelectenerg-10413	131	61	)	)	PUNCT
fuelectenerg-10413	131	62	160	160	NUM
fuelectenerg-10413	131	63	μw	μw	NOUN
fuelectenerg-10413	131	64	-93.10	-93.10	PROPN
fuelectenerg-10413	131	65	dbc	dbc	PROPN
fuelectenerg-10413	131	66	/	/	SYM
fuelectenerg-10413	131	67	hz	hz	PROPN
fuelectenerg-10413	131	68	-112.36	-112.36	PROPN
fuelectenerg-10413	131	69	dbc	dbc	PROPN
fuelectenerg-10413	131	70	/	/	SYM
fuelectenerg-10413	131	71	hz	hz	VERB
fuelectenerg-10413	131	72	100	100	NUM
fuelectenerg-10413	131	73	47	47	NUM
fuelectenerg-10413	131	74	mhz-647	mhz-647	NOUN
fuelectenerg-10413	131	75	mhz	mhz	NOUN
fuelectenerg-10413	131	76	(	(	PUNCT
fuelectenerg-10413	131	77	92.73	92.73	NUM
fuelectenerg-10413	131	78	%	%	NOUN
fuelectenerg-10413	131	79	)	)	PUNCT
fuelectenerg-10413	131	80	155	155	NUM
fuelectenerg-10413	131	81	μw	μw	PROPN
fuelectenerg-10413	131	82	92.94	92.94	NUM
fuelectenerg-10413	131	83	dbc	dbc	NOUN
fuelectenerg-10413	131	84	/	/	SYM
fuelectenerg-10413	131	85	hz	hz	PROPN
fuelectenerg-10413	131	86	-112.05	-112.05	PROPN
fuelectenerg-10413	131	87	dbc	dbc	PROPN
fuelectenerg-10413	131	88	/	/	SYM
fuelectenerg-10413	131	89	hz	hz	VERB
fuelectenerg-10413	131	90	270	270	NUM
fuelectenerg-10413	131	91	55mhz606	55mhz606	NUM
fuelectenerg-10413	131	92	mhz	mhz	NOUN
fuelectenerg-10413	131	93	(	(	PUNCT
fuelectenerg-10413	131	94	90.9	90.9	NUM
fuelectenerg-10413	131	95	%	%	NOUN
fuelectenerg-10413	131	96	)	)	PUNCT
fuelectenerg-10413	131	97	151	151	NUM
fuelectenerg-10413	131	98	μw	μw	NOUN
fuelectenerg-10413	131	99	-92.07	-92.07	PROPN
fuelectenerg-10413	131	100	dbc	dbc	PROPN
fuelectenerg-10413	131	101	/	/	SYM
fuelectenerg-10413	131	102	hz	hz	VERB
fuelectenerg-10413	131	103	-111.25	-111.25	PROPN
fuelectenerg-10413	131	104	dbc	dbc	PROPN
fuelectenerg-10413	131	105	/	/	SYM
fuelectenerg-10413	131	106	hz	hz	VERB
fuelectenerg-10413	131	107	700	700	NUM
fuelectenerg-10413	131	108	63	63	NUM
fuelectenerg-10413	131	109	mhz-487	mhz-487	PRON
fuelectenerg-10413	131	110	mhz	mhz	NOUN
fuelectenerg-10413	131	111	(	(	PUNCT
fuelectenerg-10413	131	112	87	87	NUM
fuelectenerg-10413	131	113	%	%	NOUN
fuelectenerg-10413	131	114	)	)	PUNCT
fuelectenerg-10413	131	115	144	144	NUM
fuelectenerg-10413	131	116	μw	μw	PROPN
fuelectenerg-10413	131	117	-91.86	-91.86	PROPN
fuelectenerg-10413	131	118	dbc	dbc	PROPN
fuelectenerg-10413	131	119	/	/	SYM
fuelectenerg-10413	131	120	hz	hz	VERB
fuelectenerg-10413	131	121	-111.09	-111.09	PROPN
fuelectenerg-10413	131	122	dbc	dbc	PROPN
fuelectenerg-10413	131	123	/	/	SYM
fuelectenerg-10413	131	124	hz	hz	VERB
fuelectenerg-10413	131	125	table	table	NOUN
fuelectenerg-10413	131	126	3	3	NUM
fuelectenerg-10413	131	127	variation	variation	NOUN
fuelectenerg-10413	131	128	of	of	ADP
fuelectenerg-10413	131	129	the	the	DET
fuelectenerg-10413	131	130	parameters	parameter	NOUN
fuelectenerg-10413	131	131	at	at	ADP
fuelectenerg-10413	131	132	different	different	ADJ
fuelectenerg-10413	131	133	temperatures	temperature	NOUN
fuelectenerg-10413	131	134	when	when	SCONJ
fuelectenerg-10413	131	135	vcntr1=0.77	vcntr1=0.77	PROPN
fuelectenerg-10413	131	136	v	v	NOUN
fuelectenerg-10413	131	137	and	and	CCONJ
fuelectenerg-10413	131	138	vcntr2	vcntr2	NOUN
fuelectenerg-10413	131	139	is	be	AUX
fuelectenerg-10413	131	140	varied	varied	ADJ
fuelectenerg-10413	131	141	from	from	ADP
fuelectenerg-10413	131	142	0	0	NUM
fuelectenerg-10413	131	143	to	to	ADP
fuelectenerg-10413	131	144	1v	1v	NUM
fuelectenerg-10413	131	145	(	(	PUNCT
fuelectenerg-10413	131	146	pre	pre	X
fuelectenerg-10413	131	147	layout	layout	ADJ
fuelectenerg-10413	131	148	)	)	PUNCT
fuelectenerg-10413	131	149	temp	temp	NOUN
fuelectenerg-10413	131	150	tuning	tune	VERB
fuelectenerg-10413	131	151	range	range	NOUN
fuelectenerg-10413	131	152	power	power	NOUN
fuelectenerg-10413	131	153	consumption	consumption	NOUN
fuelectenerg-10413	131	154	phase	phase	NOUN
fuelectenerg-10413	131	155	noise	noise	NOUN
fuelectenerg-10413	131	156	1	1	NUM
fuelectenerg-10413	131	157	m	m	NOUN
fuelectenerg-10413	131	158	phase	phase	NOUN
fuelectenerg-10413	131	159	noise	noise	NOUN
fuelectenerg-10413	131	160	10	10	NUM
fuelectenerg-10413	131	161	m	m	NOUN
fuelectenerg-10413	131	162	00	00	NUM
fuelectenerg-10413	131	163	1040	1040	NUM
fuelectenerg-10413	131	164	mhz-1230	mhz-1230	NOUN
fuelectenerg-10413	131	165	`	`	PUNCT
fuelectenerg-10413	131	166	mhz	mhz	PROPN
fuelectenerg-10413	131	167	(	(	PUNCT
fuelectenerg-10413	131	168	15.44	15.44	NUM
fuelectenerg-10413	131	169	%	%	NOUN
fuelectenerg-10413	131	170	)	)	PUNCT
fuelectenerg-10413	131	171	169	169	NUM
fuelectenerg-10413	131	172	μw	μw	PROPN
fuelectenerg-10413	131	173	-93.42	-93.42	PROPN
fuelectenerg-10413	131	174	dbc	dbc	PROPN
fuelectenerg-10413	131	175	/	/	SYM
fuelectenerg-10413	131	176	hz	hz	VERB
fuelectenerg-10413	131	177	-112.83dbc	-112.83dbc	PROPN
fuelectenerg-10413	131	178	/	/	SYM
fuelectenerg-10413	131	179	hz	hz	VERB
fuelectenerg-10413	131	180	100	100	NUM
fuelectenerg-10413	131	181	969	969	NUM
fuelectenerg-10413	131	182	mhz-1161	mhz-1161	ADJ
fuelectenerg-10413	131	183	mhz	mhz	NOUN
fuelectenerg-10413	131	184	(	(	PUNCT
fuelectenerg-10413	131	185	16.5	16.5	NUM
fuelectenerg-10413	131	186	%	%	NOUN
fuelectenerg-10413	131	187	)	)	PUNCT
fuelectenerg-10413	132	1	161	161	NUM
fuelectenerg-10413	132	2	μw	μw	NOUN
fuelectenerg-10413	132	3	-93.09	-93.09	PROPN
fuelectenerg-10413	132	4	dbc	dbc	PROPN
fuelectenerg-10413	132	5	/	/	PROPN
fuelectenerg-10413	132	6	hz	hz	PROPN
fuelectenerg-10413	132	7	-113.23	-113.23	PROPN
fuelectenerg-10413	132	8	dbc	dbc	PROPN
fuelectenerg-10413	132	9	/	/	SYM
fuelectenerg-10413	132	10	hz	hz	VERB
fuelectenerg-10413	132	11	270	270	NUM
fuelectenerg-10413	132	12	857mhz1049	857mhz1049	PROPN
fuelectenerg-10413	132	13	mhz	mhz	NOUN
fuelectenerg-10413	132	14	(	(	PUNCT
fuelectenerg-10413	132	15	18.3	18.3	NUM
fuelectenerg-10413	132	16	%	%	NOUN
fuelectenerg-10413	132	17	)	)	PUNCT
fuelectenerg-10413	132	18	157	157	NUM
fuelectenerg-10413	132	19	μw	μw	NOUN
fuelectenerg-10413	132	20	-93.50	-93.50	PROPN
fuelectenerg-10413	132	21	dbc	dbc	PROPN
fuelectenerg-10413	132	22	/	/	SYM
fuelectenerg-10413	132	23	hz	hz	VERB
fuelectenerg-10413	132	24	-113.93dbc	-113.93dbc	PROPN
fuelectenerg-10413	132	25	/	/	SYM
fuelectenerg-10413	132	26	hz	hz	VERB
fuelectenerg-10413	132	27	700	700	NUM
fuelectenerg-10413	132	28	585	585	NUM
fuelectenerg-10413	132	29	mhz-771	mhz-771	NOUN
fuelectenerg-10413	132	30	mhz	mhz	NOUN
fuelectenerg-10413	132	31	(	(	PUNCT
fuelectenerg-10413	132	32	24.12	24.12	NUM
fuelectenerg-10413	132	33	%	%	NOUN
fuelectenerg-10413	132	34	)	)	PUNCT
fuelectenerg-10413	132	35	152	152	NUM
fuelectenerg-10413	132	36	μw	μw	PROPN
fuelectenerg-10413	132	37	-92.88	-92.88	PROPN
fuelectenerg-10413	132	38	dbc	dbc	PROPN
fuelectenerg-10413	132	39	/	/	SYM
fuelectenerg-10413	132	40	hz	hz	PROPN
fuelectenerg-10413	132	41	-112.34	-112.34	PROPN
fuelectenerg-10413	132	42	dbc	dbc	PROPN
fuelectenerg-10413	132	43	/	/	SYM
fuelectenerg-10413	132	44	hz	hz	VERB
fuelectenerg-10413	132	45	design	design	NOUN
fuelectenerg-10413	132	46	of	of	ADP
fuelectenerg-10413	132	47	a	a	DET
fuelectenerg-10413	132	48	four	four	NUM
fuelectenerg-10413	132	49	stages	stage	NOUN
fuelectenerg-10413	132	50	vco	vco	NOUN
fuelectenerg-10413	132	51	using	use	VERB
fuelectenerg-10413	132	52	a	a	DET
fuelectenerg-10413	132	53	novel	novel	ADJ
fuelectenerg-10413	132	54	delay	delay	NOUN
fuelectenerg-10413	132	55	circuit	circuit	NOUN
fuelectenerg-10413	132	56	for	for	ADP
fuelectenerg-10413	132	57	operation	operation	NOUN
fuelectenerg-10413	132	58	in	in	ADP
fuelectenerg-10413	132	59	distributed	distribute	VERB
fuelectenerg-10413	132	60	band	band	NOUN
fuelectenerg-10413	132	61	frequencies	frequency	NOUN
fuelectenerg-10413	132	62	477	477	NUM
fuelectenerg-10413	132	63	fig	fig	NOUN
fuelectenerg-10413	132	64	.	.	PUNCT
fuelectenerg-10413	133	1	5	5	NUM
fuelectenerg-10413	133	2	tuning	tune	VERB
fuelectenerg-10413	133	3	range	range	NOUN
fuelectenerg-10413	133	4	of	of	ADP
fuelectenerg-10413	133	5	vco	vco	PROPN
fuelectenerg-10413	133	6	at	at	ADP
fuelectenerg-10413	133	7	different	different	ADJ
fuelectenerg-10413	133	8	temperatures	temperature	NOUN
fuelectenerg-10413	133	9	for	for	ADP
fuelectenerg-10413	133	10	vcntr1=0.2v	vcntr1=0.2v	PROPN
fuelectenerg-10413	133	11	and	and	CCONJ
fuelectenerg-10413	133	12	vcntr2	vcntr2	ADJ
fuelectenerg-10413	133	13	varies	varie	NOUN
fuelectenerg-10413	133	14	from	from	ADP
fuelectenerg-10413	133	15	0v	0v	NOUN
fuelectenerg-10413	133	16	to	to	ADP
fuelectenerg-10413	133	17	1v	1v	NUM
fuelectenerg-10413	133	18	(	(	PUNCT
fuelectenerg-10413	133	19	pre	pre	X
fuelectenerg-10413	133	20	layout	layout	PROPN
fuelectenerg-10413	133	21	simulation	simulation	NOUN
fuelectenerg-10413	133	22	)	)	PUNCT
fuelectenerg-10413	133	23	fig	fig	NOUN
fuelectenerg-10413	133	24	.	.	PUNCT
fuelectenerg-10413	134	1	6	6	NUM
fuelectenerg-10413	134	2	tuning	tune	VERB
fuelectenerg-10413	134	3	range	range	NOUN
fuelectenerg-10413	134	4	of	of	ADP
fuelectenerg-10413	134	5	vco	vco	PROPN
fuelectenerg-10413	134	6	at	at	ADP
fuelectenerg-10413	134	7	normal	normal	ADJ
fuelectenerg-10413	134	8	temperature	temperature	NOUN
fuelectenerg-10413	134	9	for	for	ADP
fuelectenerg-10413	134	10	vcntr1=0.2v	vcntr1=0.2v	PROPN
fuelectenerg-10413	134	11	and	and	CCONJ
fuelectenerg-10413	134	12	vcntr2	vcntr2	ADJ
fuelectenerg-10413	134	13	varies	varie	NOUN
fuelectenerg-10413	134	14	from	from	ADP
fuelectenerg-10413	134	15	0v	0v	NOUN
fuelectenerg-10413	134	16	to	to	ADP
fuelectenerg-10413	134	17	1v	1v	NUM
fuelectenerg-10413	134	18	(	(	PUNCT
fuelectenerg-10413	134	19	pre	pre	X
fuelectenerg-10413	134	20	and	and	CCONJ
fuelectenerg-10413	134	21	post	post	VERB
fuelectenerg-10413	134	22	layout	layout	PROPN
fuelectenerg-10413	134	23	simulation	simulation	NOUN
fuelectenerg-10413	134	24	at	at	ADP
fuelectenerg-10413	134	25	270	270	NUM
fuelectenerg-10413	134	26	)	)	PUNCT
fuelectenerg-10413	134	27	table	table	NOUN
fuelectenerg-10413	134	28	4	4	NUM
fuelectenerg-10413	134	29	corner	corner	NOUN
fuelectenerg-10413	134	30	analysis	analysis	NOUN
fuelectenerg-10413	134	31	at	at	ADP
fuelectenerg-10413	134	32	vcntr1=0.2	vcntr1=0.2	PROPN
fuelectenerg-10413	134	33	v	v	ADP
fuelectenerg-10413	134	34	and	and	CCONJ
fuelectenerg-10413	134	35	vcntr2=0.1v	vcntr2=0.1v	VERB
fuelectenerg-10413	134	36	process	process	NOUN
fuelectenerg-10413	134	37	coners	coner	NOUN
fuelectenerg-10413	134	38	pre	pre	VERB
fuelectenerg-10413	134	39	layout	layout	PROPN
fuelectenerg-10413	134	40	@1mhz	@1mhz	ADJ
fuelectenerg-10413	134	41	post	post	NOUN
fuelectenerg-10413	134	42	layout	layout	ADJ
fuelectenerg-10413	134	43	@1mhz	@1mhz	ADJ
fuelectenerg-10413	134	44	pre	pre	X
fuelectenerg-10413	134	45	layout	layout	NOUN
fuelectenerg-10413	134	46	@10	@10	NOUN
fuelectenerg-10413	134	47	mhz	mhz	ADJ
fuelectenerg-10413	134	48	post	post	NOUN
fuelectenerg-10413	134	49	layout	layout	NOUN
fuelectenerg-10413	134	50	@10	@10	NOUN
fuelectenerg-10413	134	51	mhz	mhz	ADJ
fuelectenerg-10413	134	52	output	output	NOUN
fuelectenerg-10413	134	53	noise	noise	NOUN
fuelectenerg-10413	134	54	(	(	PUNCT
fuelectenerg-10413	134	55	db	db	NOUN
fuelectenerg-10413	134	56	)	)	PUNCT
fuelectenerg-10413	134	57	phase	phase	NOUN
fuelectenerg-10413	134	58	noise	noise	NOUN
fuelectenerg-10413	134	59	(	(	PUNCT
fuelectenerg-10413	134	60	dbc	dbc	PROPN
fuelectenerg-10413	134	61	/	/	SYM
fuelectenerg-10413	134	62	hz	hz	PROPN
fuelectenerg-10413	134	63	)	)	PUNCT
fuelectenerg-10413	134	64	output	output	NOUN
fuelectenerg-10413	134	65	noise	noise	NOUN
fuelectenerg-10413	134	66	(	(	PUNCT
fuelectenerg-10413	134	67	db	db	NOUN
fuelectenerg-10413	134	68	)	)	PUNCT
fuelectenerg-10413	134	69	phase	phase	NOUN
fuelectenerg-10413	134	70	noise(db	noise(db	PROPN
fuelectenerg-10413	134	71	c	c	PROPN
fuelectenerg-10413	134	72	/	/	SYM
fuelectenerg-10413	134	73	hz	hz	PROPN
fuelectenerg-10413	134	74	)	)	PUNCT
fuelectenerg-10413	134	75	output	output	NOUN
fuelectenerg-10413	134	76	noise(db	noise(db	NOUN
fuelectenerg-10413	134	77	)	)	PUNCT
fuelectenerg-10413	134	78	phase	phase	NOUN
fuelectenerg-10413	134	79	noise	noise	NOUN
fuelectenerg-10413	134	80	(	(	PUNCT
fuelectenerg-10413	134	81	dbc	dbc	PROPN
fuelectenerg-10413	134	82	/	/	SYM
fuelectenerg-10413	134	83	hz	hz	PROPN
fuelectenerg-10413	134	84	)	)	PUNCT
fuelectenerg-10413	134	85	output	output	NOUN
fuelectenerg-10413	134	86	noise	noise	NOUN
fuelectenerg-10413	134	87	(	(	PUNCT
fuelectenerg-10413	134	88	db	db	NOUN
fuelectenerg-10413	134	89	)	)	PUNCT
fuelectenerg-10413	134	90	phase	phase	NOUN
fuelectenerg-10413	134	91	noise	noise	NOUN
fuelectenerg-10413	134	92	(	(	PUNCT
fuelectenerg-10413	134	93	dbc	dbc	PROPN
fuelectenerg-10413	134	94	/	/	SYM
fuelectenerg-10413	134	95	hz	hz	PROPN
fuelectenerg-10413	134	96	)	)	PUNCT
fuelectenerg-10413	134	97	nn	nn	PROPN
fuelectenerg-10413	134	98	-93.10	-93.10	PROPN
fuelectenerg-10413	134	99	-92.07	-92.07	PUNCT
fuelectenerg-10413	134	100	-93.23	-93.23	PUNCT
fuelectenerg-10413	134	101	-92.61	-92.61	PROPN
fuelectenerg-10413	134	102	-112.26	-112.26	PROPN
fuelectenerg-10413	135	1	-111.25	-111.25	PROPN
fuelectenerg-10413	136	1	-113.00	-113.00	NOUN
fuelectenerg-10413	137	1	-112.16	-112.16	PROPN
fuelectenerg-10413	137	2	ff	ff	INTJ
fuelectenerg-10413	137	3	-94.68	-94.68	PROPN
fuelectenerg-10413	137	4	-93.32	-93.32	PROPN
fuelectenerg-10413	138	1	-95.38	-95.38	PROPN
fuelectenerg-10413	138	2	-93.87	-93.87	PROPN
fuelectenerg-10413	138	3	-113.45	-113.45	PROPN
fuelectenerg-10413	138	4	-112.33	-112.33	PROPN
fuelectenerg-10413	139	1	-114.12	-114.12	PROPN
fuelectenerg-10413	139	2	-113.11	-113.11	PROPN
fuelectenerg-10413	139	3	fs	fs	ADP
fuelectenerg-10413	139	4	-96.12	-96.12	PUNCT
fuelectenerg-10413	139	5	-95.54	-95.54	PUNCT
fuelectenerg-10413	139	6	-96.62	-96.62	PUNCT
fuelectenerg-10413	139	7	-95.93	-95.93	PROPN
fuelectenerg-10413	139	8	-116.10	-116.10	PROPN
fuelectenerg-10413	139	9	-114.56	-114.56	PROPN
fuelectenerg-10413	139	10	-116.96	-116.96	PROPN
fuelectenerg-10413	139	11	-115.22	-115.22	PROPN
fuelectenerg-10413	139	12	sf	sf	INTJ
fuelectenerg-10413	139	13	-95.22	-95.22	ADP
fuelectenerg-10413	139	14	-94.56	-94.56	PUNCT
fuelectenerg-10413	139	15	-95.88	-95.88	PROPN
fuelectenerg-10413	139	16	-94.89	-94.89	PROPN
fuelectenerg-10413	139	17	-115.31	-115.31	PROPN
fuelectenerg-10413	139	18	-113.34	-113.34	PROPN
fuelectenerg-10413	139	19	-116.45	-116.45	ADJ
fuelectenerg-10413	139	20	-114.31	-114.31	PROPN
fuelectenerg-10413	139	21	ss	ss	PROPN
fuelectenerg-10413	140	1	-94.20	-94.20	PUNCT
fuelectenerg-10413	140	2	-93.40	-93.40	NOUN
fuelectenerg-10413	140	3	-94.66	-94.66	PUNCT
fuelectenerg-10413	140	4	-93.84	-93.84	NOUN
fuelectenerg-10413	140	5	-112.87	-112.87	PROPN
fuelectenerg-10413	140	6	-111.86	-111.86	PROPN
fuelectenerg-10413	140	7	-113.10	-113.10	PROPN
fuelectenerg-10413	140	8	-112.53	-112.53	PROPN
fuelectenerg-10413	140	9	478	478	NUM
fuelectenerg-10413	140	10	m.	m.	NOUN
fuelectenerg-10413	140	11	gogoi	gogoi	PROPN
fuelectenerg-10413	140	12	,	,	PUNCT
fuelectenerg-10413	140	13	p.	p.	PROPN
fuelectenerg-10413	140	14	k.	k.	PROPN
fuelectenerg-10413	141	1	dutta	dutta	PROPN
fuelectenerg-10413	141	2	4	4	NUM
fuelectenerg-10413	141	3	.	.	PUNCT
fuelectenerg-10413	142	1	implementation	implementation	NOUN
fuelectenerg-10413	142	2	the	the	DET
fuelectenerg-10413	142	3	proposed	proposed	ADJ
fuelectenerg-10413	142	4	four	four	NUM
fuelectenerg-10413	142	5	stages	stage	NOUN
fuelectenerg-10413	142	6	vco	vco	PROPN
fuelectenerg-10413	142	7	design	design	NOUN
fuelectenerg-10413	142	8	is	be	AUX
fuelectenerg-10413	142	9	implemented	implement	VERB
fuelectenerg-10413	142	10	using	use	VERB
fuelectenerg-10413	142	11	cadence	cadence	NOUN
fuelectenerg-10413	142	12	cmos	cmos	PROPN
fuelectenerg-10413	142	13	90	90	NUM
fuelectenerg-10413	142	14	nm	nm	NOUN
fuelectenerg-10413	142	15	technology	technology	NOUN
fuelectenerg-10413	142	16	.	.	PUNCT
fuelectenerg-10413	143	1	device	device	NOUN
fuelectenerg-10413	143	2	dimension	dimension	NOUN
fuelectenerg-10413	143	3	used	use	VERB
fuelectenerg-10413	143	4	in	in	ADP
fuelectenerg-10413	143	5	the	the	DET
fuelectenerg-10413	143	6	circuit	circuit	NOUN
fuelectenerg-10413	143	7	is	be	AUX
fuelectenerg-10413	143	8	mentioned	mention	VERB
fuelectenerg-10413	143	9	in	in	ADP
fuelectenerg-10413	143	10	table	table	NOUN
fuelectenerg-10413	143	11	1	1	NUM
fuelectenerg-10413	143	12	.	.	PUNCT
fuelectenerg-10413	144	1	analysis	analysis	NOUN
fuelectenerg-10413	144	2	of	of	ADP
fuelectenerg-10413	144	3	tuning	tune	VERB
fuelectenerg-10413	144	4	ranges	range	NOUN
fuelectenerg-10413	144	5	were	be	AUX
fuelectenerg-10413	144	6	carried	carry	VERB
fuelectenerg-10413	144	7	out	out	ADP
fuelectenerg-10413	144	8	by	by	ADP
fuelectenerg-10413	144	9	varying	vary	VERB
fuelectenerg-10413	144	10	vcntr2	vcntr2	NOUN
fuelectenerg-10413	144	11	from	from	ADP
fuelectenerg-10413	144	12	0v	0v	NOUN
fuelectenerg-10413	144	13	to	to	ADP
fuelectenerg-10413	144	14	1v	1v	NUM
fuelectenerg-10413	144	15	for	for	ADP
fuelectenerg-10413	144	16	different	different	ADJ
fuelectenerg-10413	144	17	values	value	NOUN
fuelectenerg-10413	144	18	of	of	ADP
fuelectenerg-10413	144	19	vcntr1	vcntr1	PROPN
fuelectenerg-10413	144	20	.	.	PUNCT
fuelectenerg-10413	145	1	mainly	mainly	ADV
fuelectenerg-10413	145	2	vcntr1	vcntr1	PROPN
fuelectenerg-10413	145	3	was	be	AUX
fuelectenerg-10413	145	4	divided	divide	VERB
fuelectenerg-10413	145	5	into	into	ADP
fuelectenerg-10413	145	6	two	two	NUM
fuelectenerg-10413	145	7	ranges	range	NOUN
fuelectenerg-10413	145	8	,	,	PUNCT
fuelectenerg-10413	145	9	the	the	DET
fuelectenerg-10413	145	10	lower	low	ADJ
fuelectenerg-10413	145	11	one	one	NUM
fuelectenerg-10413	145	12	0	0	NUM
fuelectenerg-10413	145	13	to	to	ADP
fuelectenerg-10413	145	14	0.5v	0.5v	NUM
fuelectenerg-10413	145	15	and	and	CCONJ
fuelectenerg-10413	145	16	upper	upper	ADJ
fuelectenerg-10413	145	17	0.5v	0.5v	NUM
fuelectenerg-10413	145	18	to	to	ADP
fuelectenerg-10413	145	19	1.0v	1.0v	NUM
fuelectenerg-10413	145	20	.	.	PUNCT
fuelectenerg-10413	146	1	optimum	optimum	ADJ
fuelectenerg-10413	146	2	values	value	NOUN
fuelectenerg-10413	146	3	for	for	ADP
fuelectenerg-10413	146	4	maximizing	maximize	VERB
fuelectenerg-10413	146	5	tuning	tuning	NOUN
fuelectenerg-10413	146	6	range	range	NOUN
fuelectenerg-10413	146	7	in	in	ADP
fuelectenerg-10413	146	8	both	both	DET
fuelectenerg-10413	146	9	cases	case	NOUN
fuelectenerg-10413	146	10	were	be	AUX
fuelectenerg-10413	146	11	found	find	VERB
fuelectenerg-10413	146	12	to	to	PART
fuelectenerg-10413	146	13	be	be	AUX
fuelectenerg-10413	146	14	0.2v	0.2v	PROPN
fuelectenerg-10413	146	15	(	(	PUNCT
fuelectenerg-10413	146	16	lower	low	ADJ
fuelectenerg-10413	146	17	)	)	PUNCT
fuelectenerg-10413	146	18	and	and	CCONJ
fuelectenerg-10413	146	19	0.77v	0.77v	NUM
fuelectenerg-10413	146	20	(	(	PUNCT
fuelectenerg-10413	146	21	upper	upper	ADJ
fuelectenerg-10413	146	22	)	)	PUNCT
fuelectenerg-10413	146	23	.	.	PUNCT
fuelectenerg-10413	147	1	oscillating	oscillate	VERB
fuelectenerg-10413	147	2	frequency	frequency	NOUN
fuelectenerg-10413	147	3	ranges	range	VERB
fuelectenerg-10413	147	4	from	from	ADP
fuelectenerg-10413	147	5	55	55	NUM
fuelectenerg-10413	147	6	mhz	mhz	NOUN
fuelectenerg-10413	147	7	to	to	ADP
fuelectenerg-10413	147	8	606	606	NUM
fuelectenerg-10413	147	9	mhz	mhz	NOUN
fuelectenerg-10413	147	10	(	(	PUNCT
fuelectenerg-10413	147	11	91	91	NUM
fuelectenerg-10413	147	12	%	%	NOUN
fuelectenerg-10413	147	13	approx	approx	NOUN
fuelectenerg-10413	147	14	.	.	PUNCT
fuelectenerg-10413	147	15	)	)	PUNCT
fuelectenerg-10413	148	1	for	for	ADP
fuelectenerg-10413	148	2	lower	low	ADJ
fuelectenerg-10413	148	3	band	band	NOUN
fuelectenerg-10413	148	4	with	with	ADP
fuelectenerg-10413	148	5	the	the	DET
fuelectenerg-10413	148	6	control	control	NOUN
fuelectenerg-10413	148	7	voltage	voltage	NOUN
fuelectenerg-10413	148	8	vcntr1=0.2v	vcntr1=0.2v	PROPN
fuelectenerg-10413	148	9	as	as	SCONJ
fuelectenerg-10413	148	10	shown	show	VERB
fuelectenerg-10413	148	11	in	in	ADP
fuelectenerg-10413	148	12	fig	fig	NOUN
fuelectenerg-10413	148	13	5	5	NUM
fuelectenerg-10413	148	14	and	and	CCONJ
fuelectenerg-10413	148	15	table	table	NOUN
fuelectenerg-10413	148	16	2	2	NUM
fuelectenerg-10413	148	17	.	.	PUNCT
fuelectenerg-10413	149	1	whenever	whenever	SCONJ
fuelectenerg-10413	149	2	path	path	NOUN
fuelectenerg-10413	149	3	delay	delay	NOUN
fuelectenerg-10413	149	4	is	be	AUX
fuelectenerg-10413	149	5	high	high	ADJ
fuelectenerg-10413	149	6	oscillating	oscillate	VERB
fuelectenerg-10413	149	7	frequency	frequency	NOUN
fuelectenerg-10413	149	8	is	be	AUX
fuelectenerg-10413	149	9	found	find	VERB
fuelectenerg-10413	149	10	to	to	PART
fuelectenerg-10413	149	11	be	be	AUX
fuelectenerg-10413	149	12	low	low	ADJ
fuelectenerg-10413	149	13	and	and	CCONJ
fuelectenerg-10413	149	14	vice	vice	ADV
fuelectenerg-10413	149	15	versa	versa	ADV
fuelectenerg-10413	149	16	.	.	PUNCT
fuelectenerg-10413	150	1	fig	fig	NOUN
fuelectenerg-10413	150	2	7	7	NUM
fuelectenerg-10413	150	3	and	and	CCONJ
fuelectenerg-10413	150	4	table	table	NOUN
fuelectenerg-10413	150	5	3	3	NUM
fuelectenerg-10413	150	6	shows	show	VERB
fuelectenerg-10413	150	7	variation	variation	NOUN
fuelectenerg-10413	150	8	of	of	ADP
fuelectenerg-10413	150	9	tuning	tune	VERB
fuelectenerg-10413	150	10	range	range	NOUN
fuelectenerg-10413	150	11	due	due	ADP
fuelectenerg-10413	150	12	to	to	PART
fuelectenerg-10413	150	13	change	change	VERB
fuelectenerg-10413	150	14	in	in	ADP
fuelectenerg-10413	150	15	vcntr2	vcntr2	ADJ
fuelectenerg-10413	150	16	keeping	keeping	NOUN
fuelectenerg-10413	150	17	vcntr1=0.77v	vcntr1=0.77v	ADV
fuelectenerg-10413	150	18	.	.	PUNCT
fuelectenerg-10413	151	1	vcntr2	vcntr2	PROPN
fuelectenerg-10413	151	2	varies	vary	VERB
fuelectenerg-10413	151	3	from	from	ADP
fuelectenerg-10413	151	4	1v	1v	NUM
fuelectenerg-10413	151	5	to	to	ADP
fuelectenerg-10413	151	6	0v	0v	NOUN
fuelectenerg-10413	151	7	and	and	CCONJ
fuelectenerg-10413	151	8	the	the	DET
fuelectenerg-10413	151	9	tuning	tuning	NOUN
fuelectenerg-10413	151	10	range	range	NOUN
fuelectenerg-10413	151	11	is	be	AUX
fuelectenerg-10413	151	12	found	find	VERB
fuelectenerg-10413	151	13	to	to	PART
fuelectenerg-10413	151	14	be	be	AUX
fuelectenerg-10413	151	15	857	857	NUM
fuelectenerg-10413	151	16	mhz	mhz	NOUN
fuelectenerg-10413	151	17	to	to	ADP
fuelectenerg-10413	151	18	1049	1049	NUM
fuelectenerg-10413	151	19	mhz	mhz	NOUN
fuelectenerg-10413	151	20	(	(	PUNCT
fuelectenerg-10413	151	21	18.30	18.30	NUM
fuelectenerg-10413	151	22	%	%	NOUN
fuelectenerg-10413	151	23	)	)	PUNCT
fuelectenerg-10413	151	24	at	at	ADP
fuelectenerg-10413	151	25	normal	normal	ADJ
fuelectenerg-10413	151	26	temperature	temperature	NOUN
fuelectenerg-10413	151	27	.	.	PUNCT
fuelectenerg-10413	152	1	thus	thus	ADV
fuelectenerg-10413	152	2	,	,	PUNCT
fuelectenerg-10413	152	3	it	it	PRON
fuelectenerg-10413	152	4	can	can	AUX
fuelectenerg-10413	152	5	be	be	AUX
fuelectenerg-10413	152	6	considered	consider	VERB
fuelectenerg-10413	152	7	as	as	ADP
fuelectenerg-10413	152	8	operation	operation	NOUN
fuelectenerg-10413	152	9	in	in	ADP
fuelectenerg-10413	152	10	higher	high	ADJ
fuelectenerg-10413	152	11	band	band	NOUN
fuelectenerg-10413	152	12	frequency	frequency	NOUN
fuelectenerg-10413	152	13	.	.	PUNCT
fuelectenerg-10413	153	1	so	so	ADV
fuelectenerg-10413	153	2	,	,	PUNCT
fuelectenerg-10413	153	3	the	the	DET
fuelectenerg-10413	153	4	benefit	benefit	NOUN
fuelectenerg-10413	153	5	of	of	ADP
fuelectenerg-10413	153	6	the	the	DET
fuelectenerg-10413	153	7	circuit	circuit	NOUN
fuelectenerg-10413	153	8	is	be	AUX
fuelectenerg-10413	153	9	that	that	SCONJ
fuelectenerg-10413	153	10	the	the	DET
fuelectenerg-10413	153	11	same	same	ADJ
fuelectenerg-10413	153	12	circuit	circuit	NOUN
fuelectenerg-10413	153	13	can	can	AUX
fuelectenerg-10413	153	14	be	be	AUX
fuelectenerg-10413	153	15	operated	operate	VERB
fuelectenerg-10413	153	16	in	in	ADP
fuelectenerg-10413	153	17	two	two	NUM
fuelectenerg-10413	153	18	different	different	ADJ
fuelectenerg-10413	153	19	bands	band	NOUN
fuelectenerg-10413	153	20	of	of	ADP
fuelectenerg-10413	153	21	frequency	frequency	NOUN
fuelectenerg-10413	153	22	and	and	CCONJ
fuelectenerg-10413	153	23	thereby	thereby	ADV
fuelectenerg-10413	153	24	increasing	increase	VERB
fuelectenerg-10413	153	25	the	the	DET
fuelectenerg-10413	153	26	tuning	tuning	NOUN
fuelectenerg-10413	153	27	range	range	NOUN
fuelectenerg-10413	153	28	of	of	ADP
fuelectenerg-10413	153	29	the	the	DET
fuelectenerg-10413	153	30	circuit	circuit	NOUN
fuelectenerg-10413	153	31	.	.	PUNCT
fuelectenerg-10413	154	1	effect	effect	NOUN
fuelectenerg-10413	154	2	of	of	ADP
fuelectenerg-10413	154	3	temperature	temperature	NOUN
fuelectenerg-10413	154	4	:	:	PUNCT
fuelectenerg-10413	154	5	due	due	ADP
fuelectenerg-10413	154	6	to	to	ADP
fuelectenerg-10413	154	7	the	the	DET
fuelectenerg-10413	154	8	changes	change	NOUN
fuelectenerg-10413	154	9	in	in	ADP
fuelectenerg-10413	154	10	transconductance	transconductance	NOUN
fuelectenerg-10413	154	11	gain	gain	NOUN
fuelectenerg-10413	154	12	(	(	PUNCT
fuelectenerg-10413	154	13	gm	gm	PROPN
fuelectenerg-10413	154	14	)	)	PUNCT
fuelectenerg-10413	154	15	,	,	PUNCT
fuelectenerg-10413	154	16	threshold	threshold	NOUN
fuelectenerg-10413	154	17	voltage	voltage	NOUN
fuelectenerg-10413	154	18	(	(	PUNCT
fuelectenerg-10413	154	19	vth	vth	NOUN
fuelectenerg-10413	154	20	)	)	PUNCT
fuelectenerg-10413	154	21	,	,	PUNCT
fuelectenerg-10413	154	22	electron	electron	NOUN
fuelectenerg-10413	154	23	and	and	CCONJ
fuelectenerg-10413	154	24	hole	hole	NOUN
fuelectenerg-10413	154	25	mobility	mobility	NOUN
fuelectenerg-10413	154	26	(	(	PUNCT
fuelectenerg-10413	154	27	n	n	NOUN
fuelectenerg-10413	154	28	and	and	CCONJ
fuelectenerg-10413	154	29	p	p	X
fuelectenerg-10413	154	30	)	)	PUNCT
fuelectenerg-10413	154	31	and	and	CCONJ
fuelectenerg-10413	154	32	parasitic	parasitic	ADJ
fuelectenerg-10413	154	33	capacitors	capacitor	NOUN
fuelectenerg-10413	154	34	,	,	PUNCT
fuelectenerg-10413	154	35	transistors	transistor	NOUN
fuelectenerg-10413	154	36	have	have	VERB
fuelectenerg-10413	154	37	the	the	DET
fuelectenerg-10413	154	38	biggest	big	ADJ
fuelectenerg-10413	154	39	impact	impact	NOUN
fuelectenerg-10413	154	40	on	on	ADP
fuelectenerg-10413	154	41	the	the	DET
fuelectenerg-10413	154	42	frequency	frequency	NOUN
fuelectenerg-10413	154	43	drift	drift	NOUN
fuelectenerg-10413	154	44	and	and	CCONJ
fuelectenerg-10413	154	45	they	they	PRON
fuelectenerg-10413	154	46	are	be	AUX
fuelectenerg-10413	154	47	obtained	obtain	VERB
fuelectenerg-10413	154	48	as	as	SCONJ
fuelectenerg-10413	154	49	follows	follow	VERB
fuelectenerg-10413	154	50	[	[	X
fuelectenerg-10413	154	51	33	33	NUM
fuelectenerg-10413	154	52	]	]	X
fuelectenerg-10413	154	53	:	:	PUNCT
fuelectenerg-10413	154	54	𝑔𝑚	𝑔𝑚	NOUN
fuelectenerg-10413	154	55	=	=	SYM
fuelectenerg-10413	154	56	µ𝑛cox	µ𝑛cox	PROPN
fuelectenerg-10413	154	57	w	w	PROPN
fuelectenerg-10413	154	58	l	l	PROPN
fuelectenerg-10413	154	59	(	(	PUNCT
fuelectenerg-10413	154	60	vgs	vgs	NOUN
fuelectenerg-10413	154	61	−	−	NOUN
fuelectenerg-10413	154	62	vth	vth	NOUN
fuelectenerg-10413	154	63	)	)	PUNCT
fuelectenerg-10413	154	64	(	(	PUNCT
fuelectenerg-10413	154	65	20	20	X
fuelectenerg-10413	154	66	)	)	PUNCT
fuelectenerg-10413	154	67	𝑉𝑡ℎ	𝑉𝑡ℎ	PROPN
fuelectenerg-10413	154	68	=	=	SYM
fuelectenerg-10413	154	69	𝑉𝑡ℎ0	𝑉𝑡ℎ0	PROPN
fuelectenerg-10413	154	70	−	−	PROPN
fuelectenerg-10413	154	71	𝛼(𝑇	𝛼(𝑇	NOUN
fuelectenerg-10413	154	72	−	−	NOUN
fuelectenerg-10413	154	73	270	270	NUM
fuelectenerg-10413	154	74	)	)	PUNCT
fuelectenerg-10413	154	75	(	(	PUNCT
fuelectenerg-10413	154	76	21	21	NUM
fuelectenerg-10413	154	77	)	)	PUNCT
fuelectenerg-10413	154	78	µ(𝑇	µ(𝑇	NUM
fuelectenerg-10413	154	79	)	)	PUNCT
fuelectenerg-10413	154	80	=	=	PUNCT
fuelectenerg-10413	155	1	µ(𝑇	µ(𝑇	X
fuelectenerg-10413	155	2	=	=	SYM
fuelectenerg-10413	155	3	270	270	NUM
fuelectenerg-10413	155	4	)	)	PUNCT
fuelectenerg-10413	155	5	(	(	PUNCT
fuelectenerg-10413	155	6	t	t	PROPN
fuelectenerg-10413	155	7	270	270	NUM
fuelectenerg-10413	155	8	)	)	PUNCT
fuelectenerg-10413	155	9	−	−	PROPN
fuelectenerg-10413	155	10	3	3	NUM
fuelectenerg-10413	155	11	2	2	NUM
fuelectenerg-10413	155	12	(	(	PUNCT
fuelectenerg-10413	155	13	22	22	NUM
fuelectenerg-10413	155	14	)	)	PUNCT
fuelectenerg-10413	155	15	the	the	DET
fuelectenerg-10413	155	16	operation	operation	NOUN
fuelectenerg-10413	155	17	of	of	ADP
fuelectenerg-10413	155	18	the	the	DET
fuelectenerg-10413	155	19	circuit	circuit	NOUN
fuelectenerg-10413	155	20	is	be	AUX
fuelectenerg-10413	155	21	tested	test	VERB
fuelectenerg-10413	155	22	by	by	ADP
fuelectenerg-10413	155	23	varying	vary	VERB
fuelectenerg-10413	155	24	the	the	DET
fuelectenerg-10413	155	25	temperatures	temperature	NOUN
fuelectenerg-10413	155	26	;	;	PUNCT
fuelectenerg-10413	155	27	it	it	PRON
fuelectenerg-10413	155	28	is	be	AUX
fuelectenerg-10413	155	29	found	find	VERB
fuelectenerg-10413	155	30	that	that	SCONJ
fuelectenerg-10413	155	31	the	the	DET
fuelectenerg-10413	155	32	operating	operating	NOUN
fuelectenerg-10413	155	33	frequency	frequency	NOUN
fuelectenerg-10413	155	34	is	be	AUX
fuelectenerg-10413	155	35	reduced	reduce	VERB
fuelectenerg-10413	155	36	with	with	ADP
fuelectenerg-10413	155	37	increase	increase	NOUN
fuelectenerg-10413	155	38	in	in	ADP
fuelectenerg-10413	155	39	frequency	frequency	NOUN
fuelectenerg-10413	155	40	.	.	PUNCT
fuelectenerg-10413	156	1	analysis	analysis	NOUN
fuelectenerg-10413	156	2	of	of	ADP
fuelectenerg-10413	156	3	the	the	DET
fuelectenerg-10413	156	4	circuit	circuit	NOUN
fuelectenerg-10413	156	5	is	be	AUX
fuelectenerg-10413	156	6	carried	carry	VERB
fuelectenerg-10413	156	7	out	out	ADP
fuelectenerg-10413	156	8	by	by	ADP
fuelectenerg-10413	156	9	varying	vary	VERB
fuelectenerg-10413	156	10	the	the	DET
fuelectenerg-10413	156	11	temperatures	temperature	NOUN
fuelectenerg-10413	156	12	from	from	ADP
fuelectenerg-10413	156	13	00c	00c	NOUN
fuelectenerg-10413	156	14	to	to	ADP
fuelectenerg-10413	156	15	700c	700c	PROPN
fuelectenerg-10413	156	16	in	in	ADP
fuelectenerg-10413	156	17	both	both	DET
fuelectenerg-10413	156	18	pre	pre	X
fuelectenerg-10413	156	19	layout	layout	NOUN
fuelectenerg-10413	156	20	and	and	CCONJ
fuelectenerg-10413	156	21	post	post	VERB
fuelectenerg-10413	156	22	layout	layout	NOUN
fuelectenerg-10413	156	23	at	at	ADP
fuelectenerg-10413	156	24	vdd=1v	vdd=1v	PROPN
fuelectenerg-10413	156	25	,	,	PUNCT
fuelectenerg-10413	156	26	vcntr1	vcntr1	PROPN
fuelectenerg-10413	156	27	equals	equal	VERB
fuelectenerg-10413	156	28	to	to	ADP
fuelectenerg-10413	156	29	0.77	0.77	NUM
fuelectenerg-10413	156	30	v	v	NOUN
fuelectenerg-10413	156	31	and	and	CCONJ
fuelectenerg-10413	156	32	0.2	0.2	NUM
fuelectenerg-10413	156	33	v	v	NOUN
fuelectenerg-10413	156	34	respectively	respectively	ADV
fuelectenerg-10413	156	35	and	and	CCONJ
fuelectenerg-10413	156	36	vcntr2	vcntr2	ADJ
fuelectenerg-10413	156	37	is	be	AUX
fuelectenerg-10413	156	38	varied	varied	ADJ
fuelectenerg-10413	156	39	from	from	ADP
fuelectenerg-10413	156	40	0	0	NUM
fuelectenerg-10413	156	41	to	to	ADP
fuelectenerg-10413	156	42	1v	1v	NUM
fuelectenerg-10413	156	43	.	.	PUNCT
fuelectenerg-10413	157	1	comparative	comparative	ADJ
fuelectenerg-10413	157	2	analysis	analysis	NOUN
fuelectenerg-10413	157	3	between	between	ADP
fuelectenerg-10413	157	4	the	the	DET
fuelectenerg-10413	157	5	pre	pre	NOUN
fuelectenerg-10413	157	6	and	and	CCONJ
fuelectenerg-10413	157	7	post	post	VERB
fuelectenerg-10413	157	8	layout	layout	PROPN
fuelectenerg-10413	157	9	simulation	simulation	NOUN
fuelectenerg-10413	157	10	with	with	ADP
fuelectenerg-10413	157	11	respect	respect	NOUN
fuelectenerg-10413	157	12	to	to	ADP
fuelectenerg-10413	157	13	tuning	tune	VERB
fuelectenerg-10413	157	14	range	range	NOUN
fuelectenerg-10413	157	15	are	be	AUX
fuelectenerg-10413	157	16	shown	show	VERB
fuelectenerg-10413	157	17	in	in	ADP
fuelectenerg-10413	157	18	fig	fig	NOUN
fuelectenerg-10413	157	19	.	.	PUNCT
fuelectenerg-10413	158	1	6	6	NUM
fuelectenerg-10413	158	2	and	and	CCONJ
fuelectenerg-10413	158	3	fig	fig	NOUN
fuelectenerg-10413	158	4	.	.	PUNCT
fuelectenerg-10413	159	1	8	8	NUM
fuelectenerg-10413	159	2	,	,	PUNCT
fuelectenerg-10413	159	3	it	it	PRON
fuelectenerg-10413	159	4	is	be	AUX
fuelectenerg-10413	159	5	found	find	VERB
fuelectenerg-10413	159	6	that	that	SCONJ
fuelectenerg-10413	159	7	the	the	DET
fuelectenerg-10413	159	8	changes	change	NOUN
fuelectenerg-10413	159	9	in	in	ADP
fuelectenerg-10413	159	10	frequency	frequency	NOUN
fuelectenerg-10413	159	11	tuning	tuning	NOUN
fuelectenerg-10413	159	12	range	range	NOUN
fuelectenerg-10413	159	13	due	due	ADP
fuelectenerg-10413	159	14	to	to	ADP
fuelectenerg-10413	159	15	the	the	DET
fuelectenerg-10413	159	16	control	control	NOUN
fuelectenerg-10413	159	17	voltage	voltage	NOUN
fuelectenerg-10413	159	18	vcntr2	vcntr2	NOUN
fuelectenerg-10413	159	19	are	be	AUX
fuelectenerg-10413	159	20	close	close	ADJ
fuelectenerg-10413	159	21	to	to	ADP
fuelectenerg-10413	159	22	each	each	DET
fuelectenerg-10413	159	23	other	other	ADJ
fuelectenerg-10413	159	24	in	in	ADP
fuelectenerg-10413	159	25	both	both	CCONJ
fuelectenerg-10413	159	26	the	the	DET
fuelectenerg-10413	159	27	cases	case	NOUN
fuelectenerg-10413	159	28	.	.	PUNCT
fuelectenerg-10413	160	1	corner	corner	NOUN
fuelectenerg-10413	160	2	analysis	analysis	NOUN
fuelectenerg-10413	160	3	of	of	ADP
fuelectenerg-10413	160	4	fig	fig	NOUN
fuelectenerg-10413	160	5	.	.	PUNCT
fuelectenerg-10413	161	1	7	7	NUM
fuelectenerg-10413	161	2	tuning	tuning	NOUN
fuelectenerg-10413	161	3	range	range	NOUN
fuelectenerg-10413	161	4	of	of	ADP
fuelectenerg-10413	161	5	vco	vco	PROPN
fuelectenerg-10413	161	6	at	at	ADP
fuelectenerg-10413	161	7	different	different	ADJ
fuelectenerg-10413	161	8	temperatures	temperature	NOUN
fuelectenerg-10413	161	9	for	for	ADP
fuelectenerg-10413	161	10	vcntr1=0.77	vcntr1=0.77	PROPN
fuelectenerg-10413	161	11	v	v	NOUN
fuelectenerg-10413	161	12	and	and	CCONJ
fuelectenerg-10413	161	13	vcntr2	vcntr2	ADJ
fuelectenerg-10413	161	14	vary	vary	VERB
fuelectenerg-10413	161	15	from	from	ADP
fuelectenerg-10413	161	16	0v	0v	NOUN
fuelectenerg-10413	161	17	to	to	ADP
fuelectenerg-10413	161	18	1v	1v	NUM
fuelectenerg-10413	161	19	.	.	PUNCT
fuelectenerg-10413	162	1	design	design	NOUN
fuelectenerg-10413	162	2	of	of	ADP
fuelectenerg-10413	162	3	a	a	DET
fuelectenerg-10413	162	4	four	four	NUM
fuelectenerg-10413	162	5	stages	stage	NOUN
fuelectenerg-10413	162	6	vco	vco	NOUN
fuelectenerg-10413	162	7	using	use	VERB
fuelectenerg-10413	162	8	a	a	DET
fuelectenerg-10413	162	9	novel	novel	ADJ
fuelectenerg-10413	162	10	delay	delay	NOUN
fuelectenerg-10413	162	11	circuit	circuit	NOUN
fuelectenerg-10413	162	12	for	for	ADP
fuelectenerg-10413	162	13	operation	operation	NOUN
fuelectenerg-10413	162	14	in	in	ADP
fuelectenerg-10413	162	15	distributed	distribute	VERB
fuelectenerg-10413	162	16	band	band	NOUN
fuelectenerg-10413	162	17	frequencies	frequency	NOUN
fuelectenerg-10413	162	18	479	479	NUM
fuelectenerg-10413	162	19	the	the	DET
fuelectenerg-10413	162	20	circuit	circuit	NOUN
fuelectenerg-10413	162	21	in	in	ADP
fuelectenerg-10413	162	22	terms	term	NOUN
fuelectenerg-10413	162	23	of	of	ADP
fuelectenerg-10413	162	24	output	output	NOUN
fuelectenerg-10413	162	25	and	and	CCONJ
fuelectenerg-10413	162	26	phase	phase	NOUN
fuelectenerg-10413	162	27	noise	noise	NOUN
fuelectenerg-10413	162	28	are	be	AUX
fuelectenerg-10413	162	29	depicted	depict	VERB
fuelectenerg-10413	162	30	in	in	ADP
fuelectenerg-10413	162	31	tables	table	NOUN
fuelectenerg-10413	162	32	4	4	NUM
fuelectenerg-10413	162	33	and	and	CCONJ
fuelectenerg-10413	162	34	5	5	NUM
fuelectenerg-10413	162	35	for	for	ADP
fuelectenerg-10413	162	36	all	all	DET
fuelectenerg-10413	162	37	the	the	DET
fuelectenerg-10413	162	38	five	five	NUM
fuelectenerg-10413	162	39	processes	process	NOUN
fuelectenerg-10413	162	40	namely	namely	ADV
fuelectenerg-10413	162	41	nn	nn	NOUN
fuelectenerg-10413	162	42	,	,	PUNCT
fuelectenerg-10413	162	43	ff	ff	NOUN
fuelectenerg-10413	162	44	,	,	PUNCT
fuelectenerg-10413	162	45	fs	fs	PROPN
fuelectenerg-10413	162	46	,	,	PUNCT
fuelectenerg-10413	162	47	sf	sf	PROPN
fuelectenerg-10413	162	48	and	and	CCONJ
fuelectenerg-10413	162	49	ss	ss	PROPN
fuelectenerg-10413	162	50	and	and	CCONJ
fuelectenerg-10413	162	51	the	the	DET
fuelectenerg-10413	162	52	results	result	NOUN
fuelectenerg-10413	162	53	found	find	VERB
fuelectenerg-10413	162	54	are	be	AUX
fuelectenerg-10413	162	55	satisfactory	satisfactory	ADJ
fuelectenerg-10413	162	56	.	.	PUNCT
fuelectenerg-10413	163	1	the	the	DET
fuelectenerg-10413	163	2	delay	delay	NOUN
fuelectenerg-10413	163	3	circuit	circuit	PROPN
fuelectenerg-10413	163	4	layout	layout	NOUN
fuelectenerg-10413	163	5	design	design	NOUN
fuelectenerg-10413	163	6	is	be	AUX
fuelectenerg-10413	163	7	5.87	5.87	NUM
fuelectenerg-10413	163	8	µm	µm	NOUN
fuelectenerg-10413	163	9	x	x	NOUN
fuelectenerg-10413	163	10	6.86	6.86	NUM
fuelectenerg-10413	163	11	µm	µm	NOUN
fuelectenerg-10413	163	12	,	,	PUNCT
fuelectenerg-10413	163	13	while	while	SCONJ
fuelectenerg-10413	163	14	the	the	DET
fuelectenerg-10413	163	15	four	four	NUM
fuelectenerg-10413	163	16	-	-	PUNCT
fuelectenerg-10413	163	17	stage	stage	NOUN
fuelectenerg-10413	163	18	vco	vco	PROPN
fuelectenerg-10413	163	19	layout	layout	PROPN
fuelectenerg-10413	163	20	design	design	NOUN
fuelectenerg-10413	163	21	is	be	AUX
fuelectenerg-10413	163	22	24.98	24.98	NUM
fuelectenerg-10413	163	23	µm	µm	NOUN
fuelectenerg-10413	163	24	x	x	PROPN
fuelectenerg-10413	163	25	6.86	6.86	NUM
fuelectenerg-10413	163	26	µm	µm	NOUN
fuelectenerg-10413	163	27	,	,	PUNCT
fuelectenerg-10413	163	28	spanning	span	VERB
fuelectenerg-10413	163	29	an	an	DET
fuelectenerg-10413	163	30	area	area	NOUN
fuelectenerg-10413	163	31	of	of	ADP
fuelectenerg-10413	163	32	171.42m2	171.42m2	NUM
fuelectenerg-10413	163	33	.	.	PUNCT
fuelectenerg-10413	164	1	they	they	PRON
fuelectenerg-10413	164	2	are	be	AUX
fuelectenerg-10413	164	3	depicted	depict	VERB
fuelectenerg-10413	164	4	in	in	ADP
fuelectenerg-10413	164	5	fig	fig	NOUN
fuelectenerg-10413	164	6	.	.	PUNCT
fuelectenerg-10413	165	1	9	9	NUM
fuelectenerg-10413	165	2	and	and	CCONJ
fuelectenerg-10413	165	3	fig	fig	NOUN
fuelectenerg-10413	165	4	.	.	PUNCT
fuelectenerg-10413	166	1	10	10	NUM
fuelectenerg-10413	166	2	.	.	X
fuelectenerg-10413	166	3	fig	fig	NOUN
fuelectenerg-10413	166	4	.	.	PUNCT
fuelectenerg-10413	167	1	8	8	NUM
fuelectenerg-10413	167	2	tuning	tune	VERB
fuelectenerg-10413	167	3	range	range	NOUN
fuelectenerg-10413	167	4	of	of	ADP
fuelectenerg-10413	167	5	vco	vco	PROPN
fuelectenerg-10413	167	6	at	at	ADP
fuelectenerg-10413	167	7	normal	normal	ADJ
fuelectenerg-10413	167	8	temperature	temperature	NOUN
fuelectenerg-10413	167	9	for	for	ADP
fuelectenerg-10413	167	10	vcntr1=0.77v	vcntr1=0.77v	ADV
fuelectenerg-10413	167	11	and	and	CCONJ
fuelectenerg-10413	167	12	vcntr2	vcntr2	ADJ
fuelectenerg-10413	167	13	varies	varie	NOUN
fuelectenerg-10413	167	14	from	from	ADP
fuelectenerg-10413	167	15	0v	0v	NOUN
fuelectenerg-10413	167	16	to	to	ADP
fuelectenerg-10413	167	17	1v	1v	NUM
fuelectenerg-10413	167	18	(	(	PUNCT
fuelectenerg-10413	167	19	pre	pre	X
fuelectenerg-10413	167	20	and	and	CCONJ
fuelectenerg-10413	167	21	post	post	VERB
fuelectenerg-10413	167	22	layout	layout	PROPN
fuelectenerg-10413	167	23	simulation	simulation	NOUN
fuelectenerg-10413	167	24	at	at	ADP
fuelectenerg-10413	167	25	270	270	NUM
fuelectenerg-10413	167	26	)	)	PUNCT
fuelectenerg-10413	167	27	table	table	NOUN
fuelectenerg-10413	167	28	5	5	NUM
fuelectenerg-10413	167	29	corner	corner	NOUN
fuelectenerg-10413	167	30	analysis	analysis	NOUN
fuelectenerg-10413	167	31	at	at	ADP
fuelectenerg-10413	167	32	vcntr1=0.77v	vcntr1=0.77v	ADV
fuelectenerg-10413	167	33	and	and	CCONJ
fuelectenerg-10413	167	34	vcntr2=0.1v	vcntr2=0.1v	VERB
fuelectenerg-10413	167	35	process	process	NOUN
fuelectenerg-10413	167	36	coners	coner	NOUN
fuelectenerg-10413	167	37	pre	pre	VERB
fuelectenerg-10413	167	38	layout	layout	PROPN
fuelectenerg-10413	167	39	@1mhz	@1mhz	ADJ
fuelectenerg-10413	167	40	post	post	NOUN
fuelectenerg-10413	167	41	layout	layout	ADJ
fuelectenerg-10413	167	42	@1mhz	@1mhz	ADJ
fuelectenerg-10413	167	43	pre	pre	X
fuelectenerg-10413	167	44	layout	layout	NOUN
fuelectenerg-10413	167	45	@10	@10	NOUN
fuelectenerg-10413	167	46	mhz	mhz	ADJ
fuelectenerg-10413	167	47	post	post	NOUN
fuelectenerg-10413	167	48	layout	layout	NOUN
fuelectenerg-10413	167	49	@10	@10	NOUN
fuelectenerg-10413	167	50	mhz	mhz	ADJ
fuelectenerg-10413	167	51	output	output	NOUN
fuelectenerg-10413	167	52	noise	noise	NOUN
fuelectenerg-10413	167	53	(	(	PUNCT
fuelectenerg-10413	167	54	db	db	NOUN
fuelectenerg-10413	167	55	)	)	PUNCT
fuelectenerg-10413	167	56	phase	phase	NOUN
fuelectenerg-10413	167	57	noise	noise	NOUN
fuelectenerg-10413	167	58	(	(	PUNCT
fuelectenerg-10413	167	59	dbc	dbc	PROPN
fuelectenerg-10413	167	60	/	/	SYM
fuelectenerg-10413	167	61	hz	hz	PROPN
fuelectenerg-10413	167	62	)	)	PUNCT
fuelectenerg-10413	167	63	output	output	NOUN
fuelectenerg-10413	167	64	noise	noise	NOUN
fuelectenerg-10413	167	65	(	(	PUNCT
fuelectenerg-10413	167	66	db	db	NOUN
fuelectenerg-10413	167	67	)	)	PUNCT
fuelectenerg-10413	167	68	phase	phase	NOUN
fuelectenerg-10413	167	69	noise	noise	NOUN
fuelectenerg-10413	167	70	(	(	PUNCT
fuelectenerg-10413	167	71	dbc	dbc	PROPN
fuelectenerg-10413	167	72	/	/	SYM
fuelectenerg-10413	167	73	hz	hz	PROPN
fuelectenerg-10413	167	74	)	)	PUNCT
fuelectenerg-10413	167	75	output	output	NOUN
fuelectenerg-10413	167	76	noise	noise	NOUN
fuelectenerg-10413	167	77	(	(	PUNCT
fuelectenerg-10413	167	78	db	db	NOUN
fuelectenerg-10413	167	79	)	)	PUNCT
fuelectenerg-10413	167	80	phase	phase	NOUN
fuelectenerg-10413	167	81	noise	noise	NOUN
fuelectenerg-10413	167	82	(	(	PUNCT
fuelectenerg-10413	167	83	dbc	dbc	PROPN
fuelectenerg-10413	167	84	/	/	SYM
fuelectenerg-10413	167	85	hz	hz	PROPN
fuelectenerg-10413	167	86	)	)	PUNCT
fuelectenerg-10413	167	87	output	output	NOUN
fuelectenerg-10413	167	88	noise	noise	NOUN
fuelectenerg-10413	167	89	(	(	PUNCT
fuelectenerg-10413	167	90	db	db	NOUN
fuelectenerg-10413	167	91	)	)	PUNCT
fuelectenerg-10413	167	92	phase	phase	NOUN
fuelectenerg-10413	167	93	noise	noise	NOUN
fuelectenerg-10413	167	94	(	(	PUNCT
fuelectenerg-10413	167	95	dbc	dbc	PROPN
fuelectenerg-10413	167	96	/	/	SYM
fuelectenerg-10413	167	97	hz	hz	PROPN
fuelectenerg-10413	167	98	)	)	PUNCT
fuelectenerg-10413	167	99	nn	nn	PROPN
fuelectenerg-10413	167	100	-96.23	-96.23	PROPN
fuelectenerg-10413	167	101	-93.50	-93.50	PROPN
fuelectenerg-10413	167	102	-97.11	-97.11	PROPN
fuelectenerg-10413	167	103	-94.78	-94.78	PROPN
fuelectenerg-10413	167	104	-115.31	-115.31	PROPN
fuelectenerg-10413	167	105	-113.93	-113.93	PROPN
fuelectenerg-10413	167	106	-116.35	-116.35	PROPN
fuelectenerg-10413	168	1	-114.42	-114.42	PROPN
fuelectenerg-10413	168	2	ff	ff	NOUN
fuelectenerg-10413	168	3	-95.68	-95.68	PROPN
fuelectenerg-10413	168	4	-94.33	-94.33	PUNCT
fuelectenerg-10413	168	5	-96.28	-96.28	PUNCT
fuelectenerg-10413	169	1	-94.96	-94.96	PROPN
fuelectenerg-10413	169	2	-116.20	-116.20	PROPN
fuelectenerg-10413	170	1	-114.42	-114.42	PROPN
fuelectenerg-10413	170	2	-116.85	-116.85	PROPN
fuelectenerg-10413	171	1	-115.36	-115.36	NOUN
fuelectenerg-10413	171	2	fs	fs	ADP
fuelectenerg-10413	171	3	-99.72	-99.72	NOUN
fuelectenerg-10413	171	4	-97.23	-97.23	PUNCT
fuelectenerg-10413	172	1	-100.22	-100.22	PROPN
fuelectenerg-10413	172	2	-98.17	-98.17	PUNCT
fuelectenerg-10413	173	1	-118.51	-118.51	PROPN
fuelectenerg-10413	173	2	-117.81	-117.81	PROPN
fuelectenerg-10413	174	1	-119.24	-119.24	PROPN
fuelectenerg-10413	175	1	-119.42	-119.42	NOUN
fuelectenerg-10413	175	2	sf	sf	X
fuelectenerg-10413	176	1	-98.22	-98.22	PUNCT
fuelectenerg-10413	176	2	-96.48	-96.48	PROPN
fuelectenerg-10413	176	3	-98.89	-98.89	PROPN
fuelectenerg-10413	176	4	-97.33	-97.33	PROPN
fuelectenerg-10413	176	5	-117.54	-117.54	PROPN
fuelectenerg-10413	176	6	-116.71	-116.71	PROPN
fuelectenerg-10413	176	7	-118.21	-118.21	PROPN
fuelectenerg-10413	176	8	-117.36	-117.36	PROPN
fuelectenerg-10413	176	9	ss	ss	ADP
fuelectenerg-10413	176	10	-97.05	-97.05	PROPN
fuelectenerg-10413	176	11	-93.60	-93.60	PROPN
fuelectenerg-10413	176	12	-97.76	-97.76	PROPN
fuelectenerg-10413	176	13	-94.28	-94.28	PROPN
fuelectenerg-10413	176	14	-115.86	-115.86	PROPN
fuelectenerg-10413	176	15	-114.11	-114.11	PROPN
fuelectenerg-10413	176	16	-116.10	-116.10	PROPN
fuelectenerg-10413	176	17	-115.06	-115.06	PROPN
fuelectenerg-10413	176	18	fig	fig	NOUN
fuelectenerg-10413	176	19	.	.	PUNCT
fuelectenerg-10413	177	1	9	9	NUM
fuelectenerg-10413	177	2	layout	layout	NOUN
fuelectenerg-10413	177	3	of	of	ADP
fuelectenerg-10413	177	4	the	the	DET
fuelectenerg-10413	177	5	proposed	propose	VERB
fuelectenerg-10413	177	6	delay	delay	NOUN
fuelectenerg-10413	177	7	cell	cell	NOUN
fuelectenerg-10413	177	8	480	480	NUM
fuelectenerg-10413	177	9	m.	m.	NOUN
fuelectenerg-10413	177	10	gogoi	gogoi	PROPN
fuelectenerg-10413	177	11	,	,	PUNCT
fuelectenerg-10413	177	12	p.	p.	PROPN
fuelectenerg-10413	177	13	k.	k.	PROPN
fuelectenerg-10413	178	1	dutta	dutta	PROPN
fuelectenerg-10413	178	2	fig	fig	PROPN
fuelectenerg-10413	178	3	.	.	PUNCT
fuelectenerg-10413	179	1	10	10	NUM
fuelectenerg-10413	179	2	layout	layout	NOUN
fuelectenerg-10413	179	3	of	of	ADP
fuelectenerg-10413	179	4	the	the	DET
fuelectenerg-10413	179	5	4	4	NUM
fuelectenerg-10413	179	6	stage	stage	NOUN
fuelectenerg-10413	179	7	vco	vco	PROPN
fuelectenerg-10413	179	8	the	the	DET
fuelectenerg-10413	179	9	layout	layout	PROPN
fuelectenerg-10413	179	10	design	design	NOUN
fuelectenerg-10413	179	11	shown	show	VERB
fuelectenerg-10413	179	12	in	in	ADP
fuelectenerg-10413	179	13	fig	fig	NOUN
fuelectenerg-10413	179	14	.	.	PUNCT
fuelectenerg-10413	180	1	9	9	NUM
fuelectenerg-10413	180	2	and	and	CCONJ
fuelectenerg-10413	180	3	fig	fig	NOUN
fuelectenerg-10413	180	4	.	.	PUNCT
fuelectenerg-10413	181	1	10	10	NUM
fuelectenerg-10413	181	2	can	can	AUX
fuelectenerg-10413	181	3	further	far	ADV
fuelectenerg-10413	181	4	be	be	AUX
fuelectenerg-10413	181	5	optimized	optimize	VERB
fuelectenerg-10413	181	6	to	to	PART
fuelectenerg-10413	181	7	reduce	reduce	VERB
fuelectenerg-10413	181	8	the	the	DET
fuelectenerg-10413	181	9	area	area	NOUN
fuelectenerg-10413	181	10	significantly	significantly	ADV
fuelectenerg-10413	181	11	and	and	CCONJ
fuelectenerg-10413	181	12	get	get	VERB
fuelectenerg-10413	181	13	results	result	NOUN
fuelectenerg-10413	181	14	closer	close	ADJ
fuelectenerg-10413	181	15	to	to	ADP
fuelectenerg-10413	181	16	the	the	DET
fuelectenerg-10413	181	17	obtained	obtain	VERB
fuelectenerg-10413	181	18	in	in	ADP
fuelectenerg-10413	181	19	the	the	DET
fuelectenerg-10413	181	20	schematic	schematic	ADJ
fuelectenerg-10413	181	21	level	level	NOUN
fuelectenerg-10413	181	22	.	.	PUNCT
fuelectenerg-10413	182	1	one	one	NUM
fuelectenerg-10413	182	2	of	of	ADP
fuelectenerg-10413	182	3	the	the	DET
fuelectenerg-10413	182	4	main	main	ADJ
fuelectenerg-10413	182	5	advantages	advantage	NOUN
fuelectenerg-10413	182	6	of	of	ADP
fuelectenerg-10413	182	7	the	the	DET
fuelectenerg-10413	182	8	proposed	propose	VERB
fuelectenerg-10413	182	9	circuit	circuit	NOUN
fuelectenerg-10413	182	10	is	be	AUX
fuelectenerg-10413	182	11	that	that	SCONJ
fuelectenerg-10413	182	12	the	the	DET
fuelectenerg-10413	182	13	same	same	ADJ
fuelectenerg-10413	182	14	circuit	circuit	NOUN
fuelectenerg-10413	182	15	can	can	AUX
fuelectenerg-10413	182	16	be	be	AUX
fuelectenerg-10413	182	17	used	use	VERB
fuelectenerg-10413	182	18	for	for	ADP
fuelectenerg-10413	182	19	working	work	VERB
fuelectenerg-10413	182	20	in	in	ADP
fuelectenerg-10413	182	21	low	low	ADJ
fuelectenerg-10413	182	22	frequency	frequency	NOUN
fuelectenerg-10413	182	23	range	range	NOUN
fuelectenerg-10413	182	24	as	as	ADV
fuelectenerg-10413	182	25	well	well	ADV
fuelectenerg-10413	182	26	as	as	ADP
fuelectenerg-10413	182	27	high	high	ADJ
fuelectenerg-10413	182	28	frequency	frequency	NOUN
fuelectenerg-10413	182	29	range	range	NOUN
fuelectenerg-10413	182	30	by	by	ADP
fuelectenerg-10413	182	31	varying	vary	VERB
fuelectenerg-10413	182	32	the	the	DET
fuelectenerg-10413	182	33	control	control	NOUN
fuelectenerg-10413	182	34	voltages	voltage	NOUN
fuelectenerg-10413	182	35	.	.	PUNCT
fuelectenerg-10413	183	1	however	however	ADV
fuelectenerg-10413	183	2	,	,	PUNCT
fuelectenerg-10413	183	3	the	the	DET
fuelectenerg-10413	183	4	range	range	NOUN
fuelectenerg-10413	183	5	of	of	ADP
fuelectenerg-10413	183	6	operations	operation	NOUN
fuelectenerg-10413	183	7	in	in	ADP
fuelectenerg-10413	183	8	terms	term	NOUN
fuelectenerg-10413	183	9	of	of	ADP
fuelectenerg-10413	183	10	tuning	tune	VERB
fuelectenerg-10413	183	11	range	range	NOUN
fuelectenerg-10413	183	12	is	be	AUX
fuelectenerg-10413	183	13	comparatively	comparatively	ADV
fuelectenerg-10413	183	14	low	low	ADJ
fuelectenerg-10413	183	15	.	.	PUNCT
fuelectenerg-10413	184	1	additionally	additionally	ADV
fuelectenerg-10413	184	2	,	,	PUNCT
fuelectenerg-10413	184	3	there	there	PRON
fuelectenerg-10413	184	4	is	be	VERB
fuelectenerg-10413	184	5	lot	lot	NOUN
fuelectenerg-10413	184	6	of	of	ADP
fuelectenerg-10413	184	7	transistors	transistor	NOUN
fuelectenerg-10413	184	8	in	in	ADP
fuelectenerg-10413	184	9	the	the	DET
fuelectenerg-10413	184	10	delay	delay	NOUN
fuelectenerg-10413	184	11	circuit	circuit	NOUN
fuelectenerg-10413	184	12	which	which	PRON
fuelectenerg-10413	184	13	further	far	ADV
fuelectenerg-10413	184	14	raises	raise	VERB
fuelectenerg-10413	184	15	the	the	DET
fuelectenerg-10413	184	16	count	count	NOUN
fuelectenerg-10413	184	17	in	in	ADP
fuelectenerg-10413	184	18	the	the	DET
fuelectenerg-10413	184	19	oscillator	oscillator	NOUN
fuelectenerg-10413	184	20	even	even	ADV
fuelectenerg-10413	184	21	more	more	ADV
fuelectenerg-10413	184	22	.	.	PUNCT
fuelectenerg-10413	185	1	in	in	ADP
fuelectenerg-10413	185	2	the	the	DET
fuelectenerg-10413	185	3	realization	realization	NOUN
fuelectenerg-10413	185	4	column	column	NOUN
fuelectenerg-10413	185	5	of	of	ADP
fuelectenerg-10413	185	6	table	table	NOUN
fuelectenerg-10413	185	7	6	6	NUM
fuelectenerg-10413	185	8	it	it	PRON
fuelectenerg-10413	185	9	is	be	AUX
fuelectenerg-10413	185	10	highlighted	highlight	VERB
fuelectenerg-10413	185	11	that	that	SCONJ
fuelectenerg-10413	185	12	the	the	DET
fuelectenerg-10413	185	13	comparative	comparative	ADJ
fuelectenerg-10413	185	14	parameters	parameter	NOUN
fuelectenerg-10413	185	15	which	which	PRON
fuelectenerg-10413	185	16	are	be	AUX
fuelectenerg-10413	185	17	oscillation	oscillation	NOUN
fuelectenerg-10413	185	18	frequency	frequency	NOUN
fuelectenerg-10413	185	19	,	,	PUNCT
fuelectenerg-10413	185	20	consumption	consumption	NOUN
fuelectenerg-10413	185	21	of	of	ADP
fuelectenerg-10413	185	22	power	power	NOUN
fuelectenerg-10413	185	23	and	and	CCONJ
fuelectenerg-10413	185	24	phase	phase	NOUN
fuelectenerg-10413	185	25	noise	noise	NOUN
fuelectenerg-10413	185	26	values	value	NOUN
fuelectenerg-10413	185	27	are	be	AUX
fuelectenerg-10413	185	28	either	either	ADV
fuelectenerg-10413	185	29	measured	measure	VERB
fuelectenerg-10413	185	30	or	or	CCONJ
fuelectenerg-10413	185	31	simulated	simulate	VERB
fuelectenerg-10413	185	32	.	.	PUNCT
fuelectenerg-10413	186	1	in	in	ADP
fuelectenerg-10413	186	2	our	our	PRON
fuelectenerg-10413	186	3	case	case	NOUN
fuelectenerg-10413	186	4	post	post	ADJ
fuelectenerg-10413	186	5	-	-	ADJ
fuelectenerg-10413	186	6	layout	layout	ADJ
fuelectenerg-10413	186	7	values	value	NOUN
fuelectenerg-10413	186	8	are	be	AUX
fuelectenerg-10413	186	9	considered	consider	VERB
fuelectenerg-10413	186	10	.	.	PUNCT
fuelectenerg-10413	187	1	table	table	NOUN
fuelectenerg-10413	187	2	6	6	NUM
fuelectenerg-10413	187	3	comparison	comparison	NOUN
fuelectenerg-10413	187	4	parameters	parameter	NOUN
fuelectenerg-10413	187	5	references	reference	NOUN
fuelectenerg-10413	187	6	technology	technology	NOUN
fuelectenerg-10413	187	7	(	(	PUNCT
fuelectenerg-10413	187	8	nm	nm	NOUN
fuelectenerg-10413	187	9	)	)	PUNCT
fuelectenerg-10413	187	10	supply	supply	NOUN
fuelectenerg-10413	187	11	voltage	voltage	NOUN
fuelectenerg-10413	187	12	(	(	PUNCT
fuelectenerg-10413	187	13	v	v	NOUN
fuelectenerg-10413	187	14	)	)	PUNCT
fuelectenerg-10413	187	15	number	number	NOUN
fuelectenerg-10413	187	16	of	of	ADP
fuelectenerg-10413	187	17	stages	stage	NOUN
fuelectenerg-10413	187	18	(	(	PUNCT
fuelectenerg-10413	187	19	n	n	CCONJ
fuelectenerg-10413	187	20	)	)	PUNCT
fuelectenerg-10413	187	21	oscillation	oscillation	NOUN
fuelectenerg-10413	187	22	frequency	frequency	NOUN
fuelectenerg-10413	187	23	range	range	NOUN
fuelectenerg-10413	187	24	(	(	PUNCT
fuelectenerg-10413	187	25	ghz	ghz	NOUN
fuelectenerg-10413	187	26	)	)	PUNCT
fuelectenerg-10413	187	27	power	power	NOUN
fuelectenerg-10413	187	28	consumption	consumption	NOUN
fuelectenerg-10413	187	29	(	(	PUNCT
fuelectenerg-10413	187	30	mw	mw	NOUN
fuelectenerg-10413	187	31	)	)	PUNCT
fuelectenerg-10413	187	32	phase	phase	NOUN
fuelectenerg-10413	187	33	noise	noise	NOUN
fuelectenerg-10413	187	34	(	(	PUNCT
fuelectenerg-10413	187	35	dbc	dbc	PROPN
fuelectenerg-10413	187	36	/	/	SYM
fuelectenerg-10413	187	37	hz	hz	PROPN
fuelectenerg-10413	187	38	)	)	PUNCT
fuelectenerg-10413	187	39	fom	fom	NOUN
fuelectenerg-10413	187	40	dbc	dbc	PROPN
fuelectenerg-10413	187	41	/	/	SYM
fuelectenerg-10413	187	42	hz	hz	VERB
fuelectenerg-10413	187	43	realizatio	realizatio	NOUN
fuelectenerg-10413	187	44	n	n	PRON
fuelectenerg-10413	187	45	level	level	VERB
fuelectenerg-10413	187	46	11	11	NUM
fuelectenerg-10413	187	47	180	180	NUM
fuelectenerg-10413	187	48	1.8	1.8	NUM
fuelectenerg-10413	187	49	2	2	NUM
fuelectenerg-10413	187	50	2.5	2.5	NUM
fuelectenerg-10413	187	51	-	-	SYM
fuelectenerg-10413	187	52	5.2	5.2	NUM
fuelectenerg-10413	187	53	(	(	PUNCT
fuelectenerg-10413	187	54	74	74	NUM
fuelectenerg-10413	187	55	%	%	NOUN
fuelectenerg-10413	187	56	)	)	PUNCT
fuelectenerg-10413	187	57	17	17	NUM
fuelectenerg-10413	187	58	-90.1	-90.1	NOUN
fuelectenerg-10413	187	59	@	@	ADP
fuelectenerg-10413	188	1	1mhz	1mhz	NUM
fuelectenerg-10413	188	2	---measured	---measured	NUM
fuelectenerg-10413	188	3	16	16	NUM
fuelectenerg-10413	188	4	180	180	NUM
fuelectenerg-10413	188	5	1	1	NUM
fuelectenerg-10413	188	6	2	2	NUM
fuelectenerg-10413	188	7	0.473	0.473	NUM
fuelectenerg-10413	188	8	-	-	SYM
fuelectenerg-10413	188	9	7.54	7.54	NUM
fuelectenerg-10413	188	10	(	(	PUNCT
fuelectenerg-10413	188	11	93.72	93.72	NUM
fuelectenerg-10413	188	12	%	%	NOUN
fuelectenerg-10413	188	13	)	)	PUNCT
fuelectenerg-10413	188	14	7.41	7.41	NUM
fuelectenerg-10413	188	15	-107.1	-107.1	PROPN
fuelectenerg-10413	188	16	@	@	ADP
fuelectenerg-10413	188	17	10mhz	10mhz	PROPN
fuelectenerg-10413	188	18	-150.44	-150.44	PROPN
fuelectenerg-10413	188	19	simulated	simulate	VERB
fuelectenerg-10413	188	20	31	31	NUM
fuelectenerg-10413	188	21	180	180	NUM
fuelectenerg-10413	188	22	1.8	1.8	NUM
fuelectenerg-10413	188	23	4	4	NUM
fuelectenerg-10413	188	24	0.455	0.455	NUM
fuelectenerg-10413	188	25	to	to	ADP
fuelectenerg-10413	188	26	0.505	0.505	NUM
fuelectenerg-10413	188	27	0.00139	0.00139	NUM
fuelectenerg-10413	188	28	to	to	ADP
fuelectenerg-10413	188	29	0.00145	0.00145	NUM
fuelectenerg-10413	188	30	1.98	1.98	NUM
fuelectenerg-10413	188	31	(	(	PUNCT
fuelectenerg-10413	188	32	lower	low	ADJ
fuelectenerg-10413	188	33	band	band	NOUN
fuelectenerg-10413	188	34	)	)	PUNCT
fuelectenerg-10413	188	35	and	and	CCONJ
fuelectenerg-10413	188	36	9.7	9.7	NUM
fuelectenerg-10413	188	37	(	(	PUNCT
fuelectenerg-10413	188	38	upper	upper	ADJ
fuelectenerg-10413	188	39	band	band	NOUN
fuelectenerg-10413	188	40	)	)	PUNCT
fuelectenerg-10413	188	41	------simulated	------simulate	VERB
fuelectenerg-10413	188	42	12	12	NUM
fuelectenerg-10413	188	43	180	180	NUM
fuelectenerg-10413	188	44	1	1	NUM
fuelectenerg-10413	188	45	4	4	NUM
fuelectenerg-10413	188	46	0.479	0.479	NUM
fuelectenerg-10413	188	47	-	-	SYM
fuelectenerg-10413	188	48	4.09	4.09	NUM
fuelectenerg-10413	188	49	(	(	PUNCT
fuelectenerg-10413	188	50	88.28	88.28	NUM
fuelectenerg-10413	188	51	%	%	NOUN
fuelectenerg-10413	188	52	)	)	PUNCT
fuelectenerg-10413	188	53	10	10	NUM
fuelectenerg-10413	188	54	-93.3	-93.3	NOUN
fuelectenerg-10413	188	55	@	@	ADP
fuelectenerg-10413	188	56	1mhz	1mhz	NUM
fuelectenerg-10413	188	57	-154.4	-154.4	PROPN
fuelectenerg-10413	188	58	measured	measure	VERB
fuelectenerg-10413	188	59	18	18	NUM
fuelectenerg-10413	188	60	90	90	NUM
fuelectenerg-10413	188	61	1	1	NUM
fuelectenerg-10413	188	62	to	to	ADP
fuelectenerg-10413	188	63	3	3	NUM
fuelectenerg-10413	188	64	3	3	NUM
fuelectenerg-10413	188	65	1.379	1.379	NUM
fuelectenerg-10413	188	66	-	-	SYM
fuelectenerg-10413	188	67	1.970	1.970	NUM
fuelectenerg-10413	188	68	(	(	PUNCT
fuelectenerg-10413	188	69	30	30	NUM
fuelectenerg-10413	188	70	%	%	NOUN
fuelectenerg-10413	188	71	)	)	PUNCT
fuelectenerg-10413	188	72	0.650	0.650	NUM
fuelectenerg-10413	188	73	-	-	SYM
fuelectenerg-10413	188	74	2.584	2.584	NUM
fuelectenerg-10413	188	75	(	(	PUNCT
fuelectenerg-10413	188	76	74.84	74.84	NUM
fuelectenerg-10413	188	77	%	%	NOUN
fuelectenerg-10413	188	78	)	)	PUNCT
fuelectenerg-10413	188	79	0.556	0.556	NUM
fuelectenerg-10413	188	80	-	-	SYM
fuelectenerg-10413	188	81	2.584	2.584	NUM
fuelectenerg-10413	188	82	(	(	PUNCT
fuelectenerg-10413	188	83	78.48	78.48	NUM
fuelectenerg-10413	188	84	%	%	NOUN
fuelectenerg-10413	188	85	)	)	PUNCT
fuelectenerg-10413	188	86	0.129	0.129	NUM
fuelectenerg-10413	188	87	to	to	ADP
fuelectenerg-10413	188	88	5685	5685	NUM
fuelectenerg-10413	188	89	-89.779	-89.779	PUNCT
fuelectenerg-10413	188	90	@	@	ADP
fuelectenerg-10413	188	91	1mhz	1mhz	NUM
fuelectenerg-10413	188	92	-154.51	-154.51	PROPN
fuelectenerg-10413	188	93	simulated	simulate	VERB
fuelectenerg-10413	188	94	28	28	NUM
fuelectenerg-10413	188	95	65	65	NUM
fuelectenerg-10413	188	96	1.2	1.2	NUM
fuelectenerg-10413	188	97	30	30	NUM
fuelectenerg-10413	188	98	0.556	0.556	NUM
fuelectenerg-10413	188	99	0.72	0.72	NUM
fuelectenerg-10413	188	100	-101.7	-101.7	NOUN
fuelectenerg-10413	188	101	@	@	ADP
fuelectenerg-10413	188	102	1mhz	1mhz	NUM
fuelectenerg-10413	188	103	-158	-158	PROPN
fuelectenerg-10413	188	104	simulated	simulate	VERB
fuelectenerg-10413	188	105	15	15	NUM
fuelectenerg-10413	188	106	65	65	NUM
fuelectenerg-10413	188	107	1.8	1.8	NUM
fuelectenerg-10413	188	108	3	3	NUM
fuelectenerg-10413	188	109	0.470	0.470	NUM
fuelectenerg-10413	188	110	-	-	PUNCT
fuelectenerg-10413	188	111	0.964	0.964	NUM
fuelectenerg-10413	188	112	(	(	PUNCT
fuelectenerg-10413	188	113	51.24	51.24	NUM
fuelectenerg-10413	188	114	%	%	NOUN
fuelectenerg-10413	188	115	)	)	PUNCT
fuelectenerg-10413	188	116	4.1	4.1	NUM
fuelectenerg-10413	188	117	-116	-116	PROPN
fuelectenerg-10413	188	118	@1	@1	NOUN
fuelectenerg-10413	188	119	mhz	mhz	NOUN
fuelectenerg-10413	188	120	-169	-169	PROPN
fuelectenerg-10413	188	121	measured	measure	VERB
fuelectenerg-10413	188	122	29	29	NUM
fuelectenerg-10413	188	123	90	90	NUM
fuelectenerg-10413	188	124	1.2	1.2	NUM
fuelectenerg-10413	188	125	4	4	NUM
fuelectenerg-10413	188	126	9.21	9.21	NUM
fuelectenerg-10413	188	127	2.092	2.092	NUM
fuelectenerg-10413	188	128	-137.9	-137.9	NOUN
fuelectenerg-10413	188	129	@	@	ADP
fuelectenerg-10413	188	130	1mhz	1mhz	NUM
fuelectenerg-10413	188	131	---post	---post	NUM
fuelectenerg-10413	188	132	layout	layout	NOUN
fuelectenerg-10413	188	133	proposed	propose	VERB
fuelectenerg-10413	188	134	work	work	NOUN
fuelectenerg-10413	188	135	90	90	NUM
fuelectenerg-10413	188	136	1	1	NUM
fuelectenerg-10413	188	137	4	4	NUM
fuelectenerg-10413	188	138	0.048	0.048	NUM
fuelectenerg-10413	188	139	to	to	ADP
fuelectenerg-10413	188	140	0.57	0.57	NUM
fuelectenerg-10413	188	141	(	(	PUNCT
fuelectenerg-10413	188	142	91.57	91.57	NUM
fuelectenerg-10413	188	143	%	%	NOUN
fuelectenerg-10413	188	144	)	)	PUNCT
fuelectenerg-10413	188	145	and	and	CCONJ
fuelectenerg-10413	188	146	0.82	0.82	NUM
fuelectenerg-10413	188	147	to	to	ADP
fuelectenerg-10413	188	148	1.01	1.01	NUM
fuelectenerg-10413	188	149	(	(	PUNCT
fuelectenerg-10413	188	150	18.8	18.8	NUM
fuelectenerg-10413	188	151	%	%	NOUN
fuelectenerg-10413	188	152	)	)	PUNCT
fuelectenerg-10413	188	153	{	{	PUNCT
fuelectenerg-10413	188	154	distributed	distribute	VERB
fuelectenerg-10413	188	155	band	band	NOUN
fuelectenerg-10413	188	156	}	}	PUNCT
fuelectenerg-10413	188	157	0.151	0.151	NUM
fuelectenerg-10413	188	158	(	(	PUNCT
fuelectenerg-10413	188	159	lower	low	ADJ
fuelectenerg-10413	188	160	band	band	NOUN
fuelectenerg-10413	188	161	)	)	PUNCT
fuelectenerg-10413	188	162	and	and	CCONJ
fuelectenerg-10413	188	163	0.157	0.157	NUM
fuelectenerg-10413	188	164	(	(	PUNCT
fuelectenerg-10413	188	165	upper	upper	ADJ
fuelectenerg-10413	188	166	band	band	NOUN
fuelectenerg-10413	188	167	)	)	PUNCT
fuelectenerg-10413	189	1	-152.40	-152.40	PROPN
fuelectenerg-10413	189	2	and	and	CCONJ
fuelectenerg-10413	189	3	-160.64	-160.64	PROPN
fuelectenerg-10413	189	4	post	post	PROPN
fuelectenerg-10413	189	5	layout	layout	NOUN
fuelectenerg-10413	189	6	design	design	NOUN
fuelectenerg-10413	189	7	of	of	ADP
fuelectenerg-10413	189	8	a	a	DET
fuelectenerg-10413	189	9	four	four	NUM
fuelectenerg-10413	189	10	stages	stage	NOUN
fuelectenerg-10413	189	11	vco	vco	NOUN
fuelectenerg-10413	189	12	using	use	VERB
fuelectenerg-10413	189	13	a	a	DET
fuelectenerg-10413	189	14	novel	novel	ADJ
fuelectenerg-10413	189	15	delay	delay	NOUN
fuelectenerg-10413	189	16	circuit	circuit	NOUN
fuelectenerg-10413	189	17	for	for	ADP
fuelectenerg-10413	189	18	operation	operation	NOUN
fuelectenerg-10413	189	19	in	in	ADP
fuelectenerg-10413	189	20	distributed	distribute	VERB
fuelectenerg-10413	189	21	band	band	NOUN
fuelectenerg-10413	189	22	frequencies	frequency	NOUN
fuelectenerg-10413	189	23	481	481	NUM
fuelectenerg-10413	189	24	5	5	NUM
fuelectenerg-10413	189	25	.	.	PUNCT
fuelectenerg-10413	190	1	conclusion	conclusion	VERB
fuelectenerg-10413	190	2	a	a	DET
fuelectenerg-10413	190	3	four	four	NUM
fuelectenerg-10413	190	4	-	-	PUNCT
fuelectenerg-10413	190	5	stage	stage	NOUN
fuelectenerg-10413	190	6	vco	vco	NOUN
fuelectenerg-10413	190	7	is	be	AUX
fuelectenerg-10413	190	8	designed	design	VERB
fuelectenerg-10413	190	9	using	use	VERB
fuelectenerg-10413	190	10	a	a	DET
fuelectenerg-10413	190	11	novel	novel	ADJ
fuelectenerg-10413	190	12	differential	differential	NOUN
fuelectenerg-10413	190	13	delay	delay	NOUN
fuelectenerg-10413	190	14	circuit	circuit	NOUN
fuelectenerg-10413	190	15	.	.	PUNCT
fuelectenerg-10413	191	1	the	the	DET
fuelectenerg-10413	191	2	vco	vco	PROPN
fuelectenerg-10413	191	3	is	be	AUX
fuelectenerg-10413	191	4	found	find	VERB
fuelectenerg-10413	191	5	to	to	PART
fuelectenerg-10413	191	6	be	be	AUX
fuelectenerg-10413	191	7	operated	operate	VERB
fuelectenerg-10413	191	8	in	in	ADP
fuelectenerg-10413	191	9	two	two	NUM
fuelectenerg-10413	191	10	distributed	distribute	VERB
fuelectenerg-10413	191	11	band	band	NOUN
fuelectenerg-10413	191	12	of	of	ADP
fuelectenerg-10413	191	13	frequencies	frequency	NOUN
fuelectenerg-10413	191	14	namely	namely	ADV
fuelectenerg-10413	191	15	lower	low	ADJ
fuelectenerg-10413	191	16	and	and	CCONJ
fuelectenerg-10413	191	17	upper	upper	ADJ
fuelectenerg-10413	191	18	which	which	PRON
fuelectenerg-10413	191	19	is	be	AUX
fuelectenerg-10413	191	20	one	one	NUM
fuelectenerg-10413	191	21	of	of	ADP
fuelectenerg-10413	191	22	its	its	PRON
fuelectenerg-10413	191	23	main	main	ADJ
fuelectenerg-10413	191	24	advantages	advantage	NOUN
fuelectenerg-10413	191	25	.	.	PUNCT
fuelectenerg-10413	192	1	pre	pre	PROPN
fuelectenerg-10413	193	1	layout	layout	PROPN
fuelectenerg-10413	193	2	simulation	simulation	PROPN
fuelectenerg-10413	193	3	result	result	NOUN
fuelectenerg-10413	193	4	shows	show	VERB
fuelectenerg-10413	193	5	operating	operating	NOUN
fuelectenerg-10413	193	6	frequency	frequency	NOUN
fuelectenerg-10413	193	7	bands	band	NOUN
fuelectenerg-10413	193	8	are	be	AUX
fuelectenerg-10413	193	9	55	55	NUM
fuelectenerg-10413	193	10	mhz	mhz	NOUN
fuelectenerg-10413	193	11	to	to	ADP
fuelectenerg-10413	193	12	606	606	NUM
fuelectenerg-10413	193	13	mhz	mhz	ADJ
fuelectenerg-10413	193	14	(	(	PUNCT
fuelectenerg-10413	193	15	lower	low	ADJ
fuelectenerg-10413	193	16	)	)	PUNCT
fuelectenerg-10413	193	17	at	at	ADP
fuelectenerg-10413	193	18	normal	normal	ADJ
fuelectenerg-10413	193	19	temperature	temperature	NOUN
fuelectenerg-10413	193	20	when	when	SCONJ
fuelectenerg-10413	193	21	one	one	NUM
fuelectenerg-10413	193	22	of	of	ADP
fuelectenerg-10413	193	23	the	the	DET
fuelectenerg-10413	193	24	control	control	NOUN
fuelectenerg-10413	193	25	voltages	voltage	NOUN
fuelectenerg-10413	193	26	vcntr1	vcntr1	ADV
fuelectenerg-10413	193	27	is	be	AUX
fuelectenerg-10413	193	28	maintained	maintain	VERB
fuelectenerg-10413	193	29	at	at	ADP
fuelectenerg-10413	193	30	0.77v	0.77v	PROPN
fuelectenerg-10413	193	31	while	while	SCONJ
fuelectenerg-10413	193	32	the	the	DET
fuelectenerg-10413	193	33	other	other	ADJ
fuelectenerg-10413	193	34	one	one	NUM
fuelectenerg-10413	193	35	vcntr2	vcntr2	NOUN
fuelectenerg-10413	193	36	varied	varied	ADJ
fuelectenerg-10413	193	37	from	from	ADP
fuelectenerg-10413	193	38	0v	0v	NOUN
fuelectenerg-10413	193	39	to	to	ADP
fuelectenerg-10413	193	40	1v	1v	NUM
fuelectenerg-10413	193	41	.	.	PUNCT
fuelectenerg-10413	194	1	phase	phase	NOUN
fuelectenerg-10413	194	2	noise	noise	NOUN
fuelectenerg-10413	194	3	at	at	ADP
fuelectenerg-10413	194	4	1mhz	1mhz	NUM
fuelectenerg-10413	194	5	and	and	CCONJ
fuelectenerg-10413	194	6	10	10	NUM
fuelectenerg-10413	194	7	mhz	mhz	ADJ
fuelectenerg-10413	194	8	offset	offset	NOUN
fuelectenerg-10413	194	9	are	be	AUX
fuelectenerg-10413	194	10	found	find	VERB
fuelectenerg-10413	194	11	to	to	PART
fuelectenerg-10413	194	12	be	be	AUX
fuelectenerg-10413	194	13	92.07	92.07	NUM
fuelectenerg-10413	194	14	dbc	dbc	X
fuelectenerg-10413	194	15	/	/	SYM
fuelectenerg-10413	194	16	hz	hz	X
fuelectenerg-10413	194	17	and	and	CCONJ
fuelectenerg-10413	194	18	-111.25	-111.25	PROPN
fuelectenerg-10413	194	19	dbc	dbc	PROPN
fuelectenerg-10413	194	20	/	/	SYM
fuelectenerg-10413	194	21	hz	hz	VERB
fuelectenerg-10413	194	22	at	at	ADP
fuelectenerg-10413	194	23	lower	low	ADJ
fuelectenerg-10413	194	24	frequency	frequency	NOUN
fuelectenerg-10413	194	25	band	band	NOUN
fuelectenerg-10413	194	26	.	.	PUNCT
fuelectenerg-10413	195	1	the	the	DET
fuelectenerg-10413	195	2	vco	vco	PROPN
fuelectenerg-10413	195	3	operates	operate	VERB
fuelectenerg-10413	195	4	in	in	ADP
fuelectenerg-10413	195	5	857	857	NUM
fuelectenerg-10413	195	6	mhz	mhz	NOUN
fuelectenerg-10413	195	7	to	to	ADP
fuelectenerg-10413	195	8	1049	1049	NUM
fuelectenerg-10413	195	9	mhz	mhz	NOUN
fuelectenerg-10413	195	10	(	(	PUNCT
fuelectenerg-10413	195	11	upper	upper	ADJ
fuelectenerg-10413	195	12	)	)	PUNCT
fuelectenerg-10413	195	13	when	when	SCONJ
fuelectenerg-10413	195	14	vcntr1	vcntr1	PROPN
fuelectenerg-10413	195	15	is	be	AUX
fuelectenerg-10413	195	16	0.2v	0.2v	NUM
fuelectenerg-10413	195	17	and	and	CCONJ
fuelectenerg-10413	195	18	vcntr2	vcntr2	NOUN
fuelectenerg-10413	195	19	varied	varied	ADJ
fuelectenerg-10413	195	20	from	from	ADP
fuelectenerg-10413	195	21	0v	0v	NOUN
fuelectenerg-10413	195	22	to	to	ADP
fuelectenerg-10413	195	23	1v	1v	NUM
fuelectenerg-10413	195	24	.	.	PUNCT
fuelectenerg-10413	196	1	in	in	ADP
fuelectenerg-10413	196	2	this	this	DET
fuelectenerg-10413	196	3	band	band	NOUN
fuelectenerg-10413	196	4	the	the	DET
fuelectenerg-10413	196	5	phase	phase	NOUN
fuelectenerg-10413	196	6	noise	noise	NOUN
fuelectenerg-10413	196	7	at	at	ADP
fuelectenerg-10413	196	8	1mhz	1mhz	NUM
fuelectenerg-10413	196	9	and	and	CCONJ
fuelectenerg-10413	196	10	10	10	NUM
fuelectenerg-10413	196	11	mhz	mhz	NOUN
fuelectenerg-10413	196	12	offset	offset	NOUN
fuelectenerg-10413	196	13	are	be	AUX
fuelectenerg-10413	196	14	-93.50	-93.50	PROPN
fuelectenerg-10413	196	15	dbc	dbc	PROPN
fuelectenerg-10413	196	16	/	/	SYM
fuelectenerg-10413	196	17	hz	hz	X
fuelectenerg-10413	196	18	and	and	CCONJ
fuelectenerg-10413	196	19	-113.93	-113.93	PROPN
fuelectenerg-10413	196	20	dbc	dbc	PROPN
fuelectenerg-10413	196	21	/	/	SYM
fuelectenerg-10413	196	22	hz	hz	PROPN
fuelectenerg-10413	196	23	.	.	PUNCT
fuelectenerg-10413	197	1	pre	pre	PROPN
fuelectenerg-10413	197	2	layout	layout	PROPN
fuelectenerg-10413	197	3	power	power	NOUN
fuelectenerg-10413	197	4	consumption	consumption	NOUN
fuelectenerg-10413	197	5	of	of	ADP
fuelectenerg-10413	197	6	the	the	DET
fuelectenerg-10413	197	7	vco	vco	PROPN
fuelectenerg-10413	197	8	at	at	ADP
fuelectenerg-10413	197	9	270	270	NUM
fuelectenerg-10413	197	10	is	be	AUX
fuelectenerg-10413	197	11	found	find	VERB
fuelectenerg-10413	197	12	to	to	PART
fuelectenerg-10413	197	13	be	be	AUX
fuelectenerg-10413	197	14	151µw	151µw	ADJ
fuelectenerg-10413	197	15	and	and	CCONJ
fuelectenerg-10413	197	16	157µw	157µw	NOUN
fuelectenerg-10413	197	17	for	for	ADP
fuelectenerg-10413	197	18	the	the	DET
fuelectenerg-10413	197	19	operating	operate	VERB
fuelectenerg-10413	197	20	frequencies	frequency	NOUN
fuelectenerg-10413	197	21	of	of	ADP
fuelectenerg-10413	197	22	606	606	NUM
fuelectenerg-10413	197	23	mhz	mhz	NOUN
fuelectenerg-10413	197	24	and	and	CCONJ
fuelectenerg-10413	197	25	1049	1049	NUM
fuelectenerg-10413	197	26	mhz	mhz	NOUN
fuelectenerg-10413	197	27	respectively	respectively	ADV
fuelectenerg-10413	197	28	.	.	PUNCT
fuelectenerg-10413	198	1	references	reference	NOUN
fuelectenerg-10413	198	2	[	[	X
fuelectenerg-10413	198	3	1	1	X
fuelectenerg-10413	198	4	]	]	PUNCT
fuelectenerg-10413	198	5	t.	t.	PROPN
fuelectenerg-10413	198	6	miyazaki	miyazaki	PROPN
fuelectenerg-10413	198	7	,	,	PUNCT
fuelectenerg-10413	198	8	m.	m.	NOUN
fuelectenerg-10413	198	9	hashimoto	hashimoto	NOUN
fuelectenerg-10413	198	10	and	and	CCONJ
fuelectenerg-10413	198	11	h.	h.	PROPN
fuelectenerg-10413	198	12	onodera	onodera	PROPN
fuelectenerg-10413	198	13	,	,	PUNCT
fuelectenerg-10413	198	14	"	"	PUNCT
fuelectenerg-10413	198	15	a	a	DET
fuelectenerg-10413	198	16	performance	performance	NOUN
fuelectenerg-10413	198	17	comparison	comparison	NOUN
fuelectenerg-10413	198	18	of	of	ADP
fuelectenerg-10413	198	19	plls	pll	NOUN
fuelectenerg-10413	198	20	for	for	ADP
fuelectenerg-10413	198	21	clock	clock	NOUN
fuelectenerg-10413	198	22	generation	generation	NOUN
fuelectenerg-10413	198	23	using	use	VERB
fuelectenerg-10413	198	24	ring	ring	NOUN
fuelectenerg-10413	198	25	oscillator	oscillator	NOUN
fuelectenerg-10413	198	26	vco	vco	PROPN
fuelectenerg-10413	198	27	and	and	CCONJ
fuelectenerg-10413	198	28	lc	lc	PROPN
fuelectenerg-10413	198	29	oscillator	oscillator	NOUN
fuelectenerg-10413	198	30	in	in	ADP
fuelectenerg-10413	198	31	a	a	DET
fuelectenerg-10413	198	32	digital	digital	ADJ
fuelectenerg-10413	198	33	cmos	cmos	NOUN
fuelectenerg-10413	198	34	process	process	NOUN
fuelectenerg-10413	198	35	"	"	PUNCT
fuelectenerg-10413	198	36	,	,	PUNCT
fuelectenerg-10413	198	37	in	in	ADP
fuelectenerg-10413	198	38	proceedings	proceeding	NOUN
fuelectenerg-10413	198	39	of	of	ADP
fuelectenerg-10413	198	40	asia	asia	PROPN
fuelectenerg-10413	198	41	and	and	CCONJ
fuelectenerg-10413	198	42	south	south	PROPN
fuelectenerg-10413	198	43	pacific	pacific	PROPN
fuelectenerg-10413	198	44	design	design	PROPN
fuelectenerg-10413	198	45	automation	automation	NOUN
fuelectenerg-10413	198	46	conference	conference	NOUN
fuelectenerg-10413	198	47	(	(	PUNCT
fuelectenerg-10413	198	48	aspdac	aspdac	PROPN
fuelectenerg-10413	198	49	)	)	PUNCT
fuelectenerg-10413	198	50	,	,	PUNCT
fuelectenerg-10413	198	51	2004	2004	NUM
fuelectenerg-10413	198	52	,	,	PUNCT
fuelectenerg-10413	198	53	pp	pp	ADJ
fuelectenerg-10413	198	54	.	.	PUNCT
fuelectenerg-10413	199	1	545	545	NUM
fuelectenerg-10413	199	2	-	-	SYM
fuelectenerg-10413	199	3	546	546	NUM
fuelectenerg-10413	199	4	.	.	PUNCT
fuelectenerg-10413	200	1	[	[	X
fuelectenerg-10413	200	2	2	2	X
fuelectenerg-10413	200	3	]	]	PUNCT
fuelectenerg-10413	200	4	h.	h.	NOUN
fuelectenerg-10413	200	5	ghonoodi	ghonoodi	PROPN
fuelectenerg-10413	200	6	,	,	PUNCT
fuelectenerg-10413	200	7	h.	h.	PROPN
fuelectenerg-10413	200	8	miar	miar	PROPN
fuelectenerg-10413	200	9	-	-	PUNCT
fuelectenerg-10413	200	10	naimi	naimi	NOUN
fuelectenerg-10413	200	11	and	and	CCONJ
fuelectenerg-10413	200	12	m.	m.	NOUN
fuelectenerg-10413	200	13	gholami	gholami	PROPN
fuelectenerg-10413	200	14	,	,	PUNCT
fuelectenerg-10413	200	15	"	"	PUNCT
fuelectenerg-10413	200	16	analysis	analysis	NOUN
fuelectenerg-10413	200	17	of	of	ADP
fuelectenerg-10413	200	18	frequency	frequency	NOUN
fuelectenerg-10413	200	19	and	and	CCONJ
fuelectenerg-10413	200	20	amplitude	amplitude	NOUN
fuelectenerg-10413	200	21	in	in	ADP
fuelectenerg-10413	200	22	cmos	cmos	PROPN
fuelectenerg-10413	200	23	differential	differential	NOUN
fuelectenerg-10413	200	24	ring	ring	NOUN
fuelectenerg-10413	200	25	oscillators	oscillator	NOUN
fuelectenerg-10413	200	26	"	"	PUNCT
fuelectenerg-10413	200	27	,	,	PUNCT
fuelectenerg-10413	200	28	integration	integration	NOUN
fuelectenerg-10413	200	29	,	,	PUNCT
fuelectenerg-10413	200	30	vol.52	vol.52	NOUN
fuelectenerg-10413	200	31	,	,	PUNCT
fuelectenerg-10413	200	32	pp.253	pp.253	X
fuelectenerg-10413	200	33	-	-	PUNCT
fuelectenerg-10413	200	34	259	259	NUM
fuelectenerg-10413	200	35	,	,	PUNCT
fuelectenerg-10413	200	36	january	january	PROPN
fuelectenerg-10413	200	37	2016	2016	NUM
fuelectenerg-10413	200	38	.	.	PUNCT
fuelectenerg-10413	201	1	[	[	X
fuelectenerg-10413	201	2	3	3	X
fuelectenerg-10413	201	3	]	]	X
fuelectenerg-10413	201	4	m.	m.	NOUN
fuelectenerg-10413	201	5	gogoi	gogoi	NOUN
fuelectenerg-10413	201	6	,	,	PUNCT
fuelectenerg-10413	201	7	and	and	CCONJ
fuelectenerg-10413	201	8	p.	p.	PROPN
fuelectenerg-10413	201	9	k.	k.	PROPN
fuelectenerg-10413	202	1	dutta	dutta	PROPN
fuelectenerg-10413	202	2	,	,	PUNCT
fuelectenerg-10413	202	3	"	"	PUNCT
fuelectenerg-10413	202	4	review	review	NOUN
fuelectenerg-10413	202	5	and	and	CCONJ
fuelectenerg-10413	202	6	analysis	analysis	NOUN
fuelectenerg-10413	202	7	of	of	ADP
fuelectenerg-10413	202	8	charge	charge	NOUN
fuelectenerg-10413	202	9	-	-	PUNCT
fuelectenerg-10413	202	10	pump	pump	NOUN
fuelectenerg-10413	202	11	phase	phase	NOUN
fuelectenerg-10413	202	12	-	-	PUNCT
fuelectenerg-10413	202	13	locked	lock	VERB
fuelectenerg-10413	202	14	loop	loop	NOUN
fuelectenerg-10413	202	15	"	"	PUNCT
fuelectenerg-10413	202	16	,	,	PUNCT
fuelectenerg-10413	202	17	in	in	ADP
fuelectenerg-10413	202	18	proceedings	proceeding	NOUN
fuelectenerg-10413	202	19	of	of	ADP
fuelectenerg-10413	202	20	1st	1st	ADJ
fuelectenerg-10413	202	21	international	international	ADJ
fuelectenerg-10413	202	22	conference	conference	NOUN
fuelectenerg-10413	202	23	on	on	ADP
fuelectenerg-10413	202	24	electronics	electronics	NOUN
fuelectenerg-10413	202	25	systems	system	NOUN
fuelectenerg-10413	202	26	and	and	CCONJ
fuelectenerg-10413	202	27	intelligent	intelligent	ADJ
fuelectenerg-10413	202	28	computing	computing	NOUN
fuelectenerg-10413	202	29	(	(	PUNCT
fuelectenerg-10413	202	30	esic	esic	ADJ
fuelectenerg-10413	202	31	)	)	PUNCT
fuelectenerg-10413	202	32	,	,	PUNCT
fuelectenerg-10413	202	33	2020	2020	NUM
fuelectenerg-10413	202	34	,	,	PUNCT
fuelectenerg-10413	202	35	pp	pp	ADJ
fuelectenerg-10413	202	36	.	.	PUNCT
fuelectenerg-10413	203	1	565	565	NUM
fuelectenerg-10413	203	2	-	-	SYM
fuelectenerg-10413	203	3	574	574	NUM
fuelectenerg-10413	203	4	.	.	PUNCT
fuelectenerg-10413	204	1	[	[	X
fuelectenerg-10413	204	2	4	4	X
fuelectenerg-10413	204	3	]	]	PUNCT
fuelectenerg-10413	204	4	j.	j.	PROPN
fuelectenerg-10413	204	5	johnson	johnson	PROPN
fuelectenerg-10413	204	6	,	,	PUNCT
fuelectenerg-10413	204	7	m.	m.	NOUN
fuelectenerg-10413	204	8	ponnambalam	ponnambalam	PROPN
fuelectenerg-10413	204	9	and	and	CCONJ
fuelectenerg-10413	204	10	p.	p.	NOUN
fuelectenerg-10413	204	11	v.	v.	X
fuelectenerg-10413	204	12	chandramani	chandramani	PROPN
fuelectenerg-10413	204	13	,	,	PUNCT
fuelectenerg-10413	204	14	"	"	PUNCT
fuelectenerg-10413	204	15	comparison	comparison	NOUN
fuelectenerg-10413	204	16	of	of	ADP
fuelectenerg-10413	204	17	tenability	tenability	NOUN
fuelectenerg-10413	204	18	and	and	CCONJ
fuelectenerg-10413	204	19	phase	phase	NOUN
fuelectenerg-10413	204	20	noise	noise	NOUN
fuelectenerg-10413	204	21	associated	associate	VERB
fuelectenerg-10413	204	22	with	with	ADP
fuelectenerg-10413	204	23	injection	injection	NOUN
fuelectenerg-10413	204	24	locked	lock	VERB
fuelectenerg-10413	204	25	three	three	NUM
fuelectenerg-10413	204	26	staged	stage	VERB
fuelectenerg-10413	204	27	single	single	ADJ
fuelectenerg-10413	204	28	and	and	CCONJ
fuelectenerg-10413	204	29	differential	differential	ADJ
fuelectenerg-10413	204	30	ended	end	VERB
fuelectenerg-10413	204	31	vcos	vco	NOUN
fuelectenerg-10413	204	32	in	in	ADP
fuelectenerg-10413	204	33	90	90	NUM
fuelectenerg-10413	204	34	nm	nm	PROPN
fuelectenerg-10413	204	35	cmos	cmos	NOUN
fuelectenerg-10413	204	36	"	"	PUNCT
fuelectenerg-10413	204	37	,	,	PUNCT
fuelectenerg-10413	204	38	in	in	ADP
fuelectenerg-10413	204	39	proceedings	proceeding	NOUN
fuelectenerg-10413	204	40	of	of	ADP
fuelectenerg-10413	204	41	4th	4th	ADJ
fuelectenerg-10413	204	42	international	international	ADJ
fuelectenerg-10413	204	43	conference	conference	NOUN
fuelectenerg-10413	204	44	on	on	ADP
fuelectenerg-10413	204	45	signal	signal	ADJ
fuelectenerg-10413	204	46	processing	processing	NOUN
fuelectenerg-10413	204	47	,	,	PUNCT
fuelectenerg-10413	204	48	communication	communication	NOUN
fuelectenerg-10413	204	49	and	and	CCONJ
fuelectenerg-10413	204	50	networking	networking	NOUN
fuelectenerg-10413	204	51	,	,	PUNCT
fuelectenerg-10413	204	52	2017	2017	NUM
fuelectenerg-10413	204	53	,	,	PUNCT
fuelectenerg-10413	204	54	pp	pp	ADJ
fuelectenerg-10413	204	55	.	.	PUNCT
fuelectenerg-10413	205	1	1	1	NUM
fuelectenerg-10413	205	2	-	-	SYM
fuelectenerg-10413	205	3	4	4	NUM
fuelectenerg-10413	205	4	.	.	PUNCT
fuelectenerg-10413	206	1	[	[	X
fuelectenerg-10413	206	2	5	5	X
fuelectenerg-10413	206	3	]	]	PUNCT
fuelectenerg-10413	206	4	w.	w.	PROPN
fuelectenerg-10413	206	5	t.	t.	PROPN
fuelectenerg-10413	206	6	lee	lee	PROPN
fuelectenerg-10413	206	7	,	,	PUNCT
fuelectenerg-10413	206	8	j.	j.	PROPN
fuelectenerg-10413	206	9	shimand	shimand	PROPN
fuelectenerg-10413	206	10	and	and	CCONJ
fuelectenerg-10413	206	11	j.	j.	PROPN
fuelectenerg-10413	206	12	jeong	jeong	PROPN
fuelectenerg-10413	206	13	,	,	PUNCT
fuelectenerg-10413	206	14	"	"	PUNCT
fuelectenerg-10413	206	15	design	design	NOUN
fuelectenerg-10413	206	16	of	of	ADP
fuelectenerg-10413	206	17	a	a	DET
fuelectenerg-10413	206	18	three	three	NUM
fuelectenerg-10413	206	19	-	-	PUNCT
fuelectenerg-10413	206	20	stage	stage	NOUN
fuelectenerg-10413	206	21	ring	ring	NOUN
fuelectenerg-10413	206	22	-	-	PUNCT
fuelectenerg-10413	206	23	type	type	NOUN
fuelectenerg-10413	206	24	voltage	voltage	NOUN
fuelectenerg-10413	206	25	controlled	control	VERB
fuelectenerg-10413	206	26	oscillator	oscillator	NOUN
fuelectenerg-10413	206	27	with	with	ADP
fuelectenerg-10413	206	28	a	a	DET
fuelectenerg-10413	206	29	wide	wide	ADJ
fuelectenerg-10413	206	30	tuning	tuning	NOUN
fuelectenerg-10413	206	31	range	range	NOUN
fuelectenerg-10413	206	32	by	by	ADP
fuelectenerg-10413	206	33	controlling	control	VERB
fuelectenerg-10413	206	34	the	the	DET
fuelectenerg-10413	206	35	current	current	ADJ
fuelectenerg-10413	206	36	level	level	NOUN
fuelectenerg-10413	206	37	in	in	ADP
fuelectenerg-10413	206	38	an	an	DET
fuelectenerg-10413	206	39	embedded	embed	VERB
fuelectenerg-10413	206	40	delay	delay	NOUN
fuelectenerg-10413	206	41	cell	cell	NOUN
fuelectenerg-10413	206	42	"	"	PUNCT
fuelectenerg-10413	206	43	,	,	PUNCT
fuelectenerg-10413	206	44	microelectronics	microelectronics	PROPN
fuelectenerg-10413	206	45	j.	j.	PROPN
fuelectenerg-10413	206	46	,	,	PUNCT
fuelectenerg-10413	206	47	vol	vol	NOUN
fuelectenerg-10413	206	48	.	.	PROPN
fuelectenerg-10413	206	49	44	44	NUM
fuelectenerg-10413	206	50	,	,	PUNCT
fuelectenerg-10413	206	51	pp	pp	ADJ
fuelectenerg-10413	206	52	.	.	PUNCT
fuelectenerg-10413	207	1	1328	1328	NUM
fuelectenerg-10413	207	2	-	-	SYM
fuelectenerg-10413	207	3	1335	1335	NUM
fuelectenerg-10413	207	4	,	,	PUNCT
fuelectenerg-10413	207	5	dec	dec	PROPN
fuelectenerg-10413	207	6	.	.	PROPN
fuelectenerg-10413	207	7	2013	2013	NUM
fuelectenerg-10413	207	8	.	.	PUNCT
fuelectenerg-10413	208	1	[	[	X
fuelectenerg-10413	208	2	6	6	NUM
fuelectenerg-10413	208	3	]	]	PUNCT
fuelectenerg-10413	208	4	s.	s.	PROPN
fuelectenerg-10413	208	5	salem	salem	PROPN
fuelectenerg-10413	208	6	,	,	PUNCT
fuelectenerg-10413	208	7	m.	m.	NOUN
fuelectenerg-10413	208	8	tajabadiand	tajabadiand	NOUN
fuelectenerg-10413	208	9	and	and	CCONJ
fuelectenerg-10413	208	10	m.	m.	NOUN
fuelectenerg-10413	208	11	saneei	saneei	PROPN
fuelectenerg-10413	208	12	,	,	PUNCT
fuelectenerg-10413	208	13	"	"	PUNCT
fuelectenerg-10413	208	14	the	the	DET
fuelectenerg-10413	208	15	design	design	NOUN
fuelectenerg-10413	208	16	and	and	CCONJ
fuelectenerg-10413	208	17	analysis	analysis	NOUN
fuelectenerg-10413	208	18	of	of	ADP
fuelectenerg-10413	208	19	dual	dual	ADJ
fuelectenerg-10413	208	20	control	control	NOUN
fuelectenerg-10413	208	21	voltages	voltage	NOUN
fuelectenerg-10413	208	22	delay	delay	VERB
fuelectenerg-10413	208	23	cell	cell	NOUN
fuelectenerg-10413	208	24	for	for	ADP
fuelectenerg-10413	208	25	low	low	ADJ
fuelectenerg-10413	208	26	power	power	NOUN
fuelectenerg-10413	208	27	and	and	CCONJ
fuelectenerg-10413	208	28	wide	wide	ADJ
fuelectenerg-10413	208	29	tuning	tuning	NOUN
fuelectenerg-10413	208	30	range	range	NOUN
fuelectenerg-10413	208	31	ring	ring	NOUN
fuelectenerg-10413	208	32	oscillators	oscillator	NOUN
fuelectenerg-10413	208	33	in	in	ADP
fuelectenerg-10413	208	34	65	65	NUM
fuelectenerg-10413	208	35	nm	nm	PROPN
fuelectenerg-10413	208	36	cmos	cmos	NOUN
fuelectenerg-10413	208	37	technology	technology	NOUN
fuelectenerg-10413	208	38	for	for	ADP
fuelectenerg-10413	208	39	cdr	cdr	PROPN
fuelectenerg-10413	208	40	applications	application	NOUN
fuelectenerg-10413	208	41	"	"	PUNCT
fuelectenerg-10413	208	42	,	,	PUNCT
fuelectenerg-10413	208	43	aeu	aeu	DET
fuelectenerg-10413	208	44	international	international	ADJ
fuelectenerg-10413	208	45	journal	journal	NOUN
fuelectenerg-10413	208	46	electronics	electronic	NOUN
fuelectenerg-10413	208	47	communication	communication	NOUN
fuelectenerg-10413	208	48	,	,	PUNCT
fuelectenerg-10413	208	49	vol	vol	NOUN
fuelectenerg-10413	208	50	.	.	PROPN
fuelectenerg-10413	208	51	82	82	NUM
fuelectenerg-10413	208	52	,	,	PUNCT
fuelectenerg-10413	208	53	pp	pp	ADJ
fuelectenerg-10413	208	54	.	.	PUNCT
fuelectenerg-10413	209	1	406	406	NUM
fuelectenerg-10413	209	2	-	-	SYM
fuelectenerg-10413	209	3	412	412	NUM
fuelectenerg-10413	209	4	,	,	PUNCT
fuelectenerg-10413	209	5	dec	dec	PROPN
fuelectenerg-10413	209	6	.	.	PROPN
fuelectenerg-10413	209	7	2017	2017	NUM
fuelectenerg-10413	209	8	.	.	PUNCT
fuelectenerg-10413	210	1	[	[	X
fuelectenerg-10413	210	2	7	7	X
fuelectenerg-10413	210	3	]	]	X
fuelectenerg-10413	210	4	v.	v.	ADP
fuelectenerg-10413	210	5	muddi	muddi	NOUN
fuelectenerg-10413	210	6	,	,	PUNCT
fuelectenerg-10413	210	7	k.	k.	PROPN
fuelectenerg-10413	210	8	d.	d.	PROPN
fuelectenerg-10413	210	9	shinde	shinde	PROPN
fuelectenerg-10413	210	10	and	and	CCONJ
fuelectenerg-10413	210	11	b.	b.	PROPN
fuelectenerg-10413	210	12	k.	k.	PROPN
fuelectenerg-10413	210	13	shivaprasad	shivaprasad	PROPN
fuelectenerg-10413	210	14	,	,	PUNCT
fuelectenerg-10413	210	15	"	"	PUNCT
fuelectenerg-10413	210	16	design	design	NOUN
fuelectenerg-10413	210	17	and	and	CCONJ
fuelectenerg-10413	210	18	implementation	implementation	NOUN
fuelectenerg-10413	210	19	of	of	ADP
fuelectenerg-10413	210	20	1ghz	1ghz	NUM
fuelectenerg-10413	210	21	current	current	ADJ
fuelectenerg-10413	210	22	starved	starve	VERB
fuelectenerg-10413	210	23	voltage	voltage	NOUN
fuelectenerg-10413	210	24	control	control	NOUN
fuelectenerg-10413	210	25	oscillator	oscillator	NOUN
fuelectenerg-10413	210	26	(	(	PUNCT
fuelectenerg-10413	210	27	vco	vco	PROPN
fuelectenerg-10413	210	28	)	)	PUNCT
fuelectenerg-10413	210	29	for	for	ADP
fuelectenerg-10413	210	30	pll	pll	NOUN
fuelectenerg-10413	210	31	using	use	VERB
fuelectenerg-10413	210	32	90	90	NUM
fuelectenerg-10413	210	33	nm	nm	ADJ
fuelectenerg-10413	210	34	cmos	cmos	NOUN
fuelectenerg-10413	210	35	technology	technology	NOUN
fuelectenerg-10413	210	36	"	"	PUNCT
fuelectenerg-10413	210	37	,	,	PUNCT
fuelectenerg-10413	210	38	in	in	ADP
fuelectenerg-10413	210	39	proceedings	proceeding	NOUN
fuelectenerg-10413	210	40	of	of	ADP
fuelectenerg-10413	210	41	international	international	ADJ
fuelectenerg-10413	210	42	conference	conference	NOUN
fuelectenerg-10413	210	43	on	on	ADP
fuelectenerg-10413	210	44	control	control	NOUN
fuelectenerg-10413	210	45	,	,	PUNCT
fuelectenerg-10413	210	46	instrumentation	instrumentation	NOUN
fuelectenerg-10413	210	47	,	,	PUNCT
fuelectenerg-10413	210	48	communication	communication	NOUN
fuelectenerg-10413	210	49	and	and	CCONJ
fuelectenerg-10413	210	50	computational	computational	ADJ
fuelectenerg-10413	210	51	technologies	technology	NOUN
fuelectenerg-10413	210	52	(	(	PUNCT
fuelectenerg-10413	210	53	iccicct	iccicct	NOUN
fuelectenerg-10413	210	54	)	)	PUNCT
fuelectenerg-10413	210	55	,	,	PUNCT
fuelectenerg-10413	210	56	2015	2015	NUM
fuelectenerg-10413	210	57	,	,	PUNCT
fuelectenerg-10413	210	58	pp	pp	ADJ
fuelectenerg-10413	210	59	.	.	PUNCT
fuelectenerg-10413	210	60	335	335	NUM
fuelectenerg-10413	210	61	-	-	SYM
fuelectenerg-10413	210	62	339	339	NUM
fuelectenerg-10413	210	63	.	.	PUNCT
fuelectenerg-10413	211	1	[	[	X
fuelectenerg-10413	211	2	8	8	X
fuelectenerg-10413	211	3	]	]	X
fuelectenerg-10413	211	4	j.	j.	PROPN
fuelectenerg-10413	211	5	g.	g.	PROPN
fuelectenerg-10413	211	6	maneatis	maneatis	PROPN
fuelectenerg-10413	211	7	and	and	CCONJ
fuelectenerg-10413	211	8	m.	m.	PROPN
fuelectenerg-10413	211	9	a.	a.	PROPN
fuelectenerg-10413	211	10	horowitz	horowitz	PROPN
fuelectenerg-10413	211	11	,	,	PUNCT
fuelectenerg-10413	211	12	"	"	PUNCT
fuelectenerg-10413	211	13	precise	precise	ADJ
fuelectenerg-10413	211	14	delay	delay	NOUN
fuelectenerg-10413	211	15	generation	generation	NOUN
fuelectenerg-10413	211	16	using	use	VERB
fuelectenerg-10413	211	17	coupled	couple	VERB
fuelectenerg-10413	211	18	oscillators	oscillator	NOUN
fuelectenerg-10413	211	19	"	"	PUNCT
fuelectenerg-10413	211	20	,	,	PUNCT
fuelectenerg-10413	211	21	ieee	ieee	PROPN
fuelectenerg-10413	211	22	j.	j.	PROPN
fuelectenerg-10413	211	23	solid	solid	PROPN
fuelectenerg-10413	211	24	-	-	PUNCT
fuelectenerg-10413	211	25	state	state	NOUN
fuelectenerg-10413	211	26	ciruits	ciruit	NOUN
fuelectenerg-10413	211	27	.	.	PUNCT
fuelectenerg-10413	211	28	,	,	PUNCT
fuelectenerg-10413	211	29	vol	vol	NOUN
fuelectenerg-10413	211	30	.	.	PROPN
fuelectenerg-10413	211	31	28	28	NUM
fuelectenerg-10413	211	32	,	,	PUNCT
fuelectenerg-10413	211	33	pp	pp	ADJ
fuelectenerg-10413	211	34	.	.	PUNCT
fuelectenerg-10413	212	1	1273	1273	NUM
fuelectenerg-10413	212	2	-	-	SYM
fuelectenerg-10413	212	3	1282	1282	NUM
fuelectenerg-10413	212	4	,	,	PUNCT
fuelectenerg-10413	212	5	dec	dec	PROPN
fuelectenerg-10413	212	6	.	.	PROPN
fuelectenerg-10413	212	7	1993	1993	NUM
fuelectenerg-10413	212	8	.	.	PUNCT
fuelectenerg-10413	213	1	[	[	X
fuelectenerg-10413	213	2	9	9	NUM
fuelectenerg-10413	213	3	]	]	PUNCT
fuelectenerg-10413	213	4	s.	s.	PROPN
fuelectenerg-10413	213	5	t.	t.	PROPN
fuelectenerg-10413	213	6	yan	yan	PROPN
fuelectenerg-10413	213	7	and	and	CCONJ
fuelectenerg-10413	213	8	h.	h.	PROPN
fuelectenerg-10413	213	9	c.	c.	PROPN
fuelectenerg-10413	213	10	luong	luong	PROPN
fuelectenerg-10413	213	11	,	,	PUNCT
fuelectenerg-10413	213	12	"	"	PUNCT
fuelectenerg-10413	213	13	a	a	DET
fuelectenerg-10413	213	14	3	3	NUM
fuelectenerg-10413	213	15	-	-	PUNCT
fuelectenerg-10413	213	16	v	v	NOUN
fuelectenerg-10413	213	17	1.3	1.3	NUM
fuelectenerg-10413	213	18	-	-	PUNCT
fuelectenerg-10413	213	19	to-1.8	to-1.8	ADJ
fuelectenerg-10413	213	20	-	-	PUNCT
fuelectenerg-10413	213	21	ghz	ghz	NOUN
fuelectenerg-10413	213	22	cmos	cmos	NOUN
fuelectenerg-10413	213	23	voltage	voltage	NOUN
fuelectenerg-10413	213	24	-	-	PUNCT
fuelectenerg-10413	213	25	controlled	control	VERB
fuelectenerg-10413	213	26	oscillator	oscillator	NOUN
fuelectenerg-10413	213	27	with	with	ADP
fuelectenerg-10413	213	28	0.3	0.3	NUM
fuelectenerg-10413	213	29	-	-	PUNCT
fuelectenerg-10413	213	30	ps	ps	NOUN
fuelectenerg-10413	213	31	jitter	jitter	NOUN
fuelectenerg-10413	213	32	"	"	PUNCT
fuelectenerg-10413	213	33	,	,	PUNCT
fuelectenerg-10413	213	34	ieee	ieee	PROPN
fuelectenerg-10413	213	35	trans	tran	NOUN
fuelectenerg-10413	213	36	.	.	PUNCT
fuelectenerg-10413	214	1	circuits	circuits	PROPN
fuelectenerg-10413	214	2	syst	syst	PROPN
fuelectenerg-10413	214	3	.	.	PUNCT
fuelectenerg-10413	215	1	ii	ii	PROPN
fuelectenerg-10413	215	2	:	:	PUNCT
fuelectenerg-10413	215	3	analog	analog	NOUN
fuelectenerg-10413	215	4	and	and	CCONJ
fuelectenerg-10413	215	5	digital	digital	ADJ
fuelectenerg-10413	215	6	signal	signal	NOUN
fuelectenerg-10413	215	7	proc	proc	NOUN
fuelectenerg-10413	215	8	.	.	PROPN
fuelectenerg-10413	215	9	,	,	PUNCT
fuelectenerg-10413	215	10	vol.45	vol.45	X
fuelectenerg-10413	215	11	,	,	PUNCT
fuelectenerg-10413	215	12	pp	pp	ADJ
fuelectenerg-10413	215	13	.	.	PUNCT
fuelectenerg-10413	216	1	876	876	NUM
fuelectenerg-10413	216	2	-	-	SYM
fuelectenerg-10413	216	3	880	880	NUM
fuelectenerg-10413	216	4	,	,	PUNCT
fuelectenerg-10413	216	5	july	july	PROPN
fuelectenerg-10413	216	6	1998	1998	NUM
fuelectenerg-10413	216	7	.	.	PUNCT
fuelectenerg-10413	217	1	[	[	X
fuelectenerg-10413	217	2	10	10	NUM
fuelectenerg-10413	217	3	]	]	X
fuelectenerg-10413	217	4	c.	c.	PROPN
fuelectenerg-10413	217	5	h.	h.	PROPN
fuelectenerg-10413	217	6	park	park	PROPN
fuelectenerg-10413	217	7	and	and	CCONJ
fuelectenerg-10413	217	8	b.	b.	PROPN
fuelectenerg-10413	217	9	kim	kim	PROPN
fuelectenerg-10413	217	10	,	,	PUNCT
fuelectenerg-10413	217	11	"	"	PUNCT
fuelectenerg-10413	217	12	a	a	DET
fuelectenerg-10413	217	13	low	low	ADJ
fuelectenerg-10413	217	14	-	-	PUNCT
fuelectenerg-10413	217	15	noise	noise	NOUN
fuelectenerg-10413	217	16	,	,	PUNCT
fuelectenerg-10413	217	17	900	900	NUM
fuelectenerg-10413	217	18	-	-	PUNCT
fuelectenerg-10413	217	19	mhz	mhz	NOUN
fuelectenerg-10413	217	20	vco	vco	NOUN
fuelectenerg-10413	217	21	in	in	ADP
fuelectenerg-10413	217	22	0.6-/spl	0.6-/spl	NUM
fuelectenerg-10413	217	23	mu	mu	PROPN
fuelectenerg-10413	217	24	/m	/m	PUNCT
fuelectenerg-10413	217	25	cmos	cmos	PROPN
fuelectenerg-10413	217	26	"	"	PUNCT
fuelectenerg-10413	217	27	,	,	PUNCT
fuelectenerg-10413	217	28	ieee	ieee	PROPN
fuelectenerg-10413	217	29	j.	j.	PROPN
fuelectenerg-10413	217	30	solid	solid	PROPN
fuelectenerg-10413	217	31	-	-	PUNCT
fuelectenerg-10413	217	32	state	state	NOUN
fuelectenerg-10413	217	33	circuits	circuit	NOUN
fuelectenerg-10413	217	34	,	,	PUNCT
fuelectenerg-10413	217	35	vol	vol	NOUN
fuelectenerg-10413	217	36	.	.	PROPN
fuelectenerg-10413	218	1	34	34	NUM
fuelectenerg-10413	218	2	,	,	PUNCT
fuelectenerg-10413	218	3	pp	pp	ADJ
fuelectenerg-10413	218	4	.	.	PUNCT
fuelectenerg-10413	219	1	586	586	NUM
fuelectenerg-10413	219	2	-	-	SYM
fuelectenerg-10413	219	3	591	591	NUM
fuelectenerg-10413	219	4	,	,	PUNCT
fuelectenerg-10413	219	5	june	june	PROPN
fuelectenerg-10413	219	6	1998	1998	NUM
fuelectenerg-10413	219	7	.	.	PUNCT
fuelectenerg-10413	220	1	[	[	X
fuelectenerg-10413	220	2	11	11	NUM
fuelectenerg-10413	220	3	]	]	PUNCT
fuelectenerg-10413	220	4	w.	w.	PROPN
fuelectenerg-10413	220	5	h.	h.	PROPN
fuelectenerg-10413	220	6	tu	tu	PROPN
fuelectenerg-10413	220	7	,	,	PUNCT
fuelectenerg-10413	220	8	j.	j.	PROPN
fuelectenerg-10413	220	9	y.	y.	PROPN
fuelectenerg-10413	220	10	yeh	yeh	PROPN
fuelectenerg-10413	220	11	,	,	PUNCT
fuelectenerg-10413	220	12	h.	h.	PROPN
fuelectenerg-10413	220	13	c.	c.	PROPN
fuelectenerg-10413	220	14	tsai	tsai	PROPN
fuelectenerg-10413	220	15	and	and	CCONJ
fuelectenerg-10413	220	16	c.	c.	PROPN
fuelectenerg-10413	220	17	k.	k.	PROPN
fuelectenerg-10413	220	18	wang	wang	PROPN
fuelectenerg-10413	220	19	,	,	PUNCT
fuelectenerg-10413	220	20	"	"	PUNCT
fuelectenerg-10413	220	21	a	a	DET
fuelectenerg-10413	220	22	1.8	1.8	NUM
fuelectenerg-10413	220	23	v	v	NUM
fuelectenerg-10413	220	24	2.5	2.5	NUM
fuelectenerg-10413	220	25	-	-	SYM
fuelectenerg-10413	220	26	5.2	5.2	NUM
fuelectenerg-10413	220	27	ghz	ghz	NOUN
fuelectenerg-10413	220	28	cmos	cmos	NOUN
fuelectenerg-10413	220	29	dual	dual	ADJ
fuelectenerg-10413	220	30	-	-	PUNCT
fuelectenerg-10413	220	31	input	input	NOUN
fuelectenerg-10413	220	32	two	two	NUM
fuelectenerg-10413	220	33	-	-	PUNCT
fuelectenerg-10413	220	34	stage	stage	NOUN
fuelectenerg-10413	220	35	ring	ring	NOUN
fuelectenerg-10413	220	36	vco	vco	PROPN
fuelectenerg-10413	220	37	"	"	PUNCT
fuelectenerg-10413	220	38	,	,	PUNCT
fuelectenerg-10413	220	39	in	in	ADP
fuelectenerg-10413	220	40	proceedings	proceeding	NOUN
fuelectenerg-10413	220	41	of	of	ADP
fuelectenerg-10413	220	42	asia	asia	PROPN
fuelectenerg-10413	220	43	pacific	pacific	PROPN
fuelectenerg-10413	220	44	conference	conference	PROPN
fuelectenerg-10413	220	45	on	on	ADP
fuelectenerg-10413	220	46	advanced	advanced	ADJ
fuelectenerg-10413	220	47	system	system	NOUN
fuelectenerg-10413	220	48	integrated	integrate	VERB
fuelectenerg-10413	220	49	circuits	circuit	NOUN
fuelectenerg-10413	220	50	,	,	PUNCT
fuelectenerg-10413	220	51	2004	2004	NUM
fuelectenerg-10413	220	52	,	,	PUNCT
fuelectenerg-10413	220	53	pp	pp	ADJ
fuelectenerg-10413	220	54	.	.	PUNCT
fuelectenerg-10413	221	1	134	134	NUM
fuelectenerg-10413	221	2	-	-	SYM
fuelectenerg-10413	221	3	137	137	NUM
fuelectenerg-10413	221	4	.	.	PUNCT
fuelectenerg-10413	222	1	[	[	X
fuelectenerg-10413	222	2	12	12	NUM
fuelectenerg-10413	222	3	]	]	PUNCT
fuelectenerg-10413	222	4	m.	m.	NOUN
fuelectenerg-10413	222	5	l.	l.	PROPN
fuelectenerg-10413	222	6	sheu	sheu	PROPN
fuelectenerg-10413	222	7	,	,	PUNCT
fuelectenerg-10413	222	8	y.	y.	PROPN
fuelectenerg-10413	222	9	s.	s.	PROPN
fuelectenerg-10413	222	10	tiao	tiao	PROPN
fuelectenerg-10413	222	11	and	and	CCONJ
fuelectenerg-10413	222	12	l.	l.	PROPN
fuelectenerg-10413	222	13	j.	j.	PROPN
fuelectenerg-10413	222	14	taso	taso	PROPN
fuelectenerg-10413	222	15	,	,	PUNCT
fuelectenerg-10413	222	16	"	"	PUNCT
fuelectenerg-10413	222	17	a	a	DET
fuelectenerg-10413	222	18	1	1	NUM
fuelectenerg-10413	222	19	-	-	PUNCT
fuelectenerg-10413	222	20	v	v	NOUN
fuelectenerg-10413	222	21	4	4	NUM
fuelectenerg-10413	222	22	-	-	PUNCT
fuelectenerg-10413	222	23	ghz	ghz	NOUN
fuelectenerg-10413	222	24	wide	wide	ADJ
fuelectenerg-10413	222	25	tuning	tuning	NOUN
fuelectenerg-10413	222	26	range	range	NOUN
fuelectenerg-10413	222	27	voltage	voltage	NOUN
fuelectenerg-10413	222	28	-	-	PUNCT
fuelectenerg-10413	222	29	controlled	control	VERB
fuelectenerg-10413	222	30	ring	ring	NOUN
fuelectenerg-10413	222	31	oscillator	oscillator	NOUN
fuelectenerg-10413	222	32	in	in	ADP
fuelectenerg-10413	222	33	0.18	0.18	NUM
fuelectenerg-10413	222	34	μm	μm	PROPN
fuelectenerg-10413	222	35	cmos	cmos	PROPN
fuelectenerg-10413	222	36	"	"	PUNCT
fuelectenerg-10413	222	37	,	,	PUNCT
fuelectenerg-10413	222	38	microelectronics	microelectronics	PROPN
fuelectenerg-10413	222	39	j.	j.	PROPN
fuelectenerg-10413	222	40	,	,	PUNCT
fuelectenerg-10413	222	41	vol	vol	NOUN
fuelectenerg-10413	222	42	.	.	PROPN
fuelectenerg-10413	223	1	42	42	NUM
fuelectenerg-10413	223	2	,	,	PUNCT
fuelectenerg-10413	223	3	pp	pp	ADJ
fuelectenerg-10413	223	4	.	.	PUNCT
fuelectenerg-10413	224	1	897	897	NUM
fuelectenerg-10413	224	2	-	-	SYM
fuelectenerg-10413	224	3	902	902	NUM
fuelectenerg-10413	224	4	,	,	PUNCT
fuelectenerg-10413	224	5	april	april	PROPN
fuelectenerg-10413	224	6	2011	2011	NUM
fuelectenerg-10413	224	7	.	.	PUNCT
fuelectenerg-10413	225	1	[	[	X
fuelectenerg-10413	225	2	13	13	NUM
fuelectenerg-10413	225	3	]	]	PUNCT
fuelectenerg-10413	225	4	m.	m.	NOUN
fuelectenerg-10413	225	5	parvizi	parvizi	PROPN
fuelectenerg-10413	225	6	,	,	PUNCT
fuelectenerg-10413	225	7	a.	a.	NOUN
fuelectenerg-10413	225	8	khodabakhshand	khodabakhshand	PROPN
fuelectenerg-10413	225	9	and	and	CCONJ
fuelectenerg-10413	225	10	a.	a.	NOUN
fuelectenerg-10413	225	11	nabavi	nabavi	PROPN
fuelectenerg-10413	225	12	,	,	PUNCT
fuelectenerg-10413	225	13	"	"	PUNCT
fuelectenerg-10413	225	14	low	low	ADJ
fuelectenerg-10413	225	15	-	-	PUNCT
fuelectenerg-10413	225	16	power	power	NOUN
fuelectenerg-10413	225	17	high	high	ADJ
fuelectenerg-10413	225	18	-	-	PUNCT
fuelectenerg-10413	225	19	tuning	tune	VERB
fuelectenerg-10413	225	20	range	range	NOUN
fuelectenerg-10413	225	21	cmos	cmos	PROPN
fuelectenerg-10413	225	22	ring	ring	PROPN
fuelectenerg-10413	225	23	oscillator	oscillator	NOUN
fuelectenerg-10413	225	24	vcos	vco	NOUN
fuelectenerg-10413	225	25	"	"	PUNCT
fuelectenerg-10413	225	26	,	,	PUNCT
fuelectenerg-10413	225	27	in	in	ADP
fuelectenerg-10413	225	28	proceedings	proceeding	NOUN
fuelectenerg-10413	225	29	of	of	ADP
fuelectenerg-10413	225	30	the	the	DET
fuelectenerg-10413	225	31	ieee	ieee	NOUN
fuelectenerg-10413	225	32	international	international	PROPN
fuelectenerg-10413	225	33	conference	conference	NOUN
fuelectenerg-10413	225	34	on	on	ADP
fuelectenerg-10413	225	35	semiconductor	semiconductor	NOUN
fuelectenerg-10413	225	36	electronics	electronic	NOUN
fuelectenerg-10413	225	37	,	,	PUNCT
fuelectenerg-10413	225	38	2008	2008	NUM
fuelectenerg-10413	225	39	,	,	PUNCT
fuelectenerg-10413	225	40	pp	pp	ADJ
fuelectenerg-10413	225	41	.	.	PUNCT
fuelectenerg-10413	226	1	40	40	NUM
fuelectenerg-10413	226	2	-	-	SYM
fuelectenerg-10413	226	3	44	44	NUM
fuelectenerg-10413	226	4	.	.	PUNCT
fuelectenerg-10413	227	1	[	[	X
fuelectenerg-10413	227	2	14	14	NUM
fuelectenerg-10413	227	3	]	]	X
fuelectenerg-10413	227	4	s.	s.	PROPN
fuelectenerg-10413	227	5	suman	suman	PROPN
fuelectenerg-10413	227	6	,	,	PUNCT
fuelectenerg-10413	227	7	k.	k.	PROPN
fuelectenerg-10413	227	8	g.	g.	PROPN
fuelectenerg-10413	227	9	sharma	sharma	PROPN
fuelectenerg-10413	227	10	and	and	CCONJ
fuelectenerg-10413	227	11	p.	p.	PROPN
fuelectenerg-10413	227	12	k.	k.	PROPN
fuelectenerg-10413	228	1	ghosh	ghosh	PROPN
fuelectenerg-10413	228	2	,	,	PUNCT
fuelectenerg-10413	228	3	"	"	PUNCT
fuelectenerg-10413	228	4	design	design	NOUN
fuelectenerg-10413	228	5	of	of	ADP
fuelectenerg-10413	228	6	pll	pll	NOUN
fuelectenerg-10413	228	7	using	use	VERB
fuelectenerg-10413	228	8	improved	improved	ADJ
fuelectenerg-10413	228	9	performance	performance	NOUN
fuelectenerg-10413	228	10	ring	ring	NOUN
fuelectenerg-10413	228	11	vco	vco	PROPN
fuelectenerg-10413	228	12	"	"	PUNCT
fuelectenerg-10413	228	13	,	,	PUNCT
fuelectenerg-10413	228	14	in	in	ADP
fuelectenerg-10413	228	15	proceedings	proceeding	NOUN
fuelectenerg-10413	228	16	of	of	ADP
fuelectenerg-10413	228	17	the	the	DET
fuelectenerg-10413	228	18	international	international	ADJ
fuelectenerg-10413	228	19	conference	conference	NOUN
fuelectenerg-10413	228	20	on	on	ADP
fuelectenerg-10413	228	21	electrical	electrical	ADJ
fuelectenerg-10413	228	22	,	,	PUNCT
fuelectenerg-10413	228	23	electronics	electronic	NOUN
fuelectenerg-10413	228	24	and	and	CCONJ
fuelectenerg-10413	228	25	optimization	optimization	NOUN
fuelectenerg-10413	228	26	techniques	technique	NOUN
fuelectenerg-10413	228	27	(	(	PUNCT
fuelectenerg-10413	228	28	iceeot	iceeot	PROPN
fuelectenerg-10413	228	29	)	)	PUNCT
fuelectenerg-10413	228	30	,	,	PUNCT
fuelectenerg-10413	228	31	2016	2016	NUM
fuelectenerg-10413	228	32	,	,	PUNCT
fuelectenerg-10413	228	33	pp	pp	ADV
fuelectenerg-10413	228	34	.	.	PUNCT
fuelectenerg-10413	229	1	3479	3479	NUM
fuelectenerg-10413	229	2	-	-	SYM
fuelectenerg-10413	229	3	3483	3483	NUM
fuelectenerg-10413	229	4	.	.	PUNCT
fuelectenerg-10413	230	1	482	482	NUM
fuelectenerg-10413	230	2	m.	m.	NOUN
fuelectenerg-10413	230	3	gogoi	gogoi	PROPN
fuelectenerg-10413	230	4	,	,	PUNCT
fuelectenerg-10413	230	5	p.	p.	PROPN
fuelectenerg-10413	230	6	k.	k.	PROPN
fuelectenerg-10413	231	1	dutta	dutta	PROPN
fuelectenerg-10413	232	1	[	[	X
fuelectenerg-10413	232	2	15	15	NUM
fuelectenerg-10413	232	3	]	]	X
fuelectenerg-10413	232	4	h.	h.	PROPN
fuelectenerg-10413	232	5	gao	gao	PROPN
fuelectenerg-10413	232	6	,	,	PUNCT
fuelectenerg-10413	232	7	r.	r.	PROPN
fuelectenerg-10413	232	8	xia	xia	PROPN
fuelectenerg-10413	232	9	,	,	PUNCT
fuelectenerg-10413	232	10	x.	x.	PROPN
fuelectenerg-10413	232	11	wang	wang	PROPN
fuelectenerg-10413	232	12	,	,	PUNCT
fuelectenerg-10413	232	13	t.	t.	PROPN
fuelectenerg-10413	232	14	zhou	zhou	PROPN
fuelectenerg-10413	232	15	and	and	CCONJ
fuelectenerg-10413	232	16	m.	m.	PROPN
fuelectenerg-10413	232	17	zhou	zhou	PROPN
fuelectenerg-10413	232	18	,	,	PUNCT
fuelectenerg-10413	232	19	"	"	PUNCT
fuelectenerg-10413	232	20	wideband	wideband	NOUN
fuelectenerg-10413	232	21	ring	ring	NOUN
fuelectenerg-10413	232	22	oscillator	oscillator	NOUN
fuelectenerg-10413	232	23	with	with	ADP
fuelectenerg-10413	232	24	switched	switch	VERB
fuelectenerg-10413	232	25	resistor	resistor	NOUN
fuelectenerg-10413	232	26	array	array	NOUN
fuelectenerg-10413	232	27	for	for	ADP
fuelectenerg-10413	232	28	low	low	ADJ
fuelectenerg-10413	232	29	tuning	tuning	NOUN
fuelectenerg-10413	232	30	sensitivity	sensitivity	NOUN
fuelectenerg-10413	232	31	"	"	PUNCT
fuelectenerg-10413	232	32	,	,	PUNCT
fuelectenerg-10413	232	33	analog	analog	NOUN
fuelectenerg-10413	232	34	integr	integr	NOUN
fuelectenerg-10413	232	35	.	.	PUNCT
fuelectenerg-10413	233	1	circuits	circuit	NOUN
fuelectenerg-10413	233	2	and	and	CCONJ
fuelectenerg-10413	233	3	signal	signal	ADJ
fuelectenerg-10413	233	4	process	process	NOUN
fuelectenerg-10413	233	5	.	.	PUNCT
fuelectenerg-10413	233	6	,	,	PUNCT
fuelectenerg-10413	233	7	vol	vol	NOUN
fuelectenerg-10413	233	8	.	.	PROPN
fuelectenerg-10413	233	9	89	89	NUM
fuelectenerg-10413	233	10	,	,	PUNCT
fuelectenerg-10413	233	11	pp	pp	ADJ
fuelectenerg-10413	233	12	.	.	PUNCT
fuelectenerg-10413	234	1	493	493	NUM
fuelectenerg-10413	234	2	-	-	SYM
fuelectenerg-10413	234	3	498	498	NUM
fuelectenerg-10413	234	4	,	,	PUNCT
fuelectenerg-10413	234	5	sept	sept	PROPN
fuelectenerg-10413	234	6	.	.	PROPN
fuelectenerg-10413	234	7	2016	2016	NUM
fuelectenerg-10413	234	8	.	.	PUNCT
fuelectenerg-10413	235	1	[	[	X
fuelectenerg-10413	235	2	16	16	NUM
fuelectenerg-10413	235	3	]	]	X
fuelectenerg-10413	235	4	n.	n.	PROPN
fuelectenerg-10413	235	5	gargouri	gargouri	PROPN
fuelectenerg-10413	235	6	,	,	PUNCT
fuelectenerg-10413	235	7	d.	d.	PROPN
fuelectenerg-10413	235	8	b.	b.	PROPN
fuelectenerg-10413	235	9	issa	issa	PROPN
fuelectenerg-10413	235	10	,	,	PUNCT
fuelectenerg-10413	235	11	z.	z.	PROPN
fuelectenerg-10413	235	12	sakka	sakka	PROPN
fuelectenerg-10413	235	13	,	,	PUNCT
fuelectenerg-10413	235	14	a.	a.	NOUN
fuelectenerg-10413	235	15	kachouri	kachouri	PROPN
fuelectenerg-10413	235	16	and	and	CCONJ
fuelectenerg-10413	235	17	m.	m.	NOUN
fuelectenerg-10413	235	18	samet	samet	PROPN
fuelectenerg-10413	235	19	,	,	PUNCT
fuelectenerg-10413	235	20	"	"	PUNCT
fuelectenerg-10413	235	21	design	design	NOUN
fuelectenerg-10413	235	22	and	and	CCONJ
fuelectenerg-10413	235	23	optimization	optimization	NOUN
fuelectenerg-10413	235	24	of	of	ADP
fuelectenerg-10413	235	25	differential	differential	ADJ
fuelectenerg-10413	235	26	ring	ring	NOUN
fuelectenerg-10413	235	27	oscillator	oscillator	NOUN
fuelectenerg-10413	235	28	for	for	ADP
fuelectenerg-10413	235	29	ir	ir	PROPN
fuelectenerg-10413	235	30	-	-	ADJ
fuelectenerg-10413	235	31	uwb	uwb	ADJ
fuelectenerg-10413	235	32	applications	application	NOUN
fuelectenerg-10413	235	33	in	in	ADP
fuelectenerg-10413	235	34	0.18μm	0.18μm	NUM
fuelectenerg-10413	235	35	cmos	cmos	PROPN
fuelectenerg-10413	235	36	technology	technology	NOUN
fuelectenerg-10413	235	37	"	"	PUNCT
fuelectenerg-10413	235	38	,	,	PUNCT
fuelectenerg-10413	235	39	j.	j.	PROPN
fuelectenerg-10413	235	40	circuits	circuits	PROPN
fuelectenerg-10413	235	41	syst	syst	PROPN
fuelectenerg-10413	235	42	.	.	PUNCT
fuelectenerg-10413	236	1	comput	comput	PROPN
fuelectenerg-10413	236	2	.	.	PUNCT
fuelectenerg-10413	236	3	,	,	PUNCT
fuelectenerg-10413	236	4	vol	vol	NOUN
fuelectenerg-10413	236	5	.	.	PROPN
fuelectenerg-10413	236	6	26	26	NUM
fuelectenerg-10413	236	7	,	,	PUNCT
fuelectenerg-10413	236	8	pp	pp	ADJ
fuelectenerg-10413	236	9	.	.	PUNCT
fuelectenerg-10413	237	1	1750080	1750080	NUM
fuelectenerg-10413	237	2	-	-	SYM
fuelectenerg-10413	237	3	1	1	NUM
fuelectenerg-10413	237	4	-	-	PUNCT
fuelectenerg-10413	237	5	1750080	1750080	NUM
fuelectenerg-10413	237	6	-	-	SYM
fuelectenerg-10413	237	7	15	15	NUM
fuelectenerg-10413	237	8	,	,	PUNCT
fuelectenerg-10413	237	9	dec	dec	PROPN
fuelectenerg-10413	237	10	.	.	PROPN
fuelectenerg-10413	237	11	2016	2016	NUM
fuelectenerg-10413	237	12	.	.	PUNCT
fuelectenerg-10413	238	1	[	[	X
fuelectenerg-10413	238	2	17	17	NUM
fuelectenerg-10413	238	3	]	]	X
fuelectenerg-10413	238	4	s.	s.	PROPN
fuelectenerg-10413	238	5	salem	salem	PROPN
fuelectenerg-10413	238	6	,	,	PUNCT
fuelectenerg-10413	238	7	h.	h.	PROPN
fuelectenerg-10413	238	8	zandevakili	zandevakili	PROPN
fuelectenerg-10413	238	9	,	,	PUNCT
fuelectenerg-10413	238	10	a.	a.	NOUN
fuelectenerg-10413	238	11	mahani	mahani	PROPN
fuelectenerg-10413	238	12	and	and	CCONJ
fuelectenerg-10413	238	13	m.	m.	PROPN
fuelectenerg-10413	238	14	saneei	saneei	PROPN
fuelectenerg-10413	238	15	,	,	PUNCT
fuelectenerg-10413	238	16	"	"	PUNCT
fuelectenerg-10413	238	17	fault	fault	NOUN
fuelectenerg-10413	238	18	-	-	PUNCT
fuelectenerg-10413	238	19	tolerant	tolerant	ADJ
fuelectenerg-10413	238	20	delay	delay	NOUN
fuelectenerg-10413	238	21	cell	cell	NOUN
fuelectenerg-10413	238	22	for	for	ADP
fuelectenerg-10413	238	23	ring	ring	NOUN
fuelectenerg-10413	238	24	oscillator	oscillator	NOUN
fuelectenerg-10413	238	25	application	application	NOUN
fuelectenerg-10413	238	26	in	in	ADP
fuelectenerg-10413	238	27	65	65	NUM
fuelectenerg-10413	238	28	nm	nm	PROPN
fuelectenerg-10413	238	29	cmos	cmos	PROPN
fuelectenerg-10413	238	30	technology	technology	NOUN
fuelectenerg-10413	238	31	"	"	PUNCT
fuelectenerg-10413	238	32	,	,	PUNCT
fuelectenerg-10413	238	33	iet	iet	PROPN
fuelectenerg-10413	238	34	circuits	circuits	PROPN
fuelectenerg-10413	238	35	devices	device	VERB
fuelectenerg-10413	238	36	syst	syst	PROPN
fuelectenerg-10413	238	37	.	.	PUNCT
fuelectenerg-10413	238	38	,	,	PUNCT
fuelectenerg-10413	238	39	vol	vol	NOUN
fuelectenerg-10413	238	40	.	.	PROPN
fuelectenerg-10413	238	41	12	12	NUM
fuelectenerg-10413	238	42	,	,	PUNCT
fuelectenerg-10413	238	43	pp	pp	ADJ
fuelectenerg-10413	238	44	.	.	PUNCT
fuelectenerg-10413	239	1	233–241	233–241	NUM
fuelectenerg-10413	239	2	,	,	PUNCT
fuelectenerg-10413	239	3	nov	nov	PROPN
fuelectenerg-10413	239	4	.	.	PROPN
fuelectenerg-10413	239	5	2017	2017	NUM
fuelectenerg-10413	239	6	.	.	PUNCT
fuelectenerg-10413	240	1	[	[	X
fuelectenerg-10413	240	2	18	18	NUM
fuelectenerg-10413	240	3	]	]	PUNCT
fuelectenerg-10413	240	4	m.	m.	NOUN
fuelectenerg-10413	240	5	kumar	kumar	PROPN
fuelectenerg-10413	240	6	and	and	CCONJ
fuelectenerg-10413	240	7	d.	d.	PROPN
fuelectenerg-10413	240	8	dwivedi	dwivedi	PROPN
fuelectenerg-10413	240	9	,	,	PUNCT
fuelectenerg-10413	240	10	"	"	PUNCT
fuelectenerg-10413	240	11	a	a	DET
fuelectenerg-10413	240	12	low	low	ADJ
fuelectenerg-10413	240	13	power	power	NOUN
fuelectenerg-10413	240	14	cmos	cmos	PROPN
fuelectenerg-10413	240	15	-	-	PUNCT
fuelectenerg-10413	240	16	based	base	VERB
fuelectenerg-10413	240	17	vco	vco	PROPN
fuelectenerg-10413	240	18	design	design	NOUN
fuelectenerg-10413	240	19	with	with	ADP
fuelectenerg-10413	240	20	i	i	PROPN
fuelectenerg-10413	240	21	-	-	PUNCT
fuelectenerg-10413	240	22	mos	mos	PROPN
fuelectenerg-10413	240	23	varactor	varactor	NOUN
fuelectenerg-10413	240	24	tuning	tuning	NOUN
fuelectenerg-10413	240	25	control	control	NOUN
fuelectenerg-10413	240	26	"	"	PUNCT
fuelectenerg-10413	240	27	,	,	PUNCT
fuelectenerg-10413	240	28	j.	j.	PROPN
fuelectenerg-10413	240	29	circuits	circuits	PROPN
fuelectenerg-10413	240	30	syst	syst	PROPN
fuelectenerg-10413	240	31	.	.	PUNCT
fuelectenerg-10413	241	1	comput	comput	PROPN
fuelectenerg-10413	241	2	.	.	PUNCT
fuelectenerg-10413	241	3	,	,	PUNCT
fuelectenerg-10413	241	4	vol	vol	NOUN
fuelectenerg-10413	241	5	.	.	PROPN
fuelectenerg-10413	242	1	27	27	NUM
fuelectenerg-10413	242	2	,	,	PUNCT
fuelectenerg-10413	242	3	pp	pp	ADJ
fuelectenerg-10413	242	4	.	.	PUNCT
fuelectenerg-10413	243	1	1850160	1850160	NUM
fuelectenerg-10413	243	2	-	-	SYM
fuelectenerg-10413	243	3	1	1	NUM
fuelectenerg-10413	243	4	-	-	PUNCT
fuelectenerg-10413	243	5	1850160	1850160	NUM
fuelectenerg-10413	243	6	-	-	SYM
fuelectenerg-10413	243	7	14	14	NUM
fuelectenerg-10413	243	8	,	,	PUNCT
fuelectenerg-10413	243	9	jan	jan	PROPN
fuelectenerg-10413	243	10	.	.	PROPN
fuelectenerg-10413	243	11	2018	2018	NUM
fuelectenerg-10413	243	12	.	.	PUNCT
fuelectenerg-10413	244	1	[	[	X
fuelectenerg-10413	244	2	19	19	NUM
fuelectenerg-10413	244	3	]	]	PUNCT
fuelectenerg-10413	244	4	s.	s.	PROPN
fuelectenerg-10413	244	5	y.	y.	PROPN
fuelectenerg-10413	244	6	lee	lee	PROPN
fuelectenerg-10413	244	7	,	,	PUNCT
fuelectenerg-10413	244	8	s.	s.	PROPN
fuelectenerg-10413	244	9	amakawa	amakawa	PROPN
fuelectenerg-10413	244	10	,	,	PUNCT
fuelectenerg-10413	244	11	n.	n.	PROPN
fuelectenerg-10413	244	12	ishihara	ishihara	PROPN
fuelectenerg-10413	244	13	and	and	CCONJ
fuelectenerg-10413	244	14	k.	k.	PROPN
fuelectenerg-10413	244	15	masu	masu	PROPN
fuelectenerg-10413	244	16	,	,	PUNCT
fuelectenerg-10413	244	17	"	"	PUNCT
fuelectenerg-10413	244	18	2.4	2.4	NUM
fuelectenerg-10413	244	19	-	-	SYM
fuelectenerg-10413	244	20	10	10	NUM
fuelectenerg-10413	244	21	ghz	ghz	NOUN
fuelectenerg-10413	244	22	low	low	ADJ
fuelectenerg-10413	244	23	-	-	PUNCT
fuelectenerg-10413	244	24	noise	noise	NOUN
fuelectenerg-10413	244	25	injection	injection	NOUN
fuelectenerg-10413	244	26	-	-	PUNCT
fuelectenerg-10413	244	27	locked	lock	VERB
fuelectenerg-10413	244	28	ring	ring	NOUN
fuelectenerg-10413	244	29	voltage	voltage	NOUN
fuelectenerg-10413	244	30	controlled	control	VERB
fuelectenerg-10413	244	31	oscillator	oscillator	NOUN
fuelectenerg-10413	244	32	in	in	ADP
fuelectenerg-10413	244	33	90	90	NUM
fuelectenerg-10413	244	34	nm	nm	ADJ
fuelectenerg-10413	244	35	complementary	complementary	ADJ
fuelectenerg-10413	244	36	metal	metal	NOUN
fuelectenerg-10413	244	37	oxide	oxide	NOUN
fuelectenerg-10413	244	38	semiconductor	semiconductor	NOUN
fuelectenerg-10413	244	39	"	"	PUNCT
fuelectenerg-10413	244	40	,	,	PUNCT
fuelectenerg-10413	244	41	jpn	jpn	PROPN
fuelectenerg-10413	244	42	.	.	PUNCT
fuelectenerg-10413	245	1	j.	j.	PROPN
fuelectenerg-10413	245	2	appl	appl	PROPN
fuelectenerg-10413	245	3	.	.	PUNCT
fuelectenerg-10413	246	1	phys	phy	NOUN
fuelectenerg-10413	246	2	.	.	PUNCT
fuelectenerg-10413	246	3	,	,	PUNCT
fuelectenerg-10413	246	4	vol	vol	NOUN
fuelectenerg-10413	246	5	.	.	PROPN
fuelectenerg-10413	246	6	50	50	NUM
fuelectenerg-10413	246	7	,	,	PUNCT
fuelectenerg-10413	246	8	pp	pp	ADJ
fuelectenerg-10413	246	9	.	.	PUNCT
fuelectenerg-10413	247	1	04de03	04de03	NUM
fuelectenerg-10413	247	2	-	-	PUNCT
fuelectenerg-10413	247	3	1	1	NUM
fuelectenerg-10413	247	4	-	-	PUNCT
fuelectenerg-10413	247	5	04de03	04de03	NUM
fuelectenerg-10413	247	6	-	-	PUNCT
fuelectenerg-10413	247	7	5	5	NUM
fuelectenerg-10413	247	8	,	,	PUNCT
fuelectenerg-10413	247	9	april	april	PROPN
fuelectenerg-10413	247	10	2011	2011	NUM
fuelectenerg-10413	247	11	.	.	PUNCT
fuelectenerg-10413	248	1	[	[	X
fuelectenerg-10413	248	2	20	20	NUM
fuelectenerg-10413	248	3	]	]	PUNCT
fuelectenerg-10413	248	4	a.	a.	NOUN
fuelectenerg-10413	248	5	ramazani	ramazani	PROPN
fuelectenerg-10413	248	6	,	,	PUNCT
fuelectenerg-10413	248	7	s.	s.	PROPN
fuelectenerg-10413	248	8	biabani	biabani	PROPN
fuelectenerg-10413	248	9	and	and	CCONJ
fuelectenerg-10413	248	10	g.	g.	PROPN
fuelectenerg-10413	248	11	hadidi	hadidi	PROPN
fuelectenerg-10413	248	12	,	,	PUNCT
fuelectenerg-10413	248	13	"	"	PUNCT
fuelectenerg-10413	248	14	cmos	cmos	PROPN
fuelectenerg-10413	248	15	ring	ring	NOUN
fuelectenerg-10413	248	16	oscillator	oscillator	NOUN
fuelectenerg-10413	248	17	with	with	ADP
fuelectenerg-10413	248	18	combined	combined	ADJ
fuelectenerg-10413	248	19	delay	delay	NOUN
fuelectenerg-10413	248	20	stages	stage	NOUN
fuelectenerg-10413	248	21	"	"	PUNCT
fuelectenerg-10413	248	22	,	,	PUNCT
fuelectenerg-10413	248	23	aeu	aeu	INTJ
fuelectenerg-10413	248	24	–	–	PUNCT
fuelectenerg-10413	248	25	int	int	NOUN
fuelectenerg-10413	248	26	.	.	PUNCT
fuelectenerg-10413	249	1	j.	j.	PROPN
fuelectenerg-10413	249	2	electron	electron	PROPN
fuelectenerg-10413	249	3	.	.	PUNCT
fuelectenerg-10413	250	1	commun	commun	PROPN
fuelectenerg-10413	250	2	.	.	PROPN
fuelectenerg-10413	250	3	,	,	PUNCT
fuelectenerg-10413	250	4	vol	vol	NOUN
fuelectenerg-10413	250	5	.	.	PROPN
fuelectenerg-10413	251	1	68	68	NUM
fuelectenerg-10413	251	2	,	,	PUNCT
fuelectenerg-10413	251	3	pp	pp	ADJ
fuelectenerg-10413	251	4	.	.	PUNCT
fuelectenerg-10413	252	1	515	515	NUM
fuelectenerg-10413	252	2	-	-	SYM
fuelectenerg-10413	252	3	519	519	NUM
fuelectenerg-10413	252	4	,	,	PUNCT
fuelectenerg-10413	252	5	june	june	PROPN
fuelectenerg-10413	252	6	2014	2014	NUM
fuelectenerg-10413	252	7	.	.	PUNCT
fuelectenerg-10413	253	1	[	[	X
fuelectenerg-10413	253	2	21	21	NUM
fuelectenerg-10413	253	3	]	]	X
fuelectenerg-10413	253	4	m.	m.	NOUN
fuelectenerg-10413	253	5	karimi	karimi	PROPN
fuelectenerg-10413	253	6	-	-	PUNCT
fuelectenerg-10413	253	7	ghartemani	ghartemani	PROPN
fuelectenerg-10413	253	8	,	,	PUNCT
fuelectenerg-10413	253	9	h.	h.	PROPN
fuelectenerg-10413	253	10	karimiand	karimiand	PROPN
fuelectenerg-10413	253	11	and	and	CCONJ
fuelectenerg-10413	253	12	m.	m.	PROPN
fuelectenerg-10413	253	13	r.	r.	PROPN
fuelectenerg-10413	253	14	iravani	iravani	PROPN
fuelectenerg-10413	253	15	,	,	PUNCT
fuelectenerg-10413	253	16	"	"	PUNCT
fuelectenerg-10413	253	17	a	a	DET
fuelectenerg-10413	253	18	magnitude	magnitude	NOUN
fuelectenerg-10413	253	19	phase	phase	NOUN
fuelectenerg-10413	253	20	-	-	PUNCT
fuelectenerg-10413	253	21	locked	lock	VERB
fuelectenerg-10413	253	22	loop	loop	NOUN
fuelectenerg-10413	253	23	system	system	NOUN
fuelectenerg-10413	253	24	based	base	VERB
fuelectenerg-10413	253	25	on	on	ADP
fuelectenerg-10413	253	26	estimation	estimation	NOUN
fuelectenerg-10413	253	27	of	of	ADP
fuelectenerg-10413	253	28	frequency	frequency	NOUN
fuelectenerg-10413	253	29	and	and	CCONJ
fuelectenerg-10413	253	30	in	in	ADP
fuelectenerg-10413	253	31	-	-	PUNCT
fuelectenerg-10413	253	32	phase	phase	NOUN
fuelectenerg-10413	253	33	/	/	SYM
fuelectenerg-10413	253	34	quadrature	quadrature	NOUN
fuelectenerg-10413	253	35	-	-	PUNCT
fuelectenerg-10413	253	36	phase	phase	NOUN
fuelectenerg-10413	253	37	amplitudes	amplitude	NOUN
fuelectenerg-10413	253	38	"	"	PUNCT
fuelectenerg-10413	253	39	,	,	PUNCT
fuelectenerg-10413	253	40	ieee	ieee	PROPN
fuelectenerg-10413	253	41	trans	tran	NOUN
fuelectenerg-10413	253	42	.	.	PUNCT
fuelectenerg-10413	254	1	ind	ind	PROPN
fuelectenerg-10413	254	2	.	.	PUNCT
fuelectenerg-10413	254	3	electron	electron	PROPN
fuelectenerg-10413	254	4	.	.	PUNCT
fuelectenerg-10413	254	5	,	,	PUNCT
fuelectenerg-10413	254	6	vol	vol	NOUN
fuelectenerg-10413	254	7	.	.	PROPN
fuelectenerg-10413	255	1	51	51	NUM
fuelectenerg-10413	255	2	,	,	PUNCT
fuelectenerg-10413	255	3	pp	pp	ADJ
fuelectenerg-10413	255	4	.	.	PUNCT
fuelectenerg-10413	256	1	511	511	NUM
fuelectenerg-10413	256	2	-	-	SYM
fuelectenerg-10413	256	3	517	517	NUM
fuelectenerg-10413	256	4	,	,	PUNCT
fuelectenerg-10413	256	5	april	april	PROPN
fuelectenerg-10413	256	6	2004	2004	NUM
fuelectenerg-10413	256	7	.	.	PUNCT
fuelectenerg-10413	257	1	[	[	X
fuelectenerg-10413	257	2	22	22	NUM
fuelectenerg-10413	257	3	]	]	PUNCT
fuelectenerg-10413	257	4	a.	a.	NOUN
fuelectenerg-10413	257	5	sharma	sharma	PROPN
fuelectenerg-10413	257	6	,	,	PUNCT
fuelectenerg-10413	257	7	saurabh	saurabh	PROPN
fuelectenerg-10413	257	8	and	and	CCONJ
fuelectenerg-10413	257	9	s.	s.	PROPN
fuelectenerg-10413	257	10	biswas	biswas	PROPN
fuelectenerg-10413	257	11	,	,	PUNCT
fuelectenerg-10413	257	12	"	"	PUNCT
fuelectenerg-10413	257	13	a	a	DET
fuelectenerg-10413	257	14	low	low	ADJ
fuelectenerg-10413	257	15	power	power	NOUN
fuelectenerg-10413	257	16	cmos	cmos	PROPN
fuelectenerg-10413	257	17	voltage	voltage	NOUN
fuelectenerg-10413	257	18	controlled	control	VERB
fuelectenerg-10413	257	19	oscillator	oscillator	NOUN
fuelectenerg-10413	257	20	in	in	ADP
fuelectenerg-10413	257	21	65	65	NUM
fuelectenerg-10413	257	22	nm	nm	NOUN
fuelectenerg-10413	257	23	technology	technology	NOUN
fuelectenerg-10413	257	24	"	"	PUNCT
fuelectenerg-10413	257	25	,	,	PUNCT
fuelectenerg-10413	257	26	in	in	ADP
fuelectenerg-10413	257	27	proceedings	proceeding	NOUN
fuelectenerg-10413	257	28	of	of	ADP
fuelectenerg-10413	257	29	international	international	ADJ
fuelectenerg-10413	257	30	conference	conference	NOUN
fuelectenerg-10413	257	31	on	on	ADP
fuelectenerg-10413	257	32	computer	computer	NOUN
fuelectenerg-10413	257	33	communication	communication	NOUN
fuelectenerg-10413	257	34	and	and	CCONJ
fuelectenerg-10413	257	35	informatics	informatic	NOUN
fuelectenerg-10413	257	36	,	,	PUNCT
fuelectenerg-10413	257	37	2014	2014	NUM
fuelectenerg-10413	257	38	,	,	PUNCT
fuelectenerg-10413	257	39	pp	pp	ADJ
fuelectenerg-10413	257	40	.	.	PUNCT
fuelectenerg-10413	258	1	1	1	NUM
fuelectenerg-10413	258	2	-	-	SYM
fuelectenerg-10413	258	3	5	5	NUM
fuelectenerg-10413	258	4	.	.	PUNCT
fuelectenerg-10413	259	1	[	[	X
fuelectenerg-10413	259	2	23	23	NUM
fuelectenerg-10413	259	3	]	]	PUNCT
fuelectenerg-10413	259	4	s.	s.	PROPN
fuelectenerg-10413	259	5	kamran	kamran	PROPN
fuelectenerg-10413	259	6	and	and	CCONJ
fuelectenerg-10413	259	7	n.	n.	PROPN
fuelectenerg-10413	259	8	ghaderi	ghaderi	PROPN
fuelectenerg-10413	259	9	,	,	PUNCT
fuelectenerg-10413	259	10	"	"	PUNCT
fuelectenerg-10413	259	11	a	a	DET
fuelectenerg-10413	259	12	novel	novel	ADJ
fuelectenerg-10413	259	13	high	high	ADJ
fuelectenerg-10413	259	14	speed	speed	NOUN
fuelectenerg-10413	259	15	cmos	cmos	ADJ
fuelectenerg-10413	259	16	pseudo	pseudo	NOUN
fuelectenerg-10413	259	17	-	-	ADJ
fuelectenerg-10413	259	18	differential	differential	ADJ
fuelectenerg-10413	259	19	ring	ring	NOUN
fuelectenerg-10413	259	20	vco	vco	PROPN
fuelectenerg-10413	259	21	with	with	ADP
fuelectenerg-10413	259	22	wide	wide	ADJ
fuelectenerg-10413	259	23	tuning	tuning	NOUN
fuelectenerg-10413	259	24	control	control	NOUN
fuelectenerg-10413	259	25	voltage	voltage	NOUN
fuelectenerg-10413	259	26	range	range	NOUN
fuelectenerg-10413	259	27	"	"	PUNCT
fuelectenerg-10413	259	28	,	,	PUNCT
fuelectenerg-10413	259	29	in	in	ADP
fuelectenerg-10413	259	30	proceedings	proceeding	NOUN
fuelectenerg-10413	259	31	of	of	ADP
fuelectenerg-10413	259	32	the	the	DET
fuelectenerg-10413	259	33	iranian	iranian	ADJ
fuelectenerg-10413	259	34	conference	conference	NOUN
fuelectenerg-10413	259	35	on	on	ADP
fuelectenerg-10413	259	36	electrical	electrical	ADJ
fuelectenerg-10413	259	37	engineering	engineering	NOUN
fuelectenerg-10413	259	38	(	(	PUNCT
fuelectenerg-10413	259	39	icee	icee	NOUN
fuelectenerg-10413	259	40	)	)	PUNCT
fuelectenerg-10413	259	41	,	,	PUNCT
fuelectenerg-10413	259	42	2017	2017	NUM
fuelectenerg-10413	259	43	,	,	PUNCT
fuelectenerg-10413	259	44	pp	pp	ADJ
fuelectenerg-10413	259	45	.	.	PUNCT
fuelectenerg-10413	259	46	201	201	NUM
fuelectenerg-10413	259	47	-	-	SYM
fuelectenerg-10413	259	48	204	204	NUM
fuelectenerg-10413	259	49	.	.	PUNCT
fuelectenerg-10413	260	1	[	[	X
fuelectenerg-10413	260	2	24	24	NUM
fuelectenerg-10413	260	3	]	]	PUNCT
fuelectenerg-10413	260	4	z.	z.	PROPN
fuelectenerg-10413	260	5	chen	chen	PROPN
fuelectenerg-10413	260	6	and	and	CCONJ
fuelectenerg-10413	260	7	t.	t.	PROPN
fuelectenerg-10413	260	8	lee	lee	PROPN
fuelectenerg-10413	260	9	,	,	PUNCT
fuelectenerg-10413	260	10	"	"	PUNCT
fuelectenerg-10413	260	11	the	the	DET
fuelectenerg-10413	260	12	study	study	NOUN
fuelectenerg-10413	260	13	of	of	ADP
fuelectenerg-10413	260	14	a	a	DET
fuelectenerg-10413	260	15	dual	dual	ADJ
fuelectenerg-10413	260	16	-	-	PUNCT
fuelectenerg-10413	260	17	mode	mode	NOUN
fuelectenerg-10413	260	18	ring	ring	NOUN
fuelectenerg-10413	260	19	oscillator	oscillator	NOUN
fuelectenerg-10413	260	20	"	"	PUNCT
fuelectenerg-10413	260	21	,	,	PUNCT
fuelectenerg-10413	260	22	ieee	ieee	PROPN
fuelectenerg-10413	260	23	trans	tran	NOUN
fuelectenerg-10413	260	24	.	.	PUNCT
fuelectenerg-10413	261	1	circuits	circuits	PROPN
fuelectenerg-10413	261	2	syst	syst	PROPN
fuelectenerg-10413	261	3	.	.	PUNCT
fuelectenerg-10413	262	1	ii	ii	PROPN
fuelectenerg-10413	262	2	:	:	PUNCT
fuelectenerg-10413	262	3	express	express	VERB
fuelectenerg-10413	262	4	briefs	brief	NOUN
fuelectenerg-10413	262	5	,	,	PUNCT
fuelectenerg-10413	262	6	vol	vol	NOUN
fuelectenerg-10413	262	7	.	.	PROPN
fuelectenerg-10413	263	1	58	58	NUM
fuelectenerg-10413	263	2	,	,	PUNCT
fuelectenerg-10413	263	3	no	no	INTJ
fuelectenerg-10413	263	4	.	.	NOUN
fuelectenerg-10413	263	5	4	4	NUM
fuelectenerg-10413	263	6	,	,	PUNCT
fuelectenerg-10413	263	7	pp	pp	ADJ
fuelectenerg-10413	263	8	.	.	PUNCT
fuelectenerg-10413	264	1	210	210	NUM
fuelectenerg-10413	264	2	-	-	SYM
fuelectenerg-10413	264	3	214	214	NUM
fuelectenerg-10413	264	4	,	,	PUNCT
fuelectenerg-10413	264	5	april	april	PROPN
fuelectenerg-10413	264	6	2011	2011	NUM
fuelectenerg-10413	264	7	.	.	PUNCT
fuelectenerg-10413	265	1	[	[	X
fuelectenerg-10413	265	2	25	25	NUM
fuelectenerg-10413	265	3	]	]	X
fuelectenerg-10413	265	4	g.	g.	PROPN
fuelectenerg-10413	265	5	k.	k.	PROPN
fuelectenerg-10413	265	6	sharma	sharma	PROPN
fuelectenerg-10413	265	7	,	,	PUNCT
fuelectenerg-10413	265	8	a.	a.	PROPN
fuelectenerg-10413	265	9	k.	k.	PROPN
fuelectenerg-10413	265	10	johar	johar	PROPN
fuelectenerg-10413	265	11	,	,	PUNCT
fuelectenerg-10413	265	12	t.	t.	PROPN
fuelectenerg-10413	265	13	b.	b.	PROPN
fuelectenerg-10413	265	14	kumar	kumar	PROPN
fuelectenerg-10413	265	15	and	and	CCONJ
fuelectenerg-10413	265	16	d.	d.	PROPN
fuelectenerg-10413	265	17	boolchandani	boolchandani	PROPN
fuelectenerg-10413	265	18	,	,	PUNCT
fuelectenerg-10413	265	19	"	"	PUNCT
fuelectenerg-10413	265	20	design	design	NOUN
fuelectenerg-10413	265	21	and	and	CCONJ
fuelectenerg-10413	265	22	analysis	analysis	NOUN
fuelectenerg-10413	265	23	of	of	ADP
fuelectenerg-10413	265	24	wide	wide	ADJ
fuelectenerg-10413	265	25	tuning	tuning	NOUN
fuelectenerg-10413	265	26	range	range	NOUN
fuelectenerg-10413	265	27	differential	differential	NOUN
fuelectenerg-10413	265	28	ring	ring	NOUN
fuelectenerg-10413	265	29	oscillator	oscillator	NOUN
fuelectenerg-10413	265	30	(	(	PUNCT
fuelectenerg-10413	265	31	wtr	wtr	NOUN
fuelectenerg-10413	265	32	-	-	PUNCT
fuelectenerg-10413	265	33	dro	dro	NOUN
fuelectenerg-10413	265	34	)	)	PUNCT
fuelectenerg-10413	265	35	"	"	PUNCT
fuelectenerg-10413	265	36	,	,	PUNCT
fuelectenerg-10413	265	37	analog	analog	NOUN
fuelectenerg-10413	265	38	integr	integr	NOUN
fuelectenerg-10413	265	39	.	.	PUNCT
fuelectenerg-10413	266	1	circuits	circuit	NOUN
fuelectenerg-10413	266	2	signal	signal	NOUN
fuelectenerg-10413	266	3	process	process	NOUN
fuelectenerg-10413	266	4	.	.	PUNCT
fuelectenerg-10413	267	1	,	,	PUNCT
fuelectenerg-10413	267	2	vol	vol	NOUN
fuelectenerg-10413	267	3	.	.	PROPN
fuelectenerg-10413	267	4	103	103	NUM
fuelectenerg-10413	267	5	,	,	PUNCT
fuelectenerg-10413	267	6	pp	pp	ADJ
fuelectenerg-10413	267	7	.	.	PUNCT
fuelectenerg-10413	268	1	17	17	NUM
fuelectenerg-10413	268	2	-	-	SYM
fuelectenerg-10413	268	3	29	29	NUM
fuelectenerg-10413	268	4	,	,	PUNCT
fuelectenerg-10413	268	5	april	april	PROPN
fuelectenerg-10413	268	6	2020	2020	NUM
fuelectenerg-10413	268	7	.	.	PUNCT
fuelectenerg-10413	269	1	[	[	X
fuelectenerg-10413	269	2	26	26	NUM
fuelectenerg-10413	269	3	]	]	X
fuelectenerg-10413	269	4	j.	j.	PROPN
fuelectenerg-10413	269	5	m.	m.	PROPN
fuelectenerg-10413	269	6	kim	kim	PROPN
fuelectenerg-10413	269	7	,	,	PUNCT
fuelectenerg-10413	269	8	s.	s.	PROPN
fuelectenerg-10413	269	9	kim	kim	PROPN
fuelectenerg-10413	269	10	,	,	PUNCT
fuelectenerg-10413	269	11	i.	i.	PROPN
fuelectenerg-10413	269	12	y.	y.	PROPN
fuelectenerg-10413	269	13	lee	lee	PROPN
fuelectenerg-10413	269	14	,	,	PUNCT
fuelectenerg-10413	269	15	s.	s.	PROPN
fuelectenerg-10413	269	16	k.	k.	PROPN
fuelectenerg-10413	269	17	han	han	PROPN
fuelectenerg-10413	269	18	and	and	CCONJ
fuelectenerg-10413	269	19	s.	s.	PROPN
fuelectenerg-10413	269	20	g.	g.	PROPN
fuelectenerg-10413	269	21	lee	lee	PROPN
fuelectenerg-10413	269	22	,	,	PUNCT
fuelectenerg-10413	269	23	"	"	PUNCT
fuelectenerg-10413	269	24	a	a	DET
fuelectenerg-10413	269	25	low	low	ADJ
fuelectenerg-10413	269	26	noise	noise	NOUN
fuelectenerg-10413	269	27	four	four	NUM
fuelectenerg-10413	269	28	-	-	PUNCT
fuelectenerg-10413	269	29	stage	stage	NOUN
fuelectenerg-10413	269	30	voltage	voltage	NOUN
fuelectenerg-10413	269	31	controlled	control	VERB
fuelectenerg-10413	269	32	ring	ring	NOUN
fuelectenerg-10413	269	33	oscillator	oscillator	NOUN
fuelectenerg-10413	269	34	in	in	ADP
fuelectenerg-10413	269	35	deep	deep	ADJ
fuelectenerg-10413	269	36	-	-	PUNCT
fuelectenerg-10413	269	37	submicrometer	submicrometer	NOUN
fuelectenerg-10413	269	38	cmos	cmos	PROPN
fuelectenerg-10413	269	39	technology	technology	NOUN
fuelectenerg-10413	269	40	"	"	PUNCT
fuelectenerg-10413	269	41	,	,	PUNCT
fuelectenerg-10413	269	42	ieee	ieee	PROPN
fuelectenerg-10413	269	43	trans	tran	NOUN
fuelectenerg-10413	269	44	.	.	PUNCT
fuelectenerg-10413	270	1	circuits	circuits	PROPN
fuelectenerg-10413	270	2	syst	syst	PROPN
fuelectenerg-10413	270	3	.	.	PUNCT
fuelectenerg-10413	271	1	ii	ii	PROPN
fuelectenerg-10413	271	2	:	:	PUNCT
fuelectenerg-10413	271	3	express	express	VERB
fuelectenerg-10413	271	4	briefs	brief	NOUN
fuelectenerg-10413	271	5	,	,	PUNCT
fuelectenerg-10413	271	6	vol	vol	NOUN
fuelectenerg-10413	271	7	.	.	PROPN
fuelectenerg-10413	272	1	60	60	NUM
fuelectenerg-10413	272	2	,	,	PUNCT
fuelectenerg-10413	272	3	no	no	INTJ
fuelectenerg-10413	272	4	.	.	NOUN
fuelectenerg-10413	272	5	2	2	NUM
fuelectenerg-10413	272	6	,	,	PUNCT
fuelectenerg-10413	272	7	pp	pp	ADJ
fuelectenerg-10413	272	8	.	.	PUNCT
fuelectenerg-10413	273	1	71	71	NUM
fuelectenerg-10413	273	2	-	-	SYM
fuelectenerg-10413	273	3	75	75	NUM
fuelectenerg-10413	273	4	,	,	PUNCT
fuelectenerg-10413	273	5	feb	feb	PROPN
fuelectenerg-10413	273	6	.	.	PROPN
fuelectenerg-10413	273	7	2013	2013	NUM
fuelectenerg-10413	273	8	.	.	PUNCT
fuelectenerg-10413	274	1	[	[	X
fuelectenerg-10413	274	2	27	27	NUM
fuelectenerg-10413	274	3	]	]	X
fuelectenerg-10413	274	4	i.	i.	PROPN
fuelectenerg-10413	274	5	kovacs	kovacs	PROPN
fuelectenerg-10413	274	6	and	and	CCONJ
fuelectenerg-10413	274	7	m.	m.	NOUN
fuelectenerg-10413	274	8	neag	neag	PROPN
fuelectenerg-10413	274	9	,	,	PUNCT
fuelectenerg-10413	274	10	"	"	PUNCT
fuelectenerg-10413	274	11	new	new	ADJ
fuelectenerg-10413	274	12	dual	dual	ADJ
fuelectenerg-10413	274	13	-	-	PUNCT
fuelectenerg-10413	274	14	loop	loop	NOUN
fuelectenerg-10413	274	15	topology	topology	NOUN
fuelectenerg-10413	274	16	for	for	ADP
fuelectenerg-10413	274	17	ring	ring	NOUN
fuelectenerg-10413	274	18	vcos	vco	NOUN
fuelectenerg-10413	274	19	based	base	VERB
fuelectenerg-10413	274	20	on	on	ADP
fuelectenerg-10413	274	21	latched	latch	VERB
fuelectenerg-10413	274	22	delay	delay	NOUN
fuelectenerg-10413	274	23	cells	cell	NOUN
fuelectenerg-10413	274	24	"	"	PUNCT
fuelectenerg-10413	274	25	,	,	PUNCT
fuelectenerg-10413	274	26	in	in	ADP
fuelectenerg-10413	274	27	proceedings	proceeding	NOUN
fuelectenerg-10413	274	28	of	of	ADP
fuelectenerg-10413	274	29	the	the	DET
fuelectenerg-10413	274	30	ieee	ieee	NOUN
fuelectenerg-10413	274	31	international	international	ADJ
fuelectenerg-10413	274	32	symposium	symposium	NOUN
fuelectenerg-10413	274	33	on	on	ADP
fuelectenerg-10413	274	34	circuits	circuit	NOUN
fuelectenerg-10413	274	35	and	and	CCONJ
fuelectenerg-10413	274	36	systems	system	NOUN
fuelectenerg-10413	274	37	(	(	PUNCT
fuelectenerg-10413	274	38	iscas	iscas	PROPN
fuelectenerg-10413	274	39	)	)	PUNCT
fuelectenerg-10413	274	40	,	,	PUNCT
fuelectenerg-10413	274	41	2018	2018	NUM
fuelectenerg-10413	274	42	,	,	PUNCT
fuelectenerg-10413	274	43	pp	pp	ADJ
fuelectenerg-10413	274	44	.	.	PUNCT
fuelectenerg-10413	275	1	1	1	NUM
fuelectenerg-10413	275	2	-	-	SYM
fuelectenerg-10413	275	3	5	5	NUM
fuelectenerg-10413	275	4	.	.	PUNCT
fuelectenerg-10413	276	1	[	[	X
fuelectenerg-10413	276	2	28	28	NUM
fuelectenerg-10413	276	3	]	]	X
fuelectenerg-10413	276	4	t.	t.	PROPN
fuelectenerg-10413	276	5	yoshio	yoshio	PROPN
fuelectenerg-10413	276	6	,	,	PUNCT
fuelectenerg-10413	276	7	t.	t.	PROPN
fuelectenerg-10413	276	8	kihara	kihara	PROPN
fuelectenerg-10413	276	9	and	and	CCONJ
fuelectenerg-10413	276	10	t.	t.	PROPN
fuelectenerg-10413	276	11	yoshimura	yoshimura	NOUN
fuelectenerg-10413	276	12	,	,	PUNCT
fuelectenerg-10413	276	13	"	"	PUNCT
fuelectenerg-10413	276	14	a	a	DET
fuelectenerg-10413	276	15	0.55	0.55	NUM
fuelectenerg-10413	276	16	v	v	NOUN
fuelectenerg-10413	276	17	back	back	ADJ
fuelectenerg-10413	276	18	-	-	PUNCT
fuelectenerg-10413	276	19	gate	gate	NOUN
fuelectenerg-10413	276	20	controlled	control	VERB
fuelectenerg-10413	276	21	ring	ring	NOUN
fuelectenerg-10413	276	22	vco	vco	PROPN
fuelectenerg-10413	276	23	for	for	ADP
fuelectenerg-10413	276	24	adcs	adcs	NOUN
fuelectenerg-10413	276	25	in	in	ADP
fuelectenerg-10413	276	26	65	65	NUM
fuelectenerg-10413	276	27	nm	nm	PROPN
fuelectenerg-10413	276	28	sotb	sotb	NOUN
fuelectenerg-10413	276	29	cmos	cmos	PROPN
fuelectenerg-10413	276	30	"	"	PUNCT
fuelectenerg-10413	276	31	,	,	PUNCT
fuelectenerg-10413	276	32	in	in	ADP
fuelectenerg-10413	276	33	proceedings	proceeding	NOUN
fuelectenerg-10413	276	34	of	of	ADP
fuelectenerg-10413	276	35	the	the	DET
fuelectenerg-10413	276	36	ieee	ieee	PROPN
fuelectenerg-10413	276	37	asia	asia	PROPN
fuelectenerg-10413	276	38	pacific	pacific	PROPN
fuelectenerg-10413	276	39	microwave	microwave	PROPN
fuelectenerg-10413	276	40	conference	conference	PROPN
fuelectenerg-10413	276	41	(	(	PUNCT
fuelectenerg-10413	276	42	apmc	apmc	NOUN
fuelectenerg-10413	276	43	)	)	PUNCT
fuelectenerg-10413	276	44	,	,	PUNCT
fuelectenerg-10413	276	45	2017	2017	NUM
fuelectenerg-10413	276	46	,	,	PUNCT
fuelectenerg-10413	276	47	pp	pp	ADJ
fuelectenerg-10413	276	48	.	.	PUNCT
fuelectenerg-10413	277	1	946	946	NUM
fuelectenerg-10413	277	2	-	-	SYM
fuelectenerg-10413	277	3	948	948	NUM
fuelectenerg-10413	277	4	.	.	PUNCT
fuelectenerg-10413	278	1	[	[	X
fuelectenerg-10413	278	2	29	29	NUM
fuelectenerg-10413	278	3	]	]	PUNCT
fuelectenerg-10413	278	4	s.	s.	PROPN
fuelectenerg-10413	278	5	k.	k.	PROPN
fuelectenerg-10413	278	6	saw	see	VERB
fuelectenerg-10413	278	7	,	,	PUNCT
fuelectenerg-10413	278	8	s.	s.	PROPN
fuelectenerg-10413	278	9	k.	k.	PROPN
fuelectenerg-10413	278	10	yadav	yadav	PROPN
fuelectenerg-10413	278	11	,	,	PUNCT
fuelectenerg-10413	278	12	m.	m.	NOUN
fuelectenerg-10413	278	13	maiti	maiti	PROPN
fuelectenerg-10413	278	14	,	,	PUNCT
fuelectenerg-10413	278	15	a.	a.	PROPN
fuelectenerg-10413	278	16	j.	j.	PROPN
fuelectenerg-10413	278	17	mondal	mondal	PROPN
fuelectenerg-10413	278	18	and	and	CCONJ
fuelectenerg-10413	278	19	a.	a.	NOUN
fuelectenerg-10413	278	20	majumder	majumder	NOUN
fuelectenerg-10413	278	21	,	,	PUNCT
fuelectenerg-10413	278	22	"	"	PUNCT
fuelectenerg-10413	278	23	a	a	DET
fuelectenerg-10413	278	24	design	design	NOUN
fuelectenerg-10413	278	25	approach	approach	NOUN
fuelectenerg-10413	278	26	of	of	ADP
fuelectenerg-10413	278	27	higher	high	ADJ
fuelectenerg-10413	278	28	oscillation	oscillation	NOUN
fuelectenerg-10413	278	29	vco	vco	PROPN
fuelectenerg-10413	278	30	made	make	VERB
fuelectenerg-10413	278	31	of	of	ADP
fuelectenerg-10413	278	32	cs	cs	PROPN
fuelectenerg-10413	278	33	amplifier	amplifier	NOUN
fuelectenerg-10413	278	34	with	with	ADP
fuelectenerg-10413	278	35	varying	vary	VERB
fuelectenerg-10413	278	36	active	active	ADJ
fuelectenerg-10413	278	37	load	load	NOUN
fuelectenerg-10413	278	38	"	"	PUNCT
fuelectenerg-10413	278	39	,	,	PUNCT
fuelectenerg-10413	278	40	microsyst	microsyst	NOUN
fuelectenerg-10413	278	41	.	.	PUNCT
fuelectenerg-10413	279	1	technol	technol	PROPN
fuelectenerg-10413	279	2	.	.	PROPN
fuelectenerg-10413	279	3	,	,	PUNCT
fuelectenerg-10413	279	4	vol	vol	NOUN
fuelectenerg-10413	279	5	.	.	PROPN
fuelectenerg-10413	279	6	26	26	NUM
fuelectenerg-10413	279	7	,	,	PUNCT
fuelectenerg-10413	279	8	pp	pp	ADJ
fuelectenerg-10413	279	9	.	.	PUNCT
fuelectenerg-10413	280	1	1	1	NUM
fuelectenerg-10413	280	2	-	-	SYM
fuelectenerg-10413	280	3	10	10	NUM
fuelectenerg-10413	280	4	,	,	PUNCT
fuelectenerg-10413	280	5	feb	feb	PROPN
fuelectenerg-10413	280	6	.	.	PROPN
fuelectenerg-10413	280	7	2020	2020	NUM
fuelectenerg-10413	280	8	.	.	PUNCT
fuelectenerg-10413	281	1	[	[	X
fuelectenerg-10413	281	2	30	30	NUM
fuelectenerg-10413	281	3	]	]	PUNCT
fuelectenerg-10413	281	4	a.	a.	NOUN
fuelectenerg-10413	281	5	a.	a.	PROPN
fuelectenerg-10413	281	6	abidi	abidi	PROPN
fuelectenerg-10413	281	7	,	,	PUNCT
fuelectenerg-10413	281	8	"	"	PUNCT
fuelectenerg-10413	281	9	phase	phase	NOUN
fuelectenerg-10413	281	10	noise	noise	NOUN
fuelectenerg-10413	281	11	and	and	CCONJ
fuelectenerg-10413	281	12	jitter	jitter	NOUN
fuelectenerg-10413	281	13	in	in	ADP
fuelectenerg-10413	281	14	cmos	cmos	PROPN
fuelectenerg-10413	281	15	ring	ring	NOUN
fuelectenerg-10413	281	16	oscillators	oscillator	NOUN
fuelectenerg-10413	281	17	"	"	PUNCT
fuelectenerg-10413	281	18	,	,	PUNCT
fuelectenerg-10413	281	19	ieee	ieee	PROPN
fuelectenerg-10413	281	20	j.	j.	PROPN
fuelectenerg-10413	281	21	solid	solid	PROPN
fuelectenerg-10413	281	22	-	-	PUNCT
fuelectenerg-10413	281	23	state	state	NOUN
fuelectenerg-10413	281	24	circuits	circuit	NOUN
fuelectenerg-10413	281	25	,	,	PUNCT
fuelectenerg-10413	281	26	vol	vol	NOUN
fuelectenerg-10413	281	27	.	.	PROPN
fuelectenerg-10413	281	28	41	41	NUM
fuelectenerg-10413	281	29	,	,	PUNCT
fuelectenerg-10413	281	30	no	no	INTJ
fuelectenerg-10413	281	31	.	.	NOUN
fuelectenerg-10413	281	32	8	8	NUM
fuelectenerg-10413	281	33	,	,	PUNCT
fuelectenerg-10413	281	34	pp	pp	ADJ
fuelectenerg-10413	281	35	.	.	PUNCT
fuelectenerg-10413	281	36	1803	1803	NUM
fuelectenerg-10413	281	37	-	-	SYM
fuelectenerg-10413	281	38	1816	1816	NUM
fuelectenerg-10413	281	39	,	,	PUNCT
fuelectenerg-10413	281	40	aug	aug	PROPN
fuelectenerg-10413	281	41	.	.	PROPN
fuelectenerg-10413	281	42	2006	2006	NUM
fuelectenerg-10413	281	43	.	.	PUNCT
fuelectenerg-10413	282	1	[	[	X
fuelectenerg-10413	282	2	31	31	NUM
fuelectenerg-10413	282	3	]	]	PUNCT
fuelectenerg-10413	282	4	s.	s.	PROPN
fuelectenerg-10413	282	5	pahlava	pahlava	PROPN
fuelectenerg-10413	282	6	and	and	CCONJ
fuelectenerg-10413	282	7	m.	m.	PROPN
fuelectenerg-10413	282	8	b.	b.	PROPN
fuelectenerg-10413	282	9	ghaznavi	ghaznavi	PROPN
fuelectenerg-10413	282	10	-	-	PUNCT
fuelectenerg-10413	282	11	ghoushchi	ghoushchi	PROPN
fuelectenerg-10413	282	12	,	,	PUNCT
fuelectenerg-10413	282	13	"	"	PUNCT
fuelectenerg-10413	282	14	1.45	1.45	NUM
fuelectenerg-10413	282	15	ghz	ghz	NOUN
fuelectenerg-10413	282	16	differential	differential	NOUN
fuelectenerg-10413	282	17	dual	dual	ADJ
fuelectenerg-10413	282	18	band	band	NOUN
fuelectenerg-10413	282	19	ring	ring	NOUN
fuelectenerg-10413	282	20	based	base	VERB
fuelectenerg-10413	282	21	digitallycontrolled	digitallycontrolle	VERB
fuelectenerg-10413	282	22	oscillator	oscillator	NOUN
fuelectenerg-10413	282	23	with	with	ADP
fuelectenerg-10413	282	24	a	a	DET
fuelectenerg-10413	282	25	reconfigurable	reconfigurable	ADJ
fuelectenerg-10413	282	26	delay	delay	NOUN
fuelectenerg-10413	282	27	element	element	NOUN
fuelectenerg-10413	282	28	in	in	ADP
fuelectenerg-10413	282	29	0.18	0.18	NUM
fuelectenerg-10413	282	30	μm	μm	PROPN
fuelectenerg-10413	282	31	cmos	cmos	NOUN
fuelectenerg-10413	282	32	process	process	NOUN
fuelectenerg-10413	282	33	"	"	PUNCT
fuelectenerg-10413	282	34	,	,	PUNCT
fuelectenerg-10413	282	35	analog	analog	NOUN
fuelectenerg-10413	282	36	integr	integr	NOUN
fuelectenerg-10413	282	37	.	.	PUNCT
fuelectenerg-10413	283	1	circuits	circuit	NOUN
fuelectenerg-10413	283	2	signal	signal	NOUN
fuelectenerg-10413	283	3	process	process	NOUN
fuelectenerg-10413	283	4	.	.	PUNCT
fuelectenerg-10413	284	1	,	,	PUNCT
fuelectenerg-10413	284	2	vol	vol	NOUN
fuelectenerg-10413	284	3	.	.	PROPN
fuelectenerg-10413	284	4	89	89	NUM
fuelectenerg-10413	284	5	,	,	PUNCT
fuelectenerg-10413	284	6	no	no	INTJ
fuelectenerg-10413	284	7	.	.	NOUN
fuelectenerg-10413	284	8	2	2	NUM
fuelectenerg-10413	284	9	,	,	PUNCT
fuelectenerg-10413	284	10	pp	pp	ADJ
fuelectenerg-10413	284	11	.	.	PUNCT
fuelectenerg-10413	285	1	461	461	NUM
fuelectenerg-10413	285	2	-	-	SYM
fuelectenerg-10413	285	3	467	467	NUM
fuelectenerg-10413	285	4	,	,	PUNCT
fuelectenerg-10413	285	5	nov	nov	PROPN
fuelectenerg-10413	285	6	.	.	PROPN
fuelectenerg-10413	285	7	2016	2016	NUM
fuelectenerg-10413	285	8	.	.	PUNCT
fuelectenerg-10413	286	1	[	[	X
fuelectenerg-10413	286	2	32	32	NUM
fuelectenerg-10413	286	3	]	]	PUNCT
fuelectenerg-10413	286	4	m.	m.	NOUN
fuelectenerg-10413	286	5	katebi	katebi	PROPN
fuelectenerg-10413	286	6	,	,	PUNCT
fuelectenerg-10413	286	7	a.	a.	PROPN
fuelectenerg-10413	286	8	nasri	nasri	PROPN
fuelectenerg-10413	286	9	and	and	CCONJ
fuelectenerg-10413	286	10	s.	s.	PROPN
fuelectenerg-10413	286	11	toofan	toofan	PROPN
fuelectenerg-10413	286	12	,	,	PUNCT
fuelectenerg-10413	286	13	"	"	PUNCT
fuelectenerg-10413	286	14	a	a	DET
fuelectenerg-10413	286	15	wide	wide	ADJ
fuelectenerg-10413	286	16	tuning	tuning	NOUN
fuelectenerg-10413	286	17	range	range	NOUN
fuelectenerg-10413	286	18	and	and	CCONJ
fuelectenerg-10413	286	19	low	low	ADJ
fuelectenerg-10413	286	20	phase	phase	NOUN
fuelectenerg-10413	286	21	noise	noise	NOUN
fuelectenerg-10413	286	22	vco	vco	PROPN
fuelectenerg-10413	286	23	using	use	VERB
fuelectenerg-10413	286	24	new	new	ADJ
fuelectenerg-10413	286	25	capacitor	capacitor	NOUN
fuelectenerg-10413	286	26	bank	bank	NOUN
fuelectenerg-10413	286	27	structure	structure	NOUN
fuelectenerg-10413	286	28	"	"	PUNCT
fuelectenerg-10413	286	29	,	,	PUNCT
fuelectenerg-10413	286	30	majlesi	majlesi	PROPN
fuelectenerg-10413	286	31	j.	j.	PROPN
fuelectenerg-10413	286	32	electr	electr	PROPN
fuelectenerg-10413	286	33	.	.	PUNCT
fuelectenerg-10413	287	1	eng	eng	PROPN
fuelectenerg-10413	287	2	.	.	PROPN
fuelectenerg-10413	287	3	,	,	PUNCT
fuelectenerg-10413	287	4	vol	vol	NOUN
fuelectenerg-10413	287	5	.	.	PROPN
fuelectenerg-10413	287	6	12	12	NUM
fuelectenerg-10413	287	7	,	,	PUNCT
fuelectenerg-10413	287	8	pp	pp	ADJ
fuelectenerg-10413	287	9	.	.	PUNCT
fuelectenerg-10413	288	1	95	95	NUM
fuelectenerg-10413	288	2	-	-	SYM
fuelectenerg-10413	288	3	103	103	NUM
fuelectenerg-10413	288	4	,	,	PUNCT
fuelectenerg-10413	288	5	2018	2018	NUM
fuelectenerg-10413	288	6	.	.	PUNCT
fuelectenerg-10413	289	1	[	[	X
fuelectenerg-10413	289	2	33	33	NUM
fuelectenerg-10413	289	3	]	]	PUNCT
fuelectenerg-10413	289	4	m.	m.	NOUN
fuelectenerg-10413	289	5	katebi	katebi	PROPN
fuelectenerg-10413	289	6	,	,	PUNCT
fuelectenerg-10413	289	7	a.	a.	PROPN
fuelectenerg-10413	289	8	nasri	nasri	PROPN
fuelectenerg-10413	289	9	,	,	PUNCT
fuelectenerg-10413	289	10	s.	s.	PROPN
fuelectenerg-10413	289	11	toofan	toofan	PROPN
fuelectenerg-10413	289	12	and	and	CCONJ
fuelectenerg-10413	289	13	h.	h.	PROPN
fuelectenerg-10413	289	14	zolfkhani	zolfkhani	PROPN
fuelectenerg-10413	289	15	,	,	PUNCT
fuelectenerg-10413	289	16	"	"	PUNCT
fuelectenerg-10413	289	17	a	a	DET
fuelectenerg-10413	289	18	temperature	temperature	NOUN
fuelectenerg-10413	289	19	compensation	compensation	NOUN
fuelectenerg-10413	289	20	voltage	voltage	NOUN
fuelectenerg-10413	289	21	controlled	control	VERB
fuelectenerg-10413	289	22	oscillator	oscillator	NOUN
fuelectenerg-10413	289	23	using	use	VERB
fuelectenerg-10413	289	24	a	a	DET
fuelectenerg-10413	289	25	complementary	complementary	ADJ
fuelectenerg-10413	289	26	to	to	ADP
fuelectenerg-10413	289	27	absolute	absolute	ADJ
fuelectenerg-10413	289	28	temperature	temperature	NOUN
fuelectenerg-10413	289	29	voltage	voltage	NOUN
fuelectenerg-10413	289	30	reference	reference	NOUN
fuelectenerg-10413	289	31	"	"	PUNCT
fuelectenerg-10413	289	32	,	,	PUNCT
fuelectenerg-10413	289	33	int	int	PROPN
fuelectenerg-10413	289	34	.	.	PUNCT
fuelectenerg-10413	290	1	j.	j.	PROPN
fuelectenerg-10413	290	2	eng	eng	PROPN
fuelectenerg-10413	290	3	.	.	PROPN
fuelectenerg-10413	290	4	,	,	PUNCT
fuelectenerg-10413	290	5	vol	vol	NOUN
fuelectenerg-10413	290	6	.	.	PROPN
fuelectenerg-10413	291	1	32	32	NUM
fuelectenerg-10413	291	2	,	,	PUNCT
fuelectenerg-10413	291	3	no	no	INTJ
fuelectenerg-10413	291	4	.	.	NOUN
fuelectenerg-10413	291	5	5	5	NUM
fuelectenerg-10413	291	6	,	,	PUNCT
fuelectenerg-10413	291	7	pp	pp	ADJ
fuelectenerg-10413	291	8	.	.	PUNCT
fuelectenerg-10413	292	1	710	710	NUM
fuelectenerg-10413	292	2	-	-	SYM
fuelectenerg-10413	292	3	719	719	NUM
fuelectenerg-10413	292	4	,	,	PUNCT
fuelectenerg-10413	292	5	2019	2019	NUM
fuelectenerg-10413	292	6	.	.	PUNCT
