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Tables of Contents for Analog Circuit Design
Chapter/Section Title
Page #
Page Count
Preface
vii
 
Part I: High-Speed Analog-to-Digital Converters
Introduction
1
2
Speed-Power-Accuracy Trade-off in high-speed Analog-to-digital converters: Now in the future...
3
22
M. Steyaert
K. Uyttenhove
A dual mode 700 Msamples/s 6-bit, 200 Msamples/s 7-bit A/D converter in 0.25 micron digital CMOS
25
22
K. Nagaraj
D. Martin
M. Wolfe
R. Chattopaday
S. Pavan
J. Cancio
T.R. Viswanathan
A 3.3 V 12b 50-Ms/s A/D Converter in 0.6 micron CMOS with over 80-dB SFDR
47
28
H. Pan
M. Segami
M. Choi
J. Cao
F. Hatori
A.A. Abidi
A 10-bit 20-30 MSPS CMOS subranging ADC with 9.5 Effective bits at Nyquist
75
20
B. Brandt
J. Lutsky
A 2.5 MHz output-rate delta-sigma ADC with 90dB SNR and 102dB SFDR
95
24
I. Fujimori
L. Longo
A. Hairapetian
K. Seiyama
S. Kosic
J. Cao
S. Chan
A 13-bit bandpass sigma-delta modulator for 10.7 MHz digital IF with a MHz sampling rate
119
22
J. van Engelen
Part II: Mixed Signal Design
Introduction
139
2
System-level design issues for mixed-signal ICs and telecom frontends
141
26
G. Gielen
Mixed signal: Design issues
167
18
H. Casier
Top-down design of mixed-signal circuits
185
18
K. Kundert
Computer aided design for integrated systems
203
26
F.M. Stubbe
Mixed mode sigma-delta ADC design for high-quality audio
229
18
G. Cesura
A. Venca
V. Colonna
G. Gandolfi
S. Dalle Feste
R. Castello
Mixed mode telecom design
247
22
D.M.W. Leenaerts
P.W.H. de Vreede
Part III: PLL's and Synthesizers
Introduction
267
2
On placing multiple inductor-based VCOs on the same mixed-signal substrate
269
18
J. Parker
M. Altmann
Fully integrated CMOS frequency synthesizers for wireless communications
287
38
B. De Muer
M. Steyaert
Design and optimization of RFCMOS-circuits for integrated PLL's and synthesizers
325
14
M. Tiebout
Frequency synthesis for integrated transceivers
339
18
J-W. Eikenbroek
S. Mattison
PLL frequency synthesizers: Phase noise issues and wide-band loops
357
26
M. de Queiroz Tavares
Low-power circuits for RF-frequency synthesizers in the low GHz range
383
 
D. Pfaff
Q. Huang