Course Handouts
A.1 Fully-differential amplifier
stability analysis and
simulation, Spectre STB
Analysis Document
A.2 Fully-differential Opamp
Design: CMFB Examples.
A.3 Switched Capacitor Circuit Simulation:
SpectreRF
Periodic Analysis
A.4 Circuit Noise Analysis and Simulation, Transient Noise
simulation [Online].
A.5 Noise Figure notes
A.6 Switched-capacitor circuit design
additional Slides.
A.7 Pipelined ADC Design handout from Prof. Nagendra Krishnapura
Reference Books
B.1 R. J. Baker, “CMOS: Circuit
Design, Layout and Simulation,” 3rd Ed., Wiley-IEEE, 2010.
B.2 B. Razavi,
“Design of Analog CMOS Integrated Circuits,” McGraw-Hill, 2002.
B.3 P. R. Gray, P. J. Hurst, S.
H. Lewis, R. G. Meyer, “Analog and Design of Analog Integrated Circuits,” 4th
Ed., Wiley, 2010.
B.4 T. C. Carusone,
D. A. Jones, K. W. Martin, “Analog Integrated Circuit Design,” 2nd Ed.,
Wiley, 2012.
B.5 R. Gregorian, G. C. Temes, “Analog MOS Integrated Circuits for Signal
Processing,” 1st ed., Wiley-Interscience, 1986.
Analog Basics
P.1 Negative Feedback: N. Krishnapura,
S. Pavan, “Tutorial on Negative feedback system and
circuit design,” at the 22nd International Conference on VLSI Design,
Jan 2009, [Online]
P.2 Mismatch Analysis: Pelgrom et. al., “Matching Properties of MOS Transistors,” IEEE JSSC, vol. 24, no. 5, Oct. 1989 [Online].
P.3
C. Enz, G. Temes, “Circuit techniques for reducing the Effect of Op-Amp Imperfections: Autozeroing, Correlated Double Sampling and
Chopper Stabilization” - Proceedings
of the IEEE, vol. 84 No. 11,
Nov. 1996 [Online].
P.4 K. Lakshmikumar,
R.A. Hadaway, M. A. Copeland, "Characterization
and modeling of mismatch in MOS transistors for precision analog design," IEEE
Journal of Solid-State Circuits, vol. 21, pp. 1057 - 1066, December 1986.
P.5 P. Jespers,
“Sizing CMOS circuits by means of the gm/ID methodology and a compact model”,
MOS-AK Workshop [Online]
Opamp Design
O.1 N. Krishnapura,
“Opamp analysis and performance summary” [Online]
O.2 D. M. Monticelli,
“A quad CMOS single-supply op amp with rail-to-rail output swing," IEEE
Journal of Solid-State Circuits, vol. 21, pp. 1026 - 1034, December 1986.
O.3 B.K. Thandri,
J. Silva-Martinez, "A robust feed-forward compensation scheme for
multistage operational transconductance amplifiers with no Miller
capacitors," IEEE J. Solid-State Circuits, vol.38, no.2, pp. 237-
243, Feb 2003.
Switched Capacitor
Circuits
C.1 R. Schreier, J. Silva, J. Steensgaard,
G. C. Temes,“Design-Oriented Estimation of Thermal
Noise in Switched-Capacitor Circuits,” IEEE TCAS-I, vol. 52, no. 11, pp.
2358-2368, Nov. 2005.
Data Conversion Fundamentals
D.1 M. Gustavsson, J. Wikner, N. Tan, CMOS Data Converters for
Communications, Kluwer Academic
Publishers, 2000.
D.2 B. Razavi, Principles
of Data Conversion System Design, Wiley-IEEE Press, 1994.
D.3 B. Murmann, "ADC Performance Survey
1997-2009," [Online].
D.4 S. Pavan,
N. Krishnapura, EE658: Data Conversion Circuits
Course at IIT
D.5 The
Fundamentals of FFT-Based Signal Analysis and Measurement, T.I. App Note here.
Sample-and-Hold
Circuits
S.1
Pipelined ADCs
Q.1 K. Nagaraj
et al., “A 250-mW, 8-b, 52-Msamples/s parallel-pipelined A/D converter with
reduced number of amplifiers”, IEEE Journal of Solid-State Circuits, pp.
312-320, vol. 32, no. 3, March 1997.
Q.2 S. Kulhalli
et al., “A 30mW 12b 21MSample/s pipelined CMOS ADC”, 2002 IEEE International
Solid State Conference, pp. 18.4, vol. I, pp. 248-249,492, vol. II.
Q.3 N. Sasidhar
et al., “A Low Power Pipelined ADC Using Capacitor and Opamp Sharing Technique
With a Scheme to Cancel the Effect of Signal Dependent Kickback”, IEEE Journal of Solid State Conference, pp.
2392-2401, vol. 44, no. 9, Sep 2009.
CAD for Analog Design
E.1 Ken Kundert,
“The Designer’s Guide to Spice & Spectre,”
E.2 “Functional Verification of a Differential Operational Amplifier,” Cadence Whitepaper [Online].
E.3 K. Kundert, “Simulating Switched-Capacitor Filters with SpectreRF,” Designer’s Guide Community [Online]. (Note: Use
the virtuoso GUI for PSS analysis instead
the script.)
E.4 Cadence Whitepaper :
Creating Analog
Behavioral Models