Limit search to available items
Book Cover
E-book

Title Analog MOS integrated circuits, II / edited by Paul R. Gray, Bruce A. Wooley, Robert W. Brodersen
Published New York : IEEE Press, ©1989

Copies

Description 1 online resource (ix, 498 pages) : illustrations
Series IEEE Press selected reprint series
IEEE Press selected reprint series.
Contents Preface -- Part 1: Basic Concepts -- Section 1.1: Circuit Concepts and Design Techniques -- The Design of High-Performance Analog Circuits on Digital CMOS Chips, E.A. Vittoz (IEEE Journal of Solid-State Circuits, June 1985) -- MOS Operational Amplifier Design--A Tutorial Overview, P.R. Gray and R.G. Meyer (IEEE Journal of Solid-State Circuits, December 1982) -- A Programmable CMOS Dual Channel Interface Processor for Telecommunications Applications, B.K. Ahuja, P.R. Gray, W.M. Baxter, and G.T. Uehara (IEEE Journal of Solid-State Circuits, December 1984) -- A Precision CMOS Bandgap Reference, 7. Michejda and S.K. Kim (IEEE Journal of Solid-State Circuits, December 1984) -- A Precision Curvature-Compensated CMOS Bandgap Reference, B.-S. Song and P.R. Gray (IEEE Journal of Solid-State Circuits, December 1983) -- CMOS Voltage References Using Lateral Bipolar Transistors, M.G.R. Degrauwe, O.N. Leuthold, E.A. Vittoz, H.J. Oguey, and A. Descombes (IEEE Journal of Solid-State Circuits, December 1985) -- A Low Drift Fully Integrated MOSFET Operational Amplifier, R. Poujois and J. Borel (IEEE Journal of Solid-State Circuits, August 1978) -- Large Swing CMOS Power Amplifier, K.E. Brehmer and J.B. Wieser (IEEE Journal of Solid-State Circuits, December 1983) -- A High-Performance CMOS Power Amplifier, J.A. Fisher (IEEE Journal of Solid-State Circuits, December 1985) -- An Improved Frequency Compensation Technique for CMOS Operational Amplifiers, B.K. Ahuja (IEEE Journal of Solid-State Circuits, December 1983) -- Design Considerations for a High-Performance 3-/xm CMOS Analog Standard-Cell Library, C.A. Laber, C.F. Rahim, S.F. Dreyer, G.T. Uehara, P.T. Kwok, and P.R. Gray (IEEE Journal of Solid-State Circuits, April 1987) -- A MOS Switched-Capacitor Instrumentation Amplifier, R.C. Yen and P.R. Gray (IEEE Journal of Solid-State Circuits, December 1982) -- A Micropower CMOS-Instrumentation Amplifier, M. Degrauwe, E. Vittoz, and I. Verbauwhede (IEEE Journal of Solid-State Circuits, June 1985)
A Precision Variable-Supply CMOS Comparator, D.J. Allstot (IEEE Journal of Solid-State Circuits, December 1982) -- A 750MS/S NMOS Latched Comparator, D.C. Soo, A.M. Voshchenkov, G.M. Chin, V.D. Archer, M. Lau, M. Morris, P. AT. Ko, R.G. Meyer, and B.A. Wooley (1985 IEEE International Solid-State Circuits Conference, February 1985) -- Impact of Scaling on MOS Analog Performance, S. Wong and C.A.T. Salama (IEEE Journal of Solid-State Circuits, February 1983) -- Matching Properties, and Voltage and Temperature Dependence of MOS Capacitors, / . L. McCreary (IEEE Journal of Solid-State Circuits, December 1981) -- Random Error Effects in Matched MOS Capacitors and Current Sources, J.-B. Shyu, G.C. Temes, and F. Krummenacher (IEEE Journal of Solid-State Circuits, December 1984) -- Characterization and Modeling of Mismatch in MOS Transistors for Precision Analog Design, K.R. Lakshmikumar, R.A. Hadaway, and M.A. Copeland (IEEE Journal of Solid-State Circuits, December 1986) -- Measurement and Modeling of Charge Feedthrough in n-Channel MOS Analog Switches, W.B. Wilson, H.Z. Massoud, E.J. Swanson, R.T. George, Jr., and R. B. Fair (IEEE Journal of Solid-State Circuits, December 1985) -- Measurement and Analysis of Charge Injection in MOS Analog Switches, J.-H. Shieh, M. Patil, and B. /. Sheu (IEEE Journal of Solid-State Circuits, April 1987) -- Section 1.2: Monolithic Filter Design -- Design Techniques for MOS Switched Capacitor Ladder Filters, G.M. Jacobs, D.J. Allstot, R.W. Brodersen, and P.R. Gray (IEEE Transactions on Circuits and Systems, December 1978) -- Technological Design Considerations for Monolithic MOS Switched-Capacitor Filtering Systems, D.J. Allstot and W.C. Black, Jr. (Proceedings of the IEEE, August 1983) -- Switched-Capacitor Circuit Design, R. Gregorian, K.W. Martin, and G.C. Temes (Proceedings of the IEEE, August 1983) -- A High Performance Low Power CMOS Channel Filter, W.C. Black, Jr., D.J. Ailstot, and R.A. Reed (IEEE Journal of Solid-State Circuits, December 1980)
Effects of the Op Amp Finite Gain and Bandwidth on the Performance of Switched-Capacitor Filters, K. Martin and A.S. Sedra (IEEE Transactions on Circuits and Systems, August 1981) -- High-Frequency CMOS Switched-Capacitor Filters for Communications Application, T.C. Choi, R.T. Kaneshiro, R.W. Brodersen, P.R. Gray, W.B. Jett, and M. Wilcox (IEEE Journal of Solid-State Circuits, December 1983) -- A Low-Noise Chopper-Stabilized Differential Switched-Capacitor Filtering Technique, K.-C. Hsieh, P.R. Gray, D. Senderowicz, and D.G. Messerschmitt (IEEE Journal of Solid-State Circuits, December 1981) -- A High-Performance Micropower Switched-Capacitor Filter, R. Castello and P.R. Gray (IEEE Journal of Solid-State Circuits, December 1985) -- Performance Limitations in Switched-Capacitor Filters, R. Castello and P.R. Gray (IEEE Transactions on Circuits and Systems, September 1985) -- Fully Integrated Active RC Filters in MOS Technology, M. Banu and Y. Tsividis (IEEE Journal of Solid-State Circuits, December 1983) -- Section 1.3: Analog-Digital Conversion -- A Self-calibrating 15 Bit CMOS A/D Converter, H.-S. Lee, D.A. Hodges, and P.R. Gray (IEEE Journal of Solid-State Circuits, December 1984) -- A Ratio-Independent Algorithmic Analog-to-Digital Conversion Technique, P.W. Li, M.J. Chin, P.R. Gray, and R, Castello (IEEE Journal of Solid-State Circuits, December 1984) -- A Per-Channel A/D Converter Having 15-Segment jz-255 Companding, J.C. Candy, W.H. Ninke, and B.A. Wooley (IEEE Transactions on Communications, January 1976) -- A Use of Double Integration in Sigma Delta Modulation, J.C. Candy (IEEE Transactions on Communications, March 1985) -- MOS ADC-Filter Combination That Does Not Require Precision Analog Components, M.W. Hauser, P.J. Hurst, and R.W. Brodersen (1985 IEEE International Solid-State Circuits Conference, February 1985) -- A Voiceband 15b Interpolate Converter Chip Set, K. Yamakido, S. Nishita, M. Kokubo, H. Shirasu, K. Ohwada, and T. Nishihara (1986 IEEE International Solid-State Circuits Conference, February 1986)
A 12-Bit Sigma-Delta Analog-to-Digital Converter with a 15-MHz Clock Rate, R. Koch, B. Heise, F. Eckbauer, E. Engelhardt, J.A. Fisher, and F. Parzefall (IEEE Journal of Solid-State Circuits, December 1986) -- An 8-Bit High-Speed CMOS A/D Converter, T. Kumamoto, M. Nakaya, H. Honda, S. Asai, Y. Akasaka, and Y. Horiba (IEEE Journal of Solid-State Circuits, December 1986) -- An 8-MHz CMOS Subranging 8-Bit A/D Converter, A.G.F. Dingwall and V. Zazzu (IEEE Journal of Solid-State Circuits, December 1985) -- A Pipelined 5-Msample/s 9-Bit Analog-to-Digital Converter, S.H. Lewis and P.R. Gray (IEEE Journal of Solid-State Circuits, December 1987) -- Part 2: Representative Applications -- Section 2.1: Data Acquisition Applications -- A Monolithic 12b + Sign Successive Approximation A/D Converter, J.J. Connolly, T.O. Redfern, S.W. Chin, and T.M. Frederiksen (1980 IEEE International Solid-State Circuits Conference, February 1980) -- An Error-Correcting 14b/20/xs CMOS A/D Converter, Z.G. Boyacigiller, B. Weir, and P.D. Bradshaw (1981 IEEE International Solid-State Circuits Conference, February 1981) -- Autocalibration Cements 16-Bit Performance, J. Croteau, D. Kerth, and D. Welland (Electronic Design, September 4, 1986) -- A CMOS Programmable Self-calibrating 13-Bit Eight-Channel Data Acquisition Peripheral, H. Ohara, H.X. Ngo, M. /. Armstrong, C.F. Rahim, and P.R. Gray (IEEE Journal of Solid-State Circuits, December 1987) -- An 80-MHz 8-Bit CMOS D/A Converter, T. Miki, Y. Nakamura, M. Nakaya, S. Asai, Y. Akasaka, and Y. Horiba (IEEE Journal of Solid-State Circuits, December 1986) -- A 1-GHz 6-Bit ADC System, K. Poulton, J.J. Corcoran, and T. Hornak (IEEE Journal of Solid-State Circuits, December 1987) -- Section 2.2: Telecommunications Applications -- A Single-Chip CMOS PCM Codec with Filters, D.G. Marsh, B.K. Ahuja, T. Misawa, M.R. Dwarakanath, P.E. Fleischer, and V.R. Saari (IEEE Journal of Solid-State Circuits, August 1981) -- A 3-/aL1/4m CMOS Digital Codec with Programmable Echo Cancellation and Gain Setting, P. Defraeye, D. Rabaey, W. Roggeman, J. Yde, and L. Kiss (IEEE Journal of Solid-State Circuits, June 1985)
A 16O-kb/s Digital Subscriber Loop Transceiver with Memory Compensation Echo Canceller, R.P. Colbeck and P.B. Gillingham (IEEE Journal of Solid-State Circuits, February 1986) -- A CMOS Switched-Capacitor Variable Line Equalizer, T. Suzuki, H. Takatori, H. Shirasu, M. Ogawa, and N. Kunimi (IEEE Journal of Solid-State Circuits, December 1983) -- A Single-Chip ̂/-Interface Transceiver for ISDN, D. Sallaerts, D.H. Rabaey, R.F. Dierckx, J. Sevenhans, D.R. Haspeslagh, and B. 7. De Ceulaer (IEEE Journal of Solid-State Circuits, December 1987) -- A CMOS Double-Heterodyne FM Receiver, B.-S. Song and J.R. Barner (IEEE Journal of Solid-State Circuits, December 1986) -- Section 2.3: Data Communications Applications -- A Full Duplex 1200/300 Bit/s Single-Chip CMOS Modem, G.R. Shapiro and A.C.E. Pindar (IEEE Journal of Solid-State Circuits, December 1985) -- Line and Receiver Interface Circuit for High-Speed Voice-Band Modems, J.H. Fischer, J.L. Sonntag, J.S. Lavranchuk, D.P. Ciolini, A. Ganesan, D.G. Marsh, W.E. Keasler, J. Plany, and L.H. Young (IEEE Journal of Solid-State Circuits, December 1987) -- A Single-Chip Frequency-Shift Keyed Modem Implemented Using Digital Signal Processing, R.J. Apfel, Eidsonand D.M Taylor (IEEE Journal of Solid-State Circuits, December 1984) -- A CMOS Ethernet Serial Interface Chip, H-M. Haung, D. Banatao, G. Perlegos, T-C. Wu, and T-L. Chiu (1984 IEEE International Solid-State Circuits Conference, February 1984) -- A Single Chip NMOS Ethernet Controller, A.G. Bell and G. Borriello (1983 IEEE International Solid-State Circuits Conference, February 1983) -- A Monolithic Line Interface Circuit for Tl Terminals, K.J. Stern, N.S. Sooch, D.J. Knapp, and M.A. Nix (1987 IEEE International Solid-State Circuits Conference, February 1987) -- A 50-Mbit/s CMOS Optical Transmitter Integrated Circuit, A.L. Fisher and N. Linde (IEEE Journal of Solid State Circuits, December 1986) -- A 2Gb/s Silicon NMOS Laser Driver, R.G. Swartz, A.M. Voshchenkov, G.M. Chin, S.N. Finegan, M.Y. Lau, M.D. Morris, V.D. Archer, and P.K. Ko (1986 IEEE International Solid-State Circuits Conference, February 1986)
A 50Mb/s CMOS Optical Data Link Receiver Integrated Circuit, / M Steininger and E.J. Swanson (1986 IEEE International Solid-State Circuits Conference, February 1986) -- Gigahertz Transresistance Amplifiers in Fine Line NMOS, A.A. Abidi (IEEE Journal of Solid-State Circuits December 1984) -- Author Index -- Subject Index -- Editors' Biographies
Bibliography Includes bibliographical references and indexes
Notes Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002. http://purl.oclc.org/DLF/benchrepro0212 MiAaHDL
English
digitized 2011 HathiTrust Digital Library committed to preserve pda MiAaHDL
Print version record
Subject Linear integrated circuits.
Metal oxide semiconductors.
Integrated circuits -- Large scale integration.
Metal oxide semiconductors
Integrated circuits -- Large scale integration
Integrated circuits -- Large scale integration
Linear integrated circuits
Metal oxide semiconductors
MOS (électronique)
Electrical & Computer Engineering.
Engineering & Applied Sciences.
Electrical Engineering.
Metal ions.
Form Electronic book
Author Gray, Paul R., 1942-
Wooley, Bruce A., 1943-
Brodersen, Robert W., 1945-
IEEE Solid-State Circuits Council.
ISBN 9780470544150
0470544155
Other Titles Analog MOS integrated circuits 2
Analog MOS integrated circuits two
Analog MOS integrated circuits 2
Analog MOS integrated circuits two
Analog MOS integrated circuits 2
Analog MOS integrated circuits two
Analog MOS integrated circuits 2
Analog MOS integrated circuits two