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005 20221101193107.0
008 010921s2002 nyua b 001 0 eng d
010 _a 2002020034
011 _aBIB MATCHES WORLDCAT
020 _a0195116445
020 _a9780195116441
035 _a(ATU)b10695631
035 _a(OCoLC)49326897
040 _aDLC
_beng
_erda
_cDLC
_dUKM
_dBAKER
_dBTCTA
_dYDXCP
_dOCLCG
_dIG#
_dTVG
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042 _apcc
050 0 0 _aTK7874
_b.A428 2002
082 0 4 _a621.3815
100 1 _aAllen, P. E.
_q(Phillip E.),
_eauthor.
_9229002
245 1 0 _aCMOS analog circuit design /
_cPhillip E. Allen, Douglas R. Holberg.
246 3 _aCMOS analogue circuit design
250 _aSecond edition.
264 1 _aNew York :
_bOxford University Press,
_c2002.
300 _axvi, 784 pages :
_billustrations ;
_c25 cm.
336 _atext
_btxt
_2rdacontent
337 _aunmediated
_bn
_2rdamedia
338 _avolume
_bnc
_2rdacarrier
490 1 _aThe Oxford series in electrical and computer engineering
504 _aIncludes bibliographical references and index.
505 0 0 _gCh. 1.
_tIntroduction and Background.
_g1.1.
_tAnalog Integrated-Circuit Design.
_g1.2.
_tNotation, Symbology, and Terminology.
_g1.3.
_tAnalog Signal Processing.
_g1.4.
_tExample of Analog VLSI Mixed-Signal Circuit Design --
_gCh. 2.
_tCMOS Technology.
_g2.1.
_tBasic MOS Semiconductor Fabrication Processes.
_g2.2.
_tThe pn Junction.
_g2.3.
_tThe MOS Transistor.
_g2.4.
_tPassive Components.
_g2.5.
_tOther Considerations of CMOS Technology.
_g2.6.
_tIntegrated Circuit Layout --
_gCh. 3.
_tCMOS Device Modeling.
_g3.1.
_tSimple MOS Large-Signal Model (Spice Level 1).
_g3.2.
_tOther MOS Large-Signal Model Parameters.
_g3.3.
_tSmall-Signal Model for the MOS Transistor.
_g3.4.
_tComputer Simulation Models.
_g3.5.
_tSubthreshold MOS Model.
_g3.6.
_tSPICE Simulation of MOS Circuits --
_gCh. 4.
_tAnalog CMOS Subcircuits.
_g4.1.
_tMOS Switch.
_g4.2.
_tMOS Diode/Active Resistor.
_g4.3.
_tCurrent Sinks and Sources.
_g4.4.
_tCurrent Mirrors.
_g4.5.
_tCurrent and Voltage References.
_g4.6.
_tBandgap Reference --
_gCh. 5.
_tCMOS Amplifiers.
_g5.1.
_tInverters.
_g5.2.
_tDifferential Amplifiers.
_g5.3.
_tCascode Amplifiers.
_g5.4.
_tCurrent Amplifiers.
_g5.5.
_tOutput Amplifiers.
_g5.6.
_tHigh-Gain Amplifier Architectures --
_gCh. 6.
_tCMOS Operational Amplifiers.
_g6.1.
_tDesign of CMOS Op Amps.
_g6.2.
_tCompensation of Op Amps.
_g6.3.
_tDesign of Two-Stage Op Amps.
_g6.4.
_tPower-Supply Rejection Ratio of Two-Stage Op Amps.
_g6.5.
_tCascode Op Amps.
_g6.6.
_tSimulation and Measurement of Op Amps.
_g6.7.
_tMacromodels for Op Amps --
_gCh. 7.
_tHigh-Performance CMOS Op Amps.
_g7.1.
_tBuffered Op Amps.
_g7.2.
_tHigh-Speed/Frequency Op Amps.
_g7.3.
_tDifferential-Output Op Amps.
_g7.4.
_tMicropower Op Amps.
_g7.5.
_tLow-Noise Op Amps.
_g7.6.
_tLow-Voltage Op Amps --
_gCh. 8.
_tComparators.
_g8.1.
_tCharacterization of a Comparator.
_g8.2.
_tTwo-Stage, Open-Loop Comparators.
_g8.3.
_tOther Open-Loop Comparators.
_g8.4.
_tImproving the Performance of Open-Loop Comparators.
_g8.5.
_tDiscrete-Time Comparators.
_g8.6.
_tHigh-Speed Comparators --
_gCh. 9.
_tSwitched Capacitor Circuits.
_g9.1.
_tSwitched Capacitor Circuits.
_g9.2.
_tSwitched Capacitor Amplifiers.
_g9.3.
_tSwitched Capacitor Integrators.
_g9.4.
_tz-Domain Models of Two-Phase Switched Capacitor Circuits.
_g9.5.
_tFirst-Order Switched Capacitor Circuits.
_g9.6.
_tSecond-Order Switched Capacitor Circuits.
_g9.7.
_tSwitched Capacitor Filters --
_gCh. 10.
_tDigital-Analog and Analog-Digital Converters.
_g10.1.
_tIntroduction and Characterization of Digital-Analog Converters.
_g10.2.
_tParallel Digital-Analog Converters.
_g10.3.
_tExtending the Resolution of Parallel Digital-Analog Converters.
_g10.4.
_tSerial Digital-Analog Converters.
_g10.5.
_tIntroduction and Characterization of Analog-Digital Converters.
_g10.6.
_tSerial Analog-Digital Converters.
_g10.7.
_tMedium-Speed Analog-Digital Converters.
_g10.8.
_tHigh-Speed Analog-Digital Converters.
_g10.9.
_tOversampling Converters.
_gApp. A.
_tCircuit Analysis for Analog Circuit Design --
_gApp. B.
_tCMOS Device Characterization --
_gApp. C.
_tTime and Frequency Domain Relationships for Second-Order Systems.
520 _a"After years of anticipation, respected authors Phil Allen and Doug Holberg bring you the second edition of their popular textbook, CMOS Analog Circuit Design. From the forefront of CMOS technology, Phil and Doug have combined their expertise as engineers and academics to present a cutting-edge and effective overview of the principles and techniques for designing circuits. Their two main goals are:; BL to mix the academic and practical viewpoints in a treatment that is neither superficial nor overly detailed and; BL to teach analog integrated circuit design with a hierarchically organized approach.; Most of the techniques and principles presented in the second edition have been taught to industry members over the last ten years. Their needs and questions have greatly shaped the revision process, making this new edition a valuable resource for practicing engineers.; The trademark approach of Phil and Doug's textbook is its design recipes, which take readers step-by-step t the creation of real circuits, explaining and increasing understanding of complex design problems. The book provides detailed coverage of often-neglected areas and deliberately leaves out bipolar analog circuits, since CMOS is the dominant technology for analog integrated circuit design. Appropriate for advanced undergraduates and graduate students with background knowledge in basic electronics including biasing, modeling, circuit, analysis, and frequency response, CMOS Analog Circuit Design, Second Edition, presents a complete picture of design (including modeling, simulation, and testing) and enables readers to undertake the design of an analog circuit that can be implemented by CMOS technology."--Publisher description.
588 _aMachine converted from AACR2 source record.
650 0 _aLinear integrated circuits
_9320113
650 0 _aMetal oxide semiconductors, Complementary
_9320782
650 0 _aElectronic circuit design
_9317174
700 1 _aHolberg, Douglas R.,
_eauthor.
_91043074
830 0 _aOxford series in electrical and computer engineering.
_9240462
907 _a.b10695631
_b26-03-18
_c27-10-15
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