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微电子电路分析与设计
  • 书号:7030101286
    作者:M.H.Rashid
  • 外文书名:
  • 装帧:平装
    开本:16开
  • 页数:1016
    字数:1500000
    语种:英文
  • 出版社:科学出版社
    出版时间:2002-04-01
  • 所属分类:TN4 微电子学、集成电路(IC)
  • 定价: ¥80.00元
    售价: ¥63.20元
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本书为国外高校电子信息类优秀教材(英文影印版)之一。
本书介绍了微电子电路的设计过程、特点和分析方法,并介绍了二极管及其应用、放大设备和放大器、数字逻辑门、集成电路及其应用。
本书可作为电气工程和计算机专业的本科生教材,也可供相关专业技术人员参考。
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目录

  • Preface
    CHAPTER 1 Introduction to Electronics and Design
    1.1Introduction
    1.2History of Electronics
    1.3Electronic Systems
    1.4Electronic Signals and Notation
    1.5Classifications of Electronic Systems
    1.6Specifications of Electronic Systems
    1.7Design of Electronic Systems
    1.8Design of Electronic Circuits
    1.9Electronic Devices
    CHAPTER 2 Diodes
    2.1Introduction
    2.2Ideal Diodes
    2.3Transfer Characteristic of Diode Circuits
    2.4Practical Diodes
    2.5Physical Operation of Junction Diodes
    2.6Characteristic of Practical Diodes
    2.7Determination of Diode Constants
    2.8Temperature Effects
    2.9Analysis of Practical Diode Circuits
    2.10Modeling of Practical Diodes
    2.11Zener Diodes
    2.12Light-Emitting Diodes
    2.13Schottky Barrier Diodes
    2.14Power Rating
    2.15Diode Data Sheets
    CHAPTER 3 Applications of Diodes
    3.1Introduction
    3.2Diode Rectifiers
    3.3Output Filters for Rectifiers
    3.4Clippers
    3.5Clamping Circuits
    3.6Peak Detectors and Demodulators
    3.7Voltage Multipliers
    3.8Function Generators
    CHAPTER 4 Introduction to Amplifiers
    4.1Introduction
    4.2Amplifier Characteristics
    4.3Amplifier Types
    4.4PSpice/SPICE Amplifier Models
    4.5Gain Relationships
    4.6Cascaded Amplifiers
    4.7Introduction to Transistor Amplifiers
    4.8Frequency Response of Amplifiers
    4.9Miller's Theorem
    4.10Amplifier Design
    CHAPTER 5 Amplifying Devices
    5.1Introduction
    5.2Bipolar Junction Transistors
    5.3Field-Effect Transistors
    5.4FETs versus BJTs
    5.5Design of Amplifiers
    CHAPTER 6 Introduction to Operational Amplifiers
    6.1Introduction
    6.2Characteristics of Ideal Op-Amps
    6.3Op-Amp PSpice/SPICE Models
    6.4Analysis of Ideal Op-Amp Circuits
    6.5Op-Amp Applications
    6.6Circuits with Op-Amps and Diodes
    6.7Op-Amp Circuit Design
    CHAPTER 7 Characteristics of Practical Op-Amps
    7.1Introduction
    7.2Internal Structure of Op-Amps
    7.3Parameters fo Practical Op-Amps
    7.4Offset Voltaage Adjustment
    7.5Measurement of Offset Parameters
    CHAPTER 8 Frequency Response of Amplifiers
    8.1Introduction
    8.2Frequency Model and Response of BJTs
    8.3Frequency Model and Response of FETs
    8.4Bode Plots
    8.5Amplifier Frequency Response
    8.6Short-Circuit and Zero-Value Methods for Determining Break Frequencies
    8.7Frequency Response of Common-Emitter BJT Amplifiers
    8.8Frequency Response of Common-Collector BJT Amplifiers
    8.9Frequency Response of Common-Base BJT Amplifiers
    8.10Frequency Response of FET Amplifiers
    8.11Multistage Amplifiers
    8.12Frequency Rseponse of Op-Amp Circuits
    8.13Designing for Frequency Response
    CHAPTER 9 Active Filters
    9.1Introduction
    9.2Active versus Passive Filters
    9.3Types of Active Filters
    9.4The Biquadratic Function
    9.5Butterworth Filters
    9.6Low-Pass Filters
    9.7High-Pass Filters
    9.8Band-Pass Filters
    9.9Band-Reject Filters
    9.10All-Pass Filters
    9.11Switched Capacitor Filters
    9.12Filter Design Guidelines
    CHAPTER 10 Feedback Amplifiers
    10.1Introduction
    10.2Feedback
    10.3Feedback Analysis
    10.4Feedback Topologies
    10.5Analysis of Feedback Amplifiers
    10.6Series-Shunt Feedback
    10.7Series-Series Feedback
    10.8Shunt-Shunt Feedback
    10.9Shunt-Series Feedback
    10.10Feedback Circuit Design
    10.11Stability Analysis
    10.12Compensation Techniques
    CHAPTER 11 Oscillators
    11.1Introduction
    11.2Principles of Oscillators
    11.3Phase-Shift Oscillators
    11.4Quadrature Oscillators
    11.5Three-Phase Oscillators
    11.6Wien-Bridge Oscillators
    11.7Colpitts Oscillators
    11.8Hartley Oscillators
    11.9Crystal Oscillators
    11.10Active-Filter Tuned Oscillators
    11.11Design of Oscillators
    CHAPTER 12 Introduction to Digital Electronics
    12.1Introduction
    12.2Logic States
    12.3Logic Gates
    12.4Performance Parameters of Logic Gates
    12.5NMOS Inverters
    12.6NMOS Logic Circuits
    12.7CMOS Inverters
    12.8CMOS Logic Circuits
    12.9Comparison of CMOS and NMOS Gates
    12.10BJT Inverters
    12.11Transistor-Transistor Logic(TTL)Gates
    12.12Emitter-Coupled Logic(ECL)OR/NOR Gates
    12.13BiCMOS Inverters
    12.14Interfacing of Logic Gates
    12.15Comparison of Logic Gates
    12.16Design of Logic Circuits
    CHAPTER 13 Active Sources and Differential Amplifiers
    13.1Introduction
    13.2Internal Structure of Differential Amplifiers
    13.3BJT Current Sources
    13.4JFET Current Sources
    13.5MOSFET Current Sources
    13.6Design of Active Current Sources
    13.7Active Voltage Sources
    13.8Characteristics of Differential Amplifiers
    13.9BJT Differential Amplifiers
    13.10BJT Differential Amplifiers with Active Loads
    13.11JFET Differential Amplifiers
    13.12MOS Differential Amplifiers
    13.13BiCMOS Differential Amplifiers
    13.14Frequency Response of Differential Amplifiers
    13.15Design of Differential Amplifiers
    CHAPTER 14 Power Amplifiers
    14.1Introduction
    14.2Classification of Power Amplifiers
    14.3Emitter Followers
    14.4Class A Amplifiers
    14.5Class B Push-Pull Amplifiers
    14.6Complementary Class AB Push-Pull Amplifiers
    14.7Quasi-Complementary Class AB Push-Pull Amplifiers
    14.8Transformer-Coupled Class AB Push-Pull Amplifiers
    14.9Short-Circuit and Thermal Protection
    14.10Power Op-Amps
    14.11Thermal Considerations
    14.12Design of Power Amplifiers
    CHAPTER 15 Operational Amplifiers
    15.1Introduction
    15.2Internal Structure of Op-Amps
    15.3Op-Amp Parameters
    15.4JFET Op-Amps
    15.5CMOS Op-Amps
    15.6BiCMOS Op-Amps
    15.7BJT Op-Amps
    15.8Analysis of the LM741 Op-Amp
    15.9Design of Op-Amps
    CHAPTER 16 Integrated Analog Circuits and Appplications
    16.1Introduction
    16.2Comparators
    16.3Zero-Crossing Detectors
    16.4Schmitt Triggers
    16.5Square-Wave Generators
    16.6Triangular-Wave Generators
    16.7Sawtooth-Wave Generators
    16.8Voltage-Controlled Oscillators
    16.9The 555 Timer
    16.10Phase-Lock Loops
    16.11Voltage-to-Frequency and Frequency-to-Voltage Converters
    16.12Sample-and-Hold Circuits
    16.13Digital-to-Analog Converters
    16.14Analog-to-Digital Converters
    16.15Circuit Design Using Analog ICS
    APPENDIXES
    Appendix A:Introduction to PSpice
    Appendix B:Review of Basic Circuits
    Appendix C:Low-Frequency Hybrid BJT Model
    Appendix D:Ebers-Moll Model of Bipolar Junction Transistors
    Appendix E:Passive Components
    Appendix F:Design Problems
    Answers to Selected Exercises
    Index
    About the Author
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