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9780195221879

Microelectronic Circuits, 5th Ed + Understanding Semiconductor Devices, Chapters 1-6 Only

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  • ISBN-13: 9780195221879
  • ISBN: 0195221877
  • Publication Date: 2006
  • Publisher: Oxford University Press, Incorporated

AUTHOR

Sedra, Adel S., Smith, Kenneth C., Dimitrijev, Sima

SUMMARY

DETAILED TABLE OF CONTENTS Each chapter begins with an Introduction and ends with a Summary and Problems. Preface PART I: DEVICES AND BASIC CIRCUITS 1. Introduction to Electronics 1.1. Signals 1.2. Frequency Spectrum of Signals 1.3. Analog and Digital Signals 1.4. Amplifiers 1.4.1. Signal Amplification 1.4.2. Amplifier Circuit Symbol 1.4.3. Voltage Gain 1.4.4. Power Gain and Current Gain 1.4.5. Expressing Gain in Decibels 1.4.6. The Amplifier Power Supplies 1.4.7. Amplifier Saturation 1.4.8. Nonlinear Transfer Characteristics and Biasing 1.4.9. Symbol Convention 1.5. Circuit Models for Amplifiers 1.5.1. Voltage Amplifiers 1.5.2. Cascaded Amplifiers 1.5.3. Other Amplifier Types 1.5.4. Relationships Between the Four Amplifier Models 1.6. Frequency Response of Amplifiers 1.6.1. Measuring the Amplifier Frequency Response 1.6.2. Amplifier Bandwidth 1.6.3. Evaluating the Frequency Response of Amplifiers 1.6.4. Single-Time-Constant Networks 1.6.5. Classification of Amplifiers Based on Frequency Response 1.7. Digital Logic Inverters 1.7.1. Function of the Inverter 1.7.2. The Voltage Transfer Characteristic (VTC) 1.7.3. Noise Margins 1.7.4. The Ideal VTC 1.7.5. Inverter Implementation 1.7.6. Power Dissipation 1.7.7. Propagation Delay 1.8. Circuit Simulation Using SPICE 2. Operational Amplifiers 2.1. The Ideal Op Amp 2.1.1. The Op-Amp Terminals 2.1.2. Function and Characteristics of the Ideal Op Amp 2.1.3. Differential and Common-Mode Signals 2.2. The Inverting Configuration 2.2.1. The Closed-Loop Gain 2.2.2. Effect of Finite Open-Loop Gain 2.2.3. Input and Output Resistances 2.2.4. An Important Application--The Weighted Summer 2.3. The Noninverting Configuration 2.3.1. The Closed-Loop Gain 2.3.2. Characteristics of the Noninverting Configuration 2.3.3. Effect of Finite Open-Loop Gain 2.3.4. The Voltage Follower 2.4. Difference Amplifiers 2.4.1. A Single Op-Amp Difference Amplifier 2.4.2. A Superior Circuit--The Instrumentation Amplifier 2.5. Effect of Finite Open-Loop Gain and Bandwidth on Circuit Performance 2.5.1. Frequency Dependence of the Open-Loop Gain 2.5.2. Frequency Response of Closed-Loop Amplifiers 2.6. Large-Signal Operation of Op Amps 2.6.1. Output Voltage Saturation 2.6.2. Output Current Limits 2.6.3. Slew Rate 2.6.4. Full-Power Bandwidth 2.7. DC Imperfections 2.7.1. Offset Voltage 2.7.2. Input Bias and Offset Currents 2.8. Integrators and Differentiators 2.8.1. The Inverting Configuration with General Impedances 2.8.2. The Inverting Integrator 2.8.3. The Op-Amp Differentiator 2.9. The SPICE Op-Amp Model and Simulation Examples 2.9.1. Linear Macromodel 2.9.2. Nonlinear Macromodel 3. Diodes 3.1. The Ideal Diode 3.1.1. Current-Voltage Characteristic 3.1.2. A Simple Application: The Rectifier 3.1.3. Another Application: Diode Logic Gates 3.2. Terminal Characteristics of Junction Diodes 3.2.1. The Forward-Bias Region 3.2.2. The Reverse-Bias Region 3.2.3. The Breakdown Region 3.3. Modeling the Diode Forward Characteristic 3.3.1.Sedra, Adel S. is the author of 'Microelectronic Circuits, 5th Ed + Understanding Semiconductor Devices, Chapters 1-6 Only ', published 2006 under ISBN 9780195221879 and ISBN 0195221877.

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