ENGLISH

Schaum's Outline of Electronic Devices and Circuits

Book information

Publisher
McGraw-Hill Professional Publishing
Year
2002
ISBN
9780071398305, 0-07-139830-9, 0-07-136270-3, 0-13-747270-6, 0-471-36574-2, 0-471-40740-2
Language
english
Format
PDF
Filesize
7 MB (6903063 bytes)
Edition
2nd ed
Pages
319\318
Time added
2019-09-25 00:13:33

Description

Content: Copyright PREFACE CONTENTS CHAPTER 1 Circuit Analysis:Port Point of View 1.1. INTRODUCTION 1.2. CIRCUIT ELEMENTS 1.3. SPICE ELEMENTS 1.4. CIRCUIT LAWS 1.5. STEADY-STATE CIRCUITS 1.6. NETWORK THEOREMS 1.7. TWO-PORT NETWORKS 1.8. INSTANTANEOUS, AVERAGE, AND RMS VALUES CHAPTER 2 Semiconductor Diodes 2.1. INTRODUCTION 2.2. THE IDEAL DIODE 2.3. DIODE TERMINAL CHARACTERISTICS 2.4. THE DIODE SPICE MODEL 2.5. GRAPHICAL ANALYSIS 2.6. EQUIVALENT-CIRCUIT ANALYSIS 2.7. RECTIFIER APPLICATIONS 2.8. WAVEFORM FILTERING 2.9. CLIPPING AND CLAMPING OPERATIONS 2.10. THE ZENER DIODE. CHAPTER 3 Characteristics of Bipolar Junction Transistors3.1. BJT CONSTRUCTION AND SYMBOLS 3.2. COMMON-BASE TERMINAL CHARACTERISTICS 3.3. COMMON-EMITTER TERMINAL CHARACTERISTICS 3.4. BJT SPICE MODEL 3.5. CURRENT RELATIONSHIPS 3.6. BIAS AND DC LOAD LINES 3.7. CAPACITORS AND AC LOAD LINES CHAPTER 4 Characteristics of Field-Effect Transistors and Triodes 4.1. INTRODUCTION 4.2. JFET CONSTRUCTION AND SYMBOLS 4.3. JFET TERMINAL CHARACTERISTICS 4.4. JFET SPICE MODEL 4.5. JFET BIAS LINE AND LOAD LINE 4.6. GRAPHICAL ANALYSIS FOR THE JFET 4.7. MOSFET CONSTRUCTION AND SYMBOLS. 4.8. MOSFET TERMINAL CHARACTERISTICS4.9. MOSFET SPICE MODEL 4.10. MOSFET BIAS AND LOAD LINES 4.11. TRIODE CONSTRUCTION AND SYMBOLS 4.12. TRIODE TERMINAL CHARACTERISTICS AND BIAS CHAPTER 5 Transistor Bias Considerations 5.1. INTRODUCTION 5.2. b UNCERTAINTY AND TEMPERATURE EFFECTS IN THE BJT 5.3. STABILITY-FACTOR ANALYSIS 5.4. NONLINEAR-ELEMENT STABILIZATION OF BJT CIRCUITS 5.5. Q-POINT-BOUNDED BIAS FOR THE FET 5.6. PARAMETER VARIATION ANALYSIS WITH SPICE CHAPTER 6 Small-Signal Midfrequency BJT Ampli ers 6.1. INTRODUCTION 6.2. HYBRID-PARAMETER MODELS 6.3. TEE-EQUIVALENT CIRCUIT. 6.4. CONVERSION OF PARAMETERS6.5. MEASURES OF AMPLIFIER GOODNESS 6.6. CE AMPLIFIER ANALYSIS 6.7. CB AMPLIFIER ANALYSIS 6.8. CC AMPLIFIER ANALYSIS 6.9. BJT AMPLIFIER ANALYSIS WITH SPICE CHAPTER 7 Small-Signal Midfrequency FET and Triode Ampli ers 7.1. INTRODUCTION 7.2. SMALL-SIGNAL EQUIVALENT CIRCUITS FOR THE FET 7.3. CS AMPLIFIER ANALYSIS 7.4. CD AMPLIFIER ANALYSIS 7.5. CD AMPLIFIER ANALYSIS 7.6. FET AMPLIFIER GAIN CALCULATION WITH SPICE 7.7. GRAPHICAL AND EQUIVALENT CIRCUIT ANALYSIS OF TRIODE AMPLIFIERS CHAPTER 8 Frequency Effects in Amplifiers 8.1. INTRODUCTION. 8.2. BODE PLOTS AND FREQUENCY RESPONSE8.3. LOW-FREQUENCY EFFECT OF BYPASS AND COUPLING CAPACITORS 8.4. HIGH-FREQUENCY HYBRID-BJT MODEL 8.5. HIGH-FREQUENCY FET MODELS 8.6. MILLER CAPACITANCE 8.7. FREQUENCY RESPONSE USING SPICE CHAPTER 9 Operational Amplifiers 9.1. INTRODUCTION 9.2. IDEAL AND PRACTICAL OP AMPS 9.3. INVERTING AMPLIFIER 9.4. NONINVERTING AMPLIFIER 9.5. COMMON-MODE REJECTION RATIO 9.6. SUMMER AMPLIFIER 9.7. DIFFERENTIATING AMPLIFIER 9.8. INTEGRATING AMPLIFIER 9.9. LOGARITHMIC AMPLIFIER 9.10. FILTER APPLICATIONS 9.11. FUNCTION GENERATORS AND SIGNAL CONDITIONERS.

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