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Fundamentals of Electronics Circuits

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Table of Contents
Chapter 1 Introduction
1.1 History
1.2 Overview
1.3 Simulation Tool
Chapter 2 Circuit Model
2.1 Lumped Circuit
2.2 Resistor and Its Circuit Mode
2.2.1 Resistor
2.2.2 Circuit Model of Resistor
2.2.3 Potentiometer and Circuit Mode
2.2.4 Switch and Its Circuit Mode
2.2.5 Generalization of Resistor Definition
2.3 Power Source and Its Circuit Model
2.3.1 Power Source
2.3.2 Circuit Model of Power Source
2.4 Inductor and Its Circuit Mode
2.4.1 Inductor
2.4.2 Circuit Model of an Inductor
2.4.3 Generalization of the Definition of Inductor
2.5 Capacitor and Its Circuit Mode
2.5.1 Capacitor
2.5.2 Capacitor Circuit Mode
2.5.3 Generalization of Capacitor Definition
2.6 Diode and Its Circuit Model
2.6.1 Diode
2.6.2 Main Parameters of Diodes
2.6.3 The Circuit Model of Diodes
2.6.4 Zener Diode
2.6.5 The Circuit Model of the Zener Diode
2.7 Field-Effect Transistor (FET) and Its Circuit Mode
2.7.1 Field-Effect Transistor (FET)
2.7.2 The Main Parameters of Enhanced Field-Effect Transistors
2.7.3 Field-Effect Transistor Circuit Mode
2.8 Bipolar Junction Transistor (BJT) and Its Circuit Model
2.8.1 Bipolar Junction Transistor (BJT)
2.8.2 Main Parameters of Transistor
2.8.3 Circuit Model of Transistor
2.9 Kirchhoff's Law
2.9.1 Kirchhoff's Current Law
2.9.2 Generalization of KCL
2.9.3 Kirchhoff's Voltage Law
2.9.4 Generalization of KVL
2.10 Simulation Experiment
2.10.1 Experimental Requirements and Purposes
2.10.2 Diode Voltage-Current Characteristic Circuit Problems
Chapter 3 Circuit Analysis Methods
3.1 Two Types of Constraints and Circuit Equations
3.1.1 Two Types of Constraints
3.1.2 Circuit Equations
3.2 The Three-Element Method for First-Order Circuits
3.2.1 First-Order RC Circuit
3.2.2 Properties of Exponent
3.3 Superposition Theorem and Its Application
3.3.1 Superposition Theorem
3.3.2 Application of Superposition Theorem
3.4 Network Equivalence with the Application of Thevenin's Theorem and Norton's Theorem
3.4.1 Network Equivalence
3.4.2 Thevenin's Theorem and Norton's Theorem
3.4.3 Application of Thevenin's Theorem and Norton's Theorem
……
Chapter 4 Basic Amplifier Circuits
Chapter 5 Multi-Stage Amplifier Circuits and Operational Amplifiers
Chapter 6 Operational Amplifiers
Chapter 7 Negative Feedback Amplifier Circuit
Chapter 8 Operational Circuits and Filtering Circuits
Chapter 9 Waveform Generating Circuit and Signal Conversion Circuit
Chapter 10 AC/DC Power Sources
Fundamentals of Electronics Circuits
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