Electronic Technology Learning and Breakthrough

Author: Hu Bin
Publisher:
Publish Date: 2006-01-01
Features:
Chapter 1 Photo Album of Passive and Active Component Families
1.1 Introduction to Resistive Components
1.1.1 Identifying Ordinary Resistors
1.1.2 Scanning the Family of Resistive Components
1.1.3 Extended Reading on Resistive Component Knowledge Points
1.1.4 Key Characteristics of Resistive Circuit Diagrams for Important Knowledge Points
1.2 Understanding Inductive Components and Transformers
1.2.1 Identifying Inductors
1.2.2 Scanning the Family of Inductive Components
1.2.3 Extended Reading on Inductive Component Knowledge Points
1.2.4 Introducing Transformers
1.2.5 Transformer Family Photo Album
1.3 Identifying Capacitors
1.3.1 Understanding Ordinary Capacitors
1.3.2 Scanning the Family of Capacitive Components
1.3.3 Understanding Fixed Capacitors
1.3.4 Understanding Variable Capacitors
1.3.5 Understanding Trimmer Capacitors
1.4 Getting Close to Crystal Diodes
1.4.1 Understanding Ordinary Diodes
1.4.2 Extended Reading on Diode Component Families
1.5 Zero-Distance Contact with Crystal Transistors
1.5.1 Understanding Ordinary Transistors
1.5.2 Extended Reading on Transistor Component Families
1.6 Understanding Surface Mount Components
1.6.1 Surface Mount Components Have Different Installation Methods
1.6.2 Scanning the Family of Surface Mount Components
1.7 Getting Closer to Integrated Circuits
1.7.1 Scanning the Types of Integrated Circuits
1.7.2 Illustrating the External Features of Integrated Circuits
1.7.3 Illustrating the Circuit Symbols of Integrated Circuits
Chapter 2 Diagrammatic Explanation of RCL Passive Component Circuits
2.1 Diagrammatic Explanation of Common Resistor Circuits
2.1.1 Circuits Using Resistors to Apply Voltage to a Specific Point in a Circuit
2.1.2 Circuits Using Resistors to Reduce Voltage
2.1.3 Isolation Resistor Circuits
2.1.4 Circuits Using Resistors to Convert Current Changes into Voltage Changes
2.1.5 Resistor Shunt Circuits and Damping Circuits
2.1.6 Current-Limiting Protection Circuits
2.2 Diagrammatic Explanation of Capacitor Characteristics and Common Capacitor Circuits
2.2.1 Capacitor Structure and Basic Working Principle
2.2.2 Main Characteristics of Capacitors
2.2.3 Coupling Capacitor Circuits
2.2.4 Capacitor Filter Circuits
2.2.5 Bypass Capacitor Circuits
2.2.6 Frequency-Dividing Capacitor Circuits
2.3 Diagrammatic Explanation of Inductor Characteristics and Common Inductor Circuits
2.3.1 Inductor Structure
2.3.2 Inductor's Property of Passing DC but Blocking AC
2.3.3 Inductor Circuits
2.4 Diagrammatic Explanation of Transformer Characteristics and Common Transformer Circuits
2.4.1 Transformer Structure and Working Principle
2.4.2 Important Characteristics of Transformers
2.4.3 Power Transformer Circuits
Chapter 3 Diagrammatic Explanation of Diode and Transistor Active Component Circuits
3.1 Diagrammatic Explanation of Diode Characteristics and Common Diode Circuits
3.1.1 Diode Structure and Working Principle
3.1.2 Unidirectional Conductive Characteristics of Diodes and Their Application Circuits
3.1.3 Diode's Property of Constant Voltage Drop After Conduction and Its Application Circuits
3.1.4 Diode's Temperature Characteristics and Their Application Circuits
3.1.5 Diode Electronic Switch Circuits
3.1.6 Diode Clamping Circuits
3.2 Diagrammatic Explanation of Transistor Characteristics
3.2.1 Transistor Structure and Working Principle
3.2.2 Information on Electrode Current Directions in Transistor Circuit Symbols
3.2.3 Three States of Transistors
3.2.4 Relationship Between Electrode Voltage and Current in NPN Transistors
3.2.5 Relationship Between Electrode Voltage and Current in PNP Transistors
3.2.6 Characteristics of Electrode Voltage in Each Operating State of Transistors
3.3 Diagrammatic Explanation of Transistor DC Bias Circuits
3.3.1 Overview of Transistor Circuit Analysis Methods
3.3.2 Role and Impact of Static Current in Transistors
3.3.3 Fixed Bias Circuit for Transistors
3.3.4 Voltage Divider Bias Circuit for Transistors
3.3.5 Collector-Base Negative Feedback Bias Circuit for Transistors
3.4 Diagrammatic Explanation of Transistor Collector and Emitter DC Circuits
3.4.1 Analysis of Collector DC Circuits
3.4.2 Analysis of Emitter DC Circuits
Chapter 4 Three Tricks to Reading Electronic Circuit Diagrams—Resistance, Series Circuits, and Parallel Circuits
4.1 Concept of Resistance and Equivalent Circuit Analysis Methods for Resistance
4.1.1 Relationship Among Resistance, Current, and Voltage
4.1.2 Equivalent Analysis of Capacitor Circuits
4.1.3 Equivalent Analysis of Inductor Circuits
4.1.4 Equivalent Analysis of Diode Circuits
4.1.5 Equivalent Analysis of Transistor Circuits
4.2 Characteristics and Circuit Analysis Methods of Resistor Series Circuits
4.2.1 Total Resistance Increases with More Series Resistors
4.2.2 Current is Equal Everywhere in Series Circuits
4.2.3 Main Functional Components in Resistor Series Circuits
4.2.4 Illustrative Examples of Resistor Series Circuits
4.3 Characteristics and Equivalent Circuit Analysis Methods of Other Component Series Circuits
4.3.1 Characteristics and Equivalent Circuit Analysis Methods of Pure Capacitor Series Circuits
4.3.2 Characteristics and Equivalent Circuit Analysis Methods of RC Series Circuits
4.3.3 Characteristics and Equivalent Circuit Analysis Methods of LC Series Resonant Circuits
4.3.4 Characteristics and Equivalent Circuit Analysis Methods of Other Series Circuits
4.4 Characteristics and Circuit Analysis Methods of Resistor Parallel Circuits
4.4.1 Total Resistance Decreases with More Parallel Resistors
4.4.2 Total Current Equals the Sum of Currents in Parallel Branches
4.4.3 Main Functional Components in Resistor Parallel Circuits
4.5 Characteristics and Equivalent Circuit Analysis Methods of Other Component Parallel Circuits
4.5.1 Characteristics and Equivalent Circuit Analysis Methods of Pure Capacitor Parallel Circuits
4.5.2 Characteristics and Equivalent Circuit Analysis Methods of RC Parallel Circuits
4.5.3 Characteristics and Equivalent Circuit Analysis Methods of LC Parallel Resonant Circuits
4.5.4 Characteristics and Equivalent Circuit Analysis Methods of Other Parallel Circuits
Chapter 5 Comprehensive Breakthrough in Various Voltage-Dividing Circuits
Chapter 6 Diagrammatic Explanation of Power Supply Circuits and Circuit Fault Analysis
Chapter 7 Diagrammatic Explanation of Amplifier and Practical Circuit Fault Analysis
Chapter 8 Hands-on Experiments That Can Turn Lead into Gold
Chapter 9 Common Component Testing Experiments
Chapter 10 Logical Reasoning in Fault Repair Processes and Overview of Various Inspection Methods

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