\"Electrical and Electronic Technology\" is written based on the basic teaching requirements of the mechanical electrical and electronic technology series courses formulated by the Ministry of Education\'s Electrical Engineering Course Guidance Group and the goals of education and teaching reform in the 21st century. The main contents of \"21st Century College Application Planning Textbook: Electrical and Electronic Technology\" include DC circuits, sinusoidal AC circuits, transient processes of circuits, electrical measurements, factory power transmission and distribution and safe use of electricity, electromagnets and transformers, motors and their relay-contactor control circuits, programmable controller introduction, transistors, basic amplifier circuits, integrated operational amplifiers, DC power supply circuits, digital circuit foundations, combinational logic circuits, sequential logic circuits, pulse generation and conversion circuits, and analog/digital conversion and digital/analog conversion, a total of 16 chapters. \"21st Century College Application Planning Textbook: Electrical and Electronic Technology\" strives to combine theory with engineering practice on the basis of ensuring the necessary basic knowledge, basic analysis methods and basic skills, combined with the development of new devices and new technologies to meet the needs of development. Chapter 1 DC Circuit 1.1 Circuit and Circuit Model 1.2 Main Physical Quantities of Circuit and Rated Values of Electrical Equipment 1.3 Three Working States of Circuit 1.4 Kirchhoff\'s Law 1.5 Circuit Analysis Method Chapter 2 Sinusoidal AC Circuit 2.1 Basic Concepts of Sinusoidal AC 2.2 Phasor Representation of Sinusoidal AC 2.3 Sinusoidal AC Circuit with Single Parameter 2.4 Analysis of Sinusoidal AC Circuit 2.5 Resonant Circuit 2.6 Significance and Method of Improving Power Factor 2.7 Three-Phase AC Circuit Chapter 3 Transition Process of Circuit 3.1 Transition Process of Circuit and Switching Law 3.2 Transition Process of RC Circuit and Three-Element Method 3.3 Differential Circuit and Integral Circuit 3.4 Transition Process of RL Circuit Chapter 4 Electrical Measurement and Power Transmission and Distribution in Factory and Safe Use of Electricity 4.1 Measurement Error and Instrument Accuracy 4.2 Common Electrical Measurement Instruments 4.3 Measurement of Current, Voltage and Power 4.4 Multimeter and Megohmmeter 4.5 Power Transmission and Distribution in Factory 4.6 Safe Use of Electricity Chapter 5 Electromagnets and Transformers 5.1 Magnetic Circuit 5.2 Electromagnets and Electromagnetic Appliances 5.3 AC Iron Core Coil Circuit 5.4 Principles and Applications of Transformers Chapter 6 Motors and Basic Control Systems 6.1 Basic Structure and Working Principle of Three-Phase Asynchronous Motors 6.2 Stator Circuit and Rotor Circuit of Three-Phase Asynchronous Motors 6.3 Electromagnetic Torque and Mechanical Characteristics of Three-Phase Asynchronous Motors 6.4 Use of Three-Phase Asynchronous Motors 6.5 Single-Phase Asynchronous Motors 6.6 Common Low-Voltage Electrical Appliances and Electrical Symbols 6.7 Basic Control Systems of Three-Phase Asynchronous Motors Chapter 7 Programmable Controllers 7.1 Overview 7.2 Basic Structure and Working Principle of PLC 7.3 I/O Configuration and Internal Soft Relays of FX2N Series PLC 7.4 PLC Instruction System and Programming Language 7.5 Application Examples of PLC Control Systems Chapter 8 Common Transistors 8.1 Basic Knowledge of Semiconductors 8.2 Crystal Diodes 8.3 Crystal Triodes 8.4 Insulated Gate Field Effect Transistors 8.5 Thyristors Chapter 9 Basic Amplifier Circuits 9.1 Basic AC Voltage Amplifier Circuits 9.2 9.3 The Emitter Follower 9.4 The Complementary Symmetrical Power Amplifier 9.5 The Multistage Amplifier Chapter 10 Integrated Operational Amplifier 10.1 Integrated Operational Amplifier Input Stage - Differential Amplifier 10.2 Introduction to Integrated Operational Amplifiers 10.3 Linear Application Circuits of Integrated Operational Amplifiers 10.4 Nonlinear Application Circuits of Integrated Operational Amplifiers 10.5 Sine Wave Oscillation Circuits 10.6 Some Practical Problems in the Application of Integrated Operational Amplifiers Chapter 11 DC Regulated Voltage Circuits 11.1 Combination of DC Power Supplies 11.2 Single-Phase Bridge Rectifier Circuits 11.3 Filter Circuits 11.4 Voltage Regulated Circuits 11.5 Controlled Rectifier Circuits Chapter 12 Fundamentals of Digital Circuits 12.1 Number Systems and Code Systems 12.2 Fundamentals of Logic Algebra 12.3 Simplification of Logic Functions 12.4 Discrete Component Gate Circuits 12.5 Integrated Gate Circuits Chapter 13 Combinatorial Logic Circuits 13.1 Analysis and Design of Combinatorial Logic Circuits 13.2 Basic Combinational Logic Components Chapter 14 Sequential Logic Circuits 14.1 Overview 14.2 Flip-Flops 14.3 Conversion of Flip-Flop Logic Functions 14.4 Registers 14.5 Counters Chapter 15 Pulse Generation and Conversion Circuits 15.1 555 Timing Circuits 15.2 Monostable Flip-Flops 15.3 Multivibrator 15.4 Schmitt Triggers Chapter 16 Analog-to-Digital and Digital-to-Analog Converters 16.1 Overview 16.2 Digital-to-Analog Converters 16.3 Analog-to-Digital Converters References
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