\"Switching Power Supply Design Guide\" is published by China Machinery Industry Press. This book is a reference book that combines switching power supply theory with engineering design. It introduces the role of power supply in the system, power supply design process, switching power supply design, comparison between switching power supply and linear power supply, and shaping technology to improve the efficiency of switching power supply. It focuses on the selection of switching power supply circuit topology, transformer and inductor design, power drive circuit, feedback compensation parameter design, and protection circuit. Advanced technologies for reducing switching power supply losses, such as synchronous rectification technology, lossless absorption circuit, and waveform shaping technology, are also introduced in depth. In addition, through a large number of examples, the design method of switching power supply is introduced, as well as power factor correction, printed circuit design, thermal design, noise control, and electromagnetic interference suppression. Preface Introduction Chapter 1 The role of power supply in the system and the power supply design process 1.1 Start with questions 1.2 Power supply structure 1.3 Select the appropriate power supply technology 1.4 Understand the power supply system design indicators 1.5 Conventional power supply design method: Introducing a modular power supply design method 1.6 Some comments on power supply design software Chapter 2 Introduction to linear power supply 2.1 Basic working principle of linear power supply 2.2 Overall considerations for linear power supply design 2.3 Linear power supply design example Chapter 3 Pulse Width Modulation (PWM) Switching Power Supply 3.1 Basic principle of PWM switching power supply 3.2 Block diagram of PWM switching power supply design steps 3.3 Which switching power supply topology to choose 3.4 Considerations of the \"black box\" in the switching power supply 3.5 Design of magnetic components 3.6 Design of output stage 3.7 Design of power switch and driver part 3.8 Selection of control integrated circuit 3.9 Design of voltage feedback circuit 3.10 Design of startup and integrated circuit power supply circuit 3.11 Output protection strategy 3.12 Design of input rectifier/filter part 3.13 Additional functions commonly associated with power supply 3.14 3.15 Example of Switching Power Supply Design Chapter 4 Shaping Technology to Improve Switching Power Supply Efficiency 4.1 Main Losses in PWM Switching Power Supply 4.2 Various Techniques to Reduce Main Losses 4.3 Absorption Circuit 4.4 Active Clamping Circuit 4.5 Inductor to Limit Reverse Recovery Current of Rectifier 4.6 Quasi-Resonant Converter 4.7 Example of High Efficiency Switching Power Supply Design Appendix Appendix A Thermal Analysis and Design A.1 Establishing Thermal Model A.2 Power Package on Heat Sink (TO-3, TO-220, TO-218, etc.) A.3 Power Package without Heat Sink (Free-standing) A.4 Radial Leaded Diode A.5 Surface Mount Components A.6 Some Examples of Thermal Applications Appendix B Feedback Compensator B.1 Bode Response of Common Circuits in Switching Power Supply B.2 Determining the Open-Loop Response of Switching Power Supply - Control to Output Characteristics B.3 Determining the Stability of Switching Power Supply B.4 Design of Common Error Amplifier Compensator Appendix C Power Factor Correction Appendix D Magnetism and magnetic components D.1 Basic magnetic theory applied to switching power supplies D.2 Selection of core materials and types Appendix E Noise control and electromagnetic interference E.1 Sources and types of electrical noise E.2 Typical sources of noise E.3 Enclosure design E.4 Conducted EMI filter Appendix F Others F.1 Unit conversion F.2 Wire References
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