This book focuses on the reliability design of switching power supplies, highlights practicality, and comprehensively and systematically explains the reliability design technology of switching power supplies in combination with the application and development status of external switching power supplies. The book is divided into three parts with a total of 6 chapters, which systematically describes the switching power supply thermal design terminology and thermal design functions, switching power supply thermal design methods and heat sink design points, switching power supply electromagnetic compatibility and testing, switching power supply anti-interference design, PCB function and design, switching power supply PCB electromagnetic compatibility design and reliability test, etc. The book has novel and practical topics, rich content, easy to understand, popular text, and high practical value. It is a reading material for engineering and technical personnel engaged in switching power supply reliability design. Part 1 Thermal Design of Switching Power Supplies Chapter 1 Thermal Design Terminology and Thermal Design Functions of Switching Power Supplies 1.1 Thermal Design Terminology and Heat Transfer Methods 1.1.1 Thermal Design Terminology and Thermal Units 1.1.2 Heat Transfer Methods 1.2 Thermal Design and Thermal Management Objectives of Switching Power Supplies 1.2.1 Thermal Design Objectives and Levels 1.2.2 Thermal Management Objectives and Enhanced Heat Dissipation Methods 1.3 Surface Mount Devices and PCB Thermal Design 1.3.1 Thermal Design of Surface Mount Devices 1.3.2 Thermal Analysis and Thermal Design Technology of PCB Chapter 2 Thermal Design Methods of Switching Power Supplies and Key Points of Heat Sink Design 2.1 Switching Power Supplies Conversion Efficiency and Thermal Design Methods 2.1.1 Switching Power Supplies Conversion Efficiency 2.1.2 Switching Power Supplies Thermal Design Rules and Methods 2.1.3 Key Points of Switching Power Supplies Heat Sink Design 2.2 Switching power supply heating and heat dissipation methods 2.2.1 Switching power supply heating and ambient temperature 2.2.2 Classification and installation technology of switching power supply products Part II Electromagnetic compatibility design of switching power supply Chapter 3 Switching power supply electromagnetic compatibility and testing 3.1 Switching power supply electromagnetic compatibility and research status 3.1.1 Electromagnetic compatibility 3.1.2 Switching power supply electromagnetic compatibility research and status quo and design points 3.2 Switching power supply electromagnetic compatibility test 3.2.1 EMC test technology 3.2.2 Switching power supply EMC test circuit and waveform 3.2.3 LISN network and common mode and differential mode separation measurement Chapter 4 Anti-interference design of switching power supply 4.1 Electromagnetic interference of switching power supply 4.1.1 Electromagnetic interference sources in switching power supply 4.1.2 EMI propagation mode in switching power supply 4.2 Switching power supply EMC design 4.2.1 Switching power supply EMI suppression technology 4.2.2 New switching power supply EMC technology 4.2.3 EMC design examples for switching power supply circuits 4.3 Switching power supply filter design and application points 4.3.1 EMI noise and EMI filter 4.3.2 Switching power supply filter technical parameters and design points 4.3.3 Specifications and characteristics of switching power supply filter 4.3.4 Switching power supply filter selection 4.3.5 Effective installation method of switching power supply filter Part III Switching power supply PCB design Chapter 5 Function and design of PCB 5.1 PCB function and classification 5.1.1 Function and characteristics of PCB 5.1.2 Classification of PCB Class 5.2 Switching power supply PCB design 5.2.1 Switching power supply PCB design steps and design specifications 5.2.2 PCB layout design 5.2.3 Flying wires and PCB layout 5.2.4 PCB wiring design 5.2.5 PCB interconnection design 5.2.6 PCB pads 5.2.7 Key points of switching power supply PCB design Chapter 6 Switching power supply PCB electromagnetic compatibility design and reliability test 6.1 Switching power supply PCB electromagnetic compatibility design 6.1.1 Switching power supply signal integrity design method 6.1.2 Switching power supply PCB anti-interference design 6.1.3 Crosstalk and electromagnetic coupling between strip lines, wires and cables in PCB 6.1.4 Key points of switching power supply PCB electromagnetic compatibility design 6.1.5 Software method for switching power supply PCB EMC auxiliary design 6.1.6 The role of PCB layer stacking in controlling EMI radiation 6.1.7 PCB surface layering technology and technical trends 6.2 PCB quality evaluation and reliability test 6.2.1 PCB quality evaluation 6.2.2 PCB reliability test Appendix 1 Electromagnetic compatibility terminology Appendix 2 Explanation of basic PCB terms References
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