Multi-MHz High Frequency Resonant DC-DC Power Converter 1st Edition by Dianguo Xu, Yueshi Guan, Yijie Wang, Xiangjun Zhang – Ebook PDF Instant Download/Delivery: 9789811574238, 9811574235
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Product details:
ISBN 10: 9811574235
ISBN 13: 9789811574238
Author: Dianguo Xu, Yueshi Guan, Yijie Wang, Xiangjun Zhang
This book analyzes multi-MHz high frequency resonant DC-DC power converters with operating frequencies ranging from several MHz to tens of MHz in detail, aiming to support researchers and engineers with a focus on multi-MHz high frequency converters. The inverter stage, rectifier stage, matching network stage are analyzed in detail. Based on the three basic stages, typical non-isolated and isolated resonant DC-DC converters are depicted. To reduce the high driving loss under multi-MHz, resonant driving methods are introduced and improved. Also, the design and selection methods of passive and active component under multi-MHz frequency are described, especially for aircore inductor and transformer. Furthermore, multi-MHz resonant converter provides an approach for achieving flexible system.
Table of contents:
1. Introduction
1.1 Development of Multi-MHz Resonant Converter
1.2 Research of Multi-MHz Resonant Converter
1.3 Contents of the Book
2. Resonant Inverter in Multi-MHz DC–DC Converter
2.1 Infinite Inductor Resonant Inverter
2.2 Full Resonant Inverter Stage
2.2.1 Class E Inverter Stage
2.2.2 Class U2 Inverter Stage
3. Resonant Rectifier in Multi-MHz DC–DC Converter
3.1 Floating Type Current-Driven Class E Rectifier
3.2 Ground Type Current-Driven Class E Rectifier
4. Matching Network in Multi-MHz DC–DC Converter
4.1 Introduction of Matching Network
4.2 L Type Matching Network
4.2.1 Design of L Type Matching Network
4.2.2 Influence of L Type Matching Network
4.3 T Type Matching Network
4.4 π Type Matching Network
4.5 Example Based on T Type Matching Network
5. Typical Multi-MHz DC–DC Converter
5.1 Non-isolated DC–DC Converter
5.2 Isolated DC–DC Converter
5.3 Example of Low Voltage Stress Isolated DC–DC Converter
6. Resonant Driving Method
6.1 Basic Resonant Driving Circuit
6.2 Resonant Driving Based on Paralleled Branch
6.3 Self-driven Resonant Circuit
6.3.1 Basic Self-driven Resonant Circuit
6.3.2 Self-driven Resonant Circuit Based on Paralleled Branch Between Gate and Source
6.3.3 Self-driven Resonant Circuit Based on Paralleled Branch Between Drain and Gate
6.3.4 Example of Self-driven Circuit
7. Air-Core Planar Inductors and Transformers on PCB
7.1 Constant Width Planar Inductors
7.1.1 Calculation of Planar Circular Inductor
7.1.2 Calculation of Planar Square Spiral Winding
7.2 Variable Width Planar Inductors
7.2.1 Calculation of Variable Width Winding Structure
7.2.2 Optimization of Variable Width Winding Structure
7.3 Variable Width Planar Transformer
8. Passive and Active Components in Multi-MHz Converter
8.1 Multi-MHz Magnetic Components
8.2 Multi-MHz Active Devices
8.3 Testing Method
9. Flexible Multi-MHz DC–DC Converter
9.1 Flexible Planar Air-Core Inductor
9.2 Design of Matching Network
9.3 Experimental Results
9.4 Conclusion
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Tags:
Dianguo Xu,Yueshi Guan,Yijie Wang,Xiangjun Zhang,Multi MHz High,Frequency Resonant,DC DC Power Converter