Power Electronics Components and Circuit Modeling and Analysis (Volume VI)
- About the Book
- Table of Contents
- 6.1.01 : "Recent Development of Power Semiconductor Devices"
- 6.1.02 : "Insulated Gate Bipolar Transistor (IGBT) Modeling Using IG-SPICE"
- 6.1.03 : "Nondestructive RBSOA Characterization of IGBT’s and MCTs"
- 6.2.01 : "Proximity Effects in Coils for High Frequency Power Applications"
- 6.2.02 : "A High Frequency Model for Litz Wire for Switch-Mode Magnetics"
- 6.2.03 : "Two Dimensional Solution of the AC Resistance of Power Foils"
- 6.2.04 : "Two Dimensional Field Solution for High Frequency Transformer Windings"
- 6.2.05 : "Proximity Losses in Short Coils of Circular Cylindrical Windings"
- 6.2.06 : "Some Practical Issues Related to Core Loss Measurement Using Impedance Analyzer Approach"
- 6.2.07 : "Finite Element Method for Ferrite Coreloss Calculation"
- 6.2.08 : "Use of Computer Visualization Tools for Examining Flux Distribution in Magnetic Structures"
- 6.2.09 : "A New Model for Multiple-Winding Transformer"
- 6.2.10 : "Leakage Inductance and Termination Effects in a High-Power Planar Magnetic Structure"
- 6.2.11 : "Edge Effects in a High-Frequency Transformer Winding"
- 6.2.12 : "Low-Profile Transformer Winding Configurations"
- 6.2.13 : "A Comparative Study of High-Frequency, Low-Profile Planar Transformer Technologies"
- 6.2.14 : "Design of a High Power Density Low-Profile Transformer"
- 6.2.15 : "Design of Piezoelectric Transformer Converter and Its Matching Networks"
- 6.2.16 : "Design of Piezoelectric Transformer Converters Using Single-Ended Topologies"
- 6.2.17 : "Piezoelectric Transformer and Its Applications"
- 6.3.01 : "Analysis of Current-Mode Controlled PWM Converters Using the Model of the Current- Controlled PWM Switch"
- 6.3.02 : "Small-Signal Modeling of Average Current-Mode Control"
- 6.3.03 : "Charge Control for Zero-Voltage-Switching Multi-Resonant Converter"
- 6.3.04 : "Modeling, Analysis, and Design of the Quasi-Average Current-Mode Control"
- 6.3.05 : "Extended Describing Function Method for Small-Signal Modeling of Switching Power Circuits"
- 6.3.06 : "Describing Function Method in Modeling of Switching Converters"
- 6.3.07 : "Small-Signal Modeling of Series and Parallel Resonant Converters"
- 6.3.08 : "Small-Signal Modeling of LCC Resonant Converter"
- 6.3.09 : "Dynamic Analysis and Control Design of LCC Resonant Converter"
- 6.3.10 : "Analysis and Design of Single-Ended-Parallel Multi-Resonant Converter"
- 6.3.11 : "Small-Signal Analysis of Piecewise-Linear Circuits with Periodic Solutions"
- 6.3.12 : "Effect of FET Output Capacitance on Zero-Voltage Switching of Resonant Converters"
- 6.3.13 : "Analysis of Phase-Shifted Resonant Converters Including Resonant Tank Losses"
- 6.3.14 : "Control of Boost Converter with Adjustable Output Voltage and Unknown Resistive Load"





