Introduction
l Chapter 1. Introduction 98kB
Part 1: Converters in Equilibrium
l Chapter 2. Principles of steady-state converter analysis 126kB
l Chapter 3. Steady-state equivalent circuit modeling, losses, and efficiency 98kB
l Chapter 4. Switch realization 201kB
l Chapter 5. The discontinuous conduction mode 96kB
l Chapter 6. Converter circuits 283kB
Part 2: Converter Dynamics and Control
l Chapter 7. Ac equivalent circuit modeling 422kB
l Chapter 8. Converter transfer functions
l Chapter 9. Controller design 365kB
l Chapter 10. Ac and dc equivalent circuit modeling of the discontinuous conduction mode 218kB
l Chapter 11. The current programmed mode 236kB
Part 3: Magnetics
http://ece-www.colorado.edu/~pwrelect/book/slides/slidedir.html (1 of 2) [25/04/2002 16:41:49]
Fundamentals of Power Electronics Instructor's slides
l Chapter 12. Basic magnetics theory 196kB
l Chapter 13. Filter inductor design 67kB
l Chapter 14. Transformer design 175kB
Part 4: Modern Rectifiers and Power System Harmonics
l Chapter 15. Power and harmonics in nonsinusoidal systems 91kB
l Chapter 16. Line-commutated rectifiers 130kB
l Chapter 17. The ideal rectifier 235kB
l Chapter 18. Low harmonic rectifier modeling and control
Part 5: Resonant Converters
l Chapter 19. Resonant conversion 325kB
l Chapter 20. Quasi-resonant converters 177kB
Appendices
l Appendix 1. RMS values of commonly-observed converter waveforms 26 kB
l Appendix 2. Magnetics design tables 26kB
l Appendix 3. Averaged switch modeling of a CCM SEPIC 41kB