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发表于 2008-3-3 20:49:05
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该书的目录
Common Requirements: An Overview; t* V" ~+ K% u3 c* `) k
Ac Powerline Surge Protection. j6 D& C2 A, l
Electromagnetic Interference (emi) In Switchmode Power Supplies" C& {* J! t6 ^
Faraday Screens0 Z" S# o/ u" z4 W7 `
Fuse Selection. E9 l& C3 r, r# y2 I+ \4 Q
Line Rectification And Capacitor Input Filters For “direct-off-line” Switchmode Power Supplies* `3 v! J& G% a: {9 U
Inrush Control) B# @+ H9 w" z) ^
Start-up Methods; ]0 g; z, {& U! x& C
Soft Start And Low-voltage Inhibit# `7 [& A' E; o
Turn-on Voltage Overshoot Prevention
# X' g" }$ g' n Overvoltage Protection
% B0 d4 O1 P1 s, Y- l Undervoltage Protection
* e3 V1 |4 r& u p4 l u2 w1 j Overload Protection
7 Y9 v5 i6 [5 Q. _ v& v: g Foldback (reentrant) Output Current Limiting
* ]8 d" [3 r2 W$ G Base Drive Requirements For High-voltage Bipolar Transistors; t- \. m5 _, D3 m- h/ Q
Proportional Drive Circuits For Bipolar Transistors/ D2 B; d, j( V3 ~! ?8 L
Antisaturation Techniques For High-voltage Transistors6 [6 a' l' r2 F- p+ f' v o
Snubber Networks$ ^' ^; m/ B4 w
Cross Conduction1 |/ K% o0 s* G+ R
Output Filters4 l( ]$ g, L4 s, d
Power Failure Warning Circuits- \" }' l& v e: X# c/ w
Centering (adjustment To Center) Of Auxiliary Output Voltages On Multiple-output Converters5 X, m1 h, q. ?3 g( e2 d) K
Auxiliary Supply Systems% W+ Q9 i0 W0 g
Parallel Operation Of Voltage-stabilized Power Supplies
, v0 H1 r/ E: K, Z) ]+ P) T2 L Multiple-output Flyback Switchmode Power Supplies
; K# p3 {# J9 q4 T' _ Flyback Transformer Design
2 z* E% E1 |9 m5 W Reducing Transistor Switching Stress
# {- Q" I+ }: l. P Selecting Power Components For Flyback Converters% q- w4 c8 e2 i+ K
The Diagonal Half-bridge Flyback Converter
- Q3 S/ t; M2 v6 g- N- E. T# b Self-oscillating Direct-off-line Flyback Converters
+ q3 W6 _# \; Z5 k0 K) O* B5 M Applying Current-mode Control To Flyback Converters9 }, a9 l; W! V( p: I
Direct-off-line Single-ended Forward Converters `4 `: J# M, a. o
Transformer Design For Forward Converters- h _; p4 j, J' o4 k2 k. I8 b
Diagonal Half-bridge Forward Converters
i" y' w5 ~3 h( p: m, e _ Transformer Design For Diagonal Half-bridge Forward Converters
( w$ }: G# f' D4 g8 p+ r* q v& y Half-bridge Push-pull Duty-ratio-controlled Converters8 H, Q: |3 [7 E$ G: t6 S
Bridge Converters9 g5 @- K5 V8 P3 s) d' J2 g
Low-power Self-oscillating Auxiliary Converters/ W0 M- e# s8 n
Single-transformer Two-transistor Self-oscillating Converters
: `- T* _1 L: Y3 ^2 S4 P S! _( T Two-transformer Self-oscillating Converters
' G2 a3 p# o0 T# b2 E* g The Dc-to-dc Transformer Concept. i( V7 I4 k) `- m& ? p
Multiple-output Compound Regulating Systems
) L* H/ N& E7 z! ?4 F8 U( w% h Duty-ratio-controlled Push-pull Converters
( ?+ x- q8 {9 ] r5 Y* m Dc-to-dc Switching Regulators& A! Z8 h) L. [( z" ^
High-frequency Saturable Reactor Power Regulator (magnetic Duty Ratio Control)
5 Y$ s: U$ U$ g8 o7 x+ r Constant-current Power Supplies
2 j2 {6 ?2 o0 X+ O v+ j( K Variable Linear Power Supplies
( S5 \2 A, @2 U a& U Switchmode Variable Power Supplies4 \) r% W/ d& d% _% ]6 v
Switchmode Variable Power Supply Transformer Design
7 G+ r+ c" Q7 o$ C' s- M Inductors And Chokes In Switchmode Supplies
/ R, S! ?! _6 p% b, Y* M7 T b High-current Chokes Using Iron Powder Cores( q, S( w, T6 m; K* p$ o+ _8 p- H
Choke Design Using Iron Powder Toroidal Cores
" U! j5 R) p s; G* p& u# Z Switchmode Transformer Design (general Principles)
7 S ]1 d7 @$ r; h Optimum 150-w Transformer Design Example Using Nomograms * e' G C! C t% H
Transformer Staircase Saturation
, L: F, {) N' K1 ?4 G( ~! u1 l Flux Doubling
, K" E' z+ i/ ^* w( J) @% y: Q Stability And Control-loop Compensation In Smps1 z* o- d" E. h
The Right-half-plane Zero : \8 t( g0 k; X4 j3 Y G
Current-mode Control
2 u; {& @5 s4 A- v V Optocouplers
/ o6 l% Q7 S" K5 Y; `( A. z Ripple Current Ratings For Electrolytic Capacitors In Switchmode Power Supplies
; U1 i+ P$ v' c3 g- W4 x Noninductive Current Shunts % a, m$ Y: i4 t6 o( r0 I' }6 P1 Q
Current Transformers 1 G& ]6 a; z7 s. ?* C
Current Probes For Measurement Purposes
6 ?: X7 O9 `$ k/ S) {- B: I; y3 i Thermal Management In Switchmode Power Supplies8 p$ z6 i! F! X, }, z
Active Power Factor Correction |
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