Transformer and Inductor Design Handbook, Third EditionExtensively revised and expanded to present the state-of-the-art in the field of magnetic design, this third edition presents a practical approach to transformer and inductor design and covers extensively essential topics such as the area product, Ap, and core geometry, Kg. The book provides complete information on magnetic materials and core characteristics using step-by-step design examples and presents all the key components for the design of lightweight, high-frequency aerospace transformers or low-frequency commercial transformers. Written by a specialist with more than 47 years of experience in the field, this volume covers magnetic design theory with all of the relevant formulas. |
Contents
1-3 | |
Magnetic Materials and Their Characteristics | 2-3 |
Magnetic Cores | 3-3 |
Window Utilization Magnet Wire and Insulation | 4-1 |
Transformer Design TradeOffs | 5-1 |
TransformerInductor Efficiency Regulation and Temperature Rise | 6-1 |
Power Transformer Design | 7-1 |
DC Inductor Design Using Gapped Cores | 8-1 |
Flyback Converter Transformer Design | 13-1 |
Forward Converter Transformer Design and Output Inductor Design | 14-1 |
Input Filter Design | 15-1 |
Current Transformer Design | 16-1 |
Winding Capacitance and Leakage Inductance | 17-1 |
Quiet Converter Design | 18-1 |
Rotary Transformer Design | 19-1 |
Planar Transformers | 20-1 |
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Common terms and phrases
A₁ air gap amps Area Product B-H loop bobbin Calculate the required Calculate the secondary capacitance capacitor Chapter circuit cm cm cm cm² cm³ coefficient Coil copper loss core geometry core loss core material current density Design and Dimensional Design Data Dimensional Data dimensional outline eddy currents Ferrite Cores forward converter fringing flux given in Table grams high frequency inductor Inductor Design input voltage insulation K₁ K₂ Laminations layer leakage inductance magnet wire magnetic material Magnetic Path Length magnetizing force maximum Mean Length Turn oersteds ohms output power output voltage P₁ P₂ PC Board Permalloy permeability Planar Transformer R₁ regulation rotary transformer saturation Sendust shown in Figure skin effect Surface Area switching temperature rise tesla Three-Phase Toroidal toroidal cores Transformer Design V₁ voltage volts watts waveform window area window utilization factor wire area απ Ас
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