This is the fourth edition of a classic reference on transformers and inducers. It begins by providing the basic fundamentals of magnetics, followed by an explanation of the design using the Kg or Ap approach. It also covers topics such as laminations, tape cores, powder cores and ferrites, and iron alloys. The author offers practical coverage on designing transformers, with step-by-step directions and several comparison tables and graphics.
This is the fourth edition of a classic reference on transformers and inducers. It begins by providing the basic fundamentals of magnetics, followed by an explanation of the design using the Kg or Ap approach. It also covers topics such as laminations, tape cores, powder cores and ferrites, and iron alloys. The author offers practical coverage on designing transformers, with step-by-step directions and several comparison tables and graphics.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Colonel McLyman has forty-seven years of experience in the field of Magnetics, and holds fourteen United States Patents on Magnetics-related concepts. He retired as a Senior Member of the Avionics Equipment Section of the Jet Propulsion Laboratory (JPL) affiliated with the California Institute of Technology in Pasadena, California.
Inhaltsangabe
Fundamentals of Magnetics. Magnetic Materials and Their Characteristics. Magnetic Cores. Window Utilization, Magnet Wire and Insulation. Transformer Design Trade-Offs. Transformer-Inductor Efficiency, Regulation, and Temperature Rise. Power Transformer Design. DC Inductor Design, Using Gapped Cores. DC Inductor Design, Using Powder Cores. AC Inductor Design. Constant Voltage Transformer (CVT). Three-Phase Transformer Design. Flyback Converters, Transformer Design. Forward Converter, Transformer Design, and Output Inductor Design. Input Filter Design. Current Transformer Design. Winding Capacitance and Leakage Inductance. Quiet Converter Design. Rotary Transformer Design. Planar Transformers and Inductors. Derivations for the Design Equations. Autotransformer Design. Common-Mode Inductor Design. Series Saturable Reactor Design. Self-Saturating, Magnetic Amplifiers. Designing Inductors for a Given Resistance
Fundamentals of Magnetics. Magnetic Materials and Their Characteristics. Magnetic Cores. Window Utilization, Magnet Wire and Insulation. Transformer Design Trade-Offs. Transformer-Inductor Efficiency, Regulation, and Temperature Rise. Power Transformer Design. DC Inductor Design, Using Gapped Cores. DC Inductor Design, Using Powder Cores. AC Inductor Design. Constant Voltage Transformer (CVT). Three-Phase Transformer Design. Flyback Converters, Transformer Design. Forward Converter, Transformer Design, and Output Inductor Design. Input Filter Design. Current Transformer Design. Winding Capacitance and Leakage Inductance. Quiet Converter Design. Rotary Transformer Design. Planar Transformers and Inductors. Derivations for the Design Equations. Autotransformer Design. Common-Mode Inductor Design. Series Saturable Reactor Design. Self-Saturating, Magnetic Amplifiers. Designing Inductors for a Given Resistance
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