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Transformer and inductor design handbook

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TLDR
In this paper, the authors present a theoretical analysis of transformer-inductor design, including the following: AC Inductor Design Powder Core. DC Inductor design Gap Core. Forward Converter Transformer and Inductor Development.
Abstract
Fundamentals of Magnetics. Magnetic Materials and Their Characteristics. Magnetic Cores, Iron Alloy and Ferrites. Window Utilization and Magnet Wire. Transformer-Inductor Design. Transformer-Inductor Efficiency, Regulation, and Temperature Rise. Power Transformer Design. DC Inductor Design Gap Core. DC Inductor Design Powder Core. AC Inductor Design. Constant Voltage Transformer Design (CVT). Three Phase Transformer Design. Flyback Converter Design. Forward Converter Transformer and Inductor Design. Input Filter Design. Current Transformer Design. Winding Capacitance and Leakage Inductance. Quiet Converter Design. Rotary Transformer Design. Planar Transformers. Derivation for the Design Equations. Index.

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Citations
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Journal ArticleDOI

Efficiency Enhancements to a Linear AC Voltage Regulator: Multiwinding Versus Multitransformer Design

TL;DR: The linear ac voltage regulator is a relatively new type of solid-state, single-phase ac regulator for consumer-end, which addresses most of the abovementioned issues.
Journal ArticleDOI

Coaxial measurements of microwave permeability of thin supermalloy films under magnetic bias

TL;DR: In this article, the authors measured the microwave permeability of thin supermalloy films in a coaxial line under external magnetic bias in the frequency range of 100 GHz to 20 GHz.
Journal ArticleDOI

Optimized And Numerical Models Of Electromechanical Devices Coupled With Computation Of Performance Characteristics

TL;DR: In this article, a phase shaded pole motor and the main inductor for an LCL filter were optimized using genetic algorithms to obtain an increase in the efficiency of the same input power.
Proceedings Article

The Coupling Coefficient Impact on the DC Voltage Gain of the Passive Clamp Coupled Inductor Boost Converter

TL;DR: In this article, the impact of the coupling coefficient K on the operation of the coupled inductor Boost converter is investigated and an accurate dc voltage gain V N for Continues Conduction Mode (CCM) is deduced.