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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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Analytical Winding Loss and Inductance Models for Gapped Inductors With Litz or Solid Wires

TL;DR: In this paper , the authors proposed analytical formulas to calculate the inductance and the additional eddy current losses in gapped inductors with solid round wire and Litz wire windings.
Dissertation

Novel high power density topologies and control for the point-of-load (pol) application

Tianshu Liu
TL;DR: Thesis (Master, Electrical & Computer Engineering) as mentioned in this paper, 2016-04-19 19:19:01.507, presented at Queen's University, Toronto, Canada.
Journal ArticleDOI

PV String-Level Isolated DC–DC Power Optimizer with Wide Voltage Range

TL;DR: In this paper, a hybrid control scheme in which pulse frequency modulation (PFM) control and pulse width modulation control are combined with a variable switching frequency is employed to regulate the wide PV voltage range.
Proceedings ArticleDOI

Flyback converter surface minimization: Design procedure and formulas

TL;DR: In this paper, the authors give generic formulas to account for power components surface in the design of a flyback converter, and evaluate these ones using analytic formulas, and included in the optimization procedure.
Proceedings ArticleDOI

Optimization of High Frequency Magnetic Devices with Consideration of the Effects of the Magnetic Material, the Core Geometry and the Switching Frequency

TL;DR: In this paper, an optimization approach of high frequency transformers based on the calculation of the optimum number of turns is presented, and the relationship between the volume, the power and the frequency is also investigated.