2023Unpublished venueRequires access

Coupled Inductor Design Algorithm for E-Type Ferrite and Toroidal Kool mμ Cores

R. G. da Silva, António Manuel Santos Spencer Andrade

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Abstract

This research project develops two algorithms to automate the design process of coupled inductors using E-type ferrite and Kool mμ cores for power electronics applications. The algorithms consider core data from datasheets and determine the necessary parameters for designing coupled inductors. Testing of constructed inductors validates their performance at 50 kHz. The study demonstrates that the algorithms effectively design coupled inductors and pave the way for broader applications of these components in power electronics systems.

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What this paper is about

This research project develops two algorithms to automate the design process of coupled inductors using E-type ferrite and Kool mμ cores for power electronics applications. The algorithms consider core data from datasheets and determine the necessary parameters for designing coupled inductors. Testing of constructed inductors validates their performance at 50 kHz. The study demonstrates that the algorithms effectively design coupled inductors and pave the way for broader applications of these components in power electronics systems.

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Available abstract

This research project develops two algorithms to automate the design process of coupled inductors using E-type ferrite and Kool mμ cores for power electronics applications. The algorithms consider core data from datasheets and determine the necessary parameters for designing coupled inductors. Testing of constructed inductors validates their performance at 50 kHz. The study demonstrates that the algorithms effectively design coupled inductors and pave the way for broader applications of these components in power electronics systems.

Key concepts: Inductor, Ferrite core, Toroid, Ferrite (magnet), Power electronics, Computer science, Power (physics), Magnetic core

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