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Main Authors: Rad, Sadegh Esmaeili, Mazumder, Sudip K
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2605.10736
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author Rad, Sadegh Esmaeili
Mazumder, Sudip K
author_facet Rad, Sadegh Esmaeili
Mazumder, Sudip K
contents This paper proposes a new integrated magnetics (IM) design for an isolated zero-voltage-switching (ZVS) Cuk converter (IZCC). In this design, six magnets are wound onto a single magnetic core, and to minimize magnetic core size and losses, both direct current (DC) and alternating current (AC) flux cancellations are considered. The DC flux is fully cancelled, and the AC flux must be cancelled until a limited value such that the input and output inductor currents have enough ripple to provide the conditions for achieving ZVS on all switches. Therefore, the value of the coupling coefficients (CC) between the windings should be considered such that the minimum ripple to achieve ZVS for all the switches is available. The design is implemented on a simple magnetic U-core, and the CC values are specified based on the winding locations and arrangement. To validate the idea experimentally, a hardware prototype is proposed with a power of 0.5 kW, a switching frequency of 150 kHz, and a peak efficiency of 97.25%.
format Preprint
id arxiv_https___arxiv_org_abs_2605_10736
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle An Integrated Magnetics Design for an Isolated ZVS Cuk Converter
Rad, Sadegh Esmaeili
Mazumder, Sudip K
Applied Physics
This paper proposes a new integrated magnetics (IM) design for an isolated zero-voltage-switching (ZVS) Cuk converter (IZCC). In this design, six magnets are wound onto a single magnetic core, and to minimize magnetic core size and losses, both direct current (DC) and alternating current (AC) flux cancellations are considered. The DC flux is fully cancelled, and the AC flux must be cancelled until a limited value such that the input and output inductor currents have enough ripple to provide the conditions for achieving ZVS on all switches. Therefore, the value of the coupling coefficients (CC) between the windings should be considered such that the minimum ripple to achieve ZVS for all the switches is available. The design is implemented on a simple magnetic U-core, and the CC values are specified based on the winding locations and arrangement. To validate the idea experimentally, a hardware prototype is proposed with a power of 0.5 kW, a switching frequency of 150 kHz, and a peak efficiency of 97.25%.
title An Integrated Magnetics Design for an Isolated ZVS Cuk Converter
topic Applied Physics
url https://arxiv.org/abs/2605.10736