Common-Mode noise Reduction Using a Parasitic-Capacitance-Adjustable Bobbin with an Impedance-Balancing Structure

This paper presents a novel common-mode(CM) choke structure that achieves impedance balancing by controlling Equivalent Parallel Capacitance(EPC) through an adjustable bobbin design. High-speed power converters generate significant high-frequency CM noise during rapid switching, requiring effective suppression for Electromagnetic Compatibility(EMC) and reliability. While conventional CM filters can attenuate CM noise, their high-frequency performance is strongly affected by the EPC of the inductors and tolerances of Y-capacitors. To address this limitation, a bobbin structure is proposed that enables precise adjustment of the inter-winding distance, thereby allowing control of the EPC without additional passive components. The proposed structure satisfies the Wheatstone bridge-based impedance balancing condition. The validation is performed using a 3.7 kW resonant inverter system, demonstrating up to 9.3 dBµV of CM noise reduction in the 1 MHz to 5 MHz frequency band.

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Publication Details

Journal
The Transactions of The Korean Institute of Electrical Engineers
Published
2026-09-28
DOI
https://doi.org/10.5370/kiee.2026.75.9.2107
Primary Topic
Electromagnetic Compatibility and Noise Suppression
Type
article
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article

Common-Mode noise Reduction Using a Parasitic-Capacitance-Adjustable Bobbin with an Impedance-Balancing Structure

Myung-Jun Cha, Rae-Young Kim, Hyun-Woo Hyun, Ye-Bin Yoon
The Transactions of The Korean Institute of Electrical Engineers
Electromagnetic Compatibility and Noise Suppression
article

Common-Mode noise Reduction Using a Parasitic-Capacitance-Adjustable Bobbin with an Impedance-Balancing Structure

Myung-Jun Cha, Rae-Young Kim, Hyun-Woo Hyun, Ye-Bin Yoon
article en

Abstract

This paper presents a novel common-mode(CM) choke structure that achieves impedance balancing by controlling Equivalent Parallel Capacitance(EPC) through an adjustable bobbin design. High-speed power converters generate significant high-frequency CM noise during rapid switching, requiring effective suppression for Electromagnetic Compatibility(EMC) and reliability. While conventional CM filters can attenuate CM noise, their high-frequency performance is strongly affected by the EPC of the inductors and tolerances of Y-capacitors. To address this limitation, a bobbin structure is proposed that enables precise adjustment of the inter-winding distance, thereby allowing control of the EPC without additional passive components. The proposed structure satisfies the Wheatstone bridge-based impedance balancing condition. The validation is performed using a 3.7 kW resonant inverter system, demonstrating up to 9.3 dBµV of CM noise reduction in the 1 MHz to 5 MHz frequency band.

The Transactions of The Korean Institute of Electrical EngineersVol. 75(9)
Affordable and clean energy
Openalex Percentile: Top 22%
Electromagnetic Compatibility and Noise Suppression
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Common-Mode noise Reduction Using a Parasitic-Capacitance-Adjustable Bobbin with an Impedance-Balancing Structure — Myung-Jun Cha, Rae-Young Kim, et al. · The Transactions of The Korean Institute of Electrical Engineers (2026) | TGRS Research Map | TGRS