A Magnetic Integration Mismatch Suppression Strategy for Parallel SiC Power Devices Applications

Author:

Sun Shikai12,Liu Jialin2,Chen Lei2,Lu Zhenlin2,Wang Yuan1ORCID,Yang Wenhao3ORCID,Sun Yuyin3,Guo Hui3

Affiliation:

1. School of Integrated Circuits, Peking University, Beijing 100871, China

2. Beijing Microelectronics Technology Institute, Beijing 100076, China

3. School of Microelectronics, Xidian University, Xi’an 710071, China

Abstract

A new magnetic integrated parallel current sharing control method for parallel silicon carbide (SiC) power devices is presented in this article. The problem of the application of parallel connected SiC power devices is analyzed. The coupled inductance method is adopted to solve the problem. Based on the active-back converter, we establish the theoretical model of the coupled inductance, and figure out its working mechanism. The integrated magnetic device is designed based on the working mechanism, and the effectiveness is determined through simulation. A 12 V/10 A output magnetic integrated active-flyback converter prototype is fabricated and tested to verify the strategy. Measurement results show that, with the proposed magnetic integrated method, the mismatch voltage is suppressed to 0.1 V under all load conditions, and the efficiency increases by at most 6.52% under full load conditions.

Funder

National High-Level Personnel of Special Support Program

Independent Research and Development Program of CASC

Publisher

MDPI AG

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