DocumentCode
1773697
Title
Novel magnetic structure of integrated differential-mode and common-mode inductors to suppress DC saturation
Author
Umetani, Kazuhiro ; Tera, Takahiro ; Shirakawa, Kazuhiro
Author_Institution
R&D Center, DENSO Corp., Kariya, Japan
fYear
2014
fDate
18-21 May 2014
Firstpage
304
Lastpage
311
Abstract
Integrating differential-mode (DM) and common-mode (CM) inductors onto a single core has been expected to miniaturize EMI filters. However, the previously-reported magnetic structure often suffers from saturation by DC current, hindering miniaturization by integration. This problem seems exacerbated by the fact that this conventional structure tends to induce large DC flux because its equivalent number of turns for the DM inductance is restricted to only half of the total number of turns. This paper addresses the problem by proposing a novel structure that assigns more turns to the DM inductance to suppress the DC flux more effectively. This paper confirmed theoretically and experimentally that the proposed structure is equivalent to series-connected DM and CM inductors. Additionally, analytical estimation revealed that the proposed structure reduced core volume by 41% compared to the conventional structure under the same amount of copper. These results suggest effectiveness of the proposed structure for miniaturizing EMI filters.
Keywords
electromagnetic interference; inductors; magnetic cores; magnetic flux; CM inductors; DC flux suppression; DC saturation suppression; DM inductance; EMI filters; common-mode inductors; integrated differential-mode inductors; magnetic structure; series-connected DM inductors; Inductors; Magnetic separation; Prototypes; Resistance; Saturation magnetization; Switches; Windings; Common-mode inductor; Differential-mode inductor; EMI filter; Integrated magnetic component;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE-ASIA), 2014 International
Conference_Location
Hiroshima
Type
conf
DOI
10.1109/IPEC.2014.6869598
Filename
6869598
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