DocumentCode :
2980963
Title :
Magnetic material comparisons for high-current gapped and gapless foil wound inductors in high frequency dc-dc converters
Author :
Rylko, Marek S. ; Lyons, Brendan J. ; Hartnett, Kevin J. ; Hayes, John G. ; Egan, Michael G.
Author_Institution :
Univ. Coll. Cork, Cork
fYear :
2008
fDate :
1-3 Sept. 2008
Firstpage :
1249
Lastpage :
1256
Abstract :
The inductor often drives the dc-dc converter size. Thus, the inductor optimization process is required for the most effective design. The paper presents inductor analysis only. The material properties are essential for the design size. In this paper, various magnetic materials are analysed and investigated for use in a practical design. The investigation is concerned with the magnetic material selection for a dc-dc power inductor in the medium (20 kHz) to high (150 kHz) frequency range. The materials under investigation are iron-based amorphous metal, silicon steel, nanocrystalline, ferrite, and gap-less powder materials. A lumped parameter algorithm is derived which includes such effects as the foil ac copper loss effects, the gap core loss, and the cooling path. The algorithm is implemented in EXCEL and generates material comparisons over a range of frequencies, ripple ratios, cooling paths. The results show that the core power loss limited inductor tends to be oversized while the minimum size is achieved for the design which is at the sweet-spot where the size is driven by the core power loss, winding power loss and core saturation limit. A 1.25 kW half-bridge dc-dc converter is built in order to proof the algorithm feasibility at the interest frequency range.
Keywords :
DC-DC power convertors; inductors; magnetic materials; DC-DC converters; EXCEL; frequency 20 kHz to 150 kHz; gapless foil wound inductors; high-current gapped inductors; magnetic material comparisons; power 1.25 kW; Amorphous magnetic materials; Building materials; Cooling; DC-DC power converters; Frequency conversion; Inductors; Inorganic materials; Magnetic analysis; Magnetic materials; Wounds; Design; Magnetic device;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Motion Control Conference, 2008. EPE-PEMC 2008. 13th
Conference_Location :
Poznan
Print_ISBN :
978-1-4244-1741-4
Electronic_ISBN :
978-1-4244-1742-1
Type :
conf
DOI :
10.1109/EPEPEMC.2008.4635440
Filename :
4635440
Link To Document :
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