DocumentCode :
5093
Title :
A Horizontal-Winding Multipermeability LTCC Inductor for a Low-profile Hybrid DC/DC Converter
Author :
Laili Wang ; Zhiyuan Hu ; Yan-Fei Liu ; Yunqing Pei ; Xu Yang ; Zhaoan Wang
Author_Institution :
Dept. of Electr. & Comput. Eng., Queen´s Univ., Kingston, ON, Canada
Volume :
28
Issue :
9
fYear :
2013
fDate :
Sept. 2013
Firstpage :
4365
Lastpage :
4375
Abstract :
Distributed air-gap inductors have the advantage of reducing winding loss in high switching frequency dc/dc converters. However, they also have the disadvantage of uneven distribution of flux density, which inevitably leads to uncompleted utilization of magnetic material. This paper proposes a horizontal-winding multipermeability low-temperature cofired ceramic (LTCC) inductor to increase inductance and improve efficiency without the necessity of increasing inductor volume. For the purpose of simplicity, a two-permeability LTCC inductor is taken as an example for analysis and comparison. Design of such an inductor is demonstrated with the aid of 2-D finite elementary analysis simulation. A two-permeability LTCC inductor together with a single-permeability LTCC inductor is fabricated for measuring and testing. The measured results show the two-permeability inductor has higher inductance than the single-permeability inductor. Both inductors are tested in a 5-V input, 3.3-V output dc/dc converter to test their performances. The testing results show the two-permeability LTCC inductor could further improve the efficiency of high-frequency dc/dc converters compared with the single-permeability LTCC inductor.
Keywords :
DC-DC power convertors; finite element analysis; inductors; magnetic materials; switching convertors; 2D finite elementary analysis; distributed air-gap inductor; flux density; high-frequency DC-DC converter; horizontal-winding multipermeability LTCC inductor; low-profile hybrid DC-DC converter; low-temperature cofired ceramic; magnetic material; switching frequency DC/DC converter; two-permeability LTCC inductor; voltage 3.3 V; voltage 5 V; winding loss; Conductors; DC-DC power converters; Inductance; Inductors; Magnetic cores; Magnetic materials; Permeability; Efficiency improvement; hybrid integration; low-temperature cofired ceramic (LTCC); planar inductor;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2013.2238640
Filename :
6408384
Link To Document :
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