DocumentCode :
882367
Title :
Microfabrication and characteristics of low-power high-performance magnetic thin-film transformers
Author :
Yun, Eui-Jung ; Jung, Myunghee ; Cheon, Chae Il ; Nam, Hyoung Gin
Author_Institution :
Dept. of Electr., Hoseo Univ., Chungnam, South Korea
Volume :
40
Issue :
1
fYear :
2004
Firstpage :
65
Lastpage :
70
Abstract :
We investigated low-power (1.5-W), solenoid-type magnetic thin-film transformers with a Ni81Fe19 core for a 5-MHz drive dc-dc converter application. We used 2-μm-thick Ni81Fe19 films covered by 20-μm-thick copper coils as the core materials. The transformers fabricated in this study range in size from 3.08 mm × 25.5 mm to 6.15 mm × 12.75 mm. The design of the transformers was optimized by utilizing the conventional equations, a Maxwell three-dimensional field simulator, and parameters obtained from the magnetic properties of NiFe magnetic core materials. The 6.15 mm × 12.75 mm transformers exhibit inductance (L) of 0.83 μH, dc resistance of 2.3 Ω, coupling factor of 0.91, and gain of -1 dB at 5 MHz. These results are comparable to those reported in recent literature for various types of transformers sandwiched by more complex magnetic core materials. The calculated data obtained by using the well-known equation of L and the equivalent circuit agreed well with the high-frequency data for L and gain of the transformers.
Keywords :
DC-DC power convertors; current transformers; low-power electronics; magnetic cores; magnetic thin films; nanotechnology; solenoids; DC-DC converter; Maxwell three-dimensional field simulator; Ni81Fe17; NiFe magnetic core materials; copper coils; coupling factor; dc resistance; dc-dc converter; gain; inductance; low-power high-performance magnetic thin-film transformers; magnetic properties; microfabrication; solenoid-type magnetic thin-film transformers; Coils; Copper; DC-DC power converters; Design optimization; Iron; Magnetic cores; Magnetic films; Magnetic materials; Maxwell equations; Transformer cores;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2003.821119
Filename :
1264124
Link To Document :
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