DocumentCode
2526768
Title
Performance of high-frequency high-flux magnetic cores at cryogenic temperatures
Author
Gerber, S.S.
Author_Institution
ZIN Technol., Brook Park, OH, USA
fYear
2004
fDate
29-31 July 2004
Firstpage
249
Lastpage
254
Abstract
Three magnetic powder cores and one ferrite core, which are commonly used in inductor and transformer design for switch mode power supplies, were selected for investigation at cryogenic temperatures. The powder cores are Molypermalloy Core (MPC), High Flux Core (HFC), and Kool Mu Core (KMC). The performance of four inductors utilizing these cores has been evaluated as a function of temperature from 20 °C to -180 °C. All cores were wound with the same wire type and gauge to obtain equal values of inductance at room temperature. Each inductor was evaluated in terms of its inductance, quality (Q) factor, resistance, and dynamic hysteresis characteristics (B-H loop) as a function of temperature and frequency. Both sinusoidal and square wave excitations were used in these investigations. Measured data obtained on the inductance showed that both the MPC and the HFC cores maintain a constant inductance value, whereas with the KMC and ferrite core hold a steady value in inductance with frequency but decrease as temperature is decreased. All cores exhibited dependency, with varying degrees, in their quality factor and resistance on test-frequency and temperature. Except for the ferrite, all cores exhibited good stability in the investigated properties with temperature as well as frequency. Details of the experimental procedures and test results are presented and discussed in the paper.
Keywords
Permalloy; cryogenic electronics; ferrites; inductors; magnetic flux; powder cores; space vehicle electronics; switched mode power supplies; transformer cores; B-H loop; HFC; High Flux Core; KMC; Kool Mu Core; MPC; Molypermalloy Core; cryogenic temperature; cryogenic temperatures; dynamic hysteresis characteristics; ferrite core; high-frequency high-flux magnetic cores; inductance; inductor; magnetic powder cores; quality factor; resistance; sinusoidal wave excitation; spacecraft application; square wave excitation; stability; switch mode power supplies; transformer; Cryogenics; Ferrites; Frequency; Inductors; Magnetic cores; Magnetic materials; Powders; Switches; Temperature; Transformer cores;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Engineering Conference, 2002. IECEC '02. 2002 37th Intersociety
Print_ISBN
0-7803-7296-4
Type
conf
DOI
10.1109/IECEC.2002.1392019
Filename
1392019
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