DocumentCode :
971959
Title :
A simple one-cycle power supply for approach to saturation studies in soft magnetic polycrystalline toroidal samples
Author :
Le Floc´h, M. ; Le Guen, M.P.
Author_Institution :
UFR Sci., Brest, France
Volume :
25
Issue :
3
fYear :
1989
fDate :
5/1/1989 12:00:00 AM
Firstpage :
2624
Lastpage :
2628
Abstract :
The ring shape is a good solution to the study of the magnetization processes of magnetic materials because demagnetizing fields are easily avoided. However, when small samples are investigated, the magnitude of the field applied is necessarily limited by the low number of primary winding turns, and by the cross section of the wire itself. The use of sequential-type techniques for high current supply allows this problem to be avoided. One-cycle power production from the 50 Hz AC-line voltage is a simple example of such techniques. An electronic device designed around a commercial integrated circuit is described. A full period of current of 20-ms duration is applied to the load with a magnitude ranging from 0 to 100 A. Magnetization parameters of soft polycrystalline ring ceramics approaching the saturation region are studied as an application. The fitness to measure such characteristic parameters as saturation magnetization and magnetic hardness is shown
Keywords :
magnetic variables measurement; power supply circuits; thyristor applications; 0 to 100 A; 20 ms; 50 Hz; circuit diagram; commercial integrated circuit; high current supply; magnetic hardness; number of primary winding turns; one-cycle power supply; ring ceramics; ring shape; saturation magnetization; saturation region; saturation studies; sequential-type techniques; soft magnetic polycrystalline toroidal samples; Current supplies; Demagnetization; Magnetic materials; Magnetization processes; Power supplies; Production; Saturation magnetization; Shape; Voltage; Wire;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.24501
Filename :
24501
Link To Document :
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