DocumentCode :
971896
Title :
Magnetic properties of sputtered Co-Ni-Fe-Pd films for thin-film heads
Author :
Nishioka, Kouichi ; Imagawa, Takao ; Sano, Masaaki ; Mitsuoka, Katsuya ; Narishige, Shinji ; Sugita, Yutaka
Author_Institution :
Hitachi Ltd., Ibaraki, Japan
Volume :
25
Issue :
3
fYear :
1989
fDate :
5/1/1989 12:00:00 AM
Firstpage :
2602
Lastpage :
2606
Abstract :
Magnetic properties of Co-Ni-Fe-M (M=Rh, Ir, Pd, Pt) films prepared by sputtering are investigated. It is found that addition of Pd decreases the magnetostriction constant of the films from 1×10-5 to around zero. On the other hand, addition of other elements, such as Rh, Ir, and Pt, increases it. However, coercive forces of Co-Ni-Fe-Pd films become more than 10 Oe when the magnetostriction is less than 2×10-6. Multilayered films are investigated to obtain films with low coercive force. 43Co-27Ni-15Fe-15Pd films of 0.17 μm and Al2O3 films of 0.01 μm in thickness are layered time-sequentially. This multilayered film has saturation induction of 1.4 T, ≈0 magnetostriction, and a low coercive force of 1.5 Oe. Furthermore, Co-Ni-Fe-Pd films are ascertained to be as resistant to corrosion as Permalloy films. Recording heads with multilayered Co-Ni-Fe-Pd films with Al2O3 interlayers as magnetic cores have been fabricated. Recording characteristics were evaluated. These laminated Co-Ni-Fe-Pd/Al2O3 heads exhibit about 6 dB better overwrite than Permalloy heads
Keywords :
cobalt alloys; ferromagnetic properties of substances; iron alloys; magnetic heads; magnetic thin films; nickel alloys; palladium alloys; sputtered coatings; thin film devices; 0.01 micron; 0.17 micron; Al2O3 interlayers; coercive forces; corrosion resistance; hard disc storage; laminated Co-Ni-Fe-Pd/Al2O3 heads; magnetic cores; magnetic properties; magnetostriction constant; multilayered Co-Ni-Fe-Pd films; multilayered films; overwrite; recording characteristics; saturation induction; thin-film heads; Coercive force; Corrosion; Magnetic films; Magnetic heads; Magnetic properties; Magnetic recording; Magnetostriction; Radio frequency; Sputtering; Substrates;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.24497
Filename :
24497
Link To Document :
بازگشت