DocumentCode
1010993
Title
Demagnetization-free longitudinal recording on flexible thin film metal media
Author
Lee, Jae I. ; George, Peter K.
Author_Institution
Magnetic Peripherals, Incorporated, Computer Avenue South, Minneapolis, MN
Volume
21
Issue
3
fYear
1985
fDate
5/1/1985 12:00:00 AM
Firstpage
1221
Lastpage
1227
Abstract
The variation of demagnetization effects with media parameters for longitudinal contact recording has been investigated. Co-Re thin film metal media were sputtered onto flexible polyimide substrates. It was found that when the film thickness δ and demagnetizaton parameter
were less than 2 μ inch and 15 μinch, respectively, demagnetization-free longitudinal recording was obtained up to the recording density of 75 KFRPI at the head-to-medium spacing of 3 μ inch. As a result, recording densities of D50 over 50 KFRPI were achieved with a 20 μinch gap head. For thicker films with larger demagnetization parameters, i.e.,
inch and
inch, the longitudinal recording process approached the demagnetization limit. The results show that (with existing head field gradients) improvement in linear density of thin metal media can be obtained by an approximate factor of two before the demagnetization limit is reached.
were less than 2 μ inch and 15 μinch, respectively, demagnetization-free longitudinal recording was obtained up to the recording density of 75 KFRPI at the head-to-medium spacing of 3 μ inch. As a result, recording densities of D
inch and
inch, the longitudinal recording process approached the demagnetization limit. The results show that (with existing head field gradients) improvement in linear density of thin metal media can be obtained by an approximate factor of two before the demagnetization limit is reached.Keywords
Magnetic film memories; Coercive force; Demagnetization; Magnetic flux; Magnetic heads; Magnetic recording; Polyimides; Remanence; Saturation magnetization; Sputtering; Transistors;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1985.1063882
Filename
1063882
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