Read/Write Track Fringe Effect of Thin Film and MR Heads with Different Pole Shapes (Special Issue on Information Storage Technologies for the 21st Century)
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概要
- 論文の詳細を見る
Measuring the cross-track profiles of a microtrack created by DC erasing both sides of a recorded track, the linear recording density dependence of the written track fringe width and that of the read track fringe width were successfully separated, both of which are usually observed in combination. It was clarified that when a thin-film head is used for reading, the read track fringe width increases as the linear recording density decreases, whereas it remains almost constant when an MR head with wide shielding layers is used. It was also clarified that the record head fringe width for a thin-film inductive head is less dependent on the linear recording density. The effects of several heads with different pole shapes on track edge phenomena were also evaluated, by partially DC erasing a written track from the track edge and measuring the change in the residual track output. It was found that the fringe field width of a record head changes depending on the pole shape, and the trimming of record head poles is very effective in reducing head field fringe effects.
- 社団法人電子情報通信学会の論文
- 1999-12-25
著者
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Suzuki Toshiyuki
Kyushu Institute of Design
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Tanaka Terumitsu
Kyushu Institute of Design
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Wakamiya K
Kyushu Institute Of Design
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WAKAMIYA Kohei
Kyushu Institute of Design
関連論文
- Thermal Stability for Media with Strong Inter-particle Interaction
- Read/Write Track Fringe Effect of Thin Film and MR Heads with Different Pole Shapes (Special Issue on Information Storage Technologies for the 21st Century)
- Evaluating activation volume and inter-particle interaction for super-fine particle-coated media
- Recording Capability and Thermal Stability for Particulate Media with Inter-Particle Interaction(Special Issue on Selected Papers from the 5th Asian Symposium on Information Storage Technology)
- Evaluating activation volume and inter-particle interaction for super-fine particle-coated media (マルチメディアストレージ 第6回アジア情報記録技術シンポジウム〔英文〕)
- Thermal stability for media with strong inter-particle interaction (マルチメディアストレージ--第5回アジア情報記録技術シンポジウム〔英文〕)
- Overwrite Characteristics for Thin Recording Media
- Environmental Temperature Effect on Magnetization Stability in Particulate Recording Media