Tomohisa Komoda
National Archives and Records Administration
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Publication
Featured researches published by Tomohisa Komoda.
ieee international magnetics conference | 1999
M. Michijima; H. Hayashi; M. Kyoho; T. Nakabayashi; Tomohisa Komoda; T. Kira
A study was made on the magnetic anisotropy in very thin Ni-Fe films of 10 nm or less sputtered at oblique-incidence. The anisotropy field H/sub k/s of Ni-Fe films induced on Ta films by oblique-incidence was different from that on Al/sub 2/O/sub 3/ films and was reduced with an application of the RF substrate bias while the films were being formed. Hks, at oblique-incidence, were dependent on the film structure. The difference in the chain structure of Ni-Fe films is considered to be the cause of difference in H/sub k/.
ieee international magnetics conference | 1993
K. Nakai; Tohru Kira; Ryoji Minakata; N. Okamoto; Tomohisa Komoda
In yoke-type magnetoresistive (MR) heads, Barkhausen noise occurs in different regions depending on various applied fields. The place causing the noise can be specified by comparing the observed change of noise with the calculated field distribution in the head when an internal bias is superimposed on a uniform external field. Using a recording coil current instead of a uniform external field, noise from a bottom yoke or a substrate is clearly detected. >
IEEE Transactions on Magnetics | 1993
Tomohisa Komoda; Tohru Kira; Ryoji Minakata; Tsuneo Nakamura; K. Nakai; H. Deguchi
An inductive head for recording and a yoke type MR head for playback have been employed in a DCC system. It is difficult to fabricate these heads on the same substrate while controlling the head properties. We therefore developed a new hybrid thin film head. The new combined structure of the head enables simplification of the production process, and the head proved to be suitable for use in DCC systems.
IEEE Transactions on Magnetics | 1994
Ryoji Minakata; Tomohisa Komoda; Tsuneo Nakamura; Kiyohito Nakai; Tohru Kira
The fabrication and performance of thin film magnetic heads newly developed for a digital multi-channel recorder are described. The reproducing head is a yoke type magnetoresistive head and the recording head is an inductive head. Four kinds of noise peculiar to the yoke type magnetoresistive heads have been completely suppressed by strict control of process conditions. Two new processes for a coil and a core have been applied to the recording head. Two reproducing heads and one recording head are assembled in a tape guide block ensuring accurate tape transport and stable tape-to-head contact. The characteristics of both the reproducing head and the recording head have proved to be sufficient for a digital multichannel recorder. >
Archive | 1992
Tomohisa Komoda; Ryoji Minakata; Tohru Kira; Akiyoshi Fujii; Hiroshi Suzuki; Atsuo Mukai
Archive | 1997
Haruhiko Deguchi; Takaya Nakabayashi; Tomohisa Komoda; Tohru Kira; Noboru Fujita; Kazuhiro Uneyama
Archive | 2007
Toshimitsu Furuya; Takamine Horiuchi; Akinori Izumi; Kazuya Kaida; Tetsuro Katayama; Tomohisa Komoda; Shinya Takabe; Koji Yamabuchi; 利光 古屋; 隆嶺 堀内; 浩二 山渕; 明範 泉; 哲朗 片山; 一弥 甲斐田; 智久 薦田; 信也 高部
Archive | 2009
Koji Yamabuchi; Tomohisa Komoda; Kazuya Kaida; Akinori Izumi; Takane Horiuchi; Shinya Takabe; Toshimitsu Furuya; Tetsuro Katayama
Archive | 1992
Tomohisa Komoda; Ryoji Minakata; Tohru Kira; Akiyoshi Fujii; Hiroshi Suzuki; Atsuo Mukai
Archive | 1999
Hitoshi Isono; Toru Kira; Tomohisa Komoda; Hisashi Ogaki; 徹 吉良; 久志 大垣; 仁志 磯野; 智久 薦田