Shiroishi Tetsuya | Advanced Technology R&d Center Mitsubishi Electric Corporation
スポンサーリンク
概要
関連著者
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Nakata Shuhei
Advanced Technology R&d Center Mitsubishi Electric Corporation
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Shiroishi Tetsuya
Advanced Technology R&d Center Mitsubishi Electric Corporation
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OKUDA Soichiro
Advanced Technology R&D Center, Mitsubishi Electric Corporation
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Okuda Soichiro
Advanced Technology R&d Center Mitsubishi Electric Corporation
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SHIROISHI Tetsuya
Advanced Technology R&D Center, Mitsubishi Electric Corporation
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NAKATA Shuhei
Advanced Technology R&D Center, Mitsubishi Electric Corporation
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OONO Katsumi
Display Devices Works, Mitsubishi Electric Corporation
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MURAKAMI Fumiaki
Display Devices Works, Mitsubishi Electric Corporation
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Oono Katsumi
Display Devices Works Mitsubishi Electric Corporation
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Okuda Soichiro
Advanced Technology R&d Center Mitsubishi Electric Corp.
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Murakami Fumiaki
Display Devices Works Mitsubishi Electric Corporation
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HINOMOTO Nobuhide
Display Devices Works, Mitsubishi Electric Corporation
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Hinomoto Nobuhide
Display Devices Works Mitsubishi Electric Corporation
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Sawada Takao
Advanced Technology R&d Center Mitsubishi Electric Corporation
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Hosono Akihiko
Advanced Technology R&d Center Mitsubishi Electric Corp.
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Takai Mikio
Graduate School of Engineering Science and Research Center for Materials Science at Extreme Conditions, Osaka University, Osaka 560-8531, Japan
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Kanazawa Yasunori
Graduate School of Engineering Science and Research Center for Materials Science at Extreme Conditions, Osaka University, Osaka 560-8531, Japan
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Hosono Akihiko
Advanced Technology R&D Center, Mitsubishi Electric Corporation, Amagasaki 664-8661, Japan
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Nakata Shuhei
Advanced Technology R&D Center, Mitsubishi Electric Corporation, Amagasaki 664-8661, Japan
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Shiroishi Tetsuya
Advanced Technology R&D Center, Mitsubishi Electric Corporation, Amagasaki 664-8661, Japan
著作論文
- Development of Electron Gun for High Brightness CRT(CRT Technology)(Electronic Displays)
- Development of Electron Gun for High Brightness CRT
- Low Driving Voltage Electron Gun for Multimedia CRT(Special Issue on Electronic Displays)
- Growth of Carbon Nanotube by Thermal Chemical Vapor Deposition at Low Temperature with FeZrN Film