Tsujino Jiromaru | Faculty Of Electrical Engineering Kanagawa University
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概要
関連著者
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Tsujino Jiromaru
Faculty Of Electrical Engineering Kanagawa University
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Ueoka Tetsugi
Faculty Of Electrical Engineering Kanagawa University
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TSUJINO Jiromaru
Faculty of Electrical Engineering, Kanagawa University
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Ueoka T
Faculty Of Engineering High-tech Research Center Kanagawa University
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UEOKA Tetsugi
Faculty of Electrical Engineering, Kanagawa University
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Ueoka Tetsugi
Faculty Of Engineering High-tech Research Center Kanagawa University
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Hongoh Misugi
Faculty Of Engineering High-tech Research Center Kanagawa University
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Miura Hiroyuki
Faculty Of Engineering High-tech Research Center Kanagawa University
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Yoshikuni Masafumi
Faculty Of Engineering High-tech Research Center Kanagawa University
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HONGOH Misugi
Faculty of Engineering, High-Tech Research Center, Kanagawa University
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辻野 次郎丸
神奈川大学
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Tsujino Jiromaru
Faculty Of Engineering Kanagawa University
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YOSHIKUNI Masafumi
Faculty of Engineering, High-Tech Research Center, Kanagawa University
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辻野 次郎丸
神奈川大学・工学研究科
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WATANABE Ichiro
Faculty of Engineering, Keio University.
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Watanabe I
Department Of Electrical And Electronic Engineering Faculty Of Engineering Kanazawa University
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Watanabe I
Sankyo Co. Ltd. Tokyo Jpn
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Suzuki Atsuyuki
Faculty Of Engineering Kanagawa University
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Watanabe Ichiro
Faculty Of Engineering Keio University
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Uchida T
Institute For Semiconductor Technologies Ulvac Inc.
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Uchida Tajiro
Institute For Semiconductor Technologies Ulvac Inc.
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Fujita Yuki
Faculty Of Engineering Kanagawa University
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Hasegawa K
Muroran Inst. Technol. Muroran Jpn
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Uchida T
Mitsubishi Electric Corp. Hyogo Jpn
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Hasegawa Koji
Muroran Institute Of Technology
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Koike Yuji
Faculty of Engineering, KANAGAWA University
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Takahashi K
Tokyo Inst. Technol. Yokohama Jpn
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SAKANASHI Mayuko
Department of Pharmacology, School of Medicine, Faculty of Medicine, University of the Ryukyus
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Hasegawa Koichi
Faculty Of Engineering Kanagawa University
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Takahashi Kouchiro
National Institute For Research In Inorganic Materials
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Koike Yuji
Faculty Of Engineering Univ. Kanagawa
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Uchida Tatsuo
Tohoku University
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Hasegawa K
Muroran Institute Of Technology
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Kikuchi Naoki
Faculty Of Engineering Kanagawa University
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Satoh H
Hitachi Ltd. Tokyo Jpn
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Sakai M
Hokkaido Univ. Sapporo Jpn
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Sakai M
Olympus Optical Co. Ltd. Tokyo
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Sakai M
Univ. Tokyo Tokyo Jpn
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Sakai Masayuki
Department Of Hospital Pharmacy Faculty Of Medicine University Of The Ryukyus
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SAKAI Masayuki
Faculty of Science, Hiroshima University
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UCHIDA Takako
Faculty of Electrical Engineering, Kanagawa University
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Tsujino Jiromaru
Kanagawa Univ. Yokohama Jpn
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MORI Takahiro
Faculty of Textile Science & Technology, Shinshu University
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Ando Hideki
Faculty Of Engineering Kanagawa University
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Sakanashi Matao
Department Of Pharmacology:2nd Department Of Internal Medicine:school Of Medicine Faculty Of Medicin
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Katsumata Yasuhiro
Faculty Of Engineering Kanagawa University
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Negishi Takashi
Faculty Of Engineering Kanagawa University
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Ueoka Tetsugi
Faculty Of Engineering Kanagawa University
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DAIGO Hiroshi
Faculty of Engineering, Kanagawa University
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Tsujino Jiromaru
Graduate School Of Engineering High-tech Research Center Kanagawa University
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TAKIGUCHI Kazuhiro
Faculty of Engineering, Kanagawa University
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SATOH Hajime
Faculty of Engineering, Kanagawa University
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Daigo Hiroshi
Faculty Of Engineering Kanagawa University
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Nakahama Yoshinori
Faculty Of Engineering Kanagawa University
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Mori Takahiro
Department Of Biology Faculty Of Science Toho University
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Furuya Hiroshi
Faculty Of Engineering Kanagawa University
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Sakai Masayuki
Faculty Of Science Hiroshima University
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Kihara Masaki
Faculty Of Engineering Kanagawa University
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Aoyama Tohru
Faculty of Engineering, KANAGAWA University
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TSUBOI Shunichi
Faculty of Engineering, Kanagawa University
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Kikuchi Yuya
Faculty Of Engineering High-tech Research Center Kanagawa University
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Tsuboi Shunichi
Faculty Of Engineering Kanagawa University
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Karatsu Ryohei
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
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Yoshikuni Masafumi
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Aoyama Tohru
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
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Takahashi K
National Inst. Res. In Inorganic Materials Ibaraki Jpn
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SUZUKI Ryo
Faculty and Graduate School of Pharmaceutical Sciences, Osaka University
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Ishii Yasuhiro
Faculty Of Agriculture Tokyo University Of Agriculture And Technology
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IWAMURA Yukio
Faculty of Medical Health, Ibaraki Prefectural University of Health Sciences
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Takahashi K
Department Of Physical Electronics Tokyo Institute Of Tecnology
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YAMAZAKI Hiroyuki
Faculty of Science and Technology, Tokyo University of Science
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Adachi Tatsuya
Faculty Of Electrical Engineering Kanagawa University
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KIMURA Yusuke
Faculty of Agriculture, Iwate University
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Suzaki Yoshifumi
Department Of Advanced Material Science Faculty Of Engineering Kagawa University
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Taniguchi Shinya
Faculty Of Electrical Engineering Kanagawa University
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Yoshihara Hiroyuki
Faculty Of Engineering Kanagawa University
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Takahashi Kuniharu
Graduate School Of Science And Technology Niigata University
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Iwase Eri
Faculty Of Engineering Kanagawa University
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Mizuno K
Kanagawa Univ. Yokohama Jpn
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Aoki Shuichi
Faculty Of Engineering Kanagawa University
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Itoh Tomohiko
Faculty Of Engineering Kanagawa University
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Iwamura Yukio
Faculty Of Electrical Engineering Kanagawa University
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OHKUSA Kunifumi
Faculty of Electrical Engineering, Kanagawa University
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Ohkusa Kunifumi
Faculty Of Electrical Engineering Kanagawa University
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Suzuki Haruo
Faculty Of Engineering Kanagawa University
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MIYAMOTO Rei
Faculty of Engineering, Kanagawa University
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Suzaki Yukihide
Department Of Advanced Material Science Faculty Of Engineering Kagawa University
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SUZAKI Yukihide
Faculty of Engineering, Kanagawa University
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UCHIDA Kazutoshi
Faculty of Engineering, Kanagawa University
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ANDOH Akikazu
Faculty of Engineering, Kanagawa University
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Tsuboi Hidenori
Faculty Of Engineering Kanagawa University
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OGAWA Masato
Faculty of Engineering, Kanagawa University
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HIRASAWA Masakazu
Faculty of Engineering, Kanagawa University
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Masuda Yoshiaki
Faculty Of Engineering Kanagawa University
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YANAGIHARA Toshiaki
Faculty of Engineering, Kanagawa University
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TAKAHASHI Minoru
Faculty of Engineering, Kanagawa University
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GOTO Nobuhiko
Faculty of Engineering, Kanagawa University
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Suzuki Atsuyuki
Faculty of Engineering, Kanagawa University
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Kihara Masaki
Faculty of Engineering, Kanagawa University
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ASADA Yukihiro
Faculty of Electrical Engineering, Kanagawa University
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MURAYAMA Yoshihiro
Faculty of Engineering, Kanagawa University
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FURUYA Hiroshi
Faculty of Engineering, Kanagawa University
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ITOH Hirosada
Faculty of Engineering, Kanagawa University
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SUGIMOTO Hideshi
Faculty of Engineering, Kanagawa University
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HORIKOSHI Mitsuo
Faculty of Engineering, Kanagawa University
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NEGISHI Takeshi
Faculty of Engineering, Kanagawa University
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ONOZATO Takashi
Faculty of Engineering, Kanagawa University
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Goto Nobuhiko
Faculty Of Engineering Kanagawa University
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Mizuno Keisuke
Faculty Of Engineering Kanagawa University
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NAKAHARA Yoshinori
Faculty of Engineering, Kanagawa University
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Aoyama Tohru
Graduate School of Engineering, High-Tech Research Center Kanagawa University
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Ogawa Masato
Faculty Of Engineering Kanagawa University
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Andoh Akikazu
Faculty Of Engineering Kanagawa University
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Nakai Kentaro
Faculty Of Engineering Kanagawa University
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Asada Yukihiro
Faculty Of Electrical Engineering Kanagawa University
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Aoyama Tohru
Graduate School Of Engineering High-tech Research Center Kanagawa University
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TAKAHASHI Kazumitsu
Faculty of Engineering, Kanagawa University
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ATSUMI Yasuhiko
Faculty of Engineering, KANAGAWA UNIVERSITY
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Itoh Hirosada
Faculty Of Engineering Kanagawa University
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TAMURA Toshiki
Faculty of Engineering, Kanagawa University
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KONDA Hiroyuki
Faculty of Engineering, Kanagawa University
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Horikoshi Mitsuo
Faculty Of Engineering Kanagawa University
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Sugimoto Hideshi
Faculty Of Engineering Kanagawa University
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Murayama Yoshihiro
Faculty Of Engineering Kanagawa University
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Yanagihara Toshiaki
Faculty Of Engineering Kanagawa University
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Kimura Yusuke
Faculty Of Engineering Kanagawa University
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Ishii Yasuhiro
Faculty Of Engineering Kanagawa University
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INUJIMA Kazutoshi
Faculty of Engineering, Kanagawa University
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HIRANO Yasuyuki
Faculty of Engineering, Kanagawa University
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Atsumi Yasuhiko
Faculty Of Engineering Kanagawa University
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Onozato Takashi
Faculty Of Engineering Kanagawa University
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MURAYAMA Yosihiro
Faculty of Engineering, kanagawa University
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Karatsu Ryohei
Faculty of Engineering, KANAGAWA University
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KIKUCHI Yuya
Faculty of Engineering, High-Tech Research Center, Kanagawa University
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SUZUKI Hidetoshi
Faculty of Engineering, Kanagawa University
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HORIKOSHI Takahiro
Faculty of Engineering, Kanagawa University
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YABUZAKI Motohiro
Faculty of Engineering, Kanagawa University
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KISHIMOTO Goh
Faculty of Engineering, KANAGAWA University
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UEOKA Tesugi
Faculty of Engineering, Kanagawa University
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Kashino Takashi
Faculty of Electrical Engineering, Kanagawa University
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Sugahara Fumiharu
Faculty of Electrical Engineering, Kanagawa University
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Kashino Takashi
Faculty Of Electrical Engineering Kanagawa University
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SHIRAKI Toshiyuki
Faculty of Engineering, Kanagawa University
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FUKAZU Yasuo
Faculty of Engineering, Kanagawa University
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Konda Hiroyuki
Faculty Of Engineering Kanagawa University
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Karatsu Ryohei
Kanagawa University Faculty Of Engineering
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Hirano Yasuyuki
Faculty Of Engineering Kanagawa University
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Fukazu Yasuo
Faculty Of Engineering Kanagawa University
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Uchida Kazutoshi
Faculty Of Engineering Kanagawa University
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Sugahara Fumiharu
Faculty Of Electrical Engineering Kanagawa University
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SAKO Kazuhide
Faculty of Engineering, Kanagawa University
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IKEGAMI Noritada
Faculty of Engineering, Kanagawa University
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NODA Kohsuke
Faculty of Engineering, Kanagawa University
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Noda Kohsuke
Faculty Of Engineering Kanagawa University
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Sako Kazuhide
Faculty Of Engineering Kanagawa University
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Suzuki Ryo
Faculty Of Engineering Kanagawa University
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Kishimoto Goh
Faculty Of Engineering Kanagawa University
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Yabuzaki Motohiro
Faculty Of Engineering Kanagawa University
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Takahashi Kazumitsu
Faculty Of Engineering Kanagawa University
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Tamura Toshiki
Faculty Of Engineering Kanagawa University
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Shiraki Toshiyuki
Faculty Of Engineering Kanagawa University
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Inujima Kazutoshi
Faculty Of Engineering Kanagawa University
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Horikoshi Takahiro
Faculty Of Engineering Kanagawa University
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Suzuki Hidetoshi
Faculty Of Engineering Kanagawa University
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Ikegami Noritada
Faculty Of Engineering Kanagawa University
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Hirasawa Masakazu
Faculty Of Engineering Kanagawa University
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TAKAHASHI Kenji
Semiconductor Research Laboratory, Pioneer Electronic Corporation
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Murayama Yosihiro
Faculty Of Engineering Kanagawa University
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Takahashi Minoru
Faculty Of Engineering Kanagawa University
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Takahashi Minoru
Faculty Of Agriculture Tokyo University Of Agriculture And Technology:(present Address)snow-brand Se
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Yamazaki Hiroyuki
Faculty Of Engineering Kanagawa University
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Ueoka Tetsugi
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Ueoka Tetsugi
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
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Ueoka Tetsugi
Faculty of Engineering, Kanagawa University
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Kihara Masaki
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Hongoh Misugi
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
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Tsujino Jiromaru
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Tsujino Jiromaru
Faculty of Engineering, High-Tech Research Center, Kanagawa University, Yokohama 221-8686, Japan
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Miyamoto Rei
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Katsumata Yasuhiro
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Kikuchi Yuya
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Suzuki Atsuyuki
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Kikuchi Naoki
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
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Hashii Hidekazu
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Japan
著作論文
- Transmission Conditions of Vibration Stresses to Welding Specimens of Ultrasonic Plastic Welding using Various Two-Vibration-System Equipments
- Ultrasonic Vibration Press of Powder Using 20 kHz Upper and Lower Vibration Punches and a Vacuum Compacting Die : Ultrasonic Motor, Actuator and Transducer
- Frequency Characteristics of Ultrasonic Plastic Welding : 27kHz to 180kHz Ultrasonic Plastic Welding Systems(Advanced Technology of Vibration and Sound)
- Temperature Distributions in Welding Specimens for Ultrasonic Plastic Welding Systems Using Various Frequencies
- 119 FREQUENCY CHARACTERISTICS OF ULTRASONIC PLASTIC WELDING : 27kHz TO 180kHz ULTRASONIC PLASTIC WELDING SYSTEMS(O.S.1 Usage of Sound Energy)
- P2-66 Temperature Distributions of Welding Specimens Using Various Frequency Ultrasonic Plastic Welding Systems(Short presentation for poster)
- Studies on Ultrasonic Butt Welding System Using A Large Capacity Static Induction Thyristor Power Amplifier : High Power Ultrasonics
- Welding Characteristics of 40 kHz Ultrasonic Plastic Welding System Using Fundamental and Higher-Resonance-Frequency Vibrations
- Ultrasonic Butt Welding of Aluminum, Copper and Steel Plate Specimens
- Ultrasonic Butt Welding of Large Metal Plates by Shiftirng Welding Tip Driving Position
- Studies on Ultrasonic Welding of Ring Shape Weldment with Two Vibration Systems : High Power Ultrasonics
- P2-63 Ultrasonic Rotary Motors Using Complex Transverse and Torsional Vibration Rods and Multiple BLT Transducers(Short presentation for poster)
- Measurement of the Temperature Rise at the Welding Surface of Different Metal Specimens Joined by a 15 kHz Ultrasonic Butt Welding System
- Welding Characteristics of Ultrasonic Wire Bonding Using the Same or a Different Frequency Complex Vibration Welding Tips : High Power Ultrasonics
- Studies on Ultrasonic Wire Bonding Using the Same or a Different Frequency Complex Vibration Welding Tip : High Power Ultrasonics
- Welding Characteristics of Ultrasonic Wire Bonding Using High-Frequency Vibration Systems
- Welding Characteristics of Ultrasonic Wire Bonding Using High-Frequency Vibration Systems
- Studies on Ultrasonic Butt Welding Using 19 kHz Vibration Systems : High Power Ultrasonics
- Temperature Rise and Welding Characteristics of Various-Frequency Ultrasonic Plastic Welding Systems
- Characteristics of Bending Parts of Metal Plates Using Ultrasonic Bending Systems with a Vibration Punch and a Vibration Die
- Studies on the Ultrasonic Vibration Press of Powder : on the Vibration Press with a Vibration Die : High-Power Ultrasonics
- Characteristics of Two-Vibration-System Ultrasonic Plastic Welding with 90 kHz and 20 kHz Vibration Systems at Right Angles
- Ultrasonic Welding of Thin Metal Plates Using a Complex Vibration Welding Tip : Ultrasonic Motor, Actuator and Transducer
- Temperature Rise and Welding Characteristics of Ultrasonic Wire Bonding Using 190 kHz Linear, Circular and Square Vibration Loci and 600 kHz Linear Vibration Locus Welding Tips
- Welding Characteristics of Thin Copper Wire Using Complex Vibration Ultrasonic Wire Bonding Systems : High Power Ultrasonics
- P3-63 Vibration and Welding Characteristics of a 27 kHz Complex Vibration Source Using a (2,1) Transverse Vibration Disk and Six Bolt-clamped Langevin Type PZT transducers(Poster session 3)
- Configurations of Large Capacity Ultrasonic Complex Vibration Sources with Complex Transverse Vibration Rods and a Disk with Multiple Transducers(Advanced Technology of Vibration and Sound)
- Studies on Ultrasonic Welding with Two Vibration Systems : High Power Ultrasonics
- Characteristics of Metal Weldment Joined by Ultrasonic Butt Welding : High Power Ultrasonics
- Studies on Ultrasonic Plastic Welding with Two Longitudinal Vibration Systems : High Power Ultrasonics
- Studies on Ultrasonic Vibration Press of Powder by Longitudinal Vibration Punches and Various Vibration Mode Dies : High Power Ultrasonics
- P3-60 Configuration of a 150 kHz Ultrasonic Welding Equipment Using a Different Sound Velocity Metal-Ring-Pair Complex Vibration Converter(Poster session 3)
- Load Characteristics of Ultrasonic Motors with a Longitudinal-Torsional Converter and Various Nonlinear Springs for Inducing Static Pressure
- Studies on the Ring Type Magnetic Ultrasonic Vibration Detector : High Power Ultrasonics
- Studies on the Ultrasonic Butt Welding of Metal Plates : High Power Ultrasonics
- Studies on Ultrasonic Butt Welding of Different Metal Plates : High Power Ultrasonics
- Ultrasonic Butt Welding of Aluminum and Stainless Steel Specimens Using a 15 kHz Welding System
- Ultrasonic Plastic Welding Using 90 kHz Upper and Lower Vibration Systems
- Ultrasonic Butt Welding of Anticorrosive Aluminum and Copper Plate Specimens : High Power Ultrasonics
- Load Characteristics and Vibration Loci at the Driving Surfaces of Ultrasonic Rotary Motor using a Longitudinal-Torsional Vibration Converter
- Welding Characteristics of Ultrasonic Seam Welding System Using a Complex Vibration Circular Disk Welding Tip
- Welding Characteristics of Aluminum and Copper Plate Specimens Welded by a 19 kHz Complex Vibration Ultrasonic Seam Welding System
- Driving and Welding Characteristics of An Ultrasonic Butt Welding System Using A Large Capacity Power Amplifier : High Power Ultrasonics
- Ultrasonic Seam Welding System Using a Complex Vibration Circular Disk in Transverse and Torsional Vibrations
- Configuration of a Transverse Vibration Rod Type Ultrasonic Motor Using Three Longitudinal Transducers Driven in Three Different Vibration Phases
- Configuration of a 30-mm-diameter 94 kHz Ultrasonic Longitudinal Vibration System for Plastic Welding
- Studies on Ultrasonic Vibration Bending of Thin Metal Plates : High Power Ultrasonics
- Configurations of Large Capacity Ultrasonic Complex Vibration Sources Using Multiple Longitudinal Transducers Installed in Both Sides of a Transverse Vibration Disk
- Vibration Characteristics of a Large-Capacity Complex Vibration Source Using a Titanium Alloy Complex Transverse Vibration Rod with Two Stepped Parts
- Welding Characteristics of 67 kHz Ultrasonic Plastic Welding System Using Fundamental and Higher-Resonance-Frequency Vibrations