Kudo Subaru | Department Of Electronics And Materials Faculty Of Science And Technology Ishinomaki Sensyu Universi
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概要
- 同名の論文著者
- Department Of Electronics And Materials Faculty Of Science And Technology Ishinomaki Sensyu Universiの論文著者
関連著者
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Kudo Subaru
Department Of Electronics And Materials Faculty Of Science And Technology Ishinomaki Sensyu Universi
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KUDO Subaru
Department of Electronics and Materials, Faculty of Science and Technology, Ishinomaki Senshu Univer
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Sugawara Sumio
Department Of Electrical Engineering Faculty Of Engineering Yamagata University
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SUGAWARA Sumio
Department of Electrical Engineering, Yamagata University
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Kudo S
Industrial Research Institute Of Nagano Prefecture
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Yoshida T
Department Of Electronic Engineering Faculty Of Engineering Takushoku University
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Yoshida Tomio
Information Equipment Research Laboratory Matsushita Electric Industrial Co. Ltd.
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KONNO Masashi
Department of Electrical Engineering, Yamagata University
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Yoshida Tomoaki
Department Of Materials Science Faculty Of Engineering Tohoku University
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Yoshida Tomio
Department Of Electronic Engineering Faculty Of Engineering Takushoku University
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Yoshida Toshiyuki
Research Center For Interface Quantum Electronics And Graduate School Of Electronics And Information
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YOKOYAMA HIDEKI
Department of Chest Surgery, National Kyushu Cancer Center
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Yoshida T
Matsushita Electric Co. Tochigi Jpn
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Konno M
Department Of Electronics And Materials Faculty Of Science And Technology Ishinomaki Senshu Universi
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Konno Masashi
Department Of Electrical Engineering Faculty Of Engineering
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Sugawara S
Ishinomaki Senshu Univ. Ishinomaki‐shi Jpn
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WAKATSUKI Noboru
Department of Electronics and Material,s, Faculty of Science and Engineering, Ishinomaki-Senshu Univ
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Akiba Yuuichi
Department Of Information Technology And Electronics Faculty Of Science And Engineering Ishinomaki S
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Yoshida T
Fukuoka Univ. Fukuoka Jpn
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Yokoyama H
Ntt Corp. Kanagawa Jpn
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Yokoyama Hideki
Department Of Chest Surgery National Kyushu Cancer Center
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Wakatsuki N
Ishinomaki Senshu Univ. Miyagi Jpn
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Sugawara Sumio
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Sugawara Sumio
Department Of Electronics And Materials Faculty Of Science And Technology Ishinomaki Sensyu Universi
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Kudo Subaru
Ishinomaki Senshu Univ. Miyagi Jpn
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Kudo Subaru
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Kudo Subaru
Department Of Information Technology And Electronics Faculty Of Science And Engineering Ishinomaki S
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ATOJI Nobuhisa
Components Development Center, Matsushita Electronic Components Co., Ltd.
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MURAKAMI Masayoshi
Components Development Center, Matsushita Electronic Components Co., Ltd.
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YOSHIDA Tetsuo
Miyagi Research Center, AXIOM Company, LTD
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WAKATUKI Noboru
Department of Electronics and Materials, School of Science and Engineering, Ishinomaki Senshu Univer
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Aoyagi Ryoji
Department Of Electronic Engineering Sendai National College Of Technology
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Atoji Nobuhisa
Components Development Center Matsushita Electronic Components Co. Ltd.
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Murakami Masayoshi
Components Development Center Matsushita Electronic Components Co. Ltd.
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Sugawara Sumio
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Wakatuki Noboru
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Kudo Subaru
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Kudo Subaru
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Kudo Subaru
Department Of Electronics And Materials School Of Science And Engineering Ishinomaki Senshu Universi
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Akiba Yuuichi
Department of Information Technology and Electronics, School of Science and Engineering, Ishinomaki Senshu University, Ishinomaki 986-8580, Japan
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Kudo Subaru
Department of Information Technology and Electronics, School of Science and Engineering, Ishinomaki Senshu University, Ishinomaki 986-8580, Japan
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Kudo Subaru
Department of Electronics and Materials, School of Science and Engineering, Ishinomaki Senshu University, Ishinomaki 986-8580, Japan
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Kudo Subaru
Department of Information Technology and Electronics, School of Science and Engineering, Ishinomaki Senshu University, Ishinomaki, Miyagi 986-8580, Japan
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Kudo Subaru
Department of Information Technology and Electronics, Faculty of Science and Engineering, Ishinomaki Senshu University, Ishinomaki, Miyagi 986-8580, Japan
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Yamakawa Masaki
Department of Information Technology and Electronics, Faculty of Science and Engineering, Ishinomaki Senshu University, Ishinomaki, Miyagi 986-8580, Japan
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Kudo Subaru
Department of Electronics and Materials, School of Science and
著作論文
- Vibrational Analysis of Tuning Fork Gyroscope with Orthogonal Vibration Arms
- Finite Element Analysis of H-Type Vibratory Gyroscope
- The Suppression of Mechanical Resonances of LiNbO_3 Actuator with Oppositely-Polarized Layers
- Piezoelectric Actuator of LiNbO_3 with an Integrated Displacement Sensor
- Vibratory Tactile Sensor Integrated a Longitudinal Resonator and a Force Sensor(Advanced Technology of Vibration and Sound)
- Vibration Modes and Resonant Frequencies of a New Tuning Fork with 4 Vibrating Arms
- Finite Element Analysis of Mechanical Couplings in a Tuning Fork Gyroscope
- Improvement of Transitional Response Characteristics of a Piezoelectric Vibratory Gyroscope
- Resonance Frequency of Vibrating Resonator Deformed by Axial Force
- 111 STUDY ON A TACTILE SENSOR WITH A LONGITUDINAL RESONATOR INTEGRATED WITH A FORCE SENSOR OF THE FREQUENCY CHANGE TYPE(O.S.4 Measurement and Sensor II)
- Consideration on Temperature Characteristics of Sensitivity in Quartz Tuning Fork Gyroscope
- A Study of Vibratory Tactile Sensor Using a Horn-Type Longitudinal Bar Resonator
- Finite Element Analysis of Sensitivity of Frequency-Change Force Sensor
- Finite Element Analysis of Viscoelasticity of Test Pieces for Tactile Sensor
- Sensitivity of Frequency Change of Piezoelectric Vibratory Tactile Sensor Using Longitudinal-Bar-Type Resonator
- The Finite Element Analysis of Contact Phenomenon on a Tactile Sensor
- Vibration Characteristics of Trident-Type Tuning-Fork Resonator in the Second Flexural Mode for Application to Tactile Sensors
- Consideration of Figure of Merit of Piezoelectric Vibratory Gyroscope Using Charge Sensitivity
- Consideration on Temperature Characteristics of Sensitivity in Quartz Tuning Fork Gyroscope