Ito Hiroyuki | Solutions Research Laboratory, Tokyo Institute of Technology
スポンサーリンク
概要
関連著者
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Masu Kazuya
Solutions Research Laboratory Tokyo Institute Of Technology
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Ishihara Noboru
Solutions Research Laboratory Tokyo Institute Of Technology
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Ito Hiroyuki
Solutions Research Laboratory, Tokyo Institute of Technology
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Tanoi Satoru
Solution Science Research Laboratory (SSRL), Tokyo Institute of Technology
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Lee Sang_yeop
Solutions Research Laboratory Tokyo Institute Of Technology
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Kamimura Tatsuya
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Lee Sang-Yeop
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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MASU Kazuya
Solutions Research Laboratory, Tokyo Institute of Technology
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Kiumarsi Hamid
Solutions Research Laboratory, Tokyo Institute of Technology
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IKEDA Sho
Solutions Research Laboratory, Tokyo Institute of Technology
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Lee Sang_yeop
Solutions Research Laboratory, Tokyo Institute of Technology
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Ikeda Sho
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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KANEMARU Norifumi
Solutions Research Laboratory, Tokyo Institute of Technology
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Kiumarsi Hamid
Solutions Research Laboratory Tokyo Institute of Technology
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KAMIMURA Tatsuya
Solutions Research Laboratory, Tokyo Institute of Technology
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ISHIHARA Noboru
Solutions Research Laboratory, Tokyo Institute of Technology
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Masu K
Research Institute Of Electrical Communication Tohoku University
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Masu Kazuya
Integrated Research Institute
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Ito H
National Agricultural Res. Organization Mie Jpn
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Amakawa Shuhei
Solution Science Research Laboratory (SSRL), Tokyo Institute of Technology
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Dharmiza Dayang
Solution Science Research Laboratory, Tokyo Institute of Technology
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Ishihara Noboru
東工大
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Masu Kazuya
東工大
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Mizuochi Yutaka
Solution Science Research Laboratory (ssrl) Tokyo Institute Of Technology
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Ito Hiroyuki
Precision And Intelligence Laboratory Tokyo Institute Of Technology
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Itoh H
Osaka Univ. Pharmaceutical Sci. Osaka Jpn
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Ito H
Precision And Intelligence Laboratory Tokyo Institute Of Technology
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Okada Kenichi
Department Of Communications And Computer Engineering Kyoto University
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Amakawa Shuhei
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Shirane Atsushi
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Kiumarsi Hamid
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Dharmiza Dayang
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Oturu Mototada
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Tanoi Satoru
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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Ishihara Noboru
Solutions Research Laboratory, Tokyo Institute of Technology, Yokohama 226-8503, Japan
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TANOI Satoru
Solutions Research Laboratory, Tokyo Institute of Technology
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Zheng Fenghuai
Solutions Research Laboratory Tokyo Institute of Technology
著作論文
- An Inductorless Phase-Locked Loop with Pulse Injection Locking Technique in 90 nm CMOS (集積回路)
- 0.1V 13GHz Transformer-Based Quadrature Voltage-Controlled Oscillator with a Capacitor Coupling Technique in 90nm Complementary Metal Oxide Semiconductor (Special Issue : Solid State Devices and Materials (2))
- A Three-Stage Inverter-Based Stacked Power Amplifier in 65 nm Complementary Metal Oxide Semiconductor Process
- Planar Solenoidal Inductor in Radio Frequency Micro-Electro-Mechanical Systems Technology for Variable Inductor with Wide Tunable Range and High Quality Factor
- 1.2--17.6 GHz Ring-Oscillator-Based Phase-Locked Loop with Injection Locking in 65 nm Complementary Metal Oxide Semiconductor
- An Inverter-Based Wideband Low-Noise Amplifier in 40 nm Complementary Metal Oxide Semiconductor
- Injection-locked fractional frequency multiplier with automatic reference pulse-selection technique
- A Ring-VCO-Based Injection-Locked Frequency Multiplier with Novel Pulse Generation Technique in 65nm CMOS
- An Inductorless Phase-Locked Loop with Pulse Injection Locking Technique in 90nm CMOS
- Fractionally Injection-Locked Frequency Multiplication Technique with Multi-Phase Ring Voltage-Controlled Oscillator
- C-12-11 Indutors and Transformers on 65 nm CMOS Technology for 60 GHz Applications
- Fractionally Injection-Locked Frequency Multiplication Technique with Multi-Phase Ring Voltage-Controlled Oscillator (Special Issue : Solid State Devices and Materials)
- C-12-23 A1.8 GHz, 2.2 Watt Fully Integrated CMOS Power Amplifier
- A Ring-VCO-Based Injection-Locked Frequency Multiplier with Novel Pulse Generation Technique in 65nm CMOS