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Rui Ito
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2020 – today
- 2022
- [j11]Takashi Toi, Junji Wadatsumi, Hiroyuki Kobayashi, Yutaka Shimizu, Yuji Satoh, Makoto Morimoto, Rui Ito, Mitsuyuki Ashida, Yuta Tsubouchi, Mai Nozawa, Go Urakawa, Jun Deguchi, Ryuichi Fujimoto:
A 25.6-Gb/s Interface Employing PAM-4-Based Four-Channel Multiplexing and Cascaded Clock and Data Recovery Circuits in Ring Topology for High-Bandwidth and Large-Capacity Storage Systems. IEEE J. Solid State Circuits 57(5): 1517-1526 (2022)
2010 – 2019
- 2019
- [c8]Takashi Toi, Junji Wadatsumi, Hiroyuki Kobayashi, Yutaka Shimizu, Yuji Satoh, Makoto Morimoto, Rui Ito, Mitsuyuki Ashida, Yuta Tsubouchi, Mai Nozawa, Go Urakawa, Jun Deguchi:
A 25.6Gb/s Uplink-Downlink Interface Employing PAM-4-Based 4-Channel Multiplexing and Cascaded CDR Circuits in Ring Topology for High-Bandwidth and Large-Capacity Storage Systems. ISSCC 2019: 478-480 - 2018
- [j10]Shusuke Kawai, Rui Ito, Kengo Nakata, Yutaka Shimizu, Motoki Nagata, Tomohiko Takeuchi, Hiroyuki Kobayashi, Katsuyuki Ikeuchi, Takayuki Kato, Yosuke Hagiwara, Yuki Fujimura, Kentaro Yoshioka, Shigehito Saigusa, Hiroshi Yoshida, Makoto Arai, Toshiyuki Yamagishi, Hirotsugu Kajihara, Kazuhisa Horiuchi, Hideki Yamada, Tomoya Suzuki, Yuki Ando, Kensuke Nakanishi, Koichiro Ban, Masahiro Sekiya, Yoshimasa Egashira, Tsuguhide Aoki, Kohei Onizuka, Toshiya Mitomo:
An 802.11ax 4 × 4 High-Efficiency WLAN AP Transceiver SoC Supporting 1024-QAM With Frequency-Dependent IQ Calibration and Integrated Interference Analyzer. IEEE J. Solid State Circuits 53(12): 3688-3699 (2018) - [c7]Shusuke Kawai, Hiromitsu Aoyama, Rui Ito, Yutaka Shimizu, Mitsuyuki Ashida, Asuka Maki, Tomohiko Takeuchi, Hiroyuki Kobayashi, Go Urakawa, Hiroaki Hoshino, Shigehito Saigusa, Kazushi Koyama, Makoto Morita, Ryuichi Nihei, Daisuke Goto, Motoki Nagata, Kengo Nakata, Katsuyuki Ikeuchi, Kentaro Yoshioka, Ryoichi Tachibana, Makoto Arai, Chen Kong Teh, Atsushi Suzuki, Hiroshi Yoshida, Yosuke Hagiwara, Takayuki Kato, Ichiro Seto, Tomoya Horiguchi, Koichiro Ban, Kyosuke Takahashi, Hirotsugu Kajihara, Toshiyuki Yamagishi, Yuki Fujimura, Kazuhisa Horiuchi, Katsuya Nonin, Kengo Kurose, Hideki Yamada, Kentaro Taniguchi, Masahiro Sekiya, Takeshi Tomizawa, Daisuke Taki, Masaaki Ikuta, Tomoya Suzuki, Yuki Ando, Daisuke Yashima, Takahisa Kaihotsu, Hiroki Mori, Kensuke Nakanishi, Takeshi Kumagaya, Yasuo Unekawa, Tsuguhide Aoki, Kohei Onizuka, Toshiya Mitomo:
An 802.11ax 4×4 spectrum-efficient WLAN AP transceiver SoC supporting 1024QAM with frequency-dependent IQ calibration and integrated interference analyzer. ISSCC 2018: 442-444 - 2017
- [c6]Atsushi Shirane, Shusuke Kawai, Hiromitsu Aoyama, Rui Ito, Toshiya Mitomo, Hiroyuki Kobayashi, Hiroshi Yoshida, Hideaki Majima, Ryuichi Fujimoto, Hiroshi Tsurumi:
A low voltage 0.8V RF receiver in 28nm CMOS for 5GHz WLAN. ESSCIRC 2017: 328-331 - 2011
- [j9]Shouhei Kousai, Daisuke Miyashita, Junji Wadatsumi, Rui Ito, Takahiro Sekiguchi, Mototsugu Hamada, Kenichi Okada:
A Low-Noise and Highly-Linear Transmitter with Envelope Injection Pre-Power Amplifier for Multi-Mode Radio. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 94-A(2): 592-602 (2011) - 2010
- [j8]Rui Ito, Tetsuro Itakura:
Phase Compensation Techniques for Low-Power Operational Amplifiers. IEICE Trans. Electron. 93-C(6): 730-740 (2010) - [j7]Jun Deguchi, Daisuke Miyashita, Yosuke Ogasawara, Gaku Takemura, Masaomi Iwanaga, Kenichi Sami, Rui Ito, Junji Wadatsumi, Yuki Tsuda, Shoko Oda, Shunji Kawaguchi, Nobuyuki Itoh, Mototsugu Hamada:
A Fully Integrated 2 ˟ 1 Dual-Band Direct-Conversion Mobile WiMAX Transceiver With Dual-Mode Fractional Divider and Noise-Shaping Transimpedance Amplifier in 65 nm CMOS. IEEE J. Solid State Circuits 45(12): 2774-2784 (2010) - [c5]Jun Deguchi, Daisuke Miyashita, Yosuke Ogasawara, Gaku Takemura, Masaomi Iwanaga, Kenichi Sami, Rui Ito, Junji Wadatsumi, Yuki Tsuda, Shoko Oda, Shunji Kawaguchi, Nobuyuki Itoh, Mototsugu Hamada:
A fully integrated 2×1 dual-band direct-conversion transceiver with dual-mode fractional divider and noise-shaping TIA for mobile WiMAX SoC in 65nm CMOS. ISSCC 2010: 456-457
2000 – 2009
- 2009
- [j6]Shouhei Kousai, Mototsugu Hamada, Rui Ito, Tetsuro Itakura:
A Novel Automatic Quality Factor Tuning Scheme for a Low-Power Wideband Active-RC Filter. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 92-A(2): 411-420 (2009) - 2008
- [j5]Osamu Watanabe, Rui Ito, Toshiya Mitomo, Shigehito Saigusa, Tadashi Arai, Takehiko Toyoda:
A Triple-Band WCDMA Direct Conversion Receiver IC with Reduced Number of Off-Chip Components and Digital Baseband Control Signals. IEICE Trans. Electron. 91-C(6): 837-843 (2008) - [c4]Shouhei Kousai, Daisuke Miyashita, Junji Wadatsumi, Asuka Maki, Takahiro Sekiguchi, Rui Ito, Mototsugu Hamada:
A 1.2V 0.2-to-6.3GHz Transceiver with Less Than -29.5dB EVM@-3dBm and a Choke/Coil-Less Pre-Power Amplifier. ISSCC 2008: 214-215 - 2007
- [j4]Osamu Watanabe, Rui Ito, Shigehito Saigusa, Tadashi Arai, Tetsuro Itakura:
A Fast fc Automatic Tuning Circuit with Wide Tuning Range for WCDMA Direct Conversion Receiver Systems. IEICE Trans. Electron. 90-C(6): 1247-1252 (2007) - [j3]Shouhei Kousai, Mototsugu Hamada, Rui Ito, Tetsuro Itakura:
A 19.7 MHz, Fifth-Order Active-RCChebyshev LPF for Draft IEEE802.11n With Automatic Quality-Factor Tuning Scheme. IEEE J. Solid State Circuits 42(11): 2326-2337 (2007) - [c3]Shouhei Kousai, Mototsugu Hamada, Rui Ito, Tetsuro Itakura:
A novel quality factor tuning scheme for active-RC filters. ESSCIRC 2007: 496-499 - [c2]Hidenori Okuni, Rui Ito, Hiroshi Yoshida, Tetsuro Itakura:
A Direct Conversion Receiver with Fast-Settling DC Offset Canceller. PIMRC 2007: 1-5 - 2006
- [c1]Takafumi Yamaji, Tetsuro Itakura, Rui Ito, Takeshi Ueno, Hidenori Okuni:
Balanced 3-phase analog signal processing for radio communications. ISCAS 2006 - 2005
- [j2]Rui Ito, Tetsuro Itakura, Tadashi Arai:
Phase Compensation Technique for a Low-Power Transconductor. IEICE Trans. Electron. 88-C(6): 1263-1266 (2005) - [j1]Hiroshi Yoshida, Takehiko Toyoda, Makoto Arai, Ryuichi Fujimoto, Toshiya Mitomo, Masato Ishii, Rui Ito, Tadashi Arai, Tetsuro Itakura, Hiroshi Tsurumi:
A Direct Conversion Receiver for W-CDMA Reducing Current Consumption to 31 mA. IEICE Trans. Electron. 88-C(6): 1271-1274 (2005)
Coauthor Index
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