庞健副教授

址:上海市闵行区东川路800号电信群楼1号楼-543

话:

箱:pangjian@sjtu.edu.cn

研究中心:微波与射频技术研究中心

个人简介

庞健现任上海交通大学长聘教轨副教授。主要研究高速、高效微波毫米波相控阵无线收发机芯片以及高精度、低成本的片上校准系统等。主持/参与过国家级青年人才计划项目、日本学术振兴会项目、日本国立情报通信研究机构 (NICT)项目等。相关研究成果在收发机系统架构以及收发机电路模块等方面均取得多项创新,被国际知名企业Sony、NEC、KDDI等采用。在固态电路领域顶级会议和期刊,包括IEEE ISSCC、VLSI、JSSC、T-MTT等发表了60余篇论文(Google Scholar引用1200余次),研究成果得到世界多个顶尖科研小组的关注跟进,2次得到半导体业界知名媒体IEEE Spectrum报导。取得贡献获得了广泛认可,并被授予IEEE Solid-State Circuits Society (SSCS) Predoctoral Achievement Award等奖项。

研究领域

高速硅基收发机集成电路

研究方向

1. B5G/6G Silicon-Based Phased-Array Transceivers

2. Phased-Array Transceivers for Satellite Communication

4. Bulit-in Test System for Phased-Array

5. High-Frequency Device Optimization & Modelling

6. Low-Loss Packaging and Module Integration

获奖情况

[1] 2021年国家自然科学基金优秀青年科学基金项目(海外)

[2] 2021年IEEE MTT-S Japan Young Engineer奖.

[3] 2020年IEEE International Conference on Integrated Circuits, Technologies and Applications最佳论文奖.

[4] 2020年IEEE Custom Integrated Circuits Conference最佳论文奖.

[5] 2020年手岛精一纪念研究奖留学生研究奖.

[6] 2019年IEEE Radio Frequency Integrated Circuits Symposium最佳学生论文奖.

[7] 2018-2019年IEEE Solid-State Circuits Society (SSCS) Predoctoral Achievement Award.

[8] 2018年IEEE Radio Frequency Integrated Circuits Symposium学生论文finalist.

[9] 2017年东京工业大学MCRG(Mobile Communication Research Group)研究会最优秀奖.

[10] 2017年日本电子情报通信学会LSI(Large Scale Integration)与系统Workshop优秀奖.

[11] 2016年IEEE Solid-State Circuits Society (SSCS) Student Travel Grant Award.

[12] 2011年第四届全国大学生信息安全竞赛三等奖(于国防科学技术大学).

学术兼职

[1] IEEE International Conference on Integrated Circuits, Technologies and Applications (ICTA) Technical Program Committee成员。

[2] IEEE Journal of Solid-State Circuits、IEEE Transactions on Microwave Theory and Techniques、IEEE Transactions on Circuits and Systems I & II、IEEE Microwave and Wireless Components Letters、IEEE Solid-State Circuits Letters、IEEE Access审稿人

著作及专利

[1] OKADA Kenichi; MOTOI Keiichi; OSHIMA Naoki; WU Rui; PANG Jian; Phase adjustment circuit and array antenna device, 2018-10-23, 美国, US-10998627-B2

[2] 岡田 健一; 元井 桂一; 大島 直樹; ウ ルイ; パン ジェン (Pang Jian); 位相調整回路及びアレイアンテナ装置, 2018-10-23, 日本, 特許6853516

重要论文

重要期刊论文:

[1] Jian Pang, Yi Zhang, Li Zheng, Minzhe Tang, Yijing Liao, Ashbir Aviat Fadila, Atsushi Shirane, and Kenichi Okada, "A Power-Efficient 24-71GHz CMOS Phased-Array Receiver Utilizing Harmonic-Selection Technique Supporting 36-dB Inter-Band Blocker Rejection for 5G NR," IEEE International Solid-State Circuits Conference (ISSCC), Feb. 2022.

[2] Jian Pang, Zheng Li, Xueting Luo, Joshua Alvin, Rattanan Saengchan, Ashbir Aviat Fadila, Kiyoshi Yanagisawa, Yi Zhang, Zixin Chen, Zhongliang Huang, Xiaofan Gu, Rui Wu, Yun Wang, Dongwon You, Bangan Liu, Yuncheng Zhang, Zheng Sun, Hongye Huang, Naoki Oshima, Keiichi Motoi, Shinichi Hori, Kazuaki Kunihiro, Tomoya Kaneko, Atsushi Shirane, and Kenichi Okada, "A 28-GHz CMOS Phased-Array Beamformer Supporting Dual-Polarized MIMO with Cross-Polarization Leakage Cancellation," IEEE Symposium on VLSI Circuits (VLSI Circuits), Honolulu, HI, June 2020.

[3] Jian Pang, Zheng Li, Ryo Kubozoe, Xueting Luo, Rui Wu, Yun Wang, Dongwon You, Ashbir Aviat Fadila, Rattanan Saengchan, Takeshi Nakamura, Joshua Alvin, Daiki Matsumoto, Aravind Tharayil Narayanan, Bangan Liu, Hanli Liu, Zheng Sun, Hongye Huang, Korkut Kaan Tokgoz, Naoki Oshima, Keiichi Motoi, Shinichi Hori, Kazuaki Kunihiro, Tomoya Kaneko, Atsushi Shirane, and Kenichi Okada, "A 28GHz CMOS Phased-Array Beamformer Utilizing Neutralized Bi-Directional Technique Supporting Dual-Polarized MIMO for 5G NR," IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, Feb. 2019.

[4] Jian Pang, Shotaro Maki, Seitarou Kawai, Noriaki Nagashima, Yuuki Seo, Masato Dome, Hisashi Kato, Makihiko Katsuragi, Kento Kimura, Satoshi Kondo, Yuki Terashima, Hanli Liu, Teerachot Siriburanon, Aravind Tharayil Narayanan, Nurul Fajri, Tohru Kaneko, Toru Yoshioka, Bangan Liu, Yun Wang, Rui Wu, Ning Li, Korkut Kaan Tokgoz, Masaya Miyahara, Atsushi Shirane, and Kenichi Okada, "A 128-QAM 60GHz Transceiver for IEEE802.11ay with Calibration of LO Feedthrough and I/Q Imbalance," IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, pp.424-425, Feb. 2017.

[5] Dongwon You, Xi Fu, Xiaolin Wang, Yuan Gao, Wenqian Wang, Jun Sakamaki, Hans Herdian, Sena Kato, Michihiro Ide, Yuncheng Zhang, Ashbir Aviat fadila, Zheng Li, Chun Wang, Yun Wang, Jumpei Sudo, Makoto Higaki, Nahoka Kawaguchi, Masaya Nitta, Soichiro Inoue, Takashi Eishima, Takashi Tomura, Jian Pang, Hiroyuki Sakai, Kenichi Okada, and Atsushi Shirane, "A Small-Satellite-Mounted 256-Element Ka-Band CMOS Phased-Array Transmitter Achieving 63.8dBm EIRP Under 26.6W Power Consumption Using Single/Dual Circular Polarization Active Coupler," IEEE International Solid-State Circuits Conference (ISSCC), Feb. 2023.

[6] Xi Fu, Dongwon You, Xiaolin Wang, Michihiro Ide, Yuncheng Zhang, Jun Sakamaki, Ashibir Aviat Fadila, Zheng Li, Yun Wang, Jumpei Sudo, Makoto Higaki, Soichiro Inoue, Takashi Eishima, Takashi Tomura, Jian Pang, Hiroyuki Sakai, Kenichi Okada, and Atsushi Shirane "A 2.95mW/element Ka-band CMOS Phased-Array Receiver Utilizing On-Chip Distributed Radiation Sensors in Low Earth Orbit Small Satellite Constellation," IEEE International Solid-State Circuits Conference (ISSCC), Feb. 2023.

[7] Zheng Li, Jian Pang, Yi Zhang, Yudai Yamazaki, Qiaoyu Wang, Peng Luo, Weichu Chen, Yijing Liao, Minzhe Tang, Zhengyan Guo, Yun Wang, Xi Fu, Dongwon You, Naoki Oshima, Shinichi Hori, Kazuaki Kunihiro, Atsushi Shirane, Kenichi Okada, "A 39-GHz CMOS Bi-Directional Doherty Phased-Array Beamformer Using Shared-LUT DPD with Inter-Element Mismatch Compensation Technique for 5G Base-Station," IEEE Symposium on VLSI Circuits (VLSI Circuits), Honolulu, HI, June 2022.

[8] Michihiro Ide, Yuasa Keito, Kato Sena, Atsushi Shirane, Dongwon You, Ashbir Aviat Fadila, Jian Pang, Kenichi Okada, "A 28-GHz Fully-Passive Retro-Reflective Phased-Array Backscattering Transceiver for 5G Network with 24-GHz Beam-Steered Wireless Power Transfer," IEEE Symposium on VLSI Circuits (VLSI Circuits), Honolulu, HI, June 2022.

[9] Xi Fu, Yun Wang, Dongwon You, Xiaolin Wang, Ashbir Aviat Fadila, Yi Zhang, Sena Kato, Chun Wang, Zheng Li, Jian Pang, Atsushi Shirane, and Kenichi Okada, "A 3.4mW/element Radiation-Hardened Ka-Band CMOS Phased-Array Receiver Utilizing Magnetic-Tuning Phase Shifter for Small Satellite Constellation," IEEE International Solid-State Circuits Conference (ISSCC), Feb. 2022.

[10] Ibrahim Abdo, Carrel da Gomez, Chun Wang, Kota Hatano, Qi Li, Chenxin Liu, Kiyoshi Yanagisawa, Ashbir Aviat Fadila, Jian Pang, Hiroshi Hamada, Hideyuki Nosaka, Atsushi Shirane, and Kenichi Okada, "A 300GHz-Band Phased-Array Transceiver Using Bi-Directional Outphasing and Hartley Architecture in 65nm CMOS," IEEE International Solid-State Circuits Conference (ISSCC), Feb. 2021.

[11] Yuncheng Zhang, Bangan Liu, Xiaofan Gu, Chun Wang, Kiyoshi Yanagisawa, Junjun Qiu, Yun Wang, Jian Pang, Atsushi Shirane, and Kenichi Okada, "A 29% PAE 1.5bit-DSM-Based Polar Transmitter with Spur-Mitigated Injection-Locked PLL," IEEE Symposium on VLSI Circuits (VLSI Circuits), Honolulu, HI, June 2020.

[12] Hanli Liu, Zheng Sun, Hongye Huang, Wei Deng, Teerachot Siriburanon, Jian Pang, Yun Wang, Rui Wu, Teruki Someya, Atsushi Shirane, and Kenichi Okada, "A 265μW Fractional-N Digital PLL with Seamless Automatic Switching Subsampling/Sampling Feedback Path and Duty-Cycled Frequency-Locked Loop in 65nm CMOS," IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, Feb. 2019.

[13] Korkut Kaan Tokgoz, Shotaro Maki, Jian Pang, Noriaki Nagashima, Ibrahim Abdo, Seitaro Kawai, Takuya Fujimura, Yoichi Kawano, Toshihide Suzuki, Taisuke Iwai, Kenichi Okada, and Akira Matsuzawa, "A 120Gb/s 16QAM CMOS Millimeter-Wave Wireless Transceiver," IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, pp.168-169, Feb. 2018.

[14] Yun Wang, Bangan Liu, Hanli Liu, Aravind Tharayil Narayanan, Jian Pang, Ning Li, Toru Yoshioka, Yuki Terashima, Haosheng Zhang, Dexian Tang, Makihiko Katsuragi, Daeyoung Lee, Sungtae Choi, Rui Wu, Kenichi Okada, and Akira Matsuzawa, "A 100mW 3.0Gb/s Spectrum Efficient 60GHz Bi-Phase OOK CMOS Transceiver," IEEE Symposium on VLSI Circuits (VLSI Circuits), Kyoto, pp.298-299, June 2017.

[15] Korkut Kaan Tokgoz, Shotaro Maki, Seitaro Kawai, Noriaki Nagashima, Jun Emmei, Masato Dome, Hisashi Kato, Jian Pang, Yoichi Kawano, Toshihide Suzuki, Taisuke Iwai, Yuuki Seo, Kimsrun Lim, Shinji Sato, Ning Li, Kengo Nakata, Kenichi Okada, and Akira Matsuzawa, "A 56Gb/s W-Band CMOS Wireless Transceiver," IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, pp.242-243, Feb. 2016.

 

重要会议论文:

[1] Jian Pang, Zheng Li, Xueting Luo, Joshua Alvin, Rattanan Saengchan, Ashbir Aviat Fadila, Kiyoshi Yanagisawa, Yi Zhang, Zixin Chen, Zhongliang Huang, Xiaofan Gu, Rui Wu, Yun Wang, Dongwon You, Bangan Liu, Zheng Sun, Yuncheng Zhang, Hongye Huang, Naoki Oshima, Keiichi Motoi, Shinichi Hori, Kazuaki Kunihiro, Tomoya Kaneko, Atsushi Shirane, Kenichi Okada, "A CMOS Dual-Polarized Phased-Array Beamformer Utilizing Cross-Polarization Leakage Cancellation for 5G MIMO Systems," IEEE Journal of Solid-State Circuits (JSSC), Apr. 2021. (Invited Paper)

[2] Jian Pang, Zheng Li, Ryo Kubozoe, Xueting Luo, Rui Wu, Yun Wang, Dongwon You, Ashbir Aviat Fadila, Rattanan Saengchan, Takeshi Nakamura, Joshua Alvin, Daiki Matsumoto, Bangan Liu, Aravind Tharayil Narayanan, Junjun Qiu, Hanli Liu, Zheng Sun, Hongye Huang, Korkut Kaan Tokgoz, Keiichi Motoi, Naoki Oshima, Shinichi Hori, Kazuaki Kunihiro, Tomoya Kaneko, Atsushi Shirane, Kenichi Okada, "A 28GHz CMOS Phased-Array Beamformer Utilizing Neutralized Bi-Directional Technique Supporting Dual-Polarized MIMO for 5G NR," IEEE Journal of Solid-State Circuits (JSSC), Vol. 55, No. 9, pp. 2371-2386, Sep. 2020.

[3] Jian Pang, Korkut Kaan Tokgoz, Shotaro Maki, Zheng Li, Xueting Luo, Ibrahim Abdo, Seitarou Kawai, Hanli Liu, Zheng Sun, Bangan Liu, Makihiko Katsuragi, Kento Kimura, Atsushi Shirane, and Kenichi Okada, "A 28.16-Gb/s Area-Efficient 60-GHz CMOS Bi-Directional Transceiver for IEEE 802.11ay," IEEE Transactions on Microwave Theory and Techniques (T-MTT), Vol. 68, No. 1, pp. 251-262, Jan. 2020.

[4] Jian Pang, Shotaro Maki, Seitarou Kawai, Noriaki Nagashima, Yuuki Seo, Masato Dome, Hisashi Kato, Makihiko Katsuragi, Kento Kimura, Satoshi Kondo, Yuki Terashima, Hanli Liu, Teerachot Siriburanon, Aravind Tharayil Narayanan, Nurul Fajri, Tohru Kaneko, Toru Yoshioka, Bangan Liu, Yun Wang, Rui Wu, Ning Li, Korkut Kaan Tokgoz, Masaya Miyahara, Atsushi Shirane, and Kenichi Okada, "A 50.1Gb/s 60-GHz CMOS Transceiver for IEEE 802.11ay with Calibration of LO Feed-Through and I/Q Imbalance," IEEE Journal of Solid-State Circuits (JSSC), Vol. 54, No. 5, pp. 1375-1390, May 2019.

[5] Jian Pang, Rui Wu, Yun Wang, Masato Dome, Hisashi Kato, Hongye Huang, Aravind Tharayil Narayanan, Hanli Liu, Bangan Liu Takeshi Nakamura, Takuya Fujimura, Masaru Kawabuchi, Ryo Kubozoe, Tsuyoshi Miura, Daiki Matsumoto, Zheng Li, Naoki Oshima, Keiichi Motoi, Shinichi Hori, Kazuaki Kunihiro, Tomoya Kaneko, Atsushi Shirane, and Kenichi Okada, "A 28GHz CMOS Phased-Array Transceiver Based on LO Phase Shifting Architecture with Gain Invariant Phase Tuning for 5G New Radio," IEEE Journal of Solid-State Circuits (JSSC), Vol. 54, No. 5, pp. 1228-1242, May 2019. (Invited Paper)

[6] Zheng Li, Jian Pang, Yi Zhang, Yudai Yamazaki, Qiaoyu Wang, Peng Luo, Weichu Chen, Yijing Liao, Minzhe Tang, Zhengyan Guo, Yun Wang, Xi Fu, Dongwon You, Naoki Oshima, Shinichi Hori, Jeehoon Park, Kazuaki Kunihiro, Atsushi Shirane, and Kenichi Okada, "A 39-GHz CMOS Bi-Directional Doherty Phased-Array Beamformer Using Shared-LUT DPD with Inter-Element Mismatch Compensation Technique for 5G Base-Station," IEEE Journal of Solid-State Circuits (JSSC), 2023. (Invited Paper)

[7] Yi Zhang, Jian Pang, Zheng Li, Minzhe Tang, Yijing Liao, Ashbir Aviat Fadila, Atsushi Shirane, and Kenichi Okada, "A Power-Efficient CMOS Multi-Band Phased-Array Receiver Covering 24-71GHz Utilizing Harmonic-Selection Technique with 36-dB Inter-Band Blocker Tolerance for 5G NR," IEEE Journal of Solid-State Circuits (JSSC), 2023. (Invited Paper)

[8] Ibrahim Abdo, Carrel da Gomez, Chun Wang, Kota Hatano, Qi Li, Chenxin Liu, Kiyoshi Yanagisawa, Ashbir Aviat Fadila, Takuya Fujimura, Tsuyoshi Miura, Korkut Kaan Tokgoz, Jian Pang, Hiroshi Hamada, Hideyuki Nosaka, Atsushi Shirane, and Kenichi Okada, "A Bi-Directional 300GHz-Band Phased-Array Transceiver in 65nm CMOS with Outphasing Transmitting Mode and LO Emission Cancellation," IEEE Journal of Solid-State Circuits (JSSC), 2022.

[9] Michihiro Ide, Atsushi Shirane, Kiyoshi Yanagisawa, Dongwon You, Jian Pang, and Kenichi Okada, "A 28-GHz Phased-Array Relay Transceiver for 5G Network Using Vector-Summing Backscatter with 24-GHz Wireless Power and LO Transfer," IEEE Journal of Solid-State Circuits (JSSC), Vol. 57, No. 4, pp. 1211-1223, Apr. 2022.

[10] Yun Wang, Dongwon You, Xi Fu, Takeshi Nakamura, Ashbir Aviat Fadila, Teruki Someya, Atsuhiro Kawaguchi, Junjun Qiu, Jian Pang, Kiyoshi Yanagisawa, Bangan Liu, Yuncheng Zhang, Haosheng Zhang, Rui Wu, Shunichiro Masaki, Daisuke Yamazaki, Atsushi Shirane, Kenichi Okada, "A Ka-Band SATCOM Transceiver in 65-nm CMOS with High-Linearity TX and Dual-Channel Wide-Dynamic-Range RX for Terrestrial Terminal," IEEE Journal of Solid-State Circuits (JSSC), Feb. 2022.

[11] Junjun Qiu, Zheng Sun, Bangan Liu, Wenqian Wang, Dingxin Xu, Hans Herdian, Hongye Huang, Yuncheng Zhang, Yun Wang, Jian Pang, Hanli Liu, Masaya Miyahara, Atsushi Shirane, and Kenichi Okada, "A 32kHz-Reference 2.4GHz Fractional-N Oversampling PLL with 200kHz Loop Bandwidth," IEEE Journal of Solid-State Circuits (JSSC), Vol. 56, No. 12, pp. 3741-3755, Dec. 2021.

[12] Yun Wang, Rui Wu, Jian Pang, Dongwon You, Ashbir Aviat Fadila, Rattanan Saengchan, Xi Fu, Daiki Matsumoto, Takeshi Nakamura, Ryo Kubozoe, Masaru Kawabuchi, Bangan Liu, Haosheng Zhang, Junjun Qiu, Hanli Liu, Naoki Oshima, Keiichi Motoi, Shinichi Hori, Kazuaki Kunihiro, Tomoya Kaneko, Atsushi Shirane, and Kenichi Okada, "A 39-GHz 64-Element Phased-Array Transceiver with Built-in Phase and Amplitude Calibration for Large-Array 5G NR in 65-nm CMOS," IEEE Journal of Solid-State Circuits (JSSC), Vol. 55, No. 5, pp. 1249-1269, May 2020.

[13] Hanli Liu, Zheng Sun, Hongye Huang, Wei Deng, Teerachot Siriburanon, Jian Pang, Yun Wang, Rui Wu, Teruki Someya, Atsushi Shirane, and Kenichi Okada, "A 265-µW Fractional-N Digital PLL with Seamless Automatic Switching Sub-sampling/Sampling Feedback Path and Duty-Cycled Frequency-Locked Loop in 65nm CMOS," IEEE Journal of Solid-State Circuits (JSSC), Vol. 54, No. 12, pp. 3478-3492, Dec. 2019.

[14] Yun Wang, Bangan Liu, Rui Wu, Hanli Liu, Aravind Tharayil Narayanan, Jian Pang, Ning Li, Toru Yoshioka, Yuki Terashima, Haosheng Zhang, Dexian Tang, Makihiko Katsuragi, Daeyoung Lee, Sungtae Choi, Kenichi Okada, and Akira Matsuzawa, "A 60-GHz 3.0 Gb/s Spectrum Efficient BPOOK Transceiver for Low-power Short-range Wireless in 65-nm CMOS," IEEE Journal of Solid-State Circuits (JSSC), Vol. 54, No. 5, pp. 1363-1374, May 2019.

[15] Rui Wu, Ryo Minami, Yuuki Tsukui, Seitaro Kawai, Yuuki Seo, Shinji Sato, Kento Kimura, Satoshi Kondo, Tomohiro Ueno, Nurul Fajri, Shotarou Maki, Noriaki Nagashima, Yasuaki Takeuchi, Tatsuya Yamaguchi, Ahmed Musa, Korkut Kaan Tokgoz, Teerachot Siriburanon, Bangan Liu, Yun Wang, Jian Pang, Ning Li, Masaya Miyahara, Kenichi Okada, and Akira Matsuzawa, "64-QAM 60-GHz CMOS Transceivers for IEEE 802.11ad/ay," IEEE Journal of Solid-State Circuits (JSSC), Vol. 52, No. 11, pp.2871-2891, Nov. 2017.