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黄雄川 |
研究方向:
自2008年以来,在欧美顶级研究所、业界公司工作多年,有丰富的科研以及产业经验。在IEEE国际固态电路会议(ISSCC),固态电路期刊(JSSC),电路与系统期刊(TCAS)等顶级会议、期刊发表论文30余篇,申请并获得多项国际专利。
Over 12 years of experience in world-leading research institute and technology company, leading cutting-edge R&D projects in wireless connectivity and internet of things. Published 30+ research papers on top IEEE journals and conferences, including ISSCC, JSSC and TCAS-I/II, granted several key US and European patents.
研究方向:
Research Interests:
团队有充足的科研经费,长期招聘博士后,博士,硕士以及研究助理。欢迎对科研方向感兴趣的同学、研究人员交流联系。
Our brand new and well-funded research group is seeking passionate researchers who want to make a difference in the research and academic field. MSc, PhD students, post-doc researchers as well as research assistants are invited. International applicants are welcomed!
学术任职:
IEEE高级会员(Senior Member),仅授予8%的会员
IEEE Senior Member
长期担任IEEE COMCAS, DCAS, WMCS等国际会议技术委员会(TPC)成员。
Serving as the Technical Program Committee Member on several IEEE top international conferences, including COMCAS, DAC, WMCS, etc.
长期担任IEEE JSSC,TCAS等顶级学术期刊审稿人。
Long-term reviewers for top IEEE journals including JSSC, TCAS-I/II, etc.
获奖情况:
2017-2018年度美国李氏基金杰出成就奖,全美每年仅2人
Li Foundation Heritage Prize, 2017-2018
2014年荷兰优秀博士论文奖(Cum Laude),授予不到5%的博士
Cum Laude honor in PhD, awarded to fewer than 5% of the PhD thesis.
学习工作经历:
代表性论文或专著:
在IEEE国际会议、期刊发表文章30余篇,引用数1000以上。代表性论文:
Published 30+ research papers on top IEEE journals and conferences, with 1000+ citations. Selected publications:
P. Chen, X. Huang, et al., "An On-Chip Self-Characterization of a Digital-to-Time Converter by Embedding it in a First-Order ΔΣ Loop," in IEEE TCAS-I, 2018;
M. Vidojkovic, X. Huang, et al., “A 0.33nJ/b IEEE802.15.6/Proprietary-MICS/ISM-Band Transceiver with Scalable Data-Rate from 11kb/s to 4.5Mb/s for Medical Applications,” IEEE ISSCC, 2014;
X. Huang, P. Harpe, et al., “A 780MHz to 950MHz, 64μW to 146μW Power-Scalable Synchronized-Switching OOK Receiver for Wireless Event-Driven Applications,” IEEE JSSC, 05/2014;
X. Huang, G. Dolmans, et al., “Noise and Sensitivity in RF Envelope Detection Receivers,” IEEE TCAS-II, 10/2013;
Y-H. Liu, X. Huang, et al., “A 1.9nJ/b 2.4GHz Multistandard (Bluetooth Low Energy / Zigbee / IEEE802.15.6) Transceiver for Personal / Body-Area Networks,” IEEE ISSCC, 2013;
X. Huang, A. Ba, et al., “A 915 MHz, Ultra-Low Power 2-Tone Transceiver With Enhanced Interference Resilience,” IEEE JSSC, 12/2012;
X. Huang, A. Ba, et al., “A 915MHz 120μW-RX/900μW-TX envelope-detection transceiver with 20dB in-band interference tolerance,” IEEE ISSCC, 2012;
Y-H. Liu, X. Huang, et al., “A 2.7 nJ/b multi-standard 2.3/2.4 GHz polar transmitter for wireless sensor networks,” IEEE ISSCC, 2012;
X. Wang, Y. Yu, B. Busze, H. Pflug, A. Young, X. Huang, et al., “A meter-range UWB transceiver chipset for around-the-head audio streaming,” IEEE ISSCC, 2012;
Y. Liu, X. Huang, et al., "An energy-efficient polar transmitter for IEEE 802.15.6 body area networks: system requirements and circuit designs," in IEEE Communications Magazine, 2012;
X. Huang, P. Harpe, et al., “A 915MHz ultra-low power wake-up receiver with scalable performance and power consumption,” IEEE ESSCIRC, 2011;
M. Vidojkovic, X. Huang, et al., "A 2.4GHz ULP OOK single-chip transceiver for healthcare applications," IEEE ISSCC, 2011;
X. Huang, P. Harpe, et al., “A 0dBm 10Mbps 2.4 GHz ultra-low power ASK/OOK transmitter with digital pulse-shaping,” IEEE RFIC, 2010;
X. Huang, S. Rampu, et al., “A 2.4 GHz/915MHz 51µW wake-up receiver with offset and noise suppression,” IEEE ISSCC, 2010;
代表性专利Selected Patents
“Receiver with Improved Flicker Noise Performance,” European Patent, EP2299588 B1, Granted 2012; US Patent, US8301103 B2, Granted 2012;
“Communication device with improved interference rejection and a method thereof,” US Patent, US9319081 B2, Granted 2016; US Patent, US9037107 B2, Granted 2015;
“Oscillator Device,” US Patent, US9444475 B2, Granted 2016; European Patent Application, EP3010150 A1, Filed 2015;
“Power amplifier circuit and semiconductor integrated circuit,” US Patent, US10050587B2, Granted 2018;
“Low-Power Local Oscillator Generation,” US Patent, US10644681B2, Granted 2020;
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