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Liang Wu 0003
Person information
- affiliation (PhD 2012): Hong Kong University of Science and Technology, Department of Electronic and Computer Engineering, Hong Kong
- not to be confused with: Liang Wu 0009
Other persons with the same name
- Liang Wu — disambiguation page
- Liang Wu 0001 — Southeast University, National Mobile Communications Research Laboratory, Nanjing, China (and 1 more)
- Liang Wu 0002 — Huazhong University of Science and Technology, School of Electronic Information and Communications, Wuhan, China
- Liang Wu 0004 — University of California, Los Angeles, Department of Head and Neck Surgery, CA, USA (and 1 more)
- Liang Wu 0005 — China University of Geosciences, Department of Information Engineering, Wuhan, China
- Liang Wu 0006 — Arizona State University, Tempe, AZ, USA
- Liang Wu 0007 — Changchun University of Technology, Department of Computer Science and Engineering, Changchun, China
- Liang Wu 0008 — University of New South Wales, School of Engineering and Information Technology, Canberra, Australia
- Liang Wu 0009 — Hong Kong University of Science and Technology, Department of Electronic and Computer Engineering, Hong Kong (and 1 more)
- Liang Wu 0010 — Brown University, Department of Physics, Institute for Brain and Neural Systems, Providence, RI, USA
- Liang Wu 0011 — Chinese Academy of Sciences, Computer Network Information Center, Beijing, China
- Liang Wu 0012 — Jilin University, State Key Laboratory of Automotive Simulation and Control / College of Automotive Engineering, Changchun, China (and 1 more)
- Liang Wu 0013 — Chongqing University of Technology, MOE Engineering Research Center of Mechanical Testing Technology and Equipment, China
- Liang Wu 0014 — Zhejiang University, College of Electrical Engineering, Hangzhou, China
- Liang Wu 0015 — Southwestern University of Finance and Economics, Chengdu, Sichuan, China
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Journal Articles
- 2024
- [j17]Meng Yang, Chi Zhang, Liang Wu, Quan Xue:
A 299-315-GHz Dual-Band Radiator Array With Cascaded Transmission Line-Based Feedback Network for Phase Noise Improvement. IEEE J. Emerg. Sel. Topics Circuits Syst. 14(1): 41-51 (2024) - [j16]Yuetong Lyu, Changwenquan Song, Pei Qin, Liang Wu:
A 11.3-16.6-GHz VCO With Constructive Switched Magnetic Coupling in 65-nm CMOS. IEEE J. Emerg. Sel. Topics Circuits Syst. 14(1): 133-141 (2024) - [j15]Xiaolong Liu, Liang Wu, Howard C. Luong:
Millimeter-Wave Varactor-Less Oscillators: A Tutorial. IEEE Trans. Circuits Syst. II Express Briefs 71(3): 1613-1618 (2024) - 2023
- [j14]Xiaoping Wu, Zehui Kang, Yihui Wang, Liang Wu:
A 53-78 GHz Complementary Push-Push Frequency Doubler With Implicit Dual Resonance for Output Power Combining. IEEE Trans. Circuits Syst. I Regul. Pap. 70(3): 1202-1213 (2023) - [j13]Zehui Kang, Meng Yang, Liang Wu:
A 5-mW 30-GHz Quasi-Rotary Traveling-Wave Oscillator With Extrinsic-Q-Enhanced Transmission Line. IEEE Trans. Circuits Syst. I Regul. Pap. 70(10): 3867-3878 (2023) - 2022
- [j12]Chao Li, Liang Wu, Wenquan Che, Quan Xue:
Phase Shift Techniques for Improving Varactor-Less QVCO Based on Rotated-Phase-Tuning. IEEE Trans. Circuits Syst. II Express Briefs 69(2): 279-283 (2022) - 2021
- [j11]Hongchen Chen, Haoshen Zhu, Liang Wu, Wenquan Che, Quan Xue:
A 9.8-30.1 GHz CMOS low-noise amplifier with a 3.2-dB noise figure using inductor- and transformer-based gm-boosting techniques. Frontiers Inf. Technol. Electron. Eng. 22(4): 586-598 (2021) - [j10]Feng Qiu, Haoshen Zhu, Liang Wu, Wenquan Che, Quan Xue:
A 15-38 GHz Vector-Summing Phase-Shifter With 360° Phase-Shifting Range Using Improved I/Q Generator. IEEE Trans. Circuits Syst. II Express Briefs 68(10): 3199-3203 (2021) - 2018
- [j9]Liang Wu, Quan Xue:
E-Band Multi-Phase LC Oscillators With Rotated-Phase-Tuning Using Implicit Phase Shifters. IEEE J. Solid State Circuits 53(9): 2560-2571 (2018) - 2017
- [j8]Alvin Li, Yue Chao, Xuan Chen, Liang Wu, Howard C. Luong:
A Spur-and-Phase-Noise-Filtering Technique for Inductor-Less Fractional-N Injection-Locked PLLs. IEEE J. Solid State Circuits 52(8): 2128-2140 (2017) - [j7]Liang Wu, Shaowei Liao, Quan Xue:
A 312-GHz CMOS Injection-Locked Radiator With Chip-and-Package Distributed Antenna. IEEE J. Solid State Circuits 52(11): 2920-2933 (2017) - [j6]Liang Wu, Hiu Fai Leung, Alvin Li, Howard C. Luong:
A 4-Element 60-GHz CMOS Phased-Array Receiver With Beamforming Calibration. IEEE Trans. Circuits Syst. I Regul. Pap. 64-I(3): 642-652 (2017) - [j5]Liang Wu, Hiu Fai Leung, Howard C. Luong:
Design and Analysis of CMOS LNAs with Transformer Feedback for Wideband Input Matching and Noise Cancellation. IEEE Trans. Circuits Syst. I Regul. Pap. 64-I(6): 1626-1635 (2017) - [j4]Liang Wu, Alan W. L. Ng, Shiyuan Zheng, Hiu Fai Leung, Yue Chao, Alvin Li, Howard C. Luong:
A 0.9-5.8-GHz Software-Defined Receiver RF Front-End With Transformer-Based Current-Gain Boosting and Harmonic Rejection Calibration. IEEE Trans. Very Large Scale Integr. Syst. 25(8): 2371-2382 (2017) - 2014
- [j3]Liang Wu, Howard C. Luong:
A 49-to-62 GHz Quadrature VCO With Bimodal Enhanced-Magnetic-Tuning Technique. IEEE Trans. Circuits Syst. I Regul. Pap. 61-I(10): 3025-3033 (2014) - 2013
- [j2]Liang Wu, Alvin Li, Howard C. Luong:
A 4-Path 42.8-to-49.5 GHz LO Generation With Automatic Phase Tuning for 60 GHz Phased-Array Receivers. IEEE J. Solid State Circuits 48(10): 2309-2322 (2013) - [j1]Liang Wu, Howard C. Luong:
Analysis and Design of a 0.6 V 2.2 mW 58.5-to-72.9 GHz Divide-by-4 Injection-Locked Frequency Divider With Harmonic Boosting. IEEE Trans. Circuits Syst. I Regul. Pap. 60-I(8): 2001-2008 (2013)
Conference and Workshop Papers
- 2016
- [c4]Alvin Li, Yue Chao, Xuan Chen, Liang Wu, Howard C. Luong:
An inductor-less fractional-N injection-locked PLL with a spur-and-phase-noise filtering technique. VLSI Circuits 2016: 1-2 - 2012
- [c3]Liang Wu, Howard C. Luong:
A 0.6V 2.2mW 58-to-73GHz divide-by-4 injection-locked frequency divider. CICC 2012: 1-4 - [c2]Liang Wu, Howard C. Luong:
A 49-to-62GHz CMOS quadrature VCO with bimodal enhanced magnetic tuning. ESSCIRC 2012: 297-300 - [c1]Liang Wu, Alvin Li, Howard C. Luong:
A 4-path 42.8-to-49.5GHz LO generation with automatic phase tuning for 60GHz phased-array receivers. ISSCC 2012: 270-272
Coauthor Index
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