World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
43
Citations
9544
World Ranking
3842
National Ranking
599

Research.com Recognitions

  • 2020 - OSA Fellows C. Patrick Yue Hong Kong University of Science and Technology, Hong Kong For contributions to the advancement of visible light communication and optical fiber communication system-on-chip design based on silicon technologies
  • 2015 - IEEE Fellow For contributions to the advancement of CMOS radio-frequency integrated circuits and devices modeling

Overview

Chik Patrick Yue is affiliated with the Hong Kong University of Science and Technology in China. Their research focus lies predominantly within the field of Engineering, with specialization in Electrical and Electronic Engineering. The scope of their work also extends to related subfields including Computer Vision and Pattern Recognition, Artificial Intelligence, Ocean Engineering, and Biomedical Engineering.

The scientist's main research topics encompass:

  • Optical Wireless Communication Technologies
  • Radio Frequency Integrated Circuit Design
  • Semiconductor Lasers and Optical Devices
  • Advancements in PLL and VCO Technologies
  • Photonic and Optical Devices
  • Indoor and Outdoor Localization Technologies
  • Underwater Vehicles and Communication Systems

Chik Patrick Yue has contributed to multiple publications with frequent appearances in established scientific venues. These include:

  • IEEE Journal of Solid-State Circuits
  • 2021 IEEE 14th International Conference on ASIC (ASICON)
  • IEEE Solid-State Circuits Magazine
  • IEEE Sensors Journal
  • IEEE Transactions on Circuits and Systems I Regular Papers

Among the scientist's recent papers are the following notable works:

  • "A 0.65-V 12-16-GHz Sub-Sampling PLL With 56.4-fsrms Integrated Jitter and -256.4-dB FoM" (2020), published in IEEE Journal of Solid-State Circuits
  • "Robust Robotic Localization Using Visible Light Positioning and Inertial Fusion" (2021), published in IEEE Sensors Journal
  • "Design and Analysis of Continuous-Mode Doherty Power Amplifier With Second Harmonic Control" (2021), published in IEEE Transactions on Circuits & Systems II Express Briefs
  • "LiDR: Visible-Light-Communication-Assisted Dead Reckoning for Accurate Indoor Localization" (2022), published in IEEE Internet of Things Journal
  • "A 32-Gb/s 0.46-pJ/bit PAM4 CDR Using a Quarter-Rate Linear Phase Detector and a Self-Biased PLL-Based Multiphase Clock Generator" (2020), published in IEEE Journal of Solid-State Circuits

Frequent collaborations have been established with a consistent group of co-authors, including:

  • Li Wang
  • Babar Hussain
  • Bo Xu
  • Jian Kang
  • Yiru Wang

Chik Patrick Yue has received recognition through prestigious awards such as the IEEE Fellow distinction in 2015 for contributions to CMOS radio-frequency integrated circuits and devices modeling. In 2020, they were named an OSA Fellow for contributions to visible light communication and optical fiber communication system-on-chip design based on silicon technologies.

Best Publications

  • On-chip spiral inductors with patterned ground shields for Si-based RF ICs

    C.P. Yue;S.S. Wong

  • Physical modeling of spiral inductors on silicon

    C.P. Yue;S.S. Wong

  • A physical model for planar spiral inductors on silicon

    C.P. Yue;C. Ryu;J. Lau;T.H. Lee

  • Modeling of Mutual Coupling Between Planar Inductors in Wireless Power Applications

    Salahuddin Raju;Rongxiang Wu;Mansun Chan;C. Patrick Yue

  • A 5-GHz CMOS transceiver for IEEE 802.11a wireless LAN systems

    M. Zargari;D.K. Su;C.P. Yue;S. Rabii

  • Analysis and optimization of accumulation-mode varactor for RF ICs

    T. Soorapanth;C.P. Yue;D.K. Shaeffer;T.I. Lee

  • A Fully-Integrated Low-Dropout Regulator With Full-Spectrum Power Supply Rejection

    Yan Lu;Yipeng Wang;Quan Pan;Wing Hung Ki

  • A 10-GHz global clock distribution using coupled standing-wave oscillators

    F. O'Mahony;C.P. Yue;M.A. Horowitz;S.S. Wong

  • Integrated CMOS transmit-receive switch using LC-tuned substrate bias for 2.4-GHz and 5.2-GHz applications

    N.A. Talwalkar;C.P. Yue;Haitao Gan;S.S. Wong

  • Near speed-of-light signaling over on-chip electrical interconnects

    R.T. Chang;N. Talwalkar;C.P. Yue;S.S. Wong

  • A 115-mW, 0.5-/spl mu/m CMOS GPS receiver with wide dynamic-range active filters

    D.K. Shaeffer;A.R. Shahani;S.S. Mohan;H. Samavati

  • Modeling and characterization of on-chip transformers

    S.S. Mohan;C.P. Yue;M. del Mar Hershenson;S.S. Wong

  • A Full Ka-Band Power Amplifier With 32.9% PAE and 15.3-dBm Power in 65-nm CMOS

    Haikun Jia;Clarissa C. Prawoto;Baoyong Chi;Zhihua Wang

  • 17.11 A 0.65ns-response-time 3.01ps FOM fully-integrated low-dropout regulator with full-spectrum power-supply-rejection for wideband communication systems

    Yan Lu;Wing-Hung Ki;C. Patrick Yue

  • Kinetics of copper drift in PECVD dielectrics

    A.L.S. Loke;Changsup Ryu;C.P. Yue;J.S.H. Cho

  • A low-power, 20-Gb/s continuous-time adaptive passive equalizer

    Ruifeng Sun;Jaejin Park;F. O'Mahony;C.P. Yue

  • Planar inductor with segmented conductive plane

    Chik Patrick Yue

  • On-chip RF isolation techniques

    T. Blalack;Y. Leclercq;C.P. Yue

  • Analysis and synthesis of on-chip spiral inductors

    N.A. Talwalkar;C.P. Yue;S.S. Wong

  • Design strategy of on-chip inductors for highly integrated RF systems

    C.P. Yue;S.S. Wong

  • An NMOS-LDO Regulated Switched-Capacitor DC–DC Converter With Fast-Response Adaptive-Phase Digital Control

    Yan Lu;Wing-Hung Ki;C. Patrick Yue

Frequent Co-Authors

S. Simon Wong
S. Simon Wong Stanford University
Thomas H. Lee
Thomas H. Lee Stanford University
Mark Horowitz
Mark Horowitz Stanford University
Kei May Lau
Kei May Lau Hong Kong University of Science and Technology
Wing-Hung Ki
Wing-Hung Ki Hong Kong University of Science and Technology
L.R. Carley
L.R. Carley Carnegie Mellon University
Robert W. Dutton
Robert W. Dutton Stanford University
Chi-Ying Tsui
Chi-Ying Tsui Hong Kong University of Science and Technology
Mark J. W. Rodwell
Mark J. W. Rodwell University of California, Santa Barbara
Philip K. T. Mok
Philip K. T. Mok Hong Kong University of Science and Technology

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