World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
48
Citations
7290
World Ranking
3126
National Ranking
1175

Overview

Hua Wang is affiliated with the Georgia Institute of Technology in the United States. Their research activities primarily focus on the field of engineering, with a significant emphasis on electrical and electronic engineering. The scientist has contributed extensively to subfields including biomedical engineering, aerospace engineering, materials chemistry, and cellular and molecular neuroscience.

Their scholarly work spans several main topics, notably:

  • Radio Frequency Integrated Circuit Design
  • Microwave Engineering and Waveguides
  • Advanced Power Amplifier Design
  • Millimeter-Wave Propagation and Modeling
  • Full-Duplex Wireless Communications
  • Photonic and Optical Devices
  • Antenna Design and Analysis

Hua Wang's publication record includes papers featured in several prominent venues. Frequent publication outlets include:

  • IEEE Journal of Solid-State Circuits
  • IEEE Transactions on Microwave Theory and Techniques
  • arXiv (Cornell University)
  • IEEE Transactions on Biomedical Circuits and Systems
  • 2022 IEEE International Solid-State Circuits Conference (ISSCC)

Among recent papers by Hua Wang are:

  • Millimeter-Wave Power Amplifier Integrated Circuits for High Dynamic Range Signals, 2021, IEEE Journal of Microwaves
  • A Review of Technologies and Design Techniques of Millimeter-Wave Power Amplifiers, 2020, IEEE Transactions on Microwave Theory and Techniques (authored by Vittorio Camarchia, frequently cited with Wang's field)
  • A 24.5-43.5-GHz Ultra-Compact CMOS Receiver Front End With Calibration-Free Instantaneous Full-Band Image Rejection for Multiband 5G Massive MIMO, 2020, IEEE Journal of Solid-State Circuits (authored by Min-Yu Huang)
  • Fully integrated parity-time-symmetric electronics, 2022, Nature Nanotechnology (authored by Weidong Cao)
  • A Broadband Linear Ultra-Compact mm-Wave Power Amplifier With Distributed-Balun Output Network: Analysis and Design, 2021, IEEE Journal of Solid-State Circuits (authored by Fei Wang)

Frequent collaborators with Hua Wang include:

  • Tzu-Yuan Huang
  • Naga Sasikanth Mannem
  • Doohwan Jung
  • David Munzer
  • Min-Yu Huang

This network of coauthors suggests a collaborative approach across different specializations within electrical engineering and related fields. Hua Wang's research outputs demonstrate sustained contributions to microwave and millimeter-wave technologies, integrated circuit design, and applications spanning telecommunications and biomedical engineering.

Best Publications

  • Posture detector calibration and use

    Hua Wang;John Hatlestad

  • A CMOS Broadband Power Amplifier With a Transformer-Based High-Order Output Matching Network

    Hua Wang;Constantine Sideris;Ali Hajimiri

  • A 28-/37-/39-GHz Linear Doherty Power Amplifier in Silicon for 5G Applications

    Song Hu;Fei Wang;Hua Wang

  • A Review of Technologies and Design Techniques of Millimeter-Wave Power Amplifiers

    Vittorio Camarchia;Roberto Quaglia;Anna Piacibello;Duy P. Nguyen

  • A Millimeter-Wave Fully Integrated Passive Reflection-Type Phase Shifter With Transformer-Based Multi-Resonance Loads for 360° Phase Shifting

    Tso-Wei Li;Hua Wang

  • A frequency-shift CMOS magnetic biosensor array with single-bead sensitivity and no external magnet

    Hua Wang;Yan Chen;Arjang Hassibi;Axel Scherer

  • 2.1 A 28GHz/37GHz/39GHz multiband linear Doherty power amplifier for 5G massive MIMO applications

    Song Hu;Fei Wang;Hua Wang

  • Posture detection system

    Hua Wang;John Hatlestad;Keith R. Maile

  • A transformer-based poly-phase network for ultra-broadband quadrature signal generation

    Jong Seok Park;Hua Wang

  • A Scalable 6-to-18 GHz Concurrent Dual-Band Quad-Beam Phased-Array Receiver in CMOS

    Sanggeun Jeon;Yu-Jiu Wang;Hua Wang;F. Bohn

  • Design of A Transformer-Based Reconfigurable Digital Polar Doherty Power Amplifier Fully Integrated in Bulk CMOS

    Song Hu;Shouhei Kousai;Jong Seok Park;Outmane Lemtiri Chlieh

  • A Concurrent Dual-Beam Phased-Array Doppler Radar Using MIMO Beamforming Techniques for Short-Range Vital-Signs Monitoring

    Mehrdad Nosrati;Shahram Shahsavari;Sanghoon Lee;Hua Wang

  • A Scalable 6-to-18GHz Concurrent Dual-Band Quad-Beam Phased-Array Receiver in CMOS

    Sanggeun Jeon;Yu-Jiu Wang;Hua Wang;F. Bonn

  • 17.3 A 60GHz on-chip linear radiator with single-element 27.9dBm P sat and 33.1dBm peak EIRP using multifeed antenna for direct on-antenna power combining

    Taiyun Chi;Fei Wang;Sensen Li;Min-Yu Huang

  • Synthetic Ultra-High-Resolution Millimeter-Wave Imaging for Skin Cancer Detection

    Amir Mirbeik-Sabzevari;Sensen Li;Edgar Garay;Huy-Thong Nguyen

  • Millimeter-Wave Power Amplifier Integrated Circuits for High Dynamic Range Signals

    Hua Wang;Peter M. Asbeck;Christian Fager

  • A Broadband Linear Ultra-Compact mm-Wave Power Amplifier With Distributed-Balun Output Network: Analysis and Design

    Fei Wang;Hua Wang

  • 17.7 A packaged 90-to-300GHz transmitter and 115-to-325GHz coherent receiver in CMOS for full-band continuous-wave mm-wave hyperspectral imaging

    Taiyun Chi;Min-Yu Huang;Sensen Li;Hua Wang

  • A 24.5–43.5-GHz Ultra-Compact CMOS Receiver Front End With Calibration-Free Instantaneous Full-Band Image Rejection for Multiband 5G Massive MIMO

    Min-Yu Huang;Taiyun Chi;Sensen Li;Tzu-Yuan Huang

  • A 24.7dBm all-digital RF transmitter for multimode broadband applications in 40nm CMOS

    Chao Lu;Hua Wang;C. H. Peng;A. Goel

  • A Wideband CMOS Linear Digital Phase Rotator

    Hua Wang;A. Hajimiri

  • A Broadband Mixed-Signal CMOS Power Amplifier With a Hybrid Class-G Doherty Efficiency Enhancement Technique

    Song Hu;Shouhei Kousai;Hua Wang

  • Millimeter-Wave Continuous-Mode Power Amplifier for 5G MIMO Applications

    Tso-Wei Li;Min-Yu Huang;Hua Wang

  • 9.5 A dual-band digital-WiFi 802.11a/b/g/n transmitter SoC with digital I/Q combining and diamond profile mapping for compact die area and improved efficiency in 40nm CMOS

    Zhiming Deng;Eric Lu;Edris Rostami;Dai Sieh

Frequent Co-Authors

Ali Hajimiri
Ali Hajimiri California Institute of Technology
Ali M. Niknejad
Ali M. Niknejad University of California, Berkeley
Gee-Kung Chang
Gee-Kung Chang Georgia Institute of Technology
Arun Natarajan
Arun Natarajan Oregon State University
John D. Cressler
John D. Cressler Georgia Institute of Technology
Muhannad S. Bakir
Muhannad S. Bakir Georgia Institute of Technology
Alvin J. Joseph
Alvin J. Joseph GlobalFoundries (United States)
Ramesh Harjani
Ramesh Harjani University of Minnesota
Piet Wambacq
Piet Wambacq Vrije Universiteit Brussel
Axel Scherer
Axel Scherer California Institute of Technology

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