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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
34
Citations
5610
World Ranking
5748
National Ranking
1953

Overview

Deukhyoun Heo is affiliated with Washington State University in the United States. Their research primarily focuses on engineering, with significant contributions in electrical and electronic engineering.

The subfields of their work include:

  • Electrical and Electronic Engineering
  • Aerospace Engineering
  • Biomedical Engineering
  • Computer Networks and Communications
  • Automotive Engineering

The main topics covered in their publications are:

  • Radio Frequency Integrated Circuit Design
  • Microwave Engineering and Waveguides
  • Millimeter-Wave Propagation and Modeling
  • Full-Duplex Wireless Communications
  • Advanced DC-DC Converters
  • Analog and Mixed-Signal Circuit Design
  • Silicon Carbide Semiconductor Technologies

The scientist has contributed to various scholarly works published in frequent venues such as:

  • IEEE Transactions on Circuits and Systems I Regular Papers
  • arXiv (Cornell University)
  • IEEE Transactions on Microwave Theory and Techniques
  • IEEE Journal of Solid-State Circuits
  • IEEE Microwave Magazine

Recent papers by Deukhyoun Heo include:

  • Fast Beam Training With True-Time-Delay Arrays in Wideband Millimeter-Wave Systems, 2021, IEEE Transactions on Circuits and Systems I Regular Papers
  • Fully Integrated Switched-Inductor-Capacitor Voltage Regulator With 0.82-A/mm2 Peak Current Density and 78% Peak Power Efficiency, 2020, IEEE Journal of Solid-State Circuits
  • Wideband Beamforming With Rainbow Beam Training Using Reconfigurable True-Time-Delay Arrays for Millimeter-Wave Wireless [Feature], 2022, IEEE Circuits and Systems Magazine
  • Four-Element Wide Modulated Bandwidth MIMO Receiver With >35-dB Interference Cancellation, 2020, IEEE Transactions on Microwave Theory and Techniques
  • An Inductor-First Single-Inductor Multiple-Output Hybrid DC-DC Converter With Integrated Flying Capacitor for SoC Applications, 2022, IEEE Transactions on Circuits and Systems I Regular Papers

Their frequent coauthors include:

  • Soumen Mohapatra
  • Subhanshu Gupta
  • Veljko Boljanovic
  • Chung-Ching Lin
  • Danijela Čabrić

Best Publications

  • Batteryless, Wireless Sensor Powered by a Sediment Microbial Fuel Cell

    Conrad Donovan;Alim Dewan;Deukhyoun Heo;Haluk Beyenal

  • Wireless NoC as Interconnection Backbone for Multicore Chips: Promises and Challenges

    S. Deb;A. Ganguly;P. P. Pande;B. Belzer

  • Power management system for a 2.5 W remote sensor powered by a sediment microbial fuel cell

    Conrad Donovan;Alim Dewan;Huan Peng;Deukhyoun Heo

  • RF-system-on-package (SOP) for wireless communications

    Kyutae Lim;S. Pinel;M. Davis;A. Sutono

  • High-Q LTCC-based passive library for wireless system-on-package (SOP) module development

    A. Sutono;D. Heo;Y.-J. Emery Chen;J. Laskar

  • Analysis and design of a high-efficiency multistage Doherty power amplifier for wireless communications

    N. Srirattana;A. Raghavan;D. Heo;P.E. Allen

  • Design of an Energy-Efficient CMOS-Compatible NoC Architecture with Millimeter-Wave Wireless Interconnects

    Sujay Deb;Kevin Chang;Xinmin Yu;Suman Prasad Sah

  • Performance evaluation and design trade-offs for wireless network-on-chip architectures

    Kevin Chang;Sujay Deb;Amlan Ganguly;Xinmin Yu

  • Sediment microbial fuel cell powering a submersible ultrasonic receiver: New approach to remote monitoring

    Conrad Donovan;Alim Dewan;Deukhyoun Heo;Zbigniew Lewandowski

  • Evaluating the performance of microbial fuel cells powering electronic devices

    Alim Dewan;Conrad Donovan;Deukhyoun Heo;Haluk Beyenal

  • Architecture and Design of Multichannel Millimeter-Wave Wireless NoC

    Xinmin Yu;Joe Baylon;Paul Wettin;Deukhyoun Heo

  • A 1.2-pJ/bit 16-Gb/s 60-GHz OOK Transmitter in 65-nm CMOS for Wireless Network-On-Chip

    Xinmin Yu;Suman Prasad Sah;Hooman Rashtian;Shahriar Mirabbasi

  • A 28GHz 41%-PAE linear CMOS power amplifier using a transformer-based AM-PM distortion-correction technique for 5G phased arrays

    Sheikh Nijam Ali;Pawan Agarwal;Joe Baylon;Srinivasan Gopal

  • A 0.6-V Low Power UWB CMOS LNA

    Yueh-Hua Yu;Y.-J.E. Chen;D. Heo

  • An Integrated Discrete-Time Delay-Compensating Technique for Large-Array Beamformers

    Erfan Ghaderi;Ajith Sivadhasan Ramani;Arya A. Rahimi;Deukhyoun Heo

  • A 1.9-GHz DECT CMOS power amplifier with fully integrated multilayer LTCC passives

    D. Heo;A. Sutono;E. Chen;Y. Suh

  • An 18.7-Gb/s 60-GHz OOK Demodulator in 65-nm CMOS for Wireless Network-on-Chip

    Xinmin Yu;Hooman Rashtian;Shahriar Mirabbasi;Partha Pratim Pande

  • CMOS Startup Charge Pump With Body Bias and Backward Control for Energy Harvesting Step-Up Converters

    Huan Peng;Nghia Tang;Youngoo Yang;Deukhyoun Heo

  • Design and Analysis of a Wideband 15–35-GHz Quadrature Phase Shifter With Inductive Loading

    Suman P. Sah;Xinmin Yu;Deukhyoun Heo

  • A 40% PAE Frequency-Reconfigurable CMOS Power Amplifier With Tunable Gate–Drain Neutralization for 28-GHz 5G Radios

    Sheikh Nijam Ali;Pawan Agarwal;Luke Renaud;Reza Molavi

  • Fast Beam Training With True-Time-Delay Arrays in Wideband Millimeter-Wave Systems

    Veljko Boljanovic;Han Yan;Chung-Ching Lin;Soumen Mohapatra

  • 22-pJ/bit Energy-Efficient 2.4-GHz Implantable OOK Transmitter for Wireless Biotelemetry Systems: In Vitro Experiments Using Rat Skin-Mimic

    Jaeyoung Jung;Siqi Zhu;Peng Liu;Y E Chen

Frequent Co-Authors

Partha Pratim Pande
Partha Pratim Pande Washington State University
J. Laskar
J. Laskar Maja Systems
Shahriar Mirabbasi
Shahriar Mirabbasi University of British Columbia
Jonghoon Kim
Jonghoon Kim Chungnam National University
Youngoo Yang
Youngoo Yang Sungkyunkwan University
Karl F. Warnick
Karl F. Warnick Brigham Young University
Sudip Shekhar
Sudip Shekhar University of British Columbia
Tanay Karnik
Tanay Karnik Intel (United States)
Radu Marculescu
Radu Marculescu The University of Texas at Austin
Rao Tummala
Rao Tummala Georgia Institute of Technology

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