World's Best Scientists 2026 revealed!
Jean-Olivier Plouchart

Jean-Olivier Plouchart

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
37
Citations
5274
World Ranking
5162
National Ranking
1788

Overview

Jean-Olivier Plouchart is affiliated with IBM in the United States, specializing in the field of Engineering with a focus on Electrical and Electronic Engineering. Their research work spans several key topics within microwave and wireless communication technologies.

The scientist's primary research areas include:

  • Microwave Engineering and Waveguides
  • Millimeter-Wave Propagation and Modeling
  • Full-Duplex Wireless Communications
  • Advanced MIMO Systems Optimization
  • Radio Frequency Integrated Circuit Design

Jean-Olivier Plouchart has contributed to multiple publications, appearing primarily in notable venues related to solid-state circuits and integrated systems. Frequent publication venues are:

  • IEEE Journal of Solid-State Circuits
  • 2022 IEEE International Solid-State Circuits Conference (ISSCC)

Recent papers authored or coauthored by the scientist include:

  • A 24-30-GHz 256-Element Dual-Polarized 5G Phased Array Using Fast On-Chip Beam Calculators and Magnetoelectric Dipole Antennas, 2022, IEEE Journal of Solid-State Circuits
  • A 24-to-30GHz 256-Element Dual-Polarized 5G Phased Array with Fast Beam-Switching Support for >30,000 Beams, 2022, 2022 IEEE International Solid-State Circuits Conference (ISSCC)
  • A 24 to 30-GHz Phased Array Transceiver Front End With 2.8 to 3.1-dB RX NF and 22 to 24% TX Peak Efficiency, 2024, IEEE Journal of Solid-State Circuits

The scientist frequently collaborates with a consistent group of coauthors, which includes:

  • Bodhisatwa Sadhu
  • Çağlar Özdağ
  • Wooram Lee
  • Alberto Valdes-Garcia
  • Arun Paidimarri

Jean-Olivier Plouchart's contributions are concentrated in electrical and electronic engineering disciplines, with particular emphasis on millimeter-wave technologies and phased array systems, which are critical components in advancing 5G wireless communication methodologies.

Best Publications

  • Frequency-independent equivalent-circuit model for on-chip spiral inductors

    Yu Cao;R.A. Groves;Xuejue Huang;N.D. Zamdmer

  • Frequency-independent equivalent circuit model for on-chip spiral inductors

    Yu Cao;R.A. Groves;N.D. Zamdmer;J.-O. Plouchart

  • Design of wide-band CMOS VCO for multiband wireless LAN applications

    N.H.W. Fong;J.-O. Plouchart;N. Zamdmer;Duixian Liu

  • Record RF performance of 45-nm SOI CMOS Technology

    Sungjae Lee;B. Jagannathan;S. Narasimha;A. Chou

  • A 1-V 3.8 - 5.7-GHz wide-band VCO with differentially tuned accumulation MOS varactors for common-mode noise rejection in CMOS SOI technology

    N.H.W. Fong;J.-O. Plouchart;N. Zamdmer;Duixian Liu

  • A 44GHz differentially tuned VCO with 4GHz tuning range in 0.12 /spl mu/m SOI CMOS

    Jonghae Kim;J.-O. Plouchart;N. Zamdmer;R. Trzcinski

  • A Linearized, Low-Phase-Noise VCO-Based 25-GHz PLL With Autonomic Biasing

    Bodhisatwa Sadhu;Mark A. Ferriss;Arun S. Natarajan;Soner Yaldiz

  • Modeling of Variation in Submicrometer CMOS ULSI Technologies

    S.K. Springer;Sungjae Lee;Ning Lu;E.J. Nowak

  • A fully-monolithic SiGe differential voltage-controlled oscillator for 5 GHz wireless applications

    J.-O. Plouchart;H. Ainspan;M. Soyuer;A. Ruehli

  • A 24–30-GHz 256-Element Dual-Polarized 5G Phased Array Using Fast On-Chip Beam Calculators and Magnetoelectric Dipole Antennas

    Unknown

  • Bang-bang digital PLLs at 11 and 20GHz with sub-200fs integrated jitter for high-speed serial communication applications

    A. Rylyakov;J. Tierno;H. Ainspan;J.-O. Plouchart

  • Chip package structure and device

    Liu Duixian;Plouchart Jean-Olivier;Reynolds Scott K

  • A fully-integrated dual-polarization 16-element W-band phased-array transceiver in SiGe BiCMOS

    Alberto Valdes-Garcia;Arun Natarajan;Duixian Liu;Mihai Sanduleanu

  • A 24-to-30GHz 256-Element Dual-Polarized 5G Phased Array with Fast Beam-Switching Support for >30,000 Beams

    Unknown

  • A 0.13-/spl mu/m SOI CMOS technology for low-power digital and RF applications

    N. Zamdmer;A. Ray;J.-O. Plouchart;L. Wagner

  • SiGe power HBT's for low-voltage, high-performance RF applications

    J.N. Burghartz;J.-O. Plouchart;K.A. Jenkins;C.S. Webster

  • Passive components in the back end of integrated circuits

    Anil K. Chinthakindi;Douglas D. Coolbaugh;Ebenezer E. Eshun;Zhong-Xiang He

  • A 12dBm 320GHz GBW distributed amplifier in a 0.12/spl mu/m SOI CMOS

    Jonghae Kim;J.-O. Plouchart;N. Zamdmer;R. Trzcenski

  • A low-voltage 40-GHz complementary VCO with 15% frequency tuning range in SOI CMOS technology

    Neric Fong;Jonghae Kim;J.-O. Plouchart;N. Zamdmer

  • Physical unclonable function generation and management

    Dirk Pfeiffer;Jean-Olivier Plouchart;Peilin Song

  • A power-optimized widely-tunable 5-GHz monolithic VCO in a digital SOI CMOS technology. On high resistivity substrate

    Jonghae Kim;Jean-Olivier Plouchart;Noah Zamdmer;Melanie Sherony

  • A 4-91-GHz traveling-wave amplifier in a standard 0.12-/spl mu/m SOI CMOS microprocessor technology

    J.-O. Plouchart;Jonghae Kim;N. Zamdmer;Liang-Hung Lu

Frequent Co-Authors

Alberto Valdes-Garcia
Alberto Valdes-Garcia IBM (United States)
Duixian Liu
Duixian Liu IBM (United States)
Daniel J. Friedman
Daniel J. Friedman IBM (United States)
Scott K. Reynolds
Scott K. Reynolds IBM (United States)
Alexander V. Rylyakov
Alexander V. Rylyakov Nokia (United States)
Arun Natarajan
Arun Natarajan Oregon State University
Larry Pileggi
Larry Pileggi Carnegie Mellon University
Robert A. Groves
Robert A. Groves IBM (United States)
Devendra K. Sadana
Devendra K. Sadana IBM (United States)
Keith A. Jenkins
Keith A. Jenkins IBM (United States)

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