D-Index & Metrics Best Publications

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Electronics and Electrical Engineering D-index 30 Citations 4,493 153 World Ranking 4708 National Ranking 1745

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Integrated circuit
  • Amplifier

Jean-Olivier Plouchart focuses on Electrical engineering, Phase noise, CMOS, Voltage-controlled oscillator and Silicon on insulator. His Electrical engineering study incorporates themes from Figure of merit and Low-power electronics. Jitter and Serial communication is closely connected to Phase-locked loop in his research, which is encompassed under the umbrella topic of Phase noise.

His studies deal with areas such as Center frequency and dBc as well as Voltage-controlled oscillator. Jean-Olivier Plouchart usually deals with dBc and limits it to topics linked to Inductor and RLC circuit, Equivalent circuit and Silicon-germanium. His study focuses on the intersection of Silicon on insulator and fields such as Parasitic capacitance with connections in the field of System on a chip, Diffusion capacitance, Radio frequency and Extremely high frequency.

His most cited work include:

  • Frequency-independent equivalent-circuit model for on-chip spiral inductors (322 citations)
  • Design of wide-band CMOS VCO for multiband wireless LAN applications (184 citations)
  • Record RF performance of 45-nm SOI CMOS Technology (155 citations)

What are the main themes of his work throughout his whole career to date?

Jean-Olivier Plouchart spends much of his time researching Electrical engineering, CMOS, Silicon on insulator, Electronic engineering and Optoelectronics. His Electrical engineering study frequently intersects with other fields, such as Capacitance. Jean-Olivier Plouchart interconnects Varicap, Frequency divider and Amplifier, Noise figure in the investigation of issues within CMOS.

As a member of one scientific family, he mostly works in the field of Silicon on insulator, focusing on Radio frequency and, on occasion, Transmitter. His work on Circuit design as part of general Electronic engineering research is frequently linked to Scalability, bridging the gap between disciplines. The concepts of his Optoelectronics study are interwoven with issues in Transistor, Substrate, Inductor and Chip.

He most often published in these fields:

  • Electrical engineering (57.14%)
  • CMOS (35.71%)
  • Silicon on insulator (30.36%)

What were the highlights of his more recent work (between 2014-2020)?

  • Optoelectronics (29.76%)
  • Integrated circuit (14.29%)
  • Electrical engineering (57.14%)

In recent papers he was focusing on the following fields of study:

Jean-Olivier Plouchart mostly deals with Optoelectronics, Integrated circuit, Electrical engineering, Electronic engineering and Phased array. His Silicon on insulator and CMOS investigations are all subjects of Optoelectronics research. His biological study spans a wide range of topics, including Photonics and Bipolar junction transistor.

His Integrated circuit study incorporates themes from Waveguide, Quad Flat No-leads package and Chip. His research integrates issues of Dual in-line package and Photonic integrated circuit in his study of Electrical engineering. His studies deal with areas such as Biasing, Flash ADC and Comparator applications as well as Electronic engineering.

Between 2014 and 2020, his most popular works were:

  • Packaging optoelectronic components and CMOS circuitry using silicon-on-insulator substrates for photonics applications (33 citations)
  • Package structures having integrated waveguides for high speed communications between package components (19 citations)
  • Fully Integrated 94-GHz Dual-Polarized TX and RX Phased Array Chipset in SiGe BiCMOS Operating up to 105 °C (17 citations)

In his most recent research, the most cited papers focused on:

  • Electrical engineering
  • Integrated circuit
  • Amplifier

His main research concerns Optoelectronics, Integrated circuit, Electronic engineering, Electrical engineering and Phased array. His Silicon on insulator and W band study in the realm of Optoelectronics connects with subjects such as Beam diameter. His Silicon on insulator research focuses on subjects like Layer, which are linked to Chip.

His work focuses on many connections between Electronic engineering and other disciplines, such as Dual in-line package, that overlap with his field of interest in Waveguide and Package on package. The System in package and Soi cmos technology research Jean-Olivier Plouchart does as part of his general Electrical engineering study is frequently linked to other disciplines of science, such as Noise measurement, Calibration and Temperature measurement, therefore creating a link between diverse domains of science. His study on Phased array also encompasses disciplines like

  • Power dividers and directional couplers which is related to area like Transmitter, Computer hardware, Baseband and Frequency synthesizer,
  • Digital control that connect with fields like Beamforming, Transceiver, Extremely high frequency and Realization.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

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

Yu Cao;R.A. Groves;Xuejue Huang;N.D. Zamdmer.
IEEE Journal of Solid-state Circuits (2003)

504 Citations

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

Yu Cao;R.A. Groves;Xuejue Huang;N.D. Zamdmer.
IEEE Journal of Solid-state Circuits (2003)

504 Citations

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

Yu Cao;R.A. Groves;N.D. Zamdmer;J.-O. Plouchart.
custom integrated circuits conference (2002)

447 Citations

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

Yu Cao;R.A. Groves;N.D. Zamdmer;J.-O. Plouchart.
custom integrated circuits conference (2002)

447 Citations

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

N.H.W. Fong;J.-O. Plouchart;N. Zamdmer;Duixian Liu.
IEEE Journal of Solid-state Circuits (2003)

292 Citations

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

N.H.W. Fong;J.-O. Plouchart;N. Zamdmer;Duixian Liu.
IEEE Journal of Solid-state Circuits (2003)

292 Citations

Record RF performance of 45-nm SOI CMOS Technology

Sungjae Lee;B. Jagannathan;S. Narasimha;A. Chou.
international electron devices meeting (2007)

218 Citations

Record RF performance of 45-nm SOI CMOS Technology

Sungjae Lee;B. Jagannathan;S. Narasimha;A. Chou.
international electron devices meeting (2007)

218 Citations

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.
IEEE Transactions on Microwave Theory and Techniques (2003)

135 Citations

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.
IEEE Transactions on Microwave Theory and Techniques (2003)

135 Citations

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