World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
41
Citations
8554
World Ranking
4237
National Ranking
1518

Research.com Recognitions

  • 1999 - IEEE Fellow For contributions to the computer aided engineering of non-linear microwave and millimeter-wave circuits.

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Amplifier
  • Telecommunications

Michael B. Steer focuses on Electronic engineering, Electrical engineering, Microwave, Nonlinear system and Amplifier. His Electronic engineering research includes elements of Intermodulation, Harmonic balance and Nonlinear distortion. Michael B. Steer has researched Electrical engineering in several fields, including Surface and Interconnection.

His Interconnection study deals with Fast Fourier transform intersecting with Integrated circuit design. His Nonlinear system study combines topics in areas such as Sampling, Wireless communication systems, Frequency domain, Integrated circuit and Analogue electronics. The concepts of his Amplifier study are interwoven with issues in Iterative method and Multidimensional systems.

His most cited work include:

  • Demystifying 3D ICs: the pros and cons of going vertical (745 citations)
  • An electronically tunable microstrip bandpass filter using thin-film Barium-Strontium-Titanate (BST) varactors (244 citations)
  • Characterization of spectral regrowth in microwave amplifiers based on the nonlinear transformation of a complex Gaussian process (159 citations)

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

Michael B. Steer spends much of his time researching Electronic engineering, Electrical engineering, Nonlinear system, Amplifier and Microwave. Michael B. Steer interconnects Electronic circuit, Nonlinear distortion, Intermodulation, Signal and Transient in the investigation of issues within Electronic engineering. His Nonlinear system research includes themes of Behavioral modeling, Frequency domain and Network analysis.

His Amplifier research is multidisciplinary, incorporating perspectives in MESFET and Power dividers and directional couplers, Optics. The various areas that Michael B. Steer examines in his Optics study include Method of moments and Antenna. Michael B. Steer works mostly in the field of Microwave, limiting it down to concerns involving Optoelectronics and, occasionally, Varicap and Capacitor.

He most often published in these fields:

  • Electronic engineering (56.12%)
  • Electrical engineering (21.94%)
  • Nonlinear system (15.05%)

What were the highlights of his more recent work (between 2010-2020)?

  • Electronic engineering (56.12%)
  • Electrical engineering (21.94%)
  • Acoustics (7.65%)

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

Michael B. Steer mainly focuses on Electronic engineering, Electrical engineering, Acoustics, Intermodulation and Microwave. Michael B. Steer studies Band-pass filter, a branch of Electronic engineering. His research in Acoustics intersects with topics in Dynamic range, Optics and Dipole antenna.

His Intermodulation study incorporates themes from Nonlinear distortion, Distortion, Tone and Nonlinear system. His studies in Microwave integrate themes in fields like Optoelectronics and Ferroelectricity. His work in Amplifier addresses issues such as CMOS, which are connected to fields such as Analogue electronics.

Between 2010 and 2020, his most popular works were:

  • Demystifying Surrogate Modeling for Circuits and Systems (111 citations)
  • Distributed Passive Intermodulation Distortion on Transmission Lines (56 citations)
  • Passive Intermodulation Distortion in Antennas (37 citations)

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

  • Electrical engineering
  • Telecommunications
  • Amplifier

Michael B. Steer mainly investigates Electronic engineering, Intermodulation, Electrical engineering, Integrated circuit and Electronic circuit. His Electronic engineering research is multidisciplinary, incorporating elements of Transistor, Signal and Nonlinear system. His Intermodulation research incorporates themes from Microstrip, Transmission, Optoelectronics, Distortion and Printed circuit board.

His Electrical engineering research incorporates elements of Silicon and Magnetization. His Integrated circuit study integrates concerns from other disciplines, such as Through-silicon via, Dynamic simulation, Transient and Limit. His research integrates issues of Domain, Electro-Mechanical Modeling, Systems engineering and Solid modeling in his study of Electronic circuit.

Best Publications

  • Demystifying 3D ICs: the pros and cons of going vertical

    W.R. Davis;J. Wilson;S. Mick;J. Xu

  • An electronically tunable microstrip bandpass filter using thin-film Barium-Strontium-Titanate (BST) varactors

    J. Nath;D. Ghosh;J.-P. Maria;A.I. Kingon

  • Foundations of Interconnect and Microstrip Design

    T. C. Edwards;M. B. Steer

  • Nonlinear circuit analysis using the method of harmonic balance—A review of the art. Part I. Introductory concepts

    Rowan J. Gilmore;Michael B. Steer

  • Characterization of spectral regrowth in microwave amplifiers based on the nonlinear transformation of a complex Gaussian process

    K.G. Gard;H.M. Gutierrez;M.B. Steer

  • Design and CAD for 3D integrated circuits

    Paul D. Franzon;W. Rhett Davis;Michael B. Steer;Steve Lipa

  • Computer-aided design of RF and microwave circuits and systems

    M.B. Steer;J.W. Bandler;C.M. Snowden

  • Demystifying Surrogate Modeling for Circuits and Systems

    M. B. Yelten;Ting Zhu;S. Koziel;P. D. Franzon

  • Electrothermal CAD of power devices and circuits with fully physical time-dependent compact thermal modeling of complex nonlinear 3-d systems

    W. Batty;C.E. Christoffersen;A.J. Panks;S. David

  • A novel envelope-termination load-pull method for ACPR optimization of RF/microwave power amplifiers

    J.F. Sevic;K.L. Burger;M.B. Steer

  • Beyond 3G

    M. Steer

  • Accurate estimation of digital communication system metrics - SNR, EVM and /spl rho/ in a nonlinear amplifier environment

    K.M. Gharaibeh;K.G. Gard;M.B. Steer

  • Electro-Thermal Theory of Intermodulation Distortion in Lossy Microwave Components

    J.R. Wilkerson;K.G. Gard;A.G. Schuchinsky;M.B. Steer

  • Simulation of arbitrary transmission line networks with nonlinear terminations

    D. Winklestein;M.B. Steer;R. Pomerleau

  • Nonlinear circuit analysis using the method of harmonic balance—a review of the art. II. Advanced concepts

    Rowan J. Gilmore;Michael B. Steer

  • Microwave and RF Design: A Systems Approach

    Michael Steer

  • Distributed Passive Intermodulation Distortion on Transmission Lines

    J R Wilkerson;P G Lam;K G Gard;M B Steer

  • Frequency-domain nonlinear circuit analysis using generalized power series

    G.W. Rhyne;M.B. Steer;B.D. Bates

  • Foundations for Microstrip Circuit Design: Edwards/Foundations for Microstrip Circuit Design

    Terry C. Edwards;Michael B. Steer

  • Nonlinear analysis methods for the simulation of digital wireless communication systems

    John F. Sevic;Michael B. Steer;Anthony M. Pavio

Frequent Co-Authors

Paul D. Franzon
Paul D. Franzon North Carolina State University
Angus I. Kingon
Angus I. Kingon Brown University
Jon-Paul Maria
Jon-Paul Maria Pennsylvania State University
Amir Mortazawi
Amir Mortazawi University of Michigan–Ann Arbor
Linda P. B. Katehi
Linda P. B. Katehi Texas A&M University
Nuno Borges Carvalho
Nuno Borges Carvalho University of Aveiro
Lawrence E. Larson
Lawrence E. Larson Brown University
Atef Z. Elsherbeni
Atef Z. Elsherbeni Colorado School of Mines
William J. Chappell
William J. Chappell Purdue University West Lafayette
Andreas C. Cangellaris
Andreas C. Cangellaris University of Illinois at Urbana-Champaign

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