World's Best Scientists 2026 revealed!
Michael J. Bultman

Michael J. Bultman

D-Index & Metrics

Engineering and Technology

D-Index
39
Citations
4231
World Ranking
7857
National Ranking
2145

Overview

What is he best known for?

The fields of study he is best known for:

  • Signal
  • Telecommunications
  • Modulation

Signal, Electronic engineering, Translation, Baseband and Electrical engineering are his primary areas of study. Michael J. Bultman studies Signal transition which is a part of Signal. His study in Signal transition is interdisciplinary in nature, drawing from both Signal edge, Pulse-density modulation and Common-mode signal.

Michael J. Bultman interconnects Acoustics, Pulse-frequency modulation and Discrete-time signal in the investigation of issues within Common-mode signal. His work deals with themes such as Demodulation and Modulation, which intersect with Electronic engineering. His Baseband research is multidisciplinary, incorporating perspectives in Transmission, Electromagnetic signal, Differential amplifier and Carrier signal.

His most cited work include:

  • Wireless local area network (WLAN) technology and applications including techniques of universal frequency translation (189 citations)
  • Method and system for down-converting an electromagnetic signal (126 citations)
  • Method and system for down-converting and up-converting an electromagnetic signal, and transforms for same (103 citations)

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

His primary areas of investigation include Electronic engineering, Signal, Analog signal, Baseband and Signal transfer function. His studies in Electronic engineering integrate themes in fields like DC bias, Voltage and Sampling. His research in Signal focuses on subjects like Acoustics, which are connected to Electromagnetic signal.

Michael J. Bultman interconnects Signal analyzer and Decimation in the investigation of issues within Analog signal. His research integrates issues of Transmitter, Transmission and Carrier signal in his study of Baseband. His studies deal with areas such as Pulse-density modulation and Common-mode signal as well as Signal transition.

He most often published in these fields:

  • Electronic engineering (71.95%)
  • Signal (68.29%)
  • Analog signal (30.49%)

What were the highlights of his more recent work (between 2007-2015)?

  • Signal (68.29%)
  • Electronic engineering (71.95%)
  • Analog signal (30.49%)

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

Michael J. Bultman spends much of his time researching Signal, Electronic engineering, Analog signal, Signal transfer function and Signal transition. His Signal study is associated with Electrical engineering. His Electronic engineering research integrates issues from Demodulation, Control signal, Modulation and Aliasing.

His Signal transfer function study integrates concerns from other disciplines, such as Digital signal and Common-mode signal. The Common-mode signal study which covers Signal edge that intersects with Acoustics, Pulse-density modulation and Pulse-frequency modulation. In his work, Antenna, Transmission, Wi-Fi and Computer hardware is strongly intertwined with Transmitter, which is a subfield of Baseband.

Between 2007 and 2015, his most popular works were:

  • Phased Array Antenna Applications on Universal Frequency Translation (74 citations)
  • Method and system for down-converting an electromagnetic signal, transforms for same, and aperture relationships (61 citations)
  • Method and system for down-converting an electromagnetic signal, and transforms for same (61 citations)

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

  • Signal
  • Telecommunications
  • Modulation

His main research concerns Electronic engineering, Signal, Signal transition, Common-mode signal and Analog signal. His Electronic engineering research incorporates themes from Control signal, Signal edge and Matched filter. His Control signal research is multidisciplinary, incorporating elements of Phased array and Phase shift module.

The study incorporates disciplines such as Digital signal and Discrete-time signal in addition to Signal transition. His work in Point incorporates the disciplines of Aliasing and Sampling.

Best Publications

  • Wireless local area network (WLAN) technology and applications including techniques of universal frequency translation

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Method and system for down-converting an electromagnetic signal

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Method and system for down-converting and up-converting an electromagnetic signal, and transforms for same

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Universal platform module and methods and apparatuses relating thereto enabled by universal frequency translation technology

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Method and system for ensuring reception of a communications signal

    Michael J. Bultman;Robert W. Cook;Richard C. Looke;Charley D. Moses

  • Converting an electromagnetic signal via sub-sampling

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Method and apparatus for a parallel correlator and applications thereof

    Gregory S. Rawlins;Michael W. Rawlins;David F. Sorrells

  • Method and system for frequency up-conversion

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Applications of universal frequency translation

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Integrated frequency translation and selectivity

    Robert W. Cook;Michael J. Bultman;Richard C. Looke;Charley D. Moses

  • Wireless local area network (WLAN) using universal frequency translation technology including multi-phase embodiments and circuit implementations

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Apparatus and method for communicating an input signal in polar representation

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Method and system for frequency up-conversion with modulation embodiments

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Phased Array Antenna Applications on Universal Frequency Translation

    Martin R Johnson;Jonathan S Jensen;Robert T. Short;Jamison L. Young

  • DC offset, re-radiation, and I/Q solutions using universal frequency translation technology

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Jonathan S. Jensen

  • MDG method for output signal generation

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Spread spectrum applications of universal frequency translation

    David F. Sorrells;Michael J. Bultman;Charles D. Clements;Robert W. Cook

  • Multi-mode, multi-band communication system

    David F. Sorrells;Michael J. Bultman;Charles D. Clements;Robert W. Cook

  • Method and system for down-converting an electromagnetic signal, transforms for same, and aperture relationships

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

  • Method and system for down-converting an electromagnetic signal, and transforms for same

    David F. Sorrells;Michael J. Bultman;Robert W. Cook;Richard C. Looke

Frequent Co-Authors

Robert W. Cook
Robert W. Cook ParkerVision
David F. Sorrells
David F. Sorrells ParkerVision
Charley D. Moses
Charley D. Moses Sparton Engineered Products
Richard C. Looke
Richard C. Looke ParkerVision

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