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Electronics and Electrical Engineering

D-Index
60
Citations
11131
World Ranking
1676
National Ranking
674

Research.com Recognitions

  • 2008 - IEEE Fellow For contributions to integrated micro-electro-mechanical-system processes and design methodologies

Overview

Gary K. Fedder is affiliated with Carnegie Mellon University in the United States. Their work primarily spans the fields of Engineering and Neuroscience, with a significant focus on subfields such as Biomedical Engineering, Electrical and Electronic Engineering, Cellular and Molecular Neuroscience, Automotive Engineering, and Cognitive Neuroscience.

The scientist's research topics include Advanced Sensor and Energy Harvesting Materials, Additive Manufacturing and 3D Printing Technologies, Neuroscience and Neural Engineering, EEG and Brain-Computer Interfaces, Nanomaterials and Printing Technologies, Advanced MEMS and NEMS Technologies, and Adhesion, Friction, and Surface Interactions.

Gary K. Fedder has contributed to multiple recent publications, including:

  • Interfacial delamination and delamination mechanism maps for 3D printed flexible electrical interconnects, 2021, published in Extreme Mechanics Letters
  • Hydrogel-based electrodes for selective cervical vagus nerve stimulation, 2021, Journal of Neural Engineering
  • Mechanical characterization of polydimethylsiloxane (PDMS) exposed to thermal histories up to 300 °C in a vacuum environment, 2020, Journal of Micromechanics and Microengineering
  • Sidewall Metallization on CMOS MEMS by Platinum ALD Patterning, 2020, Journal of Microelectromechanical Systems
  • High-Conductivity Crack-Free 3D Electrical Interconnects Directly Printed on Soft PDMS Substrates, 2022, Advanced Materials Technologies

Frequent co-authors collaborating with Gary K. Fedder include Derya Z. Tansel, Rahul Panat, Jacob Brenneman, Mats Forssell, and Vincent P. J. Chung.

Common venues for their publications are the Journal of Microelectromechanical Systems, Advanced Electronic Materials, Journal of Neural Engineering, Advanced Materials Technologies, and arXiv (Cornell University).

Gary K. Fedder was recognized as an IEEE Fellow in 2008 for contributions to integrated micro-electro-mechanical-system processes and design methodologies.

Best Publications

  • Laminated high-aspect-ratio microstructures in a conventional CMOS process

    G.K. Fedder;S. Santhanam;M.L. Reed;S.C. Eagle

  • Endoscopic optical coherence tomography based on a microelectromechanical mirror.

    Yingtian Pan;Huikai Xie;Gary K. Fedder

  • A low-noise low-offset capacitive sensing amplifier for a 50-/spl mu/g//spl radic/Hz monolithic CMOS MEMS accelerometer

    Jiangfeng Wu;G.K. Fedder;L.R. Carley

  • Technologies for Cofabricating MEMS and Electronics

    G.K. Fedder;R.T. Howe;Tsu-Jae King Liu;E.P. Quevy

  • Volatile Organic Compound Detection Using Nanostructured Copolymers

    Bo Li;Genevieve Sauve;Mihaela C. Iovu;Malika Jeffries-El

  • Inkjet printed chemical sensor array based on polythiophene conductive polymers

    Bo Li;Suresh Santhanam;Lawrence Schultz;Malika Jeffries-El

  • Post-CMOS processing for high-aspect-ratio integrated silicon microstructures

    Huikai Xie;L. Erdmann;Xu Zhu;K.J. Gabriel

  • A post-CMOS micromachined lateral accelerometer

    Hao Luo;Gang Zhang;L.R. Carley;G.K. Fedder

  • Micromachined high-Q inductors in a 0.18-/spl mu/m copper interconnect low-k dielectric CMOS process

    H. Lakdawala;X. Zhu;H. Luo;S. Santhanam

  • A two-axis electrothermal micromirror for endoscopic optical coherence tomography

    A. Jain;A. Kopa;Yingtian Pan;G.K. Fedder

  • Micro-electro-mechanical systems (MEMS)-based micro-scale direct methanol fuel cell development

    Shi-Chune Yao;Xudong Tang;Cheng-Chieh Hsieh;Yousef Alyousef

  • Single-chip computers with microelectromechanical systems-based magnetic memory (invited)

    L. Richard Carley;James A. Bain;Gary K. Fedder;David W. Greve

  • Endoscopic optical coherence tomography with a modified microelectromechanical systems mirror for detection of bladder cancers.

    Tuqiang Xie;Huikai Xie;Gary K. Fedder;Yingtian Pan

  • Fabrication, characterization, and analysis of a DRIE CMOS-MEMS gyroscope

    Huikai Xie;G.K. Fedder

  • Vertical comb-finger capacitive actuation and sensing for CMOS-MEMS

    Huikai Xie;Gary K. Fedder

  • Position control of parallel-plate microactuators for probe-based data storage

    M.S.-C. Lu;G.K. Fedder

  • A hierarchical circuit-level design methodology for microelectromechanical systems

    G.K. Fedder;Qi Jing

  • Electrostatically actuated resonant microcantilever beam in CMOS technology for the detection of chemical weapons

    I. Voiculescu;M.E. Zaghloul;R.A. McGill;E.J. Houser

  • Emerging simulation approaches for micromachined devices

    T. Mukherjee;G.K. Fedder;D. Ramaswamy;J. White

  • Integrated Microelectromechanical Gyroscopes

    Huikai Xie;Gary K. Fedder

Frequent Co-Authors

Gianluca Piazza
Gianluca Piazza Carnegie Mellon University
Roger T. Howe
Roger T. Howe Stanford University
Richard D. McCullough
Richard D. McCullough Harvard University
L.R. Carley
L.R. Carley Carnegie Mellon University
Navab Singh
Navab Singh Agency for Science, Technology and Research
Larry Pileggi
Larry Pileggi Carnegie Mellon University
William C. Messner
William C. Messner Tufts University
Christopher J. Bettinger
Christopher J. Bettinger Carnegie Mellon University
Rongchao Jin
Rongchao Jin Carnegie Mellon University

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