World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
32
Citations
3845
World Ranking
6375
National Ranking
2099

Overview

G. Gildenblat is affiliated with Arizona State University in the United States. Their academic and research profile currently does not include publicly listed recent papers, co-authors, or specific publication venues.

No information is available regarding main fields of study, subfields of study, or main topics of their research work at this time.

There are no recorded book publications or awards linked to G. Gildenblat in the data provided.

The details reflect a researcher whose profile might be developing or not extensively documented in the accessible databases. Continued monitoring of publication repositories and academic indexes could provide more insights into their future contributions and collaborations.

Best Publications

  • PSP: An Advanced Surface-Potential-Based MOSFET Model for Circuit Simulation

    G. Gildenblat;Xin Li;W. Wu;Hailing Wang

  • SP: an advanced surface-potential-based compact MOSFET model

    G. Gildenblat;Hailing Wang;Ten-Lon Chen;Xin Gu

  • A semi-empirical model of the MOSFET inversion layer mobility for low-temperature operation

    Unknown

  • Measurements and modeling of the n-channel MOSFET inversion layer mobility and device characteristics in the temperature range 60-300 K

    C.-L. Huang;G.S. Gildenblat

  • Analytical approximation for the MOSFET surface potential

    Unknown

  • The barrier height of Schottky diodes with a chemical‐vapor‐deposited diamond base

    M. C. Hicks;C. R. Wronski;S. A. Grot;G. Sh. Gildenblat

  • Quasi-static and nonquasi-static compact MOSFET models based on symmetric linearization of the bulk and inversion charges

    Hailing Wang;Ten-Lon Chen;G. Gildenblat

  • RF distortion analysis with compact MOSFET models

    P. Bendix;P. Rakers;P. Wagh;L. Lemaitre

  • A surface potential-based compact model of n-MOSFET gate-tunneling current

    Xin Gu;Ten-Lon Chen;G. Gildenblat;G.O. Workman

  • Physics-based mathematical conditioning of the MOSFET surface potential equation

    Weimin Wu;Ten-Lon Chen;G. Gildenblat;C.C. McAndrew

  • Symmetric bulk charge linearisation in charge-sheet MOSFET model

    Unknown

  • Platinum silicide ohmic contacts to shallow junctions in silicon

    Unknown

  • A Physically Based, Scalable MOS Varactor Model and Extraction Methodology for RF Applications

    Unknown

  • Effect of hot-electron stress on low frequency MOSFET noise

    Unknown

  • Investigation of cryogenic CMOS performance

    Unknown

  • Resonant tunneling emitter quantum mechanically coupled to a vacuum gap

    Unknown

  • The New CMC Standard Compact MOS Model PSP: Advantages for RF Applications

    A.J. Scholten;G.D.J. Smit;B.A. De Vries;L.F. Tiemeijer

  • Benchmark Tests for MOSFET Compact Models With Application to the PSP Model

    Xin Li;Weimin Wu;A. Jha;G. Gildenblat

  • PSP-based compact FinFET model describing dc and RF measurements

    G.D.J. Smit;A.J. Scholten;N. Serra;R.M.T. Pijper

  • A Unified Nonquasi-Static MOSFET Model for Large-Signal and Small-Signal Simulations

    Hailing Wang;Xin Li;W. Wu;G. Gildenblat

  • SP: an advanced surface-potential-based compact MOSFET model

    G. Gildenblat;T.-L. Chen;X. Gu;H. Wang

  • Statistical Modeling With the PSP MOSFET Model

    Xin Li;C.C. McAndrew;Weimin Wu;S. Chaudhry

  • Oxygen based electron cyclotron resonance etching of semiconducting homoepitaxial diamond films

    S. A. Grot;R. A. Ditizio;G. Sh. Gildenblat;A. R. Badzian

  • Extensions to Backward Propagation of Variance for Statistical Modeling

    C.C. McAndrew;I. Stevanovic;Xin Li;G. Gildenblat

  • Surface-Potential-Based Compact Model of Bulk MOSFET

    Gennady Gildenblat;Weimin Wu;Xin Li;Ronald van Langevelde

  • MOS flat-band capacitance method at low temperatures

    C.-L. Huang;G.S. Gildenblat

  • SP-SOI: a third generation surface potential based compact SOI MOSFET Model

    W. Wu;X. Li;H. Wang;G. Gildenblat

  • PSP-SOI: A Surface Potential Based Compact Model of Partially Depleted SOI MOSFETs

    W. Wu;X. Li;G. Gildenblat;G. Workman

  • PSP: An advanced surface-potential-based MOSFET model

    R.van Langevelde;G. Gildenblat

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