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Giovanni Crupi

Giovanni Crupi

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
34
Citations
3879
World Ranking
5898
National Ranking
254

Overview

Giovanni Crupi is affiliated with the University of Messina in Italy and has contributed extensively to the field of engineering, particularly in electrical and electronic engineering. Their work spans a range of subfields including biomedical engineering, condensed matter physics, atomic and molecular physics, and optics, as well as electronic, optical, and magnetic materials.

Their research covers various main topics, notably:

  • GaN-based semiconductor devices and materials
  • Radio Frequency Integrated Circuit Design
  • Advanced Power Amplifier Design
  • Acoustic Wave Resonator Technologies
  • Microwave and Dielectric Measurement Techniques
  • Microwave Engineering and Waveguides
  • Silicon Carbide Semiconductor Technologies

Giovanni Crupi has published in multiple venues, with frequent publications appearing in:

  • International Journal of Numerical Modelling Electronic Networks Devices and Fields
  • Electronics
  • IEEE Microwave Magazine
  • 2022 IEEE International Symposium on Medical Measurements and Applications (MeMeA)
  • 2021 15th International Conference on Advanced Technologies, Systems and Services in Telecommunications (TELSIKS)

Notable recent publications include:

  • Measurement-Based Extraction and Analysis of a Temperature-Dependent Equivalent-Circuit Model for a SAW Resonator: From Room Down to Cryogenic Temperatures, 2021, IEEE Sensors Journal
  • Effects of Varying the Fin Width, Fin Height, Gate Dielectric Material, and Gate Length on the DC and RF Performance of a 14-nm SOI FinFET Structure, 2021, Electronics
  • A Broadband PA Design Based on Bayesian Optimization Augmented by Dynamic Feasible Region Shrinkage, 2022, IEEE Microwave and Wireless Components Letters
  • Characterization and Neural Modeling of a Microwave Gas Sensor for Oxygen Detection Aimed at Healthcare Applications, 2020, Sensors
  • A Novel Design Methodology for a Multioctave GaN-HEMT Power Amplifier Using Clustering Guided Bayesian Optimization, 2022, IEEE Access

Giovanni Crupi collaborates frequently with colleagues including:

  • Nicola Donato
  • Giovanni Gugliandolo
  • Giuseppe Campobello
  • Xiue Bao
  • Jialin Cai

Best Publications

  • Accurate Multibias Equivalent-Circuit Extraction for GaN HEMTs

    G. Crupi;Dongping Xiao;D.M.M.-P. Schreurs;E. Limiti

  • Nonlinear Dispersive Modeling of Electron Devices Oriented to GaN Power Amplifier Design

    Antonio Raffo;Valeria Vadala;Dominique M M.-P Schreurs;Giovanni Crupi

  • Embedded DSP-Based Telehealth Radar System for Remote In-Door Fall Detection

    Carmine Garripoli;Marco Mercuri;Peter Karsmakers;Ping Jack Soh

  • Microwave De-embedding : From Theory to Applications

    Giovanni Crupi;Dominique M.M.-P. Schreurs

  • A New Millimeter-Wave Small-Signal Modeling Approach for pHEMTs Accounting for the Output Conductance Time Delay

    G. Crupi;D.M.M.-P. Schreurs;A. Raffo;A. Caddemi

  • An Extensive Experimental Analysis of the Kink Effects in ${ S}_{22}$ and ${ h}_{21}$ for a GaN HEMT

    Giovanni Crupi;Antonio Raffo;Zlatica Marinkovic;Gustavo Avolio

  • A comprehensive review on microwave FinFET modeling for progressing beyond the state of art

    Giovanni Crupi;Dominique M.M.-P. Schreurs;Jean-Pierre Raskin;Alina Caddemi

  • Neural approach for temperature-dependent modeling of GaN HEMTs

    Zlatica Marinković;Giovanni Crupi;Alina Caddemi;Gustavo Avolio

  • A review on the artificial neural network applications for small‐signal modeling of microwave FETs

    Zlatica Marinković;Giovanni Crupi;Alina Caddemi;Vera Marković

  • GaN HEMT Noise Model Based on Electromagnetic Simulations

    Andrea Nalli;Antonio Raffo;Giovanni Crupi;Sara D'Angelo

  • Temperature Influence on GaN HEMT Equivalent Circuit

    Giovanni Crupi;Antonio Raffo;Gustavo Avolio;Dominique M. M.-P. Schreurs

  • Scalable and multibias high frequency modeling of multi-fin FETs

    G. Crupi;D. Schreurs;B. Parvais;A. Caddemi

  • On the small signal modeling of advanced microwave FETs: A comparative study

    Giovanni Crupi;Dominique M. M.-P. Schreurs;Alina Caddemi

  • A Planar One-Port Microwave Microfluidic Sensor for Microliter Liquids Characterization

    Xiue Bao;Ilja Ocket;Giovanni Crupi;Dominique Schreurs

  • The large world of FET small-signal equivalent circuits (invited paper)

    Giovanni Crupi;Alina Caddemi;Dominique M. M.-P. Schreurs;Gilles Dambrine

  • Empowering GaN HEMT models: The gateway for power amplifier design

    Giovanni Crupi;Valeria Vadalà;Paolo Colantonio;Elisa Cipriani

  • Microwave characterization and modeling of packaged HEMTs by a direct extraction procedure down to 30 K

    A. Caddemi;G. Crupi;N. Donato

  • Effects of Varying the Fin Width, Fin Height, Gate Dielectric Material, and Gate Length on the DC and RF Performance of a 14-nm SOI FinFET Structure

    Unknown

  • Comparison between analytical and neural approaches for multibias small signal modeling of microwave‐scaled FETs

    Zlatica Marinković;Giovanni Crupi;Alina Caddemi;Vera Marković

  • Determination and Validation of New Nonlinear FinFET Model Based on Lookup Tables

    G. Crupi;D.M.M.-P. Schreurs;Dongping Xiao;A. Caddemi

  • On wafer-scaled GaAs HEMTs: Direct and robust small signal modeling up to 50 GHz

    Alina Caddemi;Giovanni Crupi;Alessio Macchiarella

  • Investigation on the non-quasi-static effect implementation for millimeter-wave FET models: Non-Quasi-Static Effect Implementation

    Giovanni Crupi;Dominique M. M.-P. Schreurs;Alina Caddemi;Antonio Raffo

  • On the small signal modeling of advanced microwave FETs: A comparative study

    Unknown

Frequent Co-Authors

Alina Caddemi
Alina Caddemi University of Messina
Christophe Gaquiere
Christophe Gaquiere University of Lille
Ernesto Limiti
Ernesto Limiti University of Rome Tor Vergata
Changzhi Li
Changzhi Li Texas Tech University
Jean-Pierre Raskin
Jean-Pierre Raskin Université Catholique de Louvain
Giovanni Neri
Giovanni Neri University of Messina

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