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Electronics and Electrical Engineering

D-Index
32
Citations
4629
World Ranking
6281
National Ranking
283

Overview

Paolo Colantonio is affiliated with the University of Rome Tor Vergata in Italy and has a research focus primarily within the field of Engineering, with an emphasis on Electrical and Electronic Engineering.

The scientist's work spans several subfields including:

  • Electrical and Electronic Engineering
  • Condensed Matter Physics
  • Aerospace Engineering
  • Astronomy and Astrophysics
  • Biomedical Engineering

Colantonio's main research topics cover:

  • Radio Frequency Integrated Circuit Design
  • Advanced Power Amplifier Design
  • GaN-based semiconductor devices and materials
  • Microwave Engineering and Waveguides
  • Satellite Communication Systems
  • Energy Harvesting in Wireless Networks
  • Full-Duplex Wireless Communications

Frequent co-authors collaborating with Paolo Colantonio include:

  • Rocco Giofrè
  • Lorena Cabrìa
  • Anna Piacibello
  • Vittorio Camarchia
  • Jesús Grajal

The scientist has published extensively in a range of venues, most notably in:

  • IEEE Transactions on Microwave Theory and Techniques
  • 2020 23rd International Microwave and Radar Conference (MIKON)
  • IEEE Transactions on Terahertz Science and Technology
  • 2022 24th International Microwave and Radar Conference (MIKON)
  • IEEE Microwave and Wireless Components Letters

Recent papers by Paolo Colantonio include:

  • "220-360-GHz Broadband Frequency Multiplier Chains (x8) in 130-nm BiCMOS Technology" (2020), IEEE Transactions on Microwave Theory and Techniques
  • "A 17.3-20.2-GHz GaN-Si MMIC Balanced HPA for Very High Throughput Satellites" (2021), IEEE Microwave and Wireless Components Letters
  • "3-Way Doherty Power Amplifiers: Design Guidelines and MMIC Implementation at 28 GHz" (2022), IEEE Transactions on Microwave Theory and Techniques
  • "A 5-W GaN Doherty Amplifier for Ka-Band Satellite Downlink With 4-GHz Bandwidth and 17-dB NPR" (2022), IEEE Microwave and Wireless Components Letters
  • "168-195 GHz Power Amplifier With Output Power Larger Than 18 dBm in BiCMOS Technology" (2020), IEEE Access

Best Publications

  • High Efficiency RF and Microwave Solid State Power Amplifiers

    Paolo Colantonio;Franco Giannini;Ernesto Limiti

  • Design of a Concurrent Dual-Band 1.8–2.4-GHz GaN-HEMT Doherty Power Amplifier

    P. Saad;P. Colantonio;L. Piazzon;F. Giannini

  • A Design Technique for Concurrent Dual-Band Harmonic Tuned Power Amplifier

    P. Colantonio;F. Giannini;R. Giofre;L. Piazzon

  • On the class‐F power amplifier design

    Paolo Colantonio;Franco Giannini;Giorgio Leuzzi;Ernesto Limiti

  • An approach to harmonic load- and source-pull measurements for high-efficiency PA design

    P. Colantonio;F. Giannini;E. Limiti;V. Teppati

  • A Closed-Form Design Technique for Ultra-Wideband Doherty Power Amplifiers

    Rocco Giofrè;Luca Piazzon;Paolo Colantonio;Franco Giannini

  • A C-band high-efficiency second-harmonic-tuned hybrid power amplifier in GaN technology

    P. Colantonio;F. Giannini;R. Giofre;E. Limiti

  • The AB-C Doherty power amplifier. Part I: Theory

    Unknown

  • Multiharmonic manipulation for highly efficient microwave power amplifiers

    Paolo Colantonio;Franco Giannini;Giorgio Leuzzi;Ernesto Limiti

  • High efficiency low-voltage power amplifier design by second-harmonic manipulation

    Paolo Colantonio;Franco Giannini;Giorgio Leuzzi;Ernesto Limiti

  • Theory and Experimental Results of a Class F AB-C Doherty Power Amplifier

    P. Colantonio;F. Giannini;R. Giofre;L. Piazzon

  • The AB-C Doherty power amplifier. Part I: Theory

    Paolo Colantonio;Franco Giannini;Rocco Giofrè;Luca Piazzon

  • A Wideband Doherty Architecture With 36% of Fractional Bandwidth

    Luca Piazzon;Rocco Giofre;Paolo Colantonio;Franco Giannini

  • High Linearity and Efficiency Microwave PAs

    P. Colantonio;Josè Angel Garcia;Franco Giannini;Ernesto Limiti

  • A Doherty Architecture With High Feasibility and Defined Bandwidth Behavior

    Rocco Giofre;Luca Piazzon;Paolo Colantonio;Franco Giannini

  • A 6W Uneven Doherty Power Amplifier in GaN Technology

    A.Z. Markos;P. Colantonio;F. Giannini;R. Giofre

  • Theoretical facet and experimental results of harmonic tuned PAs

    Paolo Colantonio;Franco Giannini;Giorgio Leuzzi;Ernesto Limiti

  • Increasing Doherty Amplifier Average Efficiency Exploiting Device Knee Voltage Behavior

    P. Colantonio;F. Giannini;R. Giofre;L. Piazzon

  • 220–360-GHz Broadband Frequency Multiplier Chains (x8) in 130-nm BiCMOS Technology

    Abdul Ali;Jongwon Yun;Maciej Kucharski;Herman Jalli Ng

  • A 17.3–20.2-GHz GaN-Si MMIC Balanced HPA for Very High Throughput Satellites

    Rocco Giofre;Paolo Colantonio;Ferdinando Costanzo;Fabio Vitobello

  • New Output Combiner for Doherty Amplifiers

    R. Giofre;P. Colantonio;F. Giannini;L. Piazzon

  • Effect of Load Modulation on Phase Distortion in Doherty Power Amplifiers

    Luca Piazzon;Rocco Giofre;Roberto Quaglia;Vittorio Camarchia

  • An Ultra-Broadband GaN Doherty Amplifier with 83% of Fractional Bandwidth

    Rocco Giofrè;Luca Piazzon;Paolo Colantonio;Franco Giannini

Frequent Co-Authors

Ernesto Limiti
Ernesto Limiti University of Rome Tor Vergata
Giovanni Ghione
Giovanni Ghione Polytechnic University of Turin
Dietmar Kissinger
Dietmar Kissinger University of Ulm
Christian Fager
Christian Fager Chalmers University of Technology
Gaetano Marrocco
Gaetano Marrocco University of Rome Tor Vergata
Anding Zhu
Anding Zhu University College Dublin
Alessandro Galli
Alessandro Galli Sapienza University of Rome
Andrea Reale
Andrea Reale University of Rome Tor Vergata

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