Eric KERHERVE

Professor

Research group : CIRCUIT DESIGN

Team : CSH

Tel : 0540002629

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Article (6)

Experimental Demonstration of Walsh-Based RF Conversion Using Wideband DAC and ADC in 28nm FDSOI CMOS Technology Auteur(s): Pierre Ferrer, Maxandre Fellmann, Francois Rivet, Nathalie Deltimple, Herve Lapuyade, Eric Kerherve, Yann Deval Année de publication: 2025 Journal: Transactions on Circuits and Systems I DOI: Lien HAL: https://hal.science/hal-05298805v1 A 71% Relative Bandwidth Differential Integrated Power Amplifier With Optimized PAEmax for 5G-NR FR1 Carrier Aggregation Applications Auteur(s): Remi Queheille, Magalie de Matos, Yann Deval, Eric Kerherve, Francois Rivet, Nathalie Deltimple, Maxandre Fellmann Année de publication: 2025 Journal: IEEE Transactions on Circuits and Systems II: Express Briefs DOI: 10.1109/tcsii.2025.3567701 Lien HAL: https://hal.science/hal-05081616v1 A Block-based LMS using the Walsh Transform for Digital Predistortion of Power Amplifiers Auteur(s): Maxandre Fellmann, Francois Rivet, Nathalie Deltimple, Eric Kerherve, Herve Lapuyade, Yann Deval Année de publication: 2023 Journal: IEEE Transactions on Communications DOI: 10.1109/tcomm.2023.3294959 Lien HAL: https://hal.science/hal-04166712v1 Ku Band SiGe Power Amplifier With High Output Power and SWR Robustness Up to 120°C Auteur(s): Benjamin Coquillas, Eric Kerherve, Anne-Charlotte Amiaud, Samuel Redois, Laurent Roussel, Bruno Louis, Thomas Merlet, Vincent Petit Année de publication: 2023 Journal: IEEE Transactions on Circuits and Systems I: Regular Papers DOI: 10.1109/tcsi.2023.3274496 Lien HAL: https://hal.science/hal-04119191v1 An IoT-based Precision Agriculture Project for Education in Circuits and Systems Auteur(s): Francois Rivet, Guillaume Ferre, Ryan Raimond, Christophe Moreau, Corentin Gaury, Eric Kerherve Année de publication: 2023 Journal: Journal sur l'enseignement des sciences et technologies de l'information et des systèmes DOI: 10.1051/j3ea/20222005 Lien HAL: https://hal.science/hal-04029483v1 Low Consumption Balanced Front-end Amplifiers Robust to Load Variations in 65nm PD-SOI CMOS Technology for 60 GHz Shortrange Wireless Applications Auteur(s): Alexandre Berthier, Anthony Ghiotto, Eric Kerherve, Lionel Vogt Année de publication: 2022 Journal: IEEE Transactions on Circuits and Systems II: Express Briefs DOI: 10.1109/tcsii.2022.3185552 Lien HAL: https://hal.science/hal-03763357v1

Conference proceedings (21)

Un amplificateur de puissance large bande à PAE contrôlée en technologie CMOS 28 nm FDSOI pour des applications 5G Auteur(s): Remi Queheille, Yann Deval, Eric Kerherve, Francois Rivet, Nathalie Deltimple Année de publication: 2025 Journal: DOI: Lien HAL: https://hal.science/hal-05081691v1 High-Efficiency Walsh LMS-Based Digital Predistortion for RF Power Amplifiers Auteur(s): Maxandre Fellmann, Francois Rivet, Nathalie Deltimple, Pierre Ferrer, Remi Queheille, Herve Lapuyade, Yann Deval, Eric Kerherve Année de publication: 2025 Journal: DOI: Lien HAL: https://hal.science/hal-05298894v1 The Sequency Domain: a new Approach for Radio Frequency Front End Auteur(s): Francois Rivet, Pierre Ferrer, Maxandre Fellmann, Nathalie Deltimple, Herve Lapuyade, Eric Kerherve, Yann Deval Année de publication: 2025 Journal: DOI: Lien HAL: https://hal.science/hal-05298922v1 Twisted-Shaped Millimeter-Wave Hybrid Couplers in 150 nm GaN Technology for 5G Applications Auteur(s): Sujeevan Vigneswaran, Eric Kerherve, Nathalie Deltimple, Romain Mathieu, Kimon Vivien Année de publication: 2025 Journal: DOI: 10.1109/ims40360.2025.11103947 Lien HAL: https://hal.science/hal-05253925v1 Demonstration of PAE Control in a Wideband CoTS-Based Power Amplifier for 5G Applications Auteur(s): Remi Queheille, Magali De Matos, Maxandre Fellmann, Yann Deval, E. Kerherve, Francois Rivet, Nathalie Deltimple Année de publication: 2025 Journal: DOI: Lien HAL: https://hal.science/hal-05010247v1 Etude de l’effet d’une torsion d’un guide plastique en croix en onde millimétriques Auteur(s): Samir Lagoug, Anthony Ghiotto, Eric Kerherve Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04777290v1 Design of a broadband D-Band Power Amplifier Auteur(s): Antoine Lhomel, Nathalie Deltimple, Eric Kerherve, Yann Deval, Francois Rivet Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04699757v1 Une méthode LMS par blocs utilisant la transformée de Walsh pour de la prédistorsion numérique d'amplificateur de puissance Auteur(s): Maxandre Fellmann, Francois Rivet, Eric Kerherve, Yann Deval, Nathalie Deltimple Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04521234v1 A 0.65-1.5GHz Wideband Power Amplifier With Second Harmonic Control Proof-of-Concept for 5G Applications Auteur(s): Remi Queheille, Magali de Matos, Maxandre Fellmann, Yann Deval, Eric Kerherve, François Rivet, Nathalie Deltimple Année de publication: 2024 Journal: DOI: 10.1109/lascas60203.2024.10506186 Lien HAL: https://hal.science/hal-04631322v1 Sub-THz Power amplifier design integrated on 28nm FDSOI for 6G applications Auteur(s): Antoine Lhomel, Nathalie Deltimple, Eric Kerherve, Yann Deval, Francois Rivet Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04648535v1 A PAE-Controlled Wideband Power Amplifier for Sub-6GHz 5G Applications in 28nm FDSOI Technology Auteur(s): Remi Queheille, Maxandre Fellmann, Yann Deval, Eric Kerherve, Francois Rivet, Nathalie Deltimple Année de publication: 2023 Journal: DOI: 10.1109/ICECS202256217.2022.9971061 Lien HAL: https://hal.science/hal-03937315v1 A Low-Cost Bench for Training Students in Power Amplifier and Digital Predistortion Auteur(s): Maxandre Fellmann, Francois Rivet, Nathalie Deltimple, Yann Deval, Eric Kerherve Année de publication: 2023 Journal: DOI: Lien HAL: https://hal.science/hal-04118411v1 A 2.45GHz SiGe Power Amplifier with a Novel Digital Predistortion using Orthogonal Sequences Auteur(s): Antoine Lhomel, Maxandre Fellmann, Remi Queheille, Yann Deval, Eric Kerherve, Francois Rivet, Nathalie Deltimple Année de publication: 2023 Journal: DOI: Lien HAL: https://hal.science/hal-04166657v1 A 24-31GHz 28nm FD-SOI CMOS Power Amplifier Supporting 5G NR FR2 64-QAM Signals Auteur(s): Gwennael Diverrez, Eric Kerherve, Andreia Cathelin Année de publication: 2023 Journal: DOI: Lien HAL: https://hal.science/hal-03999380v1 60 GHz SIW Filter with 1.7 dB of Insertion Loss and 7 ps Added Jitter on OOK Modulated Signal Auteur(s): Alexandre Berthier, Anthony Ghiotto, Eric Kerherve, Lionel Vogt Année de publication: 2022 Journal: DOI: 10.1109/RWS53089.2022.9719919 Lien HAL: https://hal.science/hal-03651600v1 Ku-Band Cascode Balanced SiGe Power Amplifier with High Robustness to Active SWR Auteur(s): B. Coquillas, E. Kerherve, E. Itcia, L. Roussel, B. Louis, T. Merlet Année de publication: 2022 Journal: DOI: 10.1109/NEWCAS50681.2021.9462752 Lien HAL: https://hal.science/hal-03560284v1 A 27dBm Ku-Band SiGe Power Amplifier Working up to 90°C with High Robustness to the 2:1 SWR Auteur(s): B. Coquillas, E. Kerherve, S. Redois, Ac. Amiaud, L. Roussel, B. Louis, E. Itcia, T. Merlet Année de publication: 2022 Journal: DOI: 10.23919/EuMIC50153.2022.9784063 Lien HAL: https://hal.science/hal-03714414v1 A Highly Compact 1W Ku-Band Power Amplifier Auteur(s): B. Coquillas, E. Kerherve, Ac. Amiaud, L. Roussel, S. Redois, B. Louis, T. Merlet, V. Petit Année de publication: 2022 Journal: DOI: 10.1109/LASCAS53948.2022.9789049 Lien HAL: https://hal.science/hal-03714418v1 A 24-31GHz 28nm FD-SOI CMOS Balanced Power Amplifier Robust to 3:1 VSWR for 5G Application Auteur(s): G. Diverrez, E. Kerherve, Andreia Cathelin Année de publication: 2022 Journal: DOI: 10.23919/EuMC54642.2022.9924331 Lien HAL: https://hal.science/hal-03867425v1 A 25-50 GHz Digitally Controlled Phase-Shifter Auteur(s): Steeven Voisin, Vincent Knopik, Eric Kerherve Année de publication: 2022 Journal: DOI: 10.23919/eumic50153.2022.9783836 Lien HAL: https://hal.science/hal-03781139v1 NB-IoT High Linear Doherty Amplifier with Active Balun Auteur(s): Tristan Lecocq, Eric Kerherve, Jean-Marie Pham Année de publication: 2022 Journal: DOI: 10.1109/NEWCAS52662.2022.9842261 Lien HAL: https://hal.science/hal-03811887v1

Invited lectures (7)

Twisting Effects on X-Shaped Millimeter-Wave Plastic Waveguides Auteur(s): Samir Lagoug, Anthony Ghiotto, Eric Kerherve Année de publication: 2024 Journal: DOI: 10.1109/ims40175.2024.10600382 Lien HAL: https://hal.science/hal-04777451v1 Co-simulation Workflow for D-Band Power Amplifier Linearization using Walsh-based DPD Auteur(s): Antoine Lhomel, Maxandre Fellmann, Yann Deval, Eric Kerherve, Francois Rivet, Nathalie Deltimple Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04454321v1 Benchmark of Cosimulation Methodologies for Digital Predistorsion on IC Wideband Power Amplifiers Auteur(s): Maxandre Fellmann, Remi Queheille, Antoine Lhomel, Yann Deval, Eric Kerherve, Francois Rivet, Nathalie Deltimple Année de publication: 2024 Journal: DOI: Lien HAL: https://hal.science/hal-04599866v1 Study of an Avalanche Compensation Mirror for SiGe High Performance Power Amplifiers dedicated to 5G applications Auteur(s): Anais Tourissaud, Eric Kerherve, Nathalie Deltimple, Steeven Voisin, Mathieu Romain Année de publication: 2023 Journal: DOI: Lien HAL: https://hal.science/hal-04225834v1 Un amplificateur de puissance Doherty basé sur un coupleur hybride inductif résilient VSWR FD-SOI CMOS 3:1 24-31 GHz 28 nm Auteur(s): Gwennael Diverrez, Eric Kerherve, Magali de Matos, Andreia Cathelin Année de publication: 2023 Journal: DOI: 10.1109/ims37964.2023.10188066 Lien HAL: https://hal.science/hal-04234362v1 A 26-44GHz 28nm CMOS FD-SOI Slow-Wave Tunable Hybrid Coupler for 5G Application Auteur(s): Gwennael Diverrez, Eric Kerherve, Magali de Matos, Andreia Cathelin Année de publication: 2023 Journal: DOI: 10.1109/ims37964.2023.10188213 Lien HAL: https://hal.science/hal-04225781v1 A 24.25-30.5GHz Fully Integrated SiGe Phase Shifter/VGA/Power Amplifier in 0.13μm BiCMOS Technology for 5G Beamforming Applications Auteur(s): Anais Tourissaud, Eric Kerherve, Nathalie Deltimple, Steeven Voisin, Romain Mathieu Année de publication: 2023 Journal: DOI: Lien HAL: https://hal.science/hal-04225986v1

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