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Remy Cellier
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2020 – today
- 2024
- [c12]Michel Chevalier, Severin Trochut, Roberto Guizzetti, Pascal Urard, Lioua Labrak, John Samuel, Remy Cellier, Nacer Abouchi:
Advanced Analog Design Optimization: Comparison Between Reinforcement Learning and Heuristic Algorithms. SMACD 2024: 1-4 - [c11]Alba Ordonez Rodriguez, Fabien Gilibert, Francois Paolini, Pascal Urard, Roberto Guizzetti, John Samuel, Remy Cellier, Lioua Labrak, Bastien Deveautour:
Artificial neural network-based solution for PSP MOSFET model card extraction. VLSID 2024: 6-12 - 2023
- [c10]Michel Chevalier, Severin Trochut, Roberto Guizzetti, Pascal Urard, Lioua Labrak, John Samuel
, Remy Cellier, Nacer Abouchi:
Reinforcement Learning for Analog Sizing Optimization. SMACD 2023: 1-4
2010 – 2019
- 2019
- [c9]Tulio Chaves de Albuquerque, Dylan Issartel, Raphael Clerc, Patrick Pittet
, Remy Cellier, Wilfried Uhring, Andreia Cathelin, Françis Calmon
:
Body-biasing considerations with SPAD FDSOI: advantages and drawbacks. ESSDERC 2019: 210-213 - 2018
- [c8]Arnaud Toni, Hassan Ihs, Taner Dosluoglu
, Remy Cellier, Nacer Abouchi:
An integrated 10MHz 3 States Buck converter for fast transient response in 180nm CMOS. DCIS 2018: 1-4 - 2016
- [c7]Nicolas Quentin, Remi Perrin, Christian Martin, Charles Joubert, Louis Grimaud, Bertrand Lacombe, Remy Cellier:
A single switch resonant and quasi-resonant converter suitable for low power applications. IECON 2016: 3196-3201 - 2015
- [j3]Remy Cellier, Pawel Fiedorow:
A 0.35 um CMOS Operational Amplifier Using Multi-Path Frequency Compensation. J. Low Power Electron. 11(1): 84-92 (2015) - [j2]M. M. Vignetti, Françis Calmon
, Remy Cellier, Patrick Pittet
, Laurent Quiquerez, Aurore Savoy-Navarro:
Design guidelines for the integration of Geiger-mode avalanche diodes in standard CMOS technologies. Microelectron. J. 46(10): 900-910 (2015) - [j1]Achille Donida, Remy Cellier, Angelo Nagari, Piero Malcovati
, Andrea Baschirotto
:
A 40-nm CMOS, 1.1-V, 101-dB Dynamic-Range, 1.7-mW Continuous-Time ΣΔ ADC for a Digital Closed-Loop Class-D Amplifier. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(3): 645-653 (2015) - [c6]M. M. Vignetti, Françis Calmon, Remy Cellier, Patrick Pittet
, Laurent Quiquerez, Aurore Savoy-Navarro:
A time-integration based quenching circuit for Geiger-mode avalanche diodes. NEWCAS 2015: 1-4 - 2013
- [c5]Achille Donida, Piero Malcovati
, Remy Cellier, Angelo Nagari, Andrea Baschirotto
:
A 40-nm CMOS, 1.1-V, 101-dB DR, 1.7-mW continuous-time ΣΔ ADC for a digital closed-loop class-D amplifier. ICECS 2013: 437-440 - 2012
- [c4]Remy Cellier, Angelo Nagari, Souha Hacine, Gaël Pillonnet
, Nacer Abouchi:
A synchronized self oscillating Class-D amplifier for mobile application. ESSCIRC 2012: 422-425 - 2011
- [c3]Remy Cellier, Gaël Pillonnet
, Nacer Abouchi, Roberto M'Rad, Angelo Nagari:
Analysis and design of an analog control loop for digital input class D amplifiers. ICECS 2011: 105-108
2000 – 2009
- 2009
- [c2]Gaël Pillonnet
, Nacer Abouchi, Remy Cellier, Angelo Nagari:
A 0.01%THD, 70dB PSRR Single Ended Class D using Variable Hysteresis Control for Headphone Amplifiers. ISCAS 2009: 1181-1184 - 2008
- [c1]Gaël Pillonnet
, Remy Cellier, Emmanuel Allier, Nacer Abouchi, Angelo Nagari:
A topological comparison of PWM and hysteresis controls in switching audio amplifiers. APCCAS 2008: 668-671
Coauthor Index
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