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Hervé Barthélemy
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2020 – today
- 2024
- [c44]Sebastián Marzetti, Valentin Gies, Valentin Barchasz, Hervé Barthélemy, Hervé Glotin:
Analog Features Extractor for Ultra-Low Power Embedded AI Listening and Keyword Spotting. AICAS 2024: 1-5 - 2023
- [c43]Hervé Barthélemy, Florent Barthélemy, Rémy Vauché, Sylvain Bourdel:
Inductive relaxation oscillator with current-limiting. NEWCAS 2023: 1-4 - 2022
- [c42]Sebastián Marzetti, Valentin Gies, Valentin Barchasz, Hervé Barthélemy, Hervé Glotin:
Comparing Analog and Digital Processing for Ultra Low-Power Embedded Artificial Intelligence. IoTaIS 2022: 112-116 - 2021
- [c41]Felipe Artemio-Schoulten, A. A. Mariano, Remy Vauche, Sylvain Bourdel, Jean Gaubert, Nicolas Dehaese, Hervé Barthélemy:
Low Power Ultra-Wide Band Pulse Generator based on a Duty-Cycled 2-ASK Emitter. NEWCAS 2021: 1-4 - [c40]Manon Fourniol, Valentin Gies, Valentin Barchasz, Edith Kussener, Rémy Vauché, Hervé Barthélemy, Hervé Glotin:
Ultra Low-Power 2.5µW CMOS Implementation of a Mixed Analog-Digital Wake-Up System Based on Frequency Analysis. NEWCAS 2021: 1-4 - 2020
- [j5]Dobrina Boltcheva, Justine Basselin, Clément Poull, Hervé Barthélemy, Dmitry Sokolov:
Topological-based roof modeling from 3D point clouds. J. WSCG 28(1-2): 137-146 (2020) - [c39]Rym Assila Belhadj Mefteh, Remy Vauche, Nicolas Dehaese, Jean Gaubert, Hervé Barthélemy:
Design of a Battery-powered Emitter dedicated to the Characterization of Human Body Communications. DTIS 2020: 1-5 - [c38]Remy Vauche, Zineb Benjelloun, Rym Assila Belhadj Mefteh, Wenceslas Rahajandraibe, Rachid Bouchakour, Hervé Barthélemy:
Design and Analysis of a Gilbert Analog Multiplier for Input Dynamic Range optimization. DTIS 2020: 1-6 - [c37]Sebastián Marzetti, Valentin Gies, Valentin Barchasz, Hervé Barthélemy, Hervé Glotin, Edith Kussener, Remy Vauche:
Embedded Learning for Smart Functional Electrical Stimulation. I2MTC 2020: 1-6 - [c36]Felipe Artemio-Schoulten, Rémy Vauché, Sylvain Bourdel, Eloi Muhr, Jean Gaubert, Nicolas Dehaese, Hervé Barthélemy, Frédéric Hameau:
Pulse Design Method for Complexity Reduction of IEEE IR-UWB Pulse Synthesizers. ICECS 2020: 1-4 - [c35]Valentin Gies, Sebastián Marzetti, Valentin Barchasz, Hervé Barthélemy, Hervé Glotin:
Ultra-low Power Embedded Unsupervised Learning Smart Sensor for Industrial Fault Classificatio. IoTaIS 2020: 181-187 - [c34]Sebastián Marzetti, Valentin Gies, Valentin Barchasz, Paul Best, Sébastien Paris, Hervé Barthélemy, Hervé Glotin:
Ultra-Low Power Wake-Up for Long-Term Biodiversity Monitorin. IoTaIS 2020: 188-193
2010 – 2019
- 2018
- [c33]Remy Vauche, H. Bounaceur, S. Zerenini, Nicolas Dehaese, Jean Gaubert, Hervé Barthélemy, Valentin Gies:
Implementation of the Standardized Human Body Communications - A Feasibility Study. ICECS 2018: 643-644 - [c32]Manon Fourniol, Valentin Gies, Valentin Barchasz, Edith Kussener, Hervé Barthélemy, Remy Vauche, Hervé Glotin:
Analog Ultra Low-Power Acoustic Wake-Up System Based on Frequency Detection. IOTAIS 2018: 109-115 - [c31]Manon Fourniol, Valentin Gies, Valentin Barchasz, Edith Kussener, Hervé Barthélemy, Remy Vauche, Hervé Glotin:
Low-Power Wake-Up System based on Frequency Analysis for Environmental Internet of Things. MESA 2018: 1-6 - 2017
- [j4]Rémy Vauché, Eloi Muhr, Olivier Fourquin, Sylvain Bourdel, Jean Gaubert, Nicolas Dehaese, Stéphane Meillére, Hervé Barthélemy, Laurent Ouvry:
A 100 MHz PRF IR-UWB CMOS Transceiver With Pulse Shaping Capabilities and Peak Voltage Detector. IEEE Trans. Circuits Syst. I Regul. Pap. 64-I(6): 1612-1625 (2017) - [c30]Hervé Barthélemy, Rémy Vauché, Valentin Gies, Jean Gaubert, Sylvain Bourdel:
Transimpedance instrumentation amplifier based on current inversion. NEWCAS 2017: 145-148 - 2016
- [c29]Remy Vauche, Sylvain Bourdel, Eloi Muhr, Jean Gaubert, Nicolas Dehaese, Frédéric Hameau, Hervé Barthélemy:
Design of pulse synthesizers for the convergence of IR-UWB solutions. NEWCAS 2016: 1-4 - 2015
- [c28]Imen Ghorbel, Fayrouz Haddad, Hervé Barthélemy, Wenceslas Rahajandraibe, Mourad Loulou, Hassène Mnif:
Design and implementation of an inductorless digitally controlled oscillator based on CMOS inverters. ICECS 2015: 559-562 - [c27]Rémy Vauché, Sylvain Bourdel, Jean Gaubert, Nicolas Dehaese, Hervé Barthélemy:
Emitters and Receivers for Impulse Radio Ultra-Wideband and Their Healthcare Applications. ICUWB 2015: 1-5 - [c26]Hervé Barthélemy, Remy Vauche, Sylvain Bourdel:
Digitally controlled transconductor based on a quantum transconductance. NEWCAS 2015: 1-4 - [c25]Remy Vauche, Eloi Muhr, Ndiogou Tall, Abderrahmane Haloua, Sylvain Bourdel, Jean Gaubert, Nicolas Dehaese, Hervé Barthélemy:
Ultra-wideband voltage controlled oscillator with commutable phases for BPSK implementation. NEWCAS 2015: 1-4 - 2014
- [j3]Jamel Nebhen, Stéphane Meillére, Mohamed Masmoudi, Jean-Luc Seguin, Hervé Barthélemy, Khalifa Aguir:
A Temperature Compensated CMOS Ring Oscillator for Wireless Sensing Applications. J. Signal Process. Syst. 75(1): 47-54 (2014) - [c24]Eric Savary, Wenceslas Rahajandraibe, Stéphane Meillére, Edith Kussener, Hervé Barthélemy, Jaroslaw Czarny, Hélène Lhermet, P. Robert:
High resolution NEMS smart audio sensor based on resistive silicon nano wires for hearing aids. ICECS 2014: 558-561 - [c23]Hervé Barthélemy, Stéphane Meillére, Jean Gaubert, Edith Kussener:
Transconductance CMOS inverter based AC coupling amplifier. NEWCAS 2014: 9-12 - 2013
- [c22]Jamel Nebhen, Eric Savary, Wenceslas Rahajandraibe, Christian Dufaza, Stéphane Meillére, Fayrouz Haddad, Edith Kussener, Hervé Barthélemy, Jaroslaw Czarny, Andrea Walther:
Low-noise CMOS analog-to-digital interface for MEMS resistive microphone. ICECS 2013: 445-448 - [c21]Fayrouz Haddad, Wenceslas Rahajandraibe, Hassen Aziza, Karine Castellani-Coulié, Jean-Michel Portal, Jamel Nebhen, Hervé Barthélemy:
Low-cost auto-calibration of passive polyphase filter in image reject receiver. ICECS 2013: 699-702 - [c20]I. Benamor, Nicolas Dehaese, Jean Gaubert, Sylvain Bourdel, Oswaldo Ramos, Stéphane Meillére, Hervé Barthélemy:
Fast power switching low-noise amplifier for 6-10 GHz ultra-wideband applications. ICECS 2013: 759-762 - [c19]Hervé Barthélemy, Sylvain Bourdel, Edith Kussener, Remy Vauche:
2.5GHz digital BPSK modulator built with CMOS inverters. NEWCAS 2013: 1-4 - 2012
- [c18]Olivier Berder, Olivier Sentieys, Trong Nhan Le, R. Fontaine, Alain Pegatoquet, Cécile Belleudy, Michel Auguin, William Tatinian, Gilles Jacquemod, Florian Broekaert, Amine Didioui, Carolynn Bernier, Karim Ben Chehida, Sylvain Bourdel, Hervé Barthélemy, P. Ciais, Chris Barratt:
GRECO: GREen communicating objects. DASIP 2012: 1-2 - [c17]Jamel Nebhen, Stéphane Meillére, Mohamed Masmoudi, Jean-Luc Seguin, Hervé Barthélemy, Khalifa Aguir:
A 250 μW 0.194 nV/rtHz Chopper-Stabilized instrumentation amplifier for MEMS gas sensor. DTIS 2012: 1-5 - [c16]Hanen Thabet, Stéphane Meillére, Mohamed Masmoudi, Jean-Luc Seguin, Hervé Barthélemy, Khalifa Aguir:
Combiners based on CMOS inverters and application in RF transmitter for wireless sensors. DTIS 2012: 1-4 - [c15]Julio Alexander Aguilar Angulo, Edith Kussener, Hervé Barthélemy, Benjamin Duval:
A new oscillator-based Random Number Generator. NEWCAS 2012: 21-24 - [c14]Jamel Nebhen, Stéphane Meillére, Mohamed Masmoudi, Jean-Luc Seguin, Hervé Barthélemy, Khalifa Aguir:
A temperature compensated CMOS ring oscillator for wireless sensing applications. NEWCAS 2012: 37-40 - [c13]Abdelhalim Slimane, Mohand-Tahar Belaroussi, Fayrouz Haddad, Sylvain Bourdel, Hervé Barthélemy:
A reconfigurable inductor-less CMOS low noise amplifier for multi-standard applications. NEWCAS 2012: 57-60 - 2011
- [c12]Anass Samir, Edith Kussener, Wenceslas Rahajandraibe, Ludovic Girardeau, Yannick Bert, Hervé Barthélemy:
A 90-nm CMOS resistor-free compact trimmable voltage reference for ultra-low power low cost applications. ICECS 2011: 661-664 - 2010
- [c11]Hervé Barthélemy, Edith Kussener, Sylvain Bourdel, Wenceslas Rahajandraibe:
Frequency down-conversion with complementary-MOS inverters. ICECS 2010: 49-52 - [c10]Edith Kussener, Francois Rudolff, Fabrice Guigues, Hervé Barthélemy, Wei Liu, John Hu, Mohammed Ismail:
50 nA, 1 V nanowatt resistor-free compact CMOS current references. ICECS 2010: 1212-1215
2000 – 2009
- 2008
- [j2]Marc Battista, Jean Gaubert, Matthieu Egels, Sylvain Bourdel, Hervé Barthélemy:
High-Voltage-Gain CMOS LNA For 6-8.5-GHz UWB Receivers. IEEE Trans. Circuits Syst. II Express Briefs 55-II(8): 713-717 (2008) - 2007
- [c9]Hervé Barthélemy, Sylvain Bourdel, Jean Gaubert, Stéphane Meillére:
OOK/NCP-FSK Modulator based on Coupled Open-Closed-Loop VCOs. ECCTD 2007: 380-383 - [c8]Hervé Barthélemy, Sylvain Bourdel, Jean Gaubert, Marc Battista:
CMOS inverters based high frequency voltage controlled sinusoidal oscillator. ICECS 2007: 490-493 - [c7]Joseph Romen Cubillo, Jean Gaubert, Sylvain Bourdel, Hervé Barthélemy:
Characterization test plan for a PCB to DIE transition in a fcCBGA application. ICECS 2007: 609-612 - [c6]Joseph Romen Cubillo, Jean Gaubert, Sylvain Bourdel, Hervé Barthélemy, Marc Battista, Matthieu Egels:
Ultra Wide Band Band Pass filter embedding a MLF low cost package with wire bound attach process. ICECS 2007: 939-942 - [c5]Fabrice Guigues, Edith Kussener, Benjamin Duval, Hervé Barthélemy:
Moderate Inversion: Highlights for Low Voltage Design. PATMOS 2007: 413-422 - 2005
- [c4]Hervé Barthélemy, Matthieu Fillaud:
Simple CMOS 1/jLω to inductive transconductance amplifier. ECCTD 2005: 329-332 - [c3]Nicolas Dehaese, Sylvain Bourdel, Hervé Barthélemy, Yannick Bachelet, Gilles Bas:
FSK zero-crossing demodulator for 802.15.4 low-cost receivers. ICECS 2005: 1-4 - 2004
- [j1]Sylvain Bourdel, Philippe Pannier, Hervé Barthélemy, Nicolas Dehaese:
Architectures de systèmes monopuces en radio fréquence: solutions pour une faible consommation. Ann. des Télécommunications 59(7-8): 867-883 (2004) - [c2]Hervé Barthélemy, Stéphane Meillére, Sylvain Bourdel:
Single ended rail-to-rail CMOS OTA based variable-frequency ring-oscillator. ISCAS (4) 2004: 537-540 - 2002
- [c1]Edith Kussener, Hervé Barthélemy, Alexandre Malherbe, Andreas Kaiser:
Versatile macromodel for the power supply of submicronic CMOS microprocessors based on voltage down DC-DC converter. ISCAS (5) 2002: 821-824 - 2001
- [b1]Hervé Barthélemy:
Analyse et approfondissement des méthodes de radiosité et d'illumination globale pour le contrôle et la visualisation de simulations numériques de rendu réaliste. (Analyze and deepening of global illumination and radiosity methods for the control and the visualization of realistic numerical simulations). National Polytechnic Institute of Lorraine, Nancy, France, 2001
Coauthor Index
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last updated on 2024-08-01 21:13 CEST by the dblp team
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