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Documents dont le centre de recherche est "Polystim - Laboratoire de neurotechnologie"

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Nombre de documents: 12

Chebli, R., & Sawan, M. (juillet 2004). A CMOS high-voltage DC-DC up converter dedicated for ultrasonic applications [Communication écrite]. 4th IEEE International Workshop on System-on-Chip for Real-Time Applications, Banff, Alta., Canada. Lien externe

Chouia, Y., El-Sankary, K., Saleh, A., Sawan, M., & Ghannouchi, F. M. (juillet 2004). 14b, 50MS/s CMOS front-end Sample and hold module dedicated to a pipelined ADC [Communication écrite]. 47th Midwest Symposium on Circuits and Systems (MWSCAS 2004), Hiroshima. Lien externe

Chouia, Y., El-Sankary, K., Saleh, A., Sawan, M., & Ghannouchi, F. M. (décembre 2004). A new technique for designing high performance front-end sample and hold circuits [Communication écrite]. 16th International Conference on Microelectronics (ICM 2004), Tunisie. Lien externe

Djemouai, A., & Sawan, M. (mai 2004). New CMOS current-mode amplitude shift keying demodulator (ASKD) dedicated for implantable electronic devices [Communication écrite]. IEEE International Symposium on Circuits and Systems (ISCAS 2004), Vancouver, BC, Canada. Lien externe

El-Sankary, K., & Sawan, M. (2004). A digital blind background capacitor mismatch calibration technique for pipelined ADC. IEEE Transactions on Circuits and Systems II: Analog and Digital Signal Processing, 51(10), 507-510. Lien externe

El-Sankary, K., & Sawan, M. (mai 2004). A new digital background calibration technique for pipelined ADC [Communication écrite]. IEEE International Symposium on Circuits and Systems (ISCAS 2004), Vancouver, BC, Canada. Lien externe

El-Sankary, K., Assi, A., & Sawan, M. (2004). New Sampling Method to Improve the Sfdr of Wide Bandwidth Adc Dedicated to Next Generation Wireless Transceiver. Journal of Circuits, Systems and Computers, 13(6), 1183-1201. Lien externe

Gosselin, B., Simard, V., & Sawan, M. (mai 2004). Low-power implantable microsystem intended to multichannel cortical recording [Communication écrite]. IEEE International Symposium on Circuits and Systems (ISCAS 2004), Vancouver, BC, Canada. Lien externe

Gosselin, B., Simard, V., & Sawan, M. (mai 2004). An ultra low-power chopper stabilized front-end for multichannel cortical signals recording [Communication écrite]. Canadian Conference on Electrical and Computer Engineering (CCECE 2004), Niagara Falls, Ont., Canada. Lien externe

Hashemi, S., Sawan, M., & Savaria, Y. (juin 2004). Characterization of Stress Induced Defects in Deep Sub-Micron MOSFETS [Communication écrite]. 2nd Annual IEEE Northeast Workshop on Circuits and Systems (NEWCAS 2004), Montréal, Québec. Lien externe

Normandin, F., Sawan, M., & Faubert, J. (décembre 2004). Front-end of a non-invasive wireless real-time brain imaging system based on near-infrared spectroreflectometry [Communication écrite]. IEEE International Workshop on Biomedical Circuits and Systems (BioCAS 2004), Singapore. Lien externe

Trépanier, A., Trépanier, J.-L., Sawan, M., & Audet, Y. (juillet 2004). A multiple operation mode CMOS digital pixel sensor dedicated to a visual cortical implant [Communication écrite]. 47th Midwest Symposium on Circuits and Systems (MWSCAS 2004), Hiroshima, Japan. Lien externe

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