<  Retour au portail Polytechnique Montréal

Documents dont l'auteur est "Burasa, Pascal"

Monter d'un niveau
Pour citer ou exporter [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0
Grouper par: Auteurs ou autrices | Date de publication | Sous-type de document | Aucun groupement
Nombre de documents: 30

Article de revue

Deng, J., Burasa, P., & Wu, K. (2024). All-in-One Dual-Polarization Waveguide Receiver for Multichannel Wireless Systems. IEEE Transactions on Microwave Theory and Techniques, 2024.33553 (16 pages). Lien externe

Deng, J., Burasa, P., & Wu, K. (2023). Compact 140-220 GHz E/H Waveguide Phase Shifter and Its Application to Terahertz Multiport Circuits. IEEE Transactions on Terahertz Science and Technology, 13(5), 511-525. Lien externe

Askarian, A., Burasa, P., Yao, J., Lu, Z., & Wu, K. (2023). Dual-wideband radiating surface using interleaved electric and magnetic currents: Underlying physics and experimental verification. Journal of Applied Physics, 134(17), 19 pges-19 pges. Lien externe

Deng, J., Burasa, P., & Wu, K. (2023). Self-Contained Dual-Input Interferometric Receiver for Paralleled-Multichannel Wireless Systems. IEEE Transactions on Circuits and Systems I: Regular Papers, 14 pages. Lien externe

Keivaan, S. A., Burasa, P., & Wu, K. (2023). Virtual Receiver Matrix and Combinatory Analog Operations for Future Multifunction Reconfigurable Sensing and Communication Wireless Systems. IEEE Transactions on Microwave Theory and Techniques, 71(1), 424-433. Lien externe

Deng, J., Burasa, P., & Wu, K. (2022). Waveguide Coupler With Polarized Rotation Characteristics for Terahertz Applications. IEEE Transactions on Microwave Theory and Techniques, 71(5), 2091-2103. Lien externe

Burasa, P., Djerafi, T., & Wu, K. (2021). A 28 GHz and 60 GHz dual-band on-chip antenna for 5G-compatible IoT-served sensors in standard CMOS process. IEEE Transactions on Antennas and Propagation, 69(5), 2940-2945. Lien externe

Gu, X., Burasa, P., Hemour, S., & Wu, K. (2021). Recycling Ambient RF Energy: Far-Field Wireless Power Transfer and Harmonic Backscattering. IEEE Microwave Magazine, 22(9), 60-78. Lien externe

Nallandhigal, S. N., Burasa, P., & Wu, K. (2020). Deep Integration and Topological Cohabitation of Active Circuits and Antennas for Power Amplification and Radiation in Standard CMOS. IEEE Transactions on Microwave Theory and Techniques, 68(10), 4405-4423. Lien externe

Burasa, P., Mnasri, B., & Wu, K. (2019). Millimeter-Wave CMOS Sourceless Receiver Architecture for 5G-Served Ultra-Low-Power Sensing and Communication Systems. IEEE Transactions on Microwave Theory and Techniques, 67(5), 1688-1696. Lien externe

Zhang, K., Burasa, P., & Audet, Y. (2017). A novel CMOS spectrometer based on wavelength absorption. Sensors and Actuators A: Physical, 268, 9-15. Lien externe

Burasa, P., Djerafi, T., Constantin, N. G., & Wu, K. (2017). On-chip dual-band rectangular slot antenna for single-chip millimeter-wave identification tag in standard CMOS technology. IEEE Transactions on Antennas and Propagation, 65(8), 3858-3868. Lien externe

Burasa, P., Constantin, N. G., & Wu, K. (2014). High-efficiency wideband rectifier for single-chip batteryless active millimeter-wave identification (MMID) tag in 65-nm bulk CMOS technology. IEEE Transactions on Microwave Theory and Techniques, 62(4), 1005-1011. Lien externe

Communication écrite

Bigdeli, Y., Keivaan, S. A., Burasa, P., & Wu, K. (décembre 2023). Towards the Development of Large-Scale Multifunction Array Transceiver Systems [Communication écrite]. 31st Asia-Pacific Microwave Conference (APMC 2023), Taipei, Taiwan. Lien externe

Keivaan, S. A., Burasa, P., & Wu, K. Virtual Receiver Matrix for Multifunction Communication and Sensing Wireless Systems Using Simultaneous Incident Waves at the Same Carrier Frequency [Communication écrite]. 2023 IEEE/MTT-S International Microwave Symposium (IMS 2023), San Diego, CA, USA. Lien externe

Keivaan, S. A., Burasa, P., & Wu, K. Virtual Transceiver Matrix for Future Programmable Wireless Sensing and Communication Frontends [Communication écrite]. 2023 IEEE MTT-S International Conference on Numerical Electromagnetic and Multiphysics Modeling and Optimization (NEMO 2023), Winnipeg, MB, Canada. Lien externe

Bigdeli, Y., Burasa, P., & Wu, K. (septembre 2022). Compact Harmonic Transmitter and Receiver Architectures for Multifunction Wireless Systems [Communication écrite]. 52nd European Microwave Conference (EuMC 2022), Milan, Italy. Lien externe

Deng, J., Burasa, P., & Wu, K. (septembre 2022). Full-Band E- Plane Waveguide Phase Shifters with Self-Compensating Characteristics for THz Circuits and Systems [Communication écrite]. 52nd European Microwave Conference (EuMC 2022), Milan, Italy. Lien externe

Keivaan, S. A., Burasa, P., & Wu, K. (septembre 2022). Interferometric Receiver Architecture for Multifunction Wireless Systems [Communication écrite]. 52nd European Microwave Conference (EuMC 2002), Milan, Italy. Lien externe

Bigdeli, Y., Burasa, P., & Wu, K. (juin 2022). Quadrature Harmonic Self-Oscillating Mixer for Multifunction Wireless Communication and Sensing Systems [Communication écrite]. IEEE/MTT-S International Microwave Symposium (IMS 2022), Denver, CO, USA. Lien externe

Keivaan, S. A., Burasa, P., & Wu, K. (juin 2022). Virtual Receiver Matrix for Future Multifunction Wireless Systems [Communication écrite]. IEEE/MTT-S International Microwave Symposium (IMS 2022), Denver, CO, USA. Lien externe

Deng, J., Burasa, P., & Wu, K. (août 2022). Waveguide Coupler with Self-Contained 90 Polarization Rotation for Integrated THz Waveguide Circuits and Systems [Communication écrite]. IEEE MTT-S International Wireless Symposium (IWS 2022), Harbin, China (3 pages). Lien externe

Burasa, P., & Wu, K. (août 2021). Towards Future Deeply Integrated Multifunction Millimeter-Wave and Terahertz Systems-On-Chip [Communication écrite]. IEEE International Symposium on Radio-Frequency Integration Technology (RFIT 2021), Hualien, Taiwan (3 pages). Lien externe

Nallandhigal, S. N., Burasa, P., & Wu, K. (juillet 2020). Deep Integration of Power Amplifier-on-Antenna in Standard CMOS [Communication écrite]. IEEE International Symposium on Antennas and Propagation and North American Radio Science Meeting (IEEECONF 2020), Montréal, Québec. Lien externe

Mnasri, B., Burasa, P., Tatu, S., & Wu, K. (août 2018). Interferometer based Direction-of-arrival Detection System [Communication écrite]. 18th International Symposium on Antenna Technology and Applied Electromagnetics (ANTEM 2018), Waterloo, ON, Canada (3 pages). Lien externe

Burasa, P., Mnasri, B., & Wu, K. (juin 2018). A sourceless low-power mmW receiver architecture using self-oscillating mixer array in 65-nm CMOS [Communication écrite]. IEEE Wireless Power Transfer Conference (WPTC 2018), Montréal, Qc, Canada (3 pages). Lien externe

Burasa, P., & Wu, K. (août 2017). Noise analysis of differential wideband millimeter-wave power harvester implemented in 65-nm bulk CMOS process [Communication écrite]. 32nd General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS 2017), Montréal, Québec (3 pages). Lien externe

Burasa, P., Constantin, N., & Wu, K. (mai 2015). Low-power injection-locked zero-IF self-oscillating mixer for self-powered millimeter-wave identification (MMID) active tag in 65-nm CMOS [Communication écrite]. IEEE Radio Frequency Integrated Circuits Symposium (RFIC 2015), Phoenix, AZ, United states. Lien externe

Mémoire de maîtrise

Burasa, P. (2008). Caractérisation d'une matrice de pixels conçue pour capteurs d'images couleurs sans filtre optique [Mémoire de maîtrise, École Polytechnique de Montréal]. Disponible

Thèse de doctorat

Burasa, P. (2016). High Data-Rate, Battery-Free, Active Millimeter-Wave Identification Technologies for Future Integrated Sensing, Tracking, and Communication Systems-On-Chip [Thèse de doctorat, École Polytechnique de Montréal]. Disponible

Liste produite: Wed Apr 24 03:42:37 2024 EDT.