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Documents dont l'auteur est "Amer, Mostafa"

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Nombre de documents: 14

A

Amer, M., Abuelnasr, A., Ali, M., Hassan, A., Trigui, A., Ragab, A., Sawan, M., & Savaria, Y. (2024). Enhanced dynamic regulation in Buck Converters: integrating input-voltage feedforward with voltage-mode feedback. IEEE Access, 12, 7310-7328. Disponible

Abuelnasr, A., Ragab, A., Amer, M., Gosselin, B., & Savaria, Y. (2024). Incremental reinforcement learning for multi-objective analog circuit design acceleration. Engineering Applications of Artificial Intelligence, 129, 107426 (18 pages). Lien externe

Abuelnasr, A., Amer, M., Ali, M., Hassan, A., Gosselin, B., Ragab, A. R. A., & Savaria, Y. (2023). Delay Mismatch Insensitive Dead Time Generator for High-Voltage Switched-Mode Power Amplifiers. IEEE Transactions on Circuits and Systems I: Regular Papers, 70(4), 1555-1565. Disponible

Amer, M., Abuelnasr, A., Hassan, A., Ragab, A., Sawan, M., & Savaria, Y. (2023). A Half-bridge Gate Driver with Self-adjusting and Tunable Dead-time Modes for Efficient Switched-mode Power Systems. IEEE Transactions on Power Electronics, 15 pages. Lien externe

Abuelnasr, A., Amer, M., Ragab, A., Gosselin, B., & Savaria, Y. (mai 2021). Causal information prediction for analog circuit design using variable selection methods based on machine learning [Communication écrite]. 53rd IEEE International Symposium on Circuits and Systems (ISCAS 2021), Daegu, Korea (5 pages). Lien externe

Amer, M., Abuelnasr, A., Ragab, A., Hassan, A., Ali, M., Gosselin, B., Sawan, M., & Savaria, Y. (mai 2021). Design and analysis of combined input-voltage feedforward and PI controllers for the buck converter [Communication écrite]. 53rd IEEE International Symposium on Circuits and Systems (ISCAS 2021), Daegu, Korea (5 pages). Lien externe

Amer, M., Ali, M., Abuelnasr, A., Hassan, A., Nabavi, M., Savaria, Y., & Sawan, M. (juin 2020). Fully integrated dual-channel gate driver and area efficient pid compensator for surge tolerant power sensor interface [Communication écrite]. 18th IEEE International New Circuits and Systems Conference (NEWCAS 2020), Montréal, Qc, Canada. Lien externe

Abuelnasr, A., Ali, M., Amer, M., Nabavi, M., Hassan, A., Gosselin, B., & Savaria, Y. (octobre 2020). Self-Adjusting Deadtime Generator for High-Efficiency High-Voltage Switched-Mode Power Amplifiers [Communication écrite]. IEEE International Symposium on Circuits and Systems (ISCAS 2020), Sevilla, Spain (5 pages). Lien externe

Amer, M., Hassan, A., Ragab, A., Yacout, S., Savaria, Y., & Sawan, M. (mai 2018). High-Temperature Empirical Modeling for the I-V Characteristics of GaN150-Based HEMT [Communication écrite]. IEEE International Symposium on Circuits and Systems (ISCAS 2018), Florence, Italy. Lien externe

E

El-Zarif, N., Amer, M., Ali, M., Hassan, A., Oukaira, A., Fayomi, C., & Savaria, Y. (2024). Calibration of ring oscillator-based integrated temperature sensors for power management systems. Sensors, 24(2), 440 (17 pages). Disponible

El-Zarif, N., Ali, M., Amer, M., Hassan, A., Oukaira, A., Lakhssassi, A., Fayomi, C. J. B., & Savaria, Y. (juin 2022). Investigation of Different Integrated Temperature Monitoring Sensors for High-Voltage SoC DC-DC Converters [Communication écrite]. 20th IEEE International Interregional NEWCAS Conference (NEWCAS 2022), Quebec City, QC, Canada. Lien externe

H

Hassan, A., Amer, M., Savaria, Y., & Sawan, M. (2020). Fully Integrated Digital GaN-based LSK Demodulator for High-Temperature Applications. IEEE Transactions on Circuits and Systems II: Express Briefs, 67(9), 1579-1583. Disponible

Hassan, A., Amer, M., Savaria, Y., & Sawan, M. (juin 2020). Towards GaN500-based high temperature ICs: Characterization and modeling up to 600°C [Communication écrite]. 18th IEEE International New Circuits and Systems Conference (NEWCAS 2020), Montréal, Qc, Canada. Lien externe

K

Karimi, M., Ali, M., Nabavi, M., Hassan, A., Amer, M., Sawan, M., & Gosselin, B. (octobre 2020). A versatile non-overlapping signal generator for efficient power-converters operation [Communication écrite]. 52nd IEEE International Symposium on Circuits and Systems (ISCAS 2020) (5 pages). Lien externe

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