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Electronic Devices, Circuits, and Systems

Electronic Devices, Circuits, and Systems

The EECS department carries out innovative fundamental and applied research in materials, devices, circuits, photonics, and system on chip semiconductor systems.

Our mission is to create knowledge and educate highly skilled engineers and entrepreneurs to encourage, promote and enable job creation in semiconductor related sectors and build a strategic national capacity in semiconductors and nanotechnology.

Our work encapsulates a wide range of research and development capabilities including: Nanotechnology, Design and Fabrication of Semiconductor Devices and Circuits, Metrology and Characterization, Lasers, Electrooptics, Semiconductor materials, Sensors, Microelectromechanical devices, to name a few.

Research Faculty

Dr. Abdel Isakovic

Associate Professor

Dr. Ahmed Al Sheikh

Assistant Professor

Dr. Amjad Gawanmeh

Assistant Professor

Dr. Ammar Nayfeh

Associate Professor

Dr. Baker Mohammed

Associate Professor

Dr. Bashar Zahawi

Professor

 Dr. Hani Saleh

Associate Professor

Dr. Ibrahim Elfadel

Professor

Dr. Igor Boiko

Professor

Dr. Irfan Saadat

Professor

Dr. Jaime Viegas

Associate Professor

Dr. Kahtan Mezher

Associate Professor

Dr. Mahmoud Meribout

Associate Professor

Dr. Mahmoud Al-Qutayri

Professor

Dr. Marcus Dahlem

Associate Professor

Dr. Mihai Sanduleanu

Associate Professor

Dr. Moh’d Rezeq

Associate Professor

Dr. Nazar Ali

Associate Professor

Dr. Shakti Singh

Assistant Professor

Dr. Shihab Jimaa

Associate Professor

Dr. Thanos Stouraitis

Professor and Chair

  • System on Chip
  • Microtechnology and Nanotechnology
  • Lasers and Electrooptics
  • Enhanced Materials Systems
  • Integrated Circuit Technologies
  • Wideband Gap Semiconductor Technology
  • Biomedical Algorithms
  • RF and mm-wave Chip Design
  • Mixed signal
  • Embedded Systems
  • Energy harvesting and Power management
  • Sensors and networks
  • Y. Halawani, B. Mohammad, D. Homouz, M. Al-Qutayri, and H. Saleh, “Modeling and optimization of memristor and STT-RAM-based memory for low-power applications,” IEEE Transactions on Very Large Scale Integration (VLSI) Systems, vol. 24, no. 3, pp. 1003-1014, 2016.
  • N. Bayasi, T. Tekeste, H. Saleh, B. Mohammad, A. Khandoker, and M. Ismail, “Low-Power ECG-Based Processor for Predicting Ventricular Arrhythmia,” IEEE Transactions on Very Large Scale Integration (VLSI) Systems, vol. 24, no. 5, pp. 1962-1974, 2016 .
  • M. Rezeq, A. Ali, and H. Barada, “Modeling of nanotips fabricated by local electron bombardment,” IEEE Transactions on Nanotechnology, vol. 15, no. 3, pp. 367-372, 2016
  • F. Adly, O. Alhussein, P. D. Yoo, Y. Al-Hammadi, K. Taha, S. Muhaidat, Y. -S. Jeong, U. Lee, and M. Ismail, “Simplified subspaced regression network for identification of defect patterns in semiconductor wafer maps,” IEEE Transactions on Industrial Informatics, vol. 11, no. 6, pp. 1267-1276, 2015.
  • B. S. Mohammad, H. Saleh, and M. Ismail, “Design Methodologies for Yield Enhancement and Power Efficiency in SRAM-Based SoCs,” IEEE Transactions on Very Large Scale Integration (VLSI) Systems, vol. 23, no. 10, pp. 2054-2064, 2015.
  • B. Mohammad, “Embedded memory interface logic and interconnect testing,” IEEE Transactions on Very Large Scale Integration (VLSI) Systems, vol. 23, no. 9, pp. 1946-1950, 2015.
  • F. Adly, P. D. Yoo, S. Muhaidat, Y. Al-Hammadi, U. Lee, and M. Ismail, “Randomized general regression network for identification of defect patterns in semiconductor wafer maps,” IEEE Transactions on Semiconductor Manufacturing, vol. 28, no. 2, pp. 145-152, 2015.
  • S. Bou-Sleiman, and M. Ismail, “Dynamic self-regulated charge pump with improved immunity to PVT variations,” IEEE Transactions on Very Large Scale Integration (VLSI) Systems, vol. 22, no. 8, pp. 1716-1726, 2014.

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