About Nazek El-Atab Nazek El-Atab Associate Professor, Electrical and Computer Engineering In-memory computing in-memory sensing Professor El-Atab's research focuses on enhancing an increasingly digitized world by utilizing multifunctional memory devices for emerging applications such as artificial intelligence, the Internet of Things (IoT) and augmented reality. Events Presented Events Apr 5 - Apr 11, 2026 Device-Level Intelligence for Adaptive Sensing and Bio-Integrated Systems Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Apr 5, 14:00 - 15:30 B9 R2322; Zoom Meeting 98963676259 in-memory sensing In-memory computing neuromorphic devices Advanced Sensing electronics Inspired by biological sensory systems, this talk presents our efforts toward neuromorphic sensing, where these functions are integrated within the same device using multifunctional memory technologies. Nov 5 - Nov 11, 2023 Smart Multifunctional Electronic Devices for IoT and Healthcare Applications Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Nov 5, 12:00 - 13:00 B9 L2 H2 CMOS electronics Multifunctional Electronic Devices This talk addresses these questions through two main projects: 1) Smart and multifunctional memory devices (MEMSOR) that can sense and compute, and 2) Wearable Octopus-skin-inspired 3D-printed biopatches for electrophysiological signal measurement. Nov 13 - Nov 19, 2022 Multifunctional Electronic Devices: Towards Sustainable Electronics Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Nov 13, 12:00 - 13:00 B9 L2 R2322 H1 Multifunctional Electronic Devices In this talk, I will discuss multi-functional smart electronic devices which can perform the roles of multiple conventionally discrete components at once. Oct 24 - Oct 30, 2021 Topologically Transformed Electronics for Internet-of-Things Applications Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Oct 24, 12:00 - 13:00 KAUST Topologically Transformed electronics We live in the age of information where electronics play a critical role in our daily life. Moore’s Law: performance over cost has inspired innovation in complementary metal oxide semiconductor (CMOS) technology and enabled high performance, ultra-scaled CMOS electronics. Apr 19 - Apr 25, 2020 Nanomaterials and Nanostructure Based Energy Efficient In-Memory Sensing Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Apr 20, 12:00 - 13:00 KAUST nanomaterials Nanostructure energy efficiency In this talk, I will present the potential of nano-islands grown by the atomic layer deposition (ALD) in addition to novel material combinations in scaled memory devices. Moreover, in order to relax the scalability requirement, I will introduce an integrated potential single device solution by infusing memory device which can monitor and remember our actions and the surrounding environment. Such a device performs the roles of both a MEMory and a senSOR at once and is referred to as a MEMSOR. The MEMSOR is directly programmed by external physical stimuli rather than an applied electric potential as in conventional devices. As a result, the MEMSOR leads to faster data analysis, lower footprint area, energy consumption, and ideally, the cost of the system. Finally, the MEMSOR device will be based on a MOSFET architecture with a mature manufacturing process, and thus it can be integrated with conventional Flash devices on the same silicon wafer with minimal additional process steps. Feb 2 - Feb 8, 2020 Nanomaterials and Nanostructure Based Energy Efficient Edge and Fluidic Computing for Internet of Things Applications Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Feb 2, 12:00 - 13:00 B9 L2 H1 nanomaterials Nanostructure Based Energy Efficient Edge Fluidic Computing KAUST IoT In this talk, I will address these questions with a focus on smart and multifunctional nanomaterial-based memory devices than can sense different physical qualities of the environment (Memsors) in addition to pressure-driven microfluidic logic gates which can process and analyze non-electronic media in an attempt to explore, enable and empower a wider range of IoT applications.
Device-Level Intelligence for Adaptive Sensing and Bio-Integrated Systems Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Apr 5, 14:00 - 15:30 B9 R2322; Zoom Meeting 98963676259 in-memory sensing In-memory computing neuromorphic devices Advanced Sensing electronics Inspired by biological sensory systems, this talk presents our efforts toward neuromorphic sensing, where these functions are integrated within the same device using multifunctional memory technologies.
Smart Multifunctional Electronic Devices for IoT and Healthcare Applications Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Nov 5, 12:00 - 13:00 B9 L2 H2 CMOS electronics Multifunctional Electronic Devices This talk addresses these questions through two main projects: 1) Smart and multifunctional memory devices (MEMSOR) that can sense and compute, and 2) Wearable Octopus-skin-inspired 3D-printed biopatches for electrophysiological signal measurement.
Multifunctional Electronic Devices: Towards Sustainable Electronics Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Nov 13, 12:00 - 13:00 B9 L2 R2322 H1 Multifunctional Electronic Devices In this talk, I will discuss multi-functional smart electronic devices which can perform the roles of multiple conventionally discrete components at once.
Topologically Transformed Electronics for Internet-of-Things Applications Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Oct 24, 12:00 - 13:00 KAUST Topologically Transformed electronics We live in the age of information where electronics play a critical role in our daily life. Moore’s Law: performance over cost has inspired innovation in complementary metal oxide semiconductor (CMOS) technology and enabled high performance, ultra-scaled CMOS electronics.
Nanomaterials and Nanostructure Based Energy Efficient In-Memory Sensing Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Apr 20, 12:00 - 13:00 KAUST nanomaterials Nanostructure energy efficiency In this talk, I will present the potential of nano-islands grown by the atomic layer deposition (ALD) in addition to novel material combinations in scaled memory devices. Moreover, in order to relax the scalability requirement, I will introduce an integrated potential single device solution by infusing memory device which can monitor and remember our actions and the surrounding environment. Such a device performs the roles of both a MEMory and a senSOR at once and is referred to as a MEMSOR. The MEMSOR is directly programmed by external physical stimuli rather than an applied electric potential as in conventional devices. As a result, the MEMSOR leads to faster data analysis, lower footprint area, energy consumption, and ideally, the cost of the system. Finally, the MEMSOR device will be based on a MOSFET architecture with a mature manufacturing process, and thus it can be integrated with conventional Flash devices on the same silicon wafer with minimal additional process steps.
Nanomaterials and Nanostructure Based Energy Efficient Edge and Fluidic Computing for Internet of Things Applications Nazek El-Atab, Associate Professor, Electrical and Computer Engineering Feb 2, 12:00 - 13:00 B9 L2 H1 nanomaterials Nanostructure Based Energy Efficient Edge Fluidic Computing KAUST IoT In this talk, I will address these questions with a focus on smart and multifunctional nanomaterial-based memory devices than can sense different physical qualities of the environment (Memsors) in addition to pressure-driven microfluidic logic gates which can process and analyze non-electronic media in an attempt to explore, enable and empower a wider range of IoT applications.
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