Can analogue processing solve the growing power crisis facing ultra-fast wireless communication and future 6G infrastructure.
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Youssef O. Hassan (Member, IEEE) received the B.Sc. degree (Hons.) in electronics and electrical communications engineering from Cairo University, Giza, Egypt, in 2019, and the M.S. and Ph.D. degrees in electrical and computer engineering from the University of California, Irvine (UCI), Irvine, CA, USA, in 2023 and 2025, respectively. From 2017 to 2018, he conducted research with the Opto-Nano-Electronics (ONE) Research Labo ratory, Cairo University, where he focused on the modeling and hardware implementation of biologi cally inspired neuron circuits. From 2019 to 2020, he was an Analog Physical Design Engineer with Goodix Technology Inc., Cairo, Egypt, contributing to the physical implementation of high-frequency integrated circuits. He completed summer internships at Movandi Corporation, Irvine, in 2022, and at Qualcomm Technologies, Inc., San Diego, CA, USA, in 2023 and 2024, where he worked on mm-wave and RF front-end circuit design for advanced 5G receiver architectures. He is currently a Senior Design Engineer with Qualcomm Technologies, Inc., with a focus on the design and optimization of highly integrated RF front-end blocks for cellular and wireless communication systems. Dr. Hassan was a recipient of the 2019 Microelectronics Olympiad of Armenia Participation Award and the First Silicon Excellence Award from Goodix Technology Inc. He has reviewed more than 20 manuscripts for IEEE journals and conferences, including submissions to IEEE JOURNAL OF SOLID-STATE CIRCUITS and IEEE SOLID-STATE CIRCUITS LETTERS
Can analogue processing solve the growing power crisis facing ultra-fast wireless communication and future 6G infrastructure.