Hadi Heidari

Hadi HeidariDr Hadi Heidari is a Lecturer (Assistant Professor) in the School of Engineering and lead of the Microelectronics Lab (meLAB) at the University of Glasgow. He received his PhD in Microelectronics from the University of Pavia (Italy) in 2015, where heworked on Integrated CMOS Magnetic Sensory Microsystems. He spent Postdoctoral at the University of Glasgow before he joined the Glasgow College UESTC in 2016. Dr. Heidari is member of the IEEE Circuits and Systems Society Board of Governors (BoG), IEEE Sensors Council Administrative Committee (AdCom), IEEE Sensors Council Young Professional Representative and Senior Member of IEEE. He is on the Editorial Board of Microelectronics Journal, Guest Editor for the IEEE Sensors Journal, and Guest Associate Editor for the IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology and IEEE Access. He serves on the organising committee of several conferences including the UK-China Emerging Technologies (UCET) Conference, IEEE SENSORS'16 and '17, NGCAS'17, BioCAS'18, PRIME'15 and '19, and the organiser of several special sessions on the IEEE Conferences. His research has been funded by major research councils and funding organizations including the European Commission, EPSRC, Royal Society and Scottish Funding Council. He is part of the 8.4M EU H2020 FET Proactive project on "Hybrid Enhanced Regenerative Medicine Systems (HERMES)". Dr. Heidari has authored/co-authored over 80 peer-reviewed publications in international journals or conference proceedings and acts as a reviewer for several journals and conferences. He has been the recipient of a number of awards including the IEEE CASS Scholarship (NGCAS'17 conference), Silk Road Award from the Solid-State Circuits Conference (ISSCC'16), Best Paper Award from the IEEE ISCAS'14 conference, Gold Leaf Award from the IEEE PRIME'14 Conference and Rewards for Excellence prize from UofG (2018). He was a research visitor with the University of Macau, China, and McGill University, Canada. Read More Read Less

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Wireless Power Technologies for Biomedical Devices37 %
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Circuits and Systems for Biomedical Applications5 % NR
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Magnetic Sensors for Biomedical Applications30 % NR
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