About
Dr Rupam Das is a Lecturer at the Electronic Engineering, University of Exeter, Streatham, UK. He is part of the Nano Engineering Science and Technology (NEST) and the Centre for Metamaterial Research and Innovation (CMRI). Prior joining this position, he was a Marie Curie Fellow (EU H2020 MSCA-IF: Wireless, Scalable and Implantable Optogenetics for Neurological Disorders Cure (WiseCure) at the Microelectronics Lab (meLAB), University of Glasgow. This Fellowship focused on developing the wireless optogenetic systems based on metamaterials to treat brain diseases. He also worked as a Research Associate in multi-million EU H2020 FET-Proactive "HERMES" project in Glasgow, where he was developing the flexible neural implant to treat epilepsy. Before moving to the UK, he was a BK'21 Postdoctoral Fellow at the University of Ulsan and Hanyang University at the Applied Bioelectronics Lab (ABLab). Rupam is an IEEE senior member and served as a guest editor in Royal Society of Philosophical Transaction A. He was also the local organizer of ICECS 2020 and session chair committee member for ICECS 2022.
Employment
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University of Exeter Senior Lecturer2025 - Present
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University of Exeter Lecturer in Electronic Engineering2022 - 2025
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University of Glasgow Research Associate and Marie Curie Fellow2019 - 2022
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Hanyang University Postdoctoral Associate and BK'21 Fellow2017 - 2019
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (7)
- A Metamaterial-Coupled Wireless Power Transfer System Based on Cubic High-Dielectric Resonators Save
- Application of a Compact Electromagnetic Bandgap Array in a Phone Case for Suppression of Mobile Phone Radiation Exposure Save
- A Multiband Antenna Associating Wireless Monitoring and Nonleaky Wireless Power Transfer System for Biomedical Implants Save
- A Wideband Circularly Polarized Conformal Endoscopic Antenna System for High-Speed Data Transfer Save
- RF Heating Study of a New Medical Implant Lead for 1.5 T, 3 T, and 7 T MRI Systems Save
- Biotelemetry and Wireless Powering for Leadless Pacemaker Systems Save
- Innovative design of implanted medical lead to reduce MRI-induced scattered electric fields Save