Dr. Debasish Mondal
Karlsruhe Institute of Technology - The Research University in the Helmholtz Association, Indian Institute of Technology Tirupati, Indian Institute of Technology Roorkee, University of Burdwan
About
Dr. Debasish Mondal is an academic staff member at the Institute for Pulsed Power and Microwave Technology (IHM), Karlsruhe Institute of Technology (KIT), Germany. He previously worked as a Project Scientist-I in the Department of Electrical Engineering at the Indian Institute of Technology (IIT) Tirupati, India. Dr. Mondal holds a Ph.D. in Electronics and Communication Engineering from IIT Roorkee, India, and an M.Tech degree in Microwave Engineering from the University of Burdwan, India. His research expertise encompasses Gyrotrons, high-power Sub-THz sources and components, millimeter/THz wave generation, antenna design, RF/Microwave sensors and microfluidic biosensors. With a strong background in electrical engineering, Dr. Mondal has also served as a project associate at IIT Kanpur, India, and has established affiliations with renowned institutions, fostering international collaborations and advancing research in high-frequency technologies.
Employment
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Karlsruhe Institute of Technology - The Research University in the Helmholtz Association Academic Staff2024 - Present
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Indian Institute of Technology Tirupati Project Scientist-I2024 - 2024
Education
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Indian Institute of Technology Roorkee Ph.D.2018 - 2024
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University of Burdwan M.Tech2015 - 2017
Projects & Funding
Projects & funding information is unavailable.
Publications (25)
- Design concepts and highlight features of the new KIT gyrotron interaction code ROCK Save
- Progress on 140 GHz Gyrotron Development: Advancing Towards 2-MW Operation Save
- Megawatt-Class Sub-THz Gyrotrons for ECRH in Future High-Field Fusion Devices Save
- RF Behavior Analysis of High-Power Millimeter-Wave Gyrotrons Using GDS V. 2024 Save
- Design Studies of a Three-Beam Metamaterial-Loaded Slow-Wave Structure for High-Power Microwave Generation Save
- Generation of dual-band OAM beam using planar uniform circular array for vehicular communications Save
- Investigations on the Output System of 300-GHz Gyrotrons Save
- Insert Misalignment Studies of a Coaxial-Cavity Gyrotron-Full-Wave Approach Save
- Series-feed UCA antenna for generating highly azimuthal symmetric OAM Beam for unmanned aerial vehicles Save
- Realistic Design Studies on a 300-GHz, 1-MW, DEMO-Class Conventional-Cavity Gyrotron Save