Koushik Dutta
PDPM Indian Institute of Information Technology Design and Manufacturing Jabalpur, Indian Institute of Engineering Science and Technology, Shibpur, Supreme Knowledge Foundation Group of Institutions
About
Koushik Dutta received his B. Tech degree in Electronics and Telecommunication Engineering from West Bengal University of Technology, Kolkata, India in the year 2009. He received his M. Tech degree from Radio Physics and Electronics, University of Calcutta in 2012. He has been awarded PhD degree from Institute of Engineering Science and Technology, Shibpur in the year of 2018 in the area of metal oxide nanoform based gas sensor measurement in resistive and capacitivce mode. At Present, he has joined as an Assistant Professor, in the department of ECE, PDPM Indian Institute of Information Technology, Design and Manufacturing, Jabalpur. His research interest includes Semiconducting material and device characterization and their application as gas sensor and energy storage device. He is the author and coauthor of about thirty research articles in the journals and conferences of international repute. He received the best presentation award in the event Research Scholar Colloquium organized by IIEST Shibpur in 2016. He is the member of IEI, IEEE, IEEE Electron Device Society, IEEE Sensor Council and IEEE Nanotechnology Council.
Employment
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PDPM Indian Institute of Information Technology Design and Manufacturing Jabalpur Assistant Professor2020 - Present
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Indian Institute of Engineering Science and Technology, Shibpur Temporary Faculty2019 - 2020
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Supreme Knowledge Foundation Group of Institutions Assistant Professor2012 - 2012
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (31)
- A Step-by-Step Tuning of Mathematical Parameters (Verilog-A) for Double Loop Behavior of RRAM Device Modeling Save
- Demonstration of Doped-HfO2 Ferroelectric Based Double Layer Stacked NC FinFET Save
- Capacitive Mode Vapor Sensing Phenomenon in ZnO Homojunction: An Insight Through Space Charge Model and Electrical Equivalent Circuit Save
- Geometrical Optimization of Gallium Arsenide (GaAs) nanostructure based Solar Cells Save
- Potential of Impedance Spectroscopy Towards Quantified Analysis of Gas Sensors: A Tutorial Save
- Understanding the Improved Vapor Sensor Device Performance of Dual Surface Engineered WO Nanospheres Using Semi-Quantitative Energy Band Model Save
- An efficient room temperature ethanol sensor device based on p-n Homojunction of TiO<inf>2</inf> nanostructures Save
- Environmental Nanotechnology Save
- Capacitive Mode Methanol Sensing by ZnO Nanorods Based Devices Save
- Advanced Mechatronics and MEMS Devices II Save