Sanjiv Sambandan
Indian Institute of Science, University of Cambridge, Xerox Palo Alto Research Center
About
Prof. Sanjiv Sambandan is currently a Professor at the Department of Instrumentation and Applied Physics, the Department of Electronics Systems Engineering and the Interdisciplinary Centre for Water Research. From 2016 to 2022 he was jointly appointed at the Indian Institute of Science and the University of Cambridge as an Associate Professor via the DBT Lectureship and an Exceptional Talent Endorsement from the Royal Academy of Engineering. Prior to academic appointments he worked at the Electronic Materials and Device Lab, Xerox Palo Alto Research Centre (PARC), USA where he won the Golden Acorn Award and the PARC Special Recognition Prize. He obtained his PhD from the University of Waterloo in Electrical and Computer Engineering and a BTech in Electrical Engineering (Energy Systems) from the Indian Institute of Technology Kharagpur where he won the Institute Proficiency Prize. He is also the founder of Openwater.in, a startup in the sustainability space.
Employment
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University of Cambridge Lecturer2017 - 2022
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Indian Institute of Science2010 - Present
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Xerox Palo Alto Research Center2006 - 2010
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (96)
- On the ESD behavior of pentacene channel organic thin film transistors Save
- Interconnects on elastomers: optimizing for stretchability, speed and layout area Save
- Modulating Thin Film Transistor Characteristics by Texturing the Gate Metal Save
- Crumpling for energy: modeling generated power from the crumpling of polymer piezoelectric foils for wearable electronics Save
- Design Optimization of Thin-Film Transistors Based on a Metal-Substrate-Semiconductor Architecture for High DC Voltage Sensing Save
- Jet-printed Si nanowires for flexible backplane applications Save
- Micro Crumples for Self-Assembly of Field Emission Devices Save
- Cadmium Sulfide Nanocrystal Sensitized Vertically Aligned Titanium Dioxide Rods for Large Area Image Sensors on 3-D Substrates Save
- Large area flexible electronics for analog mode continuous time applications Save
- Maze solving automatons for self-healing of open interconnects: Modular add-on for circuit boards Save