Srinivasa Rao Karumuri
KLEF Deemed to be University, LBR College of Engineering, JNTU Kakinada, GITAM University
About
I am working as a Professor in the Department of ECE, College of Engineering, KLEF Deemed to be University. My academic achievements include an M.Tech, Ph.D. from Assam (A Central) University, Silchar in 2010, and a Postdoctoral Fellowship from Salento University, Italy in 2023.
My research focuses on the Design, Modeling, and Fabrication of Nanoscale devices and Micro-Electro-Mechanical Systems (MEMS) devices using TCAD/COMSOL/Intellisuite and cleanroom experience.
Specifically, I work on Machine Learning Techniques for Nanoscale TFET Devices, FinFETs, VLSI Low Noise Amplifiers, Micro-Sensors, Bio-Sensors, RF MEMS Devices, and Micro-Actuators. I have also established a VLSI-MEMS Research Lab.
Employment
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KLEF Deemed to be University PROFESSOR2015 - Present
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LBR College of Engineering, JNTU Kakinada PROFESSOR2013 - 2015
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LBR College of Engineering, JNTU Kakinada ASSOCIATE PROFESSOR2011 - 2013
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GITAM University Assistant Professor2010 - 2011
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P.B Siddartha College ASSISTANT PROFESSOR2009 - 2010
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (284)
- Analysis of N+ Pocket-Doped Vertical DMDG-DP TFET Biosensor With T-Shaped Channel for High Sensitivity Save
- Novel Label-Free Detection of Cancer Biomarkers Using T-Shape Channel and L-Shape Nanocavity in Si:HfO2 Ferroelectric DM-JLTFET With Gate Staggering Biosensor Save
- FedMMIoT: A Federated Learning Framework for Detecting Autism Spectrum Disorders Using Multimodal Internet of Things Save
- A Quali-Quantitative Analysis of Biosensing and Biotransducing Systems for Cardiovascular Monitoring: Pacemakers Active and Passive Stress Save
- Design and Performance Analysis of Dielectrically Modulated Diagonal Tunneling TFET for Label Free Sensing Save
- Study of Combined Effect of Field-Plate Structure and Defects in Channel-Passivated a-IGZO Thin-Film Transistor Save
- A Comprehensive Study on Device and Circuit Level Performance of Vertically Stacked Doping-Less Nanosheet Field Effect Transistor Save
- Analysis of an Electrically Doped Dielectric Modulated TFET Biosensor Design for Label Free Detection of Breast Cancer Cells Save
- Design and Modeling of a Dual-Nanogap Triple-Heterojunction Split-Gate T-Shaped Channel Vertical DMDG-TFET With Source Pockets for Biosensing Save
- Vertically Stacked Doping-Less Dual-Metal Gate Nanosheet FET With TiO2 Dielectric for High Sensitivity Autoimmune Disease Biosensing Save