Követés
Dr. Vishal Narula (Ph.D.)
Dr. Vishal Narula (Ph.D.)
Thapar Institute of Engineering and Technology, Lovely Professional University
E-mail megerősítve itt: lpu.co.in
Cím
Hivatkozott rá
Hivatkozott rá
Év
Enhanced performance of double gate junctionless field effect transistor by employing rectangular core–shell architecture
V Narula, M Agarwal
Semiconductor Science and Technology 34 (10), 105014, 2019
322019
Study of analog performance of common source amplifier using rectangular core–shell based double gate junctionless transistor
V Narula, M Agarwal
Semiconductor Science and Technology 35 (10), 105022, 2020
252020
Impact of core thickness and gate misalignment on rectangular core–shell based double gate junctionless field effect transistor
V Narula, M Agarwal
Semiconductor science and technology 35 (3), 035010, 2020
192020
Investigating short channel effects and performance parameters of double gate junctionless transistor at various technology nodes
V Narula, C Narula, J Singh
2015 2nd International Conference on Recent Advances in Engineering …, 2015
192015
Doping engineering to enhance the performance of a rectangular core shell double gate junctionless field effect transistor
V Narula, M Agarwal
Semiconductor Science and Technology 35 (7), 075003, 2020
162020
Correlation of core thickness and core doping with gate & spacer dielectric in rectangular core shell double gate junctionless transistor
V Narula, A Saini, M Agarwal
IETE Journal of Research 69 (7), 4492-4503, 2023
152023
Performance analysis of multi-channel-multi-gate-based junctionless field effect transistor
S Verma, V Narula, SL Tripathi
IETE Journal of Research 70 (4), 4126-4136, 2024
102024
Performance enhancement of core-shell JLFET by gate/dielectric engineering
V Narula, M Agarwal
International journal of Electronics 107 (6), 966-984, 2020
92020
Simulation and characterization of junction less CMOS inverter at various technology nodes
V Narula, C Narula, J Singh
Indian J. Sci. Technol 9 (47), 1-7, 2017
92017
Effect of gate oxide thickness on the performance of rectangular core-shell based junctionless field effect transistor
V Narula, M Agarwal
AIP Conference Proceedings 2220 (1), 2020
82020
Correlation betweenwork function and silicon thickness of double gate junctionless field effect transistor
V Narula, M Agarwal
2019 Women Institute of Technology Conference on Electrical and Computer …, 2019
82019
A pathway to improve short channel effects of junctionless based FET’s after incorporating technology boosters: a review
V Narula, M Agarwal, S Verma
Engineering Research Express 6 (1), 012301, 2024
42024
Performance Investigation of Inverted T-shaped Heterojunction FinFET along with Oxide Stacking.
S Verma, V Narula, SL Tripathi, B Raj
2023 IEEE Devices for Integrated Circuit (DevIC), 177-181, 2023
42023
Effect of gate misalignment on the performance of rectangular core-shell based junctionless field effect transistor
V Narula, M Agarwal
AIP Conference Proceedings 2265 (1), 2020
22020
Analysis and Performance Evaluation of a 14 nm Junctionless⊥-FinFET Biosensor for Biological Species Detection
S Verma, V Narula, GK Marwaha
2024 International Conference on Electrical Electronics and Computing …, 2024
12024
Analytical Model of Conventional and Rectangular Core-Shell-based Double Gate Junctionless MOS
V Narula, M Agarwal
IETE Journal of Research 70 (1), 649-661, 2024
12024
High Gain Multistage CMOS Amplifier Design at 45nm technology node
SL Tripathi, B Raj, S Verma, V Narula, S Saxena
2023 IEEE Devices for Integrated Circuit (DevIC), 237-242, 2023
12023
Effect of silicon thickness on the performance of conventional junctionless field effect transistor
M Agarwal, V Narula
AIP Conference Proceedings 2265 (1), 2020
12020
Performance Analysis of Biosensor Based on Inverted T Shaped Junctionless FinFET
S Verma, SL Tripathi, V Narula, B Raj, N Sahota
2024 IEEE International Conference of Electron Devices Society Kolkata …, 2024
2024
Performance Analysis of Rectangular Core-Shell Double Gate DGJLT
V Narula, S Verma, A Saini, M Agarwal
Nanoelectronics Devices: Design, Materials, and Applications (Part I), 78, 2023
2023
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