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Navjot Khaira
Navjot Khaira
Other namesNavjot Kaur Khaira
Dell Technologies
Verified email at dell.com - Homepage
Title
Cited by
Cited by
Year
Thermally actuated SOI RF MEMS-based fully integrated passive reflective-type analog phase shifter for mmWave applications
T Singh, NK Khaira, RR Mansour
IEEE Transactions on Microwave Theory and Techniques 69 (1), 119-131, 2020
382020
High isolation single-pole four-throw RF MEMS switch based on series-shunt configuration
T Singh, N Khaira
The Scientific World Journal 2014, 2014
322014
Monolithically integrated RF MEMS-based variable attenuator for millimeter-wave applications
NK Khaira, T Singh, RR Mansour
IEEE Transactions on Microwave Theory and Techniques 67 (8), 3251-3259, 2019
312019
Monolithically integrated reconfigurable RF MEMS based impedance tuner on SOI substrate
T Singh, NK Khaira, RR Mansour
2019 IEEE MTT-S International Microwave Symposium (IMS), 790-792, 2019
222019
Stress analysis using finite element modeling of a novel RF microelectromechanical system shunt switch designed on quartz substrate for low-voltage applications
T Singh, NK Khaira, JS Sengar
Transactions on electrical and electronic materials 14 (5), 225-230, 2013
172013
RF MEMS based 60 GHz variable attenuator
N Khaira, T Singh, R Mansour
2018 IEEE MTT-S International Microwave Workshop Series on Advanced …, 2018
142018
A novel capacitive RF MEMS switch design for low voltage applications
T Singh, N Khaira, J Sengar
2013 Fourth International Conference on Computing, Communications and …, 2013
142013
Cryogenic wideband quadrature hybrid couplers implemented in a low temperature superconductor multilayer process
NK Khaira, T Singh, RR Mansour
2022 IEEE/MTT-S International Microwave Symposium-IMS 2022, 160-163, 2022
72022
Josephson Junctions-Based Low-Temperature Superconducting Phase Shifter for X- and K-Bands Using MIT-LL SFQ5ee Process
NK Khaira, T Singh, RR Mansour
IEEE Microwave and Wireless Components Letters 32 (6), 692-695, 2022
52022
Regular Papers: Stress Analysis Using Finite Element Modeling of a Novel RF Microelectromechanical System Shunt Switch Designed on Quartz Substrate for Low-voltage Applications
T Singh, JS Sengar
Transactions on electrical and electronic materials 14 (5), 225-230, 2010
52010
Low-temperature superconductor RF-SQUIDs-based fully integrated reflective-type analog phase shifter for quantum applications
NK Khaira, T Singh, RR Mansour
IEEE Transactions on Microwave Theory and Techniques 71 (1), 173-180, 2022
32022
Wideband Power-Dependent Power Limiter Based on Distributed Low-Temperature Superconductor rf-SQUIDs for Cryogenic RF Receivers
NK Khaira, T Singh, RR Mansour
IEEE Transactions on Microwave Theory and Techniques 71 (4), 1621-1629, 2022
22022
SOI RF-MEMS based variable attenuator for millimeter-wave applications
NK Khaira
University of Waterloo, 2019
22019
A Novel Stiff Membrane Seesaw Type RF Microelectromechanical System DC Contact Switch on Quartz Substrate
NK Khaira, T Singh, JS Sengar
Transactions on Electrical and Electronic Materials 14 (3), 116-120, 2013
22013
Phase-change RF devices for future communications: Phase-change materials and devices for reconfigurable RF front-ends: State-of-the-art and future perspectives
T Singh, NK Khaira, M Repeta, RR Mansour
IEEE Microwave Magazine 25 (2), 18-38, 2024
12024
Cryogenic analog microwave variable attenuator using RF-SQUIDs for quantum systems
NK Khaira, T Singh, RR Mansour
IEEE Transactions on Applied Superconductivity 33 (5), 1-7, 2023
12023
Reconfigurable cryogenic microwave devices using low temperature superconducting RF-SQUIDs
NK Khaira
University of Waterloo, 2022
12022
A Fringing Field Electrostatic Actuator
M Arabi, K Mistry, D Bath, E Brace, E Fernandes, N Khaira, Y Zhao, ...
Proceedings of 18th Canadian Semiconductor Science and Technology Conference …, 2017
2017
Regular Papers: A Novel Stiff Membrane Seesaw Type RF Microelectromechanical System DC Contact Switch on Quartz Substrate
NK Khaira, JS Sengar
Transactions on Electrical and Electronic Materials 14 (3), 121-125, 2013
2013
Research Article High Isolation Single-Pole Four-Throw RF MEMS Switch Based on Series-Shunt Configuration
T Singh, N Khaira
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