Magnetic-free non-reciprocity based on staggered commutation N Reiskarimian, H Krishnaswamy Nature communications 7 (1), 11217, 2016 | 340 | 2016 |
mm-Wave Silicon Technology AM Niknejad, H Hashemi Springer Science+ Business Media, 2008 | 333 | 2008 |
Integrated wideband self-interference cancellation in the RF domain for FDD and full-duplex wireless J Zhou, TH Chuang, T Dinc, H Krishnaswamy IEEE Journal of Solid-State Circuits 50 (12), 3015-3031, 2015 | 251 | 2015 |
Challenge: COSMOS: A city-scale programmable testbed for experimentation with advanced wireless D Raychaudhuri, I Seskar, G Zussman, T Korakis, D Kilper, T Chen, ... Proceedings of the 26th annual international conference on mobile computing …, 2020 | 184 | 2020 |
A CMOS passive LPTV nonmagnetic circulator and its application in a full-duplex receiver N Reiskarimian, J Zhou, H Krishnaswamy IEEE Journal of Solid-State Circuits 52 (5), 1358-1372, 2017 | 182 | 2017 |
Integrated full duplex radios J Zhou, N Reiskarimian, J Diakonikolas, T Dinc, T Chen, G Zussman, ... IEEE Communications Magazine 55 (4), 142-151, 2017 | 178 | 2017 |
A 60 GHz CMOS full-duplex transceiver and link with polarization-based antenna and RF cancellation T Dinc, A Chakrabarti, H Krishnaswamy IEEE journal of solid-state circuits 51 (5), 1125-1140, 2016 | 159 | 2016 |
Silicon-based ultra-wideband beam-forming J Roderick, H Krishnaswamy, K Newton, H Hashemi IEEE Journal of Solid-State Circuits 41 (8), 1726-1739, 2006 | 158 | 2006 |
Synchronized conductivity modulation to realize broadband lossless magnetic-free non-reciprocity T Dinc, M Tymchenko, A Nagulu, D Sounas, A Alu, H Krishnaswamy Nature communications 8 (1), 795, 2017 | 156 | 2017 |
A millimeter-wave non-magnetic passive SOI CMOS circulator based on spatio-temporal conductivity modulation T Dinc, A Nagulu, H Krishnaswamy IEEE Journal of Solid-State Circuits 52 (12), 3276-3292, 2017 | 114 | 2017 |
9.8 Receiver with integrated magnetic-free N-path-filter-based non-reciprocal circulator and baseband self-interference cancellation for full-duplex wireless J Zhou, N Reiskarimian, H Krishnaswamy 2016 IEEE International Solid-State Circuits Conference (ISSCC), 178-180, 2016 | 112 | 2016 |
High-power high-efficiency class-E-like stacked mmWave PAs in SOI and bulk CMOS: Theory and implementation A Chakrabarti, H Krishnaswamy IEEE Transactions on Microwave Theory and Techniques 62 (8), 1686-1704, 2014 | 112 | 2014 |
Circuits for power-combined power amplifier arrays R Bhat, H Krishnaswamy US Patent App. 10/063,197, 2018 | 108* | 2018 |
Low-noise active cancellation of transmitter leakage and transmitter noise in broadband wireless receivers for FDD/co-existence J Zhou, A Chakrabarti, PR Kinget, H Krishnaswamy IEEE Journal of Solid-State Circuits 49 (12), 3046-3062, 2014 | 106 | 2014 |
Highly-linear integrated magnetic-free circulator-receiver for full-duplex wireless N Reiskarimian, MB Dastjerdi, J Zhou, H Krishnaswamy Solid-State Circuits Conference (ISSCC), 2017 IEEE International, 316-317, 2017 | 98 | 2017 |
AT/R antenna pair with polarization-based reconfigurable wideband self-interference cancellation for simultaneous transmit and receive T Dinc, H Krishnaswamy 2015 IEEE MTT-S International Microwave Symposium, 1-4, 2015 | 93 | 2015 |
Nonreciprocal components based on switched transmission lines A Nagulu, T Dinc, Z Xiao, M Tymchenko, DL Sounas, A Alù, ... IEEE Transactions on Microwave Theory and Techniques 66 (11), 4706-4725, 2018 | 87 | 2018 |
Analysis and design of commutation-based circulator-receivers for integrated full-duplex wireless N Reiskarimian, MB Dastjerdi, J Zhou, H Krishnaswamy IEEE Journal of Solid-State Circuits 53 (8), 2190-2201, 2018 | 85 | 2018 |
Non-reciprocal electronics based on temporal modulation A Nagulu, N Reiskarimian, H Krishnaswamy Nature Electronics 3 (5), 241-250, 2020 | 77 | 2020 |
High power, high efficiency stacked mmWave Class-E-like power amplifiers in 45nm SOI CMOS A Chakrabarti, H Krishnaswamy Proceedings of the IEEE 2012 Custom Integrated Circuits Conference, 1-4, 2012 | 77 | 2012 |