Debasis Dawn
Affiliations: | Georgia Institute of Technology, Atlanta, GA |
Area:
Electronics and Electrical EngineeringGoogle:
"Debasis Dawn"
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Publications
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Mitra D, Hamidi SB, Roy P, et al. (2020) Radio frequency reliability studies of CMOS RF integrated circuits for ultra-thin flexible packages Electronics Letters. 56: 280-282 |
Roy P, Dawn D. (2018) Fully Integrated CMOS Power Amplifier Using Resistive Current Combining Technique Iet Microwaves Antennas & Propagation. 12: 826-832 |
Roy P, Dawn D. (2017) A high power fully integrated single‐chip CMOS transmitter for wireless communication of unmanned aircraft system Microwave and Optical Technology Letters. 59: 432-439 |
Mitra D, Roy P, Dawn D. (2017) A Variable Gain CMOS Phase Shifter for Phased Array Antenna Applications Microwave and Optical Technology Letters. 59: 324-328 |
Roy P, Dawn D. (2015) High-power and high-efficiency complementary metal–oxide–semiconductor voltage-controlled oscillator for automatic dependent surveillance-broadcast system Iet Microwaves Antennas & Propagation. 9: 1632-1637 |
Roy P, Dawn D. (2015) A high-power and high-efficiency CMOS VCO Microwave and Optical Technology Letters. 57: 2437-2441 |
Juntunen E, Dawn D, Laskar J, et al. (2013) CMOS 45 GHz vector modulator with gain/phase correction through calibration Electronics Letters. 49: 267-269 |
Juntunen E, Dawn D, Laskar J, et al. (2012) High-power, high-efficiency CMOS millimetre-wave oscillators Iet Microwaves, Antennas and Propagation. 6: 1158-1163 |
Juntunen E, Dawn D, Pinel S, et al. (2011) Correction to “A High-Efficiency, High-Power Millimeter-Wave Oscillator Using a Feedback Class-E Power Amplifier in 45 nm CMOS” [Aug 11 430-432] Ieee Microwave and Wireless Components Letters. 21: 574-574 |
Juntunen E, Dawn D, Pinel S, et al. (2011) A high-efficiency, high-power millimeter-wave oscillator using a feedback class-E power amplifier in 45 nm CMOS Ieee Microwave and Wireless Components Letters. 21: 430-432 |