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Vladimir Aparin, Ph.D.

Affiliations: 
2005 University of California, San Diego, La Jolla, CA 
Area:
Electronics and Electrical Engineering
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"Vladimir Aparin"

Parents

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Lawrence E. Larson grad student 2005 UCSD
 (Linearization of CDMA receiver front -ends.)
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Publications

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Shakib S, Elkholy M, Dunworth J, et al. (2019) A Wideband 28-GHz Transmit–Receive Front-End for 5G Handset Phased Arrays in 40-nm CMOS Ieee Transactions On Microwave Theory and Techniques. 67: 2946-2963
Shakib S, Dunworth J, Aparin V, et al. (2019) mmWave CMOS Power Amplifiers for 5G Cellular Communication Ieee Communications Magazine. 57: 98-105
Elkholy M, Shakib S, Dunworth J, et al. (2018) Low-Loss Highly Linear Integrated Passive Phase Shifters for 5G Front Ends on Bulk CMOS Ieee Transactions On Microwave Theory and Techniques. 66: 4563-4575
Shakib S, Park H, Dunworth J, et al. (2016) A Highly Efficient and Linear Power Amplifier for 28-GHz 5G Phased Array Radios in 28-nm CMOS Ieee Journal of Solid-State Circuits. 51: 3020-3036
Yuan W, Aparin V, Dunworth J, et al. (2016) A Quadrature Switched Capacitor Power Amplifier Ieee Journal of Solid-State Circuits
Hedayati H, Lau WFA, Kim N, et al. (2015) A 1.8 dB NF blocker-filtering noise-canceling wideband receiver with shared TIA in 40 nm CMOS Ieee Journal of Solid-State Circuits. 50: 1148-1164
Kim N, Aparin V, Larson LE. (2011) Analysis of IM3 asymmetry in MOSFET small-signal amplifiers Ieee Transactions On Circuits and Systems I: Regular Papers. 58: 668-676
Kim N, Aparin V, Larson LE. (2010) A resistively degenerated wideband passive mixer with low noise figure and high IIP2 Ieee Transactions On Microwave Theory and Techniques. 58: 820-830
Kim N, Larson LE, Aparin V. (2009) A Highly Linear SAW-Less CMOS Receiver Using a Mixer With Embedded Tx Filtering for CDMA Ieee Journal of Solid-State Circuits. 44: 2126-2137
Kim N, Aparin V, Barnett K, et al. (2006) A cellular-band CDMA 0.25-/spl mu/m CMOS LNA linearized using active post-distortion Ieee Journal of Solid-State Circuits. 41: 1530-1534
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