Gabriel M. Rebeiz

Affiliations: 
1988-2004 University of Michigan, Ann Arbor, Ann Arbor, MI 
 2004- Electrical Engineering University of California, San Diego, La Jolla, CA 
Area:
Electronics and Electrical Engineering
Website:
http://cwc.ucsd.edu/node/62
Google:
"Gabriel M. Rebeiz"
Bio:

https://jacobsschool.ucsd.edu/faculty/profile?id=238
Rebeiz, Gabriel M. (1988) Monolithic Millimeter-Wave Two-Dimensional Horn Imaging Arrays. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/B9FG-6H18.

Parents

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Hardy Cross Martel grad student 1988 Caltech
 (Monolithic Millimeter-Wave Two-Dimensional Horn Imaging Arrays)

Children

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George V. Eleftheriades grad student 1993 University of Michigan
Abbas Abbaspour-Tamijani grad student 2004 University of Michigan (Physics Tree)
Kamran Entesari grad student 2006 University of Michigan
Kwang-Jin Koh grad student 2008 UCSD
Mohammed A. El-Tanani grad student 2009 UCSD
Jason W. May grad student 2009 UCSD
Tiku Yu grad student 2009 UCSD
Ramadan A. Alhalabi grad student 2010 UCSD
Isak C. Reines grad student 2010 UCSD
Yusuf A. Atesal grad student 2011 UCSD
Berke Cetinoneri grad student 2011 UCSD
Alexander Grichener grad student 2011 UCSD
Yu-Chin Ou grad student 2011 UCSD
Fatih Golcuk grad student 2013 UCSD
Ozgur Inac grad student 2013 UCSD
Hojr Sedaghat Pisheh grad student 2013 UCSD
Woorim Shin grad student 2013 UCSD
Donghyup Shin grad student 2013 UCSD
Mehmet Uzunkol grad student 2013 UCSD
Hosein Zareie grad student 2013 UCSD
Kevin M. Ho grad student 2015 UCSD
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Publications

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El-Aassar O, Rebeiz GM. (2020) Design of Low-Power Sub-2.4 dB Mean NF 5G LNAs Using Forward Body Bias in 22 nm FDSOI Ieee Transactions On Microwave Theory and Techniques. 1-1
Gao L, Rebeiz GM. (2020) A 22-44-GHz Phased-Array Receive Beamformer in 45-nm CMOS SOI for 5G Applications With 3-3.6-dB NF Ieee Transactions On Microwave Theory and Techniques. 1-1
Yin Y, Zihir S, Kanar T, et al. (2020) A 37-42-GHz 8x8 Phased-Array With 48-51-dBm EIRP, 64-QAM 30-Gb/s Data Rates, and EVM Analysis Versus Channel RMS Errors Ieee Transactions On Microwave Theory and Techniques. 1-1
Lokhandwala M, Gao L, Rebeiz GM. (2020) A High-Power 24-40-GHz Transmit-Receive Front End for Phased Arrays in 45-nm CMOS SOI Ieee Transactions On Microwave Theory and Techniques. 1-1
Nafe A, Sayginer M, Kibaroglu K, et al. (2020) 2 $\times$ 64-Element Dual-Polarized Dual-Beam Single-Aperture 28-GHz Phased Array With 2 $\times$ 30 Gb/s Links for 5G Polarization MIMO Ieee Transactions On Microwave Theory and Techniques. 68: 3872-3884
El-Aassar O, Rebeiz GM. (2020) A Cascaded Multi-Drive Stacked-SOI Distributed Power Amplifier With 23.5 dBm Peak Output Power and Over 4.5-THz GBW Ieee Transactions On Microwave Theory and Techniques. 68: 3111-3119
Gao L, Ma Q, Rebeiz GM. (2020) A 20–44-GHz Image-Rejection Receiver With >75-dB Image-Rejection Ratio in 22-nm CMOS FD-SOI for 5G Applications Ieee Transactions On Microwave Theory and Techniques. 68: 2823-2832
Kodak U, Rupakula B, Zihir S, et al. (2020) 60-GHz 64- and 256-Element Dual-Polarized Dual-Beam Wafer-Scale Phased-Array Transceivers With Reticle-to-Reticle Stitching Ieee Transactions On Microwave Theory and Techniques. 68: 2745-2767
Ku B, Chung H, Rebeiz GM. (2020) A Milliwatt-Level 70–110 GHz Frequency Quadrupler With >30 dBc Harmonic Rejection Ieee Transactions On Microwave Theory and Techniques. 68: 1697-1705
Chung H, Ma Q, Sayginer M, et al. (2020) A Packaged 0.01–26-GHz Single-Chip SiGe Reflectometer for Two-Port Vector Network Analyzers Ieee Transactions On Microwave Theory and Techniques. 68: 1794-1808
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