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DTSTART:20210314T030000
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DTSTART:20211107T010000
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DTSTAMP:20211107T150255Z
UID:F30919E1-BC33-4210-B223-E9936C5540E4
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DESCRIPTION:Abstract: 5G cellular communications use millimeter-wave phased
  arrays to achieve high data rates and low latency. The majority of the 5G
  millimeter-wave infrastructure will be partially or completely based on s
 ilicon technology. This talk will discuss key aspects of silicon-based mil
 limeter-wave phased-array module design and characterization. It will cove
 r fundamentals of phased arrays\, provide an overview of phased array ante
 nna modules using silicon technology\, and take a deep dive into an exampl
 e 5G phased array antenna module. The talk will end with a peek into the f
 uture of 5G directional communications.\n\nBio: Bodhisatwa Sadhu received 
 the B.E. degree in Electrical and Electronics Engineering from BITS-Pilani
 \, India in 2007\, and the Ph.D. degree in Electrical Engineering from the
  University of Minnesota\, Minneapolis\, in 2012. He is currently a Resear
 ch Staff Member with the RF/mm-wave Communication Circuits &amp; Systems Group
  at IBM T. J. Watson Research Center\, Yorktown Heights\, NY\, USA\, and a
 n Adjunct Assistant Professor at Columbia University\, NY. At IBM\, he has
  led the design and demonstration of the world’s first reported silicon-
 based 5G phased array IC\, a low power 60GHz CMOS transceiver IC for 802.1
 1ad communications\, and a software-defined phased array radio. He has aut
 hored and co-authored 50+ peer-reviewed papers\, the book Cognitive Radio 
 Receiver Front-Ends-RF/Analog Circuit Techniques (Springer\, 2014)\, and s
 everal book chapters. He also holds 60+ issued U.S. patents. Dr. Sadhu cur
 rently serves as an IEEE MTT-S Distinguished Microwave Lecturer\, the RFIC
  Systems &amp; Applications sub-committee Chair and a Steering Committee Membe
 r of the IEEE RFIC Symposium\, TPC member of the Wireless Subcommittee at 
 IEEE ISSCC\, and has served as Guest Editor of IEEE TMTT in 2021 and IEEE 
 JSSC in 2017.\n\nDr. Sadhu is the recipient of the 2017 ISSCC Lewis Winner
  Award for Outstanding Paper (best paper award)\, the 2017 JSSC Best Paper
  Award\, the 2017 Pat Goldberg Memorial Award for the best paper in comput
 er science\, electrical engineering\, and mathematics published by IBM Res
 earch\, four IBM Outstanding Technical Achievement Awards\, twelve IBM Pat
 ent Plateau Awards\, the University of Minnesota Graduate School Fellowshi
 p in 2007\, 3M Science and Technology Fellowship in 2009\, the University 
 of Minnesota Doctoral Dissertation Fellowship in 2011\, the BITS Pilani Si
 lver Medal in 2007\, and stood 2nd in India in the Indian School Certifica
 te (ISC) examination in 2003. He was recognized as an IBM Master Inventor 
 in 2017\, and was selected by the National Academy of Engineering for its 
 Frontiers of Engineering Symposium in 2020.\n\nSpeaker(s): Dr. Bodhisatwa 
 Sadhu\, \n\nVirtual: https://events.vtools.ieee.org/m/283808
LOCATION:Virtual: https://events.vtools.ieee.org/m/283808
ORGANIZER:kenle.chen@ucf.edu
SEQUENCE:10
SUMMARY:SILICON-BASED MILLIMETER-WAVE PHASED ARRAYS FOR 5G: FUNDAMENTALS TO
  FUTURE TRENDS
URL;VALUE=URI:https://events.vtools.ieee.org/m/283808
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;&lt;strong&gt;Abstract:&lt;/strong&gt; 5G cellular com
 munications use millimeter-wave phased arrays to achieve high data rates a
 nd low latency. The majority of the 5G millimeter-wave infrastructure will
  be partially or completely based on silicon technology. This talk will di
 scuss key aspects of silicon-based millimeter-wave phased-array module des
 ign and characterization. It will cover fundamentals of phased arrays\, pr
 ovide an overview of phased array antenna modules using silicon technology
 \, and take a deep dive into an example 5G phased array antenna module. Th
 e talk will end with a peek into the future of 5G directional communicatio
 ns.&lt;/p&gt;\n&lt;p&gt;&lt;strong&gt;Bio:&amp;nbsp\;&lt;/strong&gt;Bodhisatwa Sadhu received the B.E.
  degree in Electrical and Electronics Engineering from BITS-Pilani\, India
  in 2007\, and the Ph.D. degree in Electrical Engineering from the Univers
 ity of Minnesota\, Minneapolis\, in 2012. He is currently a Research Staff
  Member with the RF/mm-wave Communication Circuits &amp;amp\; Systems Group at
  IBM T. J. Watson Research Center\, Yorktown Heights\, NY\, USA\, and an A
 djunct Assistant Professor at Columbia University\, NY. At IBM\, he has le
 d the design and demonstration of the world&amp;rsquo\;s first reported silico
 n-based 5G phased array IC\, a low power 60GHz CMOS transceiver IC for 802
 .11ad communications\, and a software-defined phased array radio. He has a
 uthored and co-authored 50+ peer-reviewed papers\, the book Cognitive Radi
 o Receiver Front-Ends-RF/Analog Circuit Techniques (Springer\, 2014)\, and
  several book chapters. He also holds 60+ issued U.S. patents. Dr. Sadhu c
 urrently serves as an IEEE MTT-S Distinguished Microwave Lecturer\, the RF
 IC Systems &amp;amp\; Applications sub-committee Chair and a Steering Committe
 e Member of the IEEE RFIC Symposium\, TPC member of the Wireless Subcommit
 tee at IEEE ISSCC\, and has served as Guest Editor of IEEE TMTT in 2021 an
 d IEEE JSSC in 2017.&lt;/p&gt;\n&lt;p&gt;Dr. Sadhu is the recipient of the 2017 ISSCC 
 Lewis Winner Award for Outstanding Paper (best paper award)\, the 2017 JSS
 C Best Paper Award\, the 2017 Pat Goldberg Memorial Award for the best pap
 er in computer science\, electrical engineering\, and mathematics publishe
 d by IBM Research\, four IBM Outstanding Technical Achievement Awards\, tw
 elve IBM Patent Plateau Awards\, the University of Minnesota Graduate Scho
 ol Fellowship in 2007\, 3M Science and Technology Fellowship in 2009\, the
  University of Minnesota Doctoral Dissertation Fellowship in 2011\, the BI
 TS Pilani Silver Medal in 2007\, and stood 2&lt;sup&gt;nd&lt;/sup&gt; in India in the 
 Indian School Certificate (ISC) examination in 2003. He was recognized as 
 an IBM Master Inventor in 2017\, and was selected by the National Academy 
 of Engineering for its Frontiers of Engineering Symposium in 2020.&lt;/p&gt;
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