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词条 Eby Friedman
释义

  1. Early life and education

  2. Career

      Service    Editing    Committee work    Selected workshops and conferences  

  3. Publications and patents

     Books  Selected articles 

  4. References

{{Infobox scientist
|name = Eby G. Friedman
|image = Eby-G.-Friedman.jpg
|caption = Friedman in 2008
|birth_date = {{birth date and age|1957|08|10|df=y}}
|birth_place = Jersey City, New Jersey
|education = Lafayette College
University of California, Irvine
|field = Electrical and Computer Engineering
|work_institutions = University of Rochester
Technion – Israel Institute of Technology
Hughes Aircraft Company
|doctoral_advisor = James H. Mulligan, Jr.
|known_for =
|prizes = IEEE Fellow
IEEE CAS Charles A. Desoer Technical Achievement Award
Fulbright Scholar
University of California, Irvine Engineering Hall of Fame
IEEE CAS Mac Van Valkenburg Award
|spouse =
| website = {{URL|http://www.ece.rochester.edu/~friedman}}
}}

Eby G. Friedman is an electrical engineer, and Distinguished Professor of Electrical and Computer Engineering at the University of Rochester. Friedman is also a Visiting Professor at the Technion - Israel Institute of Technology. He is a Senior Fulbright Fellow and a Fellow of the IEEE.

Early life and education

Born in Jersey City, New Jersey, in 1957,[1] he earned an electrical engineering baccalaureate degree from Lafayette College in 1979, a master's degree (1981) and a doctoral degree (1989) from the University of California, Irvine, also in electrical engineering.[2] Friedman married his wife Laurie Friedman in 1984, and they have two sons.[3]

Career

Friedman's research interests include integrated circuits, VLSI design and analysis, clock synchronization, power delivery, 3-D integration, and mixed-signal circuits.[4]

His career began in the Netherlands in 1978, working at Philips Gloeilampen Fabreiken on designing bipolar differential amplifiers.[1] From 1979 to 1991 he worked at Hughes Aircraft Company, developing a large variety of integrated circuits for US military and commercial applications.[5] He joined the Electrical and Computer Engineering faculty at the University of Rochester in 1991.[5]

He received the 2005 William H. Riker University Award for Graduate Teaching at the University of Rochester.[6] In 2012 he became a Distinguished Lecturer of the IEEE CAS Society,{{Citation needed|date=December 2017}} and in 2013, he was awarded the Charles A. Desoer Technical Achievement Award,[7] as a Fellow of the IEEE. In October 2015 he was inducted into the University of California, Irvine, Engineering Hall of Fame.[8] He also received the IEEE CAS Mac Van Valkenburg award in 2018.[9]

Service

Editing

Friedman serves as editor-in-chief of the Microelectronics Journal[10] and is a member of the editorial board of the Journal of Low Power Electronics and Applications.[11] He is a past editor-in-chief and chair of the steering committee for the IEEE Transactions on Very Large Scale Integration (VLSI) Systems[12] as well as past regional editor of the Journal of Circuits, Systems and Computers.[13] He formerly served as a member of several editorial boards: the Analog Integrated Circuits and Signal Processing,[13] the Journal of VLSI Signal Processing,{{Citation needed|date=December 2017}} and the Proceedings of the IEEE and IEEE Transactions on Circuits and Systems II: Analog and Digital Signal Processing.{{Citation needed|date=December 2017}}

Committee work

Friedman has served multiple IEEE societies and committees: Circuits and Systems (CAS) Society Board of Governors and CAS liaison to the Solid-State Circuits Society (SSCS);{{Citation needed|date=December 2017}} past chair of the VLSI Systems and Applications Circuits and Systems Society Technical Committee;[14] and past chair of the Electron Devices Chapter of the Rochester Section.{{Citation needed|date=December 2017}}

Selected workshops and conferences

He was General/Program/Technical Co-Chair,for the 1997 International Workshop on Clock Distribution Networks.[15] He has also chaired the following IEEE events: the 2000 Workshop on Signal Processing Systems,[16] the 2003 and 2004 IEEE International Workshop on System-on-Chip for Real-Time Applications,[17] technical program chair of the 2004 IEEE International Conference on Electronics, Circuits, and Systems,[18] the 2006 IEEE International Symposium on Circuits and Systems,[19] and the 2007 IEEE International Symposium on Networks on Chip (NoC).[20]

Publications and patents

Friedman has published almost 500 papers[21] and is co-inventor of 16 patents.[22]

Books

  • Clock Distribution Networks in VLSI Circuits and Systems (IEEE Press, 1995)[23]
  • High Performance Clock Distribution Networks (Kluwer Academic Publishers, 1997)[24]
  • Analog Design Issues in Digital VLSI Circuits and Systems (Kluwer Academic Publishers, 1997)[25]
  • Timing Optimization through Clock Skew Scheduling ( 2000 and 2009)(first and second edition)[26]
  • On-Chip Inductance in High Speed Integrated Circuits (Kluwer Academic Publishers, 2001)[27]
  • Power Distribution Networks in High Speed Integrated Circuits (Kluwer Academic Publishers, 2004)[28]
  • Multi-Voltage CMOS Circuit Design (John Wiley & Sons Press, 2006)[29]
  • Power Distribution Networks with On-Chip Decoupling Capacitors (Springer Verlag, 2008 and 2011)(first and second edition) [30]
  • Three-Dimensional Integrated Circuit Design (Morgan Kaufmann, 2009 and 2017)(first and second edition)[31]
  • High Performance Integrated Circuit Design (McGraw-Hill Publishers, 2012) [32]
  • On-Chip Power Delivery and Management (Springer, 2016)

Selected articles

  • I. Vaisband, B. Price, S. Kose, Y. Kolla, E. G. Friedman, and J. Fischer, "Distributed LDO Regulators in a 28 nm Power Delivery System," Analog Integrated Circuits and Signal Processing, Volume 83, Issue 3, pp. 295 – 309, 2015.[33]
  • I. Vaisband and E. G. Friedman, "Energy Efficient Clustering of On-Chip Power Delivery Systems," Integration, the VLSI Journal, Volume 48, pp. 1 – 9, 2015.[34]
  • M. Kazemi, E. Ipek, and E. G. Friedman, "Adaptive Compact Magnetic Tunnel Junction Model," IEEE Transactions on Electron Devices, Vol. 61, No. 11, pp. 3883–3891, November 2014.[35]
  • S. Kvatinsky, N. Wald, G. Satat, E. G. Friedman, A. Kolodny, and U. C. Weiser, "Memristor-Based Material Implication (IMPLY) Logic: Design Principles and Methodologies," IEEE Transactions on Very Large Scale Integration (VLSI) Systems, Vol. 22, No. 10, pp. 2054–2066, October 2014.[36]
  • A. Shapiro and E. G. Friedman, "MOS Current Mode Logic Near Threshold Circuits," Journal on Low Power Electronics and Applications, Volume 4, pp. 138 – 152, 2014.[37]
  • R. Patel, E. Ipek, and E. G. Friedman, "2T - 1R STT-MRAM Memory Cells for Enhanced Sense Margin and On/Off Current Ratio," Microelectronics Journal, Volume 45, Issue 2, pp. 133 – 143, February 2014.[38]
  • S. Kvatinsky, Y. H. Nacson, Y. Etsion, E. G. Friedman, A. Kolodny, and U. C. Weiser, "Memristor-Based Multithreading," IEEE Computer Architecture Letters, Vol. 13, No. 1, pp. 41 – 44, January–June 2014.[39]
  • Friedman, Eby G. "Clock distribution networks in synchronous digital integrated circuits." Proceedings of the IEEE 89.5 (2001): 665-692.[40]
  • Ismail, Yehea, and Eby G. Friedman. "Effects of inductance on the propagation delay and repeater insertion in VLSI circuits." Very Large Scale Integration (VLSI) Systems, IEEE Transactions on 8.2 (2000): 195-206.[41]
  • Ismail, Yehea, Eby G. Friedman, and Jose L. Neves. "Figures of merit to characterize the importance of on-chip inductance." Very Large Scale Integration (VLSI) Systems, IEEE Transactions on 7.4 (1999): 442-449.[42]
  • Hauryla, Mikhail, et al. "On-chip optical interconnect roadmap: challenges and critical directions." Selected Topics in Quantum Electronics, IEEE Journal of12.6 (2006): 1699-1705.[43]

References

1. ^{{Cite web|url=http://www2.ece.rochester.edu/~friedman/|title=Eby G. Friedman's Homepage|website=www2.ece.rochester.edu|access-date=2017-12-13}}
2. ^{{Cite web|url=https://www.businesswire.com/news/home/20040607005817/en/Manhattan-Routing-Welcomes-Eby-Friedman-IEEE-Fellow|title=Manhattan Routing Welcomes Eby Friedman, IEEE Fellow and Distinguished Professor at the University of Rochester, to Technical Advisory Board|last=|first=|date=2004-06-07|website=www.businesswire.com|language=en|archive-url=|archive-date=|dead-url=|access-date=2017-12-13}}
3. ^{{Cite web|url=https://search.ancestry.com/cgi-bin/sse.dll?indiv=1&dbid=7158&h=553406&tid=&pid=&usePUB=true&_phsrc=ro81070949&_phstart=successSource|title=Connecticut Marriage Index, 1959-2012|last=|first=|date=10 June 1984|website=Ancestry.com|language=en-US|archive-url=|archive-date=|dead-url=|access-date=2017-12-13|subscription=yes}}
4. ^{{cite web|url=http://www.hajim.rochester.edu/ece/people/faculty/index.html#F|title=Directory: Electrical and Computer Engineering|last=|first=|date=|website=|publisher=Ece.rochester.edu|archive-url=|archive-date=|dead-url=|accessdate=2015-12-17}}
5. ^{{Cite web|url=https://pdfs.semanticscholar.org/e7ea/a081d26b60f1f56a6309eacf7e8018345a63.pdf|title=Design Challenges in High Performance Three-Dimensional Circuits|last=Friedman|first=Eby|date=2009|website=semanticscholar.org|archive-url=|archive-date=|dead-url=|access-date=}}
6. ^{{Cite web|url=https://www.rochester.edu/provost/honorsandawards/williamhrikeruniversityawardforgraduateteaching.html|title=William H. Riker University Award for Excellence in Graduate Teaching|last=|first=|date=|website=www.rochester.edu|publisher=Office of the Provost, University of Rochester|archive-url=|archive-date=|dead-url=|access-date=2017-12-13}}
7. ^{{cite web|url=http://ieee-cas.org/about/awards/technical-achievement-award|title=Charles A. Desoer Technical Achievement Award | IEEE Circuits and Systems Society|date=|publisher=Ieee-cas.org|archiveurl=https://web.archive.org/web/20160223121330/http://ieee-cas.org/about/awards/technical-achievement-award|archivedate=2016-02-23|deadurl=yes|accessdate=2015-07-14|df=}}
8. ^{{Cite web|url=http://tech.uci.edu/halloffame2015/eng_honorees.php|title=2015 Hall of Fame Inductees {{!}} The Henry Samueli School of Engineering at UC Irvine|last=|first=|date=|website=engineering.uci.edu|language=en|archive-url=|archive-date=|dead-url=|access-date=2017-12-13}}
9. ^{{Cite web|url=http://ieee-cas.org/awards-and-fellows/ieee-circuits-and-systems-society-mac-van-valkenburg-award|title=IEEE Circuits and Systems Society Mac Van Valkenburg Award|last=|first=|date=|website=ieee-cas.org|language=en|archive-url=|archive-date=|dead-url=|access-date=2018-05-18}}
10. ^{{cite book|url=http://www.journals.elsevier.com/microelectronics-journal/editorial-board/|title=Microelectronics Journal Editorial Board|last=|first=|date=|website=elsevier.com|publisher=|archive-url=|archive-date=|dead-url=|accessdate=2015-07-14}}
11. ^{{cite web|url=http://www.mdpi.com/journal/jlpea/editors |title=Editors of JLPEA |publisher=MDPI |accessdate=2017-05-08}}
12. ^{{Cite web|url=http://ieee-cas.org/publications/previous-editors-in-chief|title=Past Editors in Chief - IEEE CAS|last=|first=|date=|website=ieee-cas.org|language=en|archive-url=|archive-date=|dead-url=|access-date=2017-12-13}}
13. ^{{Cite web|url=http://www.ee.ucla.edu/events/power-delivery-in-heterogeneous-nanoscale-integrated-circuits/|title=Power Delivery in Heterogeneous Nanoscale Integrated Circuits {{!}} EE|website=www.ee.ucla.edu|language=en-US|access-date=2017-12-13}}
14. ^{{cite web|url=http://ieee-cas.org/community/technical-committees/vlsi-systems-applications-technical-committee-vsatc/officers-and-members|title=Officers and Members|last=|first=|date=|website=ieee-cas.org|archive-url=|archive-date=|dead-url=|accessdate=2015-07-14}}
15. ^{{cite web|url=http://download.springer.com/static/pdf/505/bbm%253A978-1-4615-4411-1%252F1.pdf?originUrl=http%3A%2F%2Flink.springer.com%2Fbook%2Fbbm%3A978-1-4615-4411-1%2F1&token2=exp=1437951737~acl=%2Fstatic%2Fpdf%2F505%2Fbbm%25253A978-1-4615-4411-1%25252F1.pdf%3ForiginUrl%3Dhttp%253A%252F%252Flink.springer.com%252Fbook%252Fbbm%253A978-1-4615-4411-1%252F1*~hmac=bc821d1ec4b28ad348f81df72f2bc75bf472ba95ac6df216c40204e396cff0a3 |title=Publications search |publisher=springer.com |accessdate=2015-07-14}} {{Dead link|date=December 2017}}
16. ^{{cite book|chapter-url=http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=886697|title=2000 IEEE Workshop on SiGNAL PROCESSING SYSTEMS|pages=i|last=|first=|date=October 2000|website=|publisher=IEEE|archive-url=|archive-date=|dead-url=|accessdate=2015-07-14|doi=10.1109/SIPS.2000.886697|chapter=2000 IEEE Workshop on SiGNAL PROCESSING SYSTEMS. SiPS 2000. Design and Implementation (Cat. No.00TH8528)|isbn=978-0-7803-6488-2}}
17. ^{{cite web|url=http://ieeexplore.ieee.org/xpl/mostRecentIssue.jsp?punumber=9224|title=4th IEEE International Workshop on System-on-Chip for Real-Time Applications|last=|first=|date=2004|website=|publisher=IEEE|archive-url=|archive-date=|dead-url=|accessdate=2015-07-14}}
18. ^{{Cite journal|url=https://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=1276210|title=IEEE Xplore Full-Text PDF|journal=IEEE Circuits and Devices Magazine|volume=20|issue=2|pages=47|language=en-US|access-date=2018-11-10|doi=10.1109/MCD.2004.1276210|year=2004}}
19. ^{{cite web |url=http://ieee-cas.org/wp-content/uploads/2011/11/Nano-Gega-TC-2006-Annual-Report27.pdf |title=Publications search |publisher=ieee-cas.org |accessdate=2015-07-14 |archive-url=https://web.archive.org/web/20160330001144/http://ieee-cas.org/wp-content/uploads/2011/11/Nano-Gega-TC-2006-Annual-Report27.pdf# |archive-date=2016-03-30 |dead-url=yes |df= }}
20. ^{{cite book|chapter-url=http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=4208987|last=|first=|date=2007|website=NOCS2007|publisher=IEEE|archive-url=|archive-date=|dead-url=|accessdate=2015-07-14|doi=10.1109/NOCS.2007.28|title=First International Symposium on Networks-on-Chip (NOCS'07)|pages=ix|isbn=978-0-7695-2773-4|chapter=Message from the General and Program Chairs}}
21. ^{{cite web|url=http://www.ece.rochester.edu/~friedman/|title=Eby G. Friedman/Publications|last=|first=|date=|website=|archive-url=|archive-date=|dead-url=|accessdate=2014-07-14}}
22. ^{{Cite web|url=http://www2.ece.rochester.edu/~friedman/|title=Eby G. Friedman/Patents|last=|first=|date=|website=www2.ece.rochester.edu|archive-url=|archive-date=|dead-url=|access-date=2017-12-13}}
23. ^{{cite book|author=Eby G. Friedman|title=Clock distribution networks in VLSI circuits and systems|url=https://books.google.com/books?id=3NZQAAAAYAAJ|year=1995|publisher=Institute of Electrical and Electronics Engineers|isbn=978-0-7803-1058-2}}
24. ^{{cite book|author=Eby G. Friedman|title=High Performance Clock Distribution Networks|url=https://books.google.com/books?id=ry7vBwAAQBAJ|date=6 December 2012|publisher=Springer Science & Business Media|isbn=978-1-4684-8440-3}}
25. ^{{cite book|author1=Juan J. Becerra|author2=Eby G. Friedman|title=Analog Design Issues in Digital VLSI Circuits and Systems: A Special Issue of Analog Integrated Circuits and Signal Processing, An International Journal Volume 14, Nos. 1/2 (1997)|url=https://books.google.com/books?id=zvjpBwAAQBAJ|date=6 December 2012|publisher=Springer Science & Business Media|isbn=978-1-4615-6101-9}}
26. ^{{cite book|author1=Juan J. Becerra|author2=Eby G. Friedman|title=Analog Design Issues in Digital VLSI Circuits and Systems: A Special Issue of Analog Integrated Circuits and Signal Processing, An International Journal Volume 14, Nos. 1/2 (1997)|url=https://books.google.com/books?id=zvjpBwAAQBAJ|date=6 December 2012|publisher=Springer Science & Business Media|isbn=978-1-4615-6101-9}}
27. ^{{cite web|url=http://www.ece.northwestern.edu/~ismail/cfp.pdf |title=On-Chip Inductance in High-Speed Integrated Circuits |publisher=Ece.northwestern.edu |accessdate=2014-07-14}}
28. ^{{Cite book|url=https://www.springer.com/us/book/9781402075346|title=Power Distribution Networks in High Speed Integrated {{!}} Andrey V. Mezhiba {{!}} Springer|language=en|isbn=9781402075346|publisher=Springer|year=2004}}
29. ^{{Cite book|title=Multi-Voltage CMOS Circuit Design - Kursun - Wiley Online Library|last=Kursun|first=Volkan|last2=Friedman|first2=Eby G.|language=en|doi=10.1002/0470033371|year = 2006|isbn = 9780470033371}}
30. ^{{cite book|url=https://books.google.com/?id=Fv7UqhF-yzQC&pg=PR19&lpg=PR19&dq=%22Power+Distribution+Networks+with+On-Chip+Decoupling+Capacitors%22#v=onepage&q=%22Power%20Distribution%20Networks%20with%20On-Chip%20Decoupling%20Capacitors%22&f=false |format=PDF |title=Power Distribution Networks with On-Chip Decoupling Capacitors |author1=Mikhail Popovich |author2=Andrey V. Mezhiba |author3=Selçuk Köse |author4=Eby Friedman |publisher=Ihome.ust.hk |accessdate=2014-07-14|isbn=9781441978714 |date=2010-11-23 }}
31. ^{{cite web|url=http://www.sciencedirect.com/science/book/9780123743435 |title=Three-Dimensional Integrated Circuit Design |author1=F. Pavlidis |author2=Eby G. Friedman |publisher=Elsevier Inc |accessdate=2014-07-14}}
32. ^{{cite book|url=https://books.google.com/?id=D8rO8z6SwzMC |title=High Performance Integrated Circuit Design |author1=Emre Salman |author2=Eby Friedman |publisher=McGraw Hill Professional |accessdate=2014-07-14|isbn=9780071635752 |date=2012-08-14 }}
33. ^{{Cite journal|last=Vaisband|first=Inna|last2=Price|first2=Burt|last3=Köse|first3=Selçuk|last4=Kolla|first4=Yesh|last5=Friedman|first5=Eby G.|last6=Fischer|first6=Jeff|date=2015-06-01|title=Distributed LDO regulators in a 28 nm power delivery system|journal=Analog Integrated Circuits and Signal Processing|language=en|volume=83|issue=3|pages=295–309|doi=10.1007/s10470-015-0526-y|issn=0925-1030|citeseerx=10.1.1.696.126}}
34. ^{{Cite journal|last=Vaisband|first=Inna|last2=Friedman|first2=Eby G.|date=2015|title=Energy efficient adaptive clustering of on-chip power delivery systems|url=https://pdfs.semanticscholar.org/e0f6/727809048fbcfc5428273c527a78a4718ed8.pdf|journal=INTEGRATION, the VLSI Journal|volume=48|pages=1–9|via=|doi=10.1016/j.vlsi.2014.06.003}}
35. ^{{Cite journal|last=Kazemi|first=M.|last2=Ipek|first2=E.|last3=Friedman|first3=E. G.|date=November 2014|title=Adaptive Compact Magnetic Tunnel Junction Model|journal=IEEE Transactions on Electron Devices|volume=61|issue=11|pages=3883–3891|doi=10.1109/TED.2014.2359627|issn=0018-9383|bibcode=2014ITED...61.3883K|citeseerx=10.1.1.696.1705}}
36. ^{{Cite journal|last=Kvatinsky|first=S.|last2=Satat|first2=G.|last3=Wald|first3=N.|last4=Friedman|first4=E. G.|last5=Kolodny|first5=A.|last6=Weiser|first6=U. C.|date=October 2014|title=Memristor-Based Material Implication (IMPLY) Logic: Design Principles and Methodologies|journal=IEEE Transactions on Very Large Scale Integration (VLSI) Systems|volume=22|issue=10|pages=2054–2066|doi=10.1109/TVLSI.2013.2282132|issn=1063-8210|citeseerx=10.1.1.696.2360}}
37. ^{{Cite journal|last=Shapiro|first=Alexander|last2=Friedman|first2=Eby G.|date=2014-06-11|title=MOS Current Mode Logic Near Threshold Circuits|journal=Journal of Low Power Electronics and Applications|language=en|volume=4|issue=2|pages=138–152|doi=10.3390/jlpea4020138}}
38. ^{{Cite journal|date=2014-02-01|title=2T–1R STT-MRAM memory cells for enhanced on/off current ratio|journal=Microelectronics Journal|volume=45|issue=2|pages=133–143|doi=10.1016/j.mejo.2013.11.015|issn=0026-2692|last1=Patel|first1=Ravi|last2=Ipek|first2=Engin|last3=Friedman|first3=Eby G.}}
39. ^{{Cite journal|last=Kvatinsky|first=S.|last2=Nacson|first2=Y. H.|last3=Etsion|first3=Y.|last4=Friedman|first4=E. G.|last5=Kolodny|first5=A.|last6=Weiser|first6=U. C.|date=January 2014|title=Memristor-Based Multithreading|journal=IEEE Computer Architecture Letters|volume=13|issue=1|pages=41–44|doi=10.1109/L-CA.2013.3|issn=1556-6056|citeseerx=10.1.1.386.4974}}
40. ^{{cite web|url=http://www.eecs.wsu.edu/~ee587/reference_reading/Friedman_2.pdf|title=Clock Distribution Networks in Synchronous Digital Integrated Circuits|author=Eby G. Friedman|publisher=Eecs.wsu.edu|accessdate=2014-07-14}}
41. ^{{Cite journal|last=Ismail|first=Y. I.|last2=Friedman|first2=E. G.|date=April 2000|title=Effects of inductance on the propagation delay and repeater insertion in VLSI circuits|journal=IEEE Transactions on Very Large Scale Integration (VLSI) Systems|volume=8|issue=2|pages=195–206|doi=10.1109/92.831439|issn=1063-8210|citeseerx=10.1.1.134.9284}}
42. ^{{Cite book|last=Ismail|first=Y. I.|last2=Friedman|first2=E. G.|last3=Neves|first3=J. L.|date=June 1998|title=Figures of merit to characterize the importance of on-chip inductance|url=http://ieeexplore.ieee.org/document/724534/|journal=Proceedings 1998 Design and Automation Conference. 35th DAC. (Cat. No.98CH36175)|pages=560–565|doi=10.1145/277044.277193|isbn=978-0897919647|citeseerx=10.1.1.32.2950}}
43. ^{{Cite journal|last=Haurylau|first=M.|last2=Chen|first2=G.|last3=Chen|first3=H.|last4=Zhang|first4=J.|last5=Nelson|first5=N. A.|last6=Albonesi|first6=D. H.|last7=Friedman|first7=E. G.|last8=Fauchet|first8=P. M.|date=November 2006|title=On-Chip Optical Interconnect Roadmap: Challenges and Critical Directions|journal=IEEE Journal of Selected Topics in Quantum Electronics|volume=12|issue=6|pages=1699–1705|doi=10.1109/JSTQE.2006.880615|issn=1077-260X|bibcode=2006IJSTQ..12.1699H}}
{{authority control}}{{DEFAULTSORT:Friedman, Eby G}}

11 : Living people|1957 births|People from Jersey City, New Jersey|Lafayette College alumni|University of California, Irvine alumni|American electrical engineers|University of Rochester faculty|Fellow Members of the IEEE|Fulbright Scholars|Engineers from California|Engineers from New Jersey

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