default search action
Fuad E. Doany
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2020
- [c18]Nicolas Dupuis, Jonathan E. Proesel, Nicolas Boyer, Herschel A. Ainspan, Christian W. Baks, Fuad E. Doany, Elaine Cyr, Benjamin G. Lee:
An 8×8 Silicon Photonic Switch Module with Nanosecond-Scale Reconfigurability. OFC 2020: 1-3 - [c17]Jonathan E. Proesel, Nicolas Dupuis, Herschel A. Ainspan, Christian W. Baks, Fuad E. Doany, Nicolas Boyer, Elaine Cyr, Benjamin G. Lee:
A Monolithically Integrated Silicon Photonics 8×8 Switch in 90nm SOI CMOS. VLSI Circuits 2020: 1-2
2010 – 2019
- 2019
- [c16]Nicolas Dupuis, Fuad E. Doany, Russell A. Budd, Laurent Schares, Christian W. Baks, Daniel M. Kuchta, Takako Hirokawa, Benjamin G. Lee:
A Nonblocking 4×4 Mach-Zehnder Switch with Integrated Gain and Nanosecond-Scale Reconfiguration Time. OFC 2019: 1-3 - [c15]Daniel M. Kuchta, Jonathan E. Proesel, Fuad E. Doany, Wooram Lee, Timothy O. Dickson, Herschel A. Ainspan, Mounir Meghelli, Petar K. Pepeljugoski, Xiaoxiong Gu, Michael P. Beakes, Mark Schultz, Marc Taubenblatt, Paul Fortier, Catherine Dufort, Éric Turcotte, Marc-Olivier Pion, Charles Bureau, Frank Flens, Greta Light, Blake Trekell, Kevin Koski:
Multi-Wavelength Optical Transceivers Integrated on Node (MOTION). OFC 2019: 1-3 - [c14]Benjamin G. Lee, Nicolas Dupuis, Fuad E. Doany, Laurent Schares, Nicolas Boyer, Nathalie Normand, Herschel A. Ainspan, Christian W. Baks, Jonathan E. Proesel, Isabel De Sousa, Mounir Meghelli, Marc A. Taubenblatt:
Toward Optical Networks using Rapid Amplified Multi-Wavelength Photonic Switches. OFC 2019: 1-3 - 2018
- [j9]Ilter Özkaya, Alessandro Cevrero, Pier Andrea Francese, Christian Menolfi, Thomas Morf, Matthias Braendli, Daniel M. Kuchta, Lukas Kull, Christian W. Baks, Jonathan E. Proesel, Marcel A. Kossel, Danny Luu, Benjamin G. Lee, Fuad E. Doany, Mounir Meghelli, Yusuf Leblebici, Thomas Toifl:
A 60-Gb/s 1.9-pJ/bit NRZ Optical Receiver With Low-Latency Digital CDR in 14-nm CMOS FinFET. IEEE J. Solid State Circuits 53(4): 1227-1237 (2018) - 2017
- [j8]Ilter Özkaya, Alessandro Cevrero, Pier Andrea Francese, Christian Menolfi, Thomas Morf, Matthias Braendli, Daniel M. Kuchta, Lukas Kull, Christian W. Baks, Jonathan E. Proesel, Marcel A. Kossel, Danny Luu, Benjamin G. Lee, Fuad E. Doany, Mounir Meghelli, Yusuf Leblebici, Thomas Toifl:
A 64-Gb/s 1.4-pJ/b NRZ Optical Receiver Data-Path in 14-nm CMOS FinFET. IEEE J. Solid State Circuits 52(12): 3458-3473 (2017) - [c13]Alessandro Cevrero, Ilter Özkaya, Pier Andrea Francese, Christian Menolfi, Thomas Morf, Matthias Braendli, Daniel M. Kuchta, Lukas Kull, Jonathan E. Proesel, Marcel A. Kossel, Danny Luu, Benjamin G. Lee, Fuad E. Doany, Mounir Meghelli, Yusuf Leblebici, Thomas Toifl:
29.1 A 64Gb/s 1.4pJ/b NRZ optical-receiver data-path in 14nm CMOS FinFET. ISSCC 2017: 482-483 - [c12]Tam N. Huynh, Fuad E. Doany, Daniel M. Kuchta, Deepa Gazula, Edward Shaw, J. O'Daniel, J. A. Tatum:
4×50Gb/s NRZ shortwave-wavelength division multiplexing VCSEL link over 50m multimode fiber. OFC 2017: 1-3 - 2016
- [c11]Laurent Schares, Tam N. Huynh, M. G. Wood, Russell A. Budd, Fuad E. Doany, Daniel M. Kuchta, Nicolas Dupuis, Benjamin G. Lee, Clint L. Schow, Martin Moehrle, Ariane Sigmund, W. Rehbein, Tsung-Yang Liow, L. W. Luo, G. Q. Lo:
A gain-integrated silicon photonic carrier with SOA-array for scalable optical switch fabrics. OFC 2016: 1-3 - 2015
- [c10]Daniel M. Kuchta, Fuad E. Doany, Laurent Schares, Christian Neumeyr, Aidan Daly, Benjamin Kögel, Juergen Rosskopf, Markus Ortsiefer:
Error-free 56 Gb/s NRZ modulation of a 1530 nm VCSEL link. ECOC 2015: 1-3 - [c9]Laurent Schares, Russell A. Budd, Daniel M. Kuchta, Fuad E. Doany, Clint Schow, Martin Möhrle, Ariane Sigmund, W. Rehbein:
Etched-facet semiconductor optical amplifiers for gain-integrated photonic switch fabrics. ECOC 2015: 1-3 - [c8]Daniel M. Kuchta, Tam N. Huynh, Fuad E. Doany, Alexander V. Rylyakov, Clint L. Schow, Petar K. Pepeljugoski, D. Gazula, Edward Shaw, Jim Tatum:
A 4-λ, 40Gb/s/λ bandwidth extension of multimode fiber in the 850nm range. OFC 2015: 1-3 - 2014
- [c7]Fuad E. Doany:
High density optical interconnects for High Performance Computing. OFC 2014: 1-3 - [c6]Nicolas Dupuis, Daniel M. Kuchta, Fuad E. Doany, Alexander V. Rylyakov, Jonathan E. Proesel, Christian W. Baks, Clint L. Schow, S. Luong, C. Xie, L. Wang, S. Huang, K. Jackson, N. Y. Li:
Exploring the limits of high-speed receivers for multimode VCSEL-based optical links. OFC 2014: 1-3 - [c5]Petar K. Pepeljugoski, Fuad E. Doany, Daniel M. Kuchta, Benjamin G. Lee, Clint Schow, Laurent Schares:
Connector performance analysis for D-shaped multi-core multi mode fiber. OFC 2014: 1-3 - 2013
- [c4]Daniel M. Kuchta, Clint L. Schow, Alexander V. Rylyakov, Jonathan E. Proesel, Fuad E. Doany, Christian W. Baks, B. H. Hamel-Bissell, Chris Kocot, L. Graham, R. Johnson, Gary Landry, E. Shaw, A. MacInnes, Jim Tatum:
A 56.1Gb/s NRZ modulated 850nm VCSEL-based optical link. OFC/NFOEC 2013: 1-3 - 2012
- [j7]Alexander V. Rylyakov, Clint Schow, Benjamin G. Lee, William M. J. Green, Solomon Assefa, Fuad E. Doany, Min Yang, Joris Van Campenhout, Christopher V. Jahnes, Jeffrey A. Kash, Yurii A. Vlasov:
Silicon Photonic Switches Hybrid-Integrated With CMOS Drivers. IEEE J. Solid State Circuits 47(1): 345-354 (2012) - 2011
- [c3]Alexander V. Rylyakov, Clint Schow, Benjamin G. Lee, William M. J. Green, Joris Van Campenhout, Min Yang, Fuad E. Doany, Solomon Assefa, Christopher V. Jahnes, Jeffrey A. Kash, Yurii A. Vlasov:
A 3.9ns 8.9mW 4×4 silicon photonic switch hybrid integrated with CMOS driver. ISSCC 2011: 222-224
2000 – 2009
- 2009
- [j6]Clint L. Schow, Fuad E. Doany, Chen Chen, Alexander V. Rylyakov, Christian W. Baks, Daniel M. Kuchta, Richard A. John, Jeffrey A. Kash:
Low-Power 16 x 10 Gb/s Bi-Directional Single Chip CMOS Optical Transceivers Operating at ≪ 5 mW/Gb/s/link. IEEE J. Solid State Circuits 44(1): 301-313 (2009) - 2008
- [c2]Clint Schow, Fuad E. Doany, Chen Chen, Alexander V. Rylyakov, Christian W. Baks, Daniel M. Kuchta, Richard A. John, Jeffrey A. Kash:
A ≪5mW/Gb/s/link, 16×10Gb/s Bi-Directional Single-Chip CMOS Optical Transceiver for Board-Level Optical Interconnects. ISSCC 2008: 294-295 - 2005
- [c1]John U. Knickerbocker, Chirag S. Patel, Paul S. Andry, Cornelia K. Tsang, L. Paivikki Buchwalter, Edmund J. Sprogis, Hua Gan, Raymond R. Horton, Robert J. Polastre, Steven L. Wright, Christian D. Schuster, Christian W. Baks, Fuad E. Doany, Joanna Rosner, Steven Cordes:
Three dimensional silicon integration using fine pitch interconnection, silicon processing and silicon carrier packaging technology. CICC 2005: 659-662
1990 – 1999
- 1998
- [j5]Robert L. Melcher, Paul M. Alt, Derek B. Dove, Thomas M. Cipolla, Evan G. Colgan, Fuad E. Doany, Kunio Enami, Kenneth C. Ho, Istvan Lovas, Chandrasekhar Narayanaswami, Robert S. Olyha Jr., Carl G. Powell, Alan E. Rosenbluth, James L. Sanford, Eugene S. Schlig, Rama N. Singh, Takatoshi Tomooka, Mitsuru Uda, Kei-Hsiung Yang:
Design and fabrication of a prototype projection data monitor with high information content. IBM J. Res. Dev. 42(3): 321-338 (1998) - [j4]Alan E. Rosenbluth, Derek B. Dove, Fuad E. Doany, Rama N. Singh, Kei-Hsiung Yang, Minhua Lu:
Contrast properties of reflective liquid crystal light valves in projection displays. IBM J. Res. Dev. 42(3): 359-386 (1998) - [j3]Fuad E. Doany, Rama N. Singh, Alan E. Rosenbluth, George L.-T. Chiu:
Projection display throughput: Efficiency of optical transmission and light-source collection. IBM J. Res. Dev. 42(3): 387-400 (1998) - 1997
- [j2]Fuad E. Doany, Thomas Ainsworth, Norman Bobroff, Douglas Goodman, Alan E. Rosenbluth:
Large-field scanning laser ablation system. IBM J. Res. Dev. 41(1&2): 131-142 (1997) - [j1]Fuad E. Doany, Chandrasekhar Narayanaswami:
Laser release process to obtain freestanding multilayer metal-polyimide circuits. IBM J. Res. Dev. 41(1&2): 151-158 (1997)
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-09-28 02:19 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint