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CRIVELLI; Diego Ernesto Patent Filings

CRIVELLI; Diego Ernesto

Patent Applications and Registrations

Patent applications and USPTO patent grants for CRIVELLI; Diego Ernesto.The latest application filed is for "coherent optical transceiver with programmable application modes".

Company Profile
15.42.25
  • CRIVELLI; Diego Ernesto - Cordoba AR
  • Crivelli; Diego Ernesto - Cordova AR
  • Crivelli; Diego Ernesto - Santa Clara CA
*profile and listings may contain filings by different individuals or companies with the same name. Review application materials to confirm ownership/assignment.
Patent Activity
PatentDate
Coherent Optical Transceiver With Programmable Application Modes
App 20210091855 - VOOIS; Paul ;   et al.
2021-03-25
Coherent optical transceiver with programmable application modes
Grant 10,880,010 - Voois , et al. December 29, 2
2020-12-29
High-speed receiver architecture
Grant 10,841,013 - Agazzi , et al. November 17, 2
2020-11-17
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 10,763,972 - Hueda , et al. Sep
2020-09-01
Coherent transceiver architecture
Grant 10,742,327 - Agazzi , et al. A
2020-08-11
Timing Recovery For Optical Coherent Receivers In The Presence Of Polarization Mode Dispersion
App 20200092011 - HUEDA; Mario Rafael ;   et al.
2020-03-19
High-speed Receiver Architecture
App 20200067600 - AGAZZI; Oscar Ernesto ;   et al.
2020-02-27
Coherent Transceiver Architecture
App 20200044744 - AGAZZI; Oscar Ernesto ;   et al.
2020-02-06
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 10,530,493 - Hueda , et al. J
2020-01-07
High-speed receiver architecture
Grant 10,505,638 - Agazzi , et al. Dec
2019-12-10
Coherent transceiver architecture
Grant 10,491,304 - Agazzi , et al. Nov
2019-11-26
Timing Recovery For Optical Coherent Receivers In The Presence Of Polarization Mode Dispersion
App 20190115984 - HUEDA; Mario Rafael ;   et al.
2019-04-18
Coherent Transceiver Architecture
App 20190109646 - AGAZZI; Oscar Ernesto ;   et al.
2019-04-11
High-speed Receiver Architecture
App 20190020415 - AGAZZI; Oscar Ernesto ;   et al.
2019-01-17
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 10,181,908 - Hueda , et al. Ja
2019-01-15
Coherent transceiver architecture
Grant 10,177,851 - Agazzi , et al. J
2019-01-08
Coherent Optical Transceiver With Programmable Application Modes
App 20180343062 - VOOIS; Paul ;   et al.
2018-11-29
High-speed receiver architecture
Grant 10,097,273 - Agazzi , et al. October 9, 2
2018-10-09
Coherent optical transceiver with programmable application modes
Grant 10,069,571 - Voois , et al. September 4, 2
2018-09-04
High-speed optical communications system
Grant 10,056,981 - Agazzi , et al. August 21, 2
2018-08-21
Single-chip transceiver with electronic dispersion compensation for coherent optical channels
Grant 10,038,506 - Crivelli , et al. July 31, 2
2018-07-31
High-speed Optical Communications System
App 20180205466 - AGAZZI; Oscar Ernesto ;   et al.
2018-07-19
High-speed optical communications system
Grant 9,960,855 - Agazzi , et al. May 1, 2
2018-05-01
Timing Recovery For Optical Coherent Receivers In The Presence Of Polarization Mode Dispersion
App 20180115369 - HUEDA; Mario Rafael ;   et al.
2018-04-26
High-speed Receiver Architecture
App 20180102850 - AGAZZI; Oscar Ernesto ;   et al.
2018-04-12
Coherent Optical Transceiver With Programmable Application Modes
App 20180069632 - VOOIS; Paul ;   et al.
2018-03-08
Single-chip Transceiver With Electronic Dispersion Compensation For Coherent Optical Channels
App 20180062760 - CRIVELLI; Diego Ernesto ;   et al.
2018-03-01
High-speed Optical Communications System
App 20180041287 - AGAZZI; Oscar Ernesto ;   et al.
2018-02-08
High-speed receiver architecture
Grant 9,882,648 - Agazzi , et al. January 30, 2
2018-01-30
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 9,876,583 - Hueda , et al. January 23, 2
2018-01-23
Single-chip transceiver with electronic dispersion compensation for coherent optical channels
Grant 9,838,140 - Crivelli , et al. December 5, 2
2017-12-05
Coherent optical transceiver with programmable application modes
Grant 9,838,131 - Voois , et al. December 5, 2
2017-12-05
High-speed optical communications system
Grant 9,825,711 - Agazzi , et al. November 21, 2
2017-11-21
Coherent Transceiver Architecture
App 20170317759 - AGAZZI; Oscar Ernesto ;   et al.
2017-11-02
Timing Recovery For Optical Coherent Receivers In The Presence Of Polarization Mode Dispersion
App 20170302385 - HUEDA; Mario Rafael ;   et al.
2017-10-19
Coherent transceiver architecture
Grant 9,735,881 - Agazzi , et al. August 15, 2
2017-08-15
High-speed Receiver Architecture
App 20170214468 - Agazzi; Oscar Ernesto ;   et al.
2017-07-27
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 9,712,253 - Hueda , et al. July 18, 2
2017-07-18
Single-chip transceiver with electronic dispersion compensation for coherent optical channels
Grant 9,673,910 - Crivelli , et al. June 6, 2
2017-06-06
High-speed receiver architecture
Grant 9,531,475 - Agazzi , et al. December 27, 2
2016-12-27
High-speed optical communications system
Grant 9,391,715 - Agazzi , et al. July 12, 2
2016-07-12
Coherent transceiver architecture
Grant 9,337,934 - Agazzi , et al. May 10, 2
2016-05-10
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 9,225,433 - Hueda , et al. December 29, 2
2015-12-29
Timing recovery for optical coherent receivers in the presence of polarization mode dispersion
Grant 9,178,625 - Hueda , et al. November 3, 2
2015-11-03
Reset in a receiver using center of gravity of equalizer coefficients
Grant 9,077,572 - Hueda , et al. July 7, 2
2015-07-07
Coherent optical transceiver with programmable application modes
Grant 9,071,364 - Voois , et al. June 30, 2
2015-06-30
Skew compensation based on equalizer coefficients
Grant 9,036,751 - Wang , et al. May 19, 2
2015-05-19
High-Speed Receiver Architecture
App 20150098710 - Agazzi; Oscar Ernesto ;   et al.
2015-04-09
Adaptive equalization in coherent fiber optic communication
Grant 8,873,974 - Hueda , et al. October 28, 2
2014-10-28
Multidimensional adaptively trained equalization
Grant 8,565,297 - Carrer , et al. October 22, 2
2013-10-22
Adaptive Equalization In Coherent Fiber Optic Communication
App 20130251379 - Hueda; Mario Rafael ;   et al.
2013-09-26
Adaptive equalization in coherent fiber optic communication
Grant 8,457,504 - Hueda , et al. June 4, 2
2013-06-04
Multi-channel equalization to compensate for impairments introduced by interleaved devices
Grant 8,265,134 - Agazzi , et al. September 11, 2
2012-09-11
Multidimensional Adaptively Trained Equalization
App 20120106615 - Carrer; Hugo Santiago ;   et al.
2012-05-03
Multidimensional decision-directed trained adaptive equalization
Grant 8,116,367 - Carrer , et al. February 14, 2
2012-02-14
Adaptive Equalization In Coherent Fiber Optic Communication
App 20120002977 - Hueda; Mario Rafael ;   et al.
2012-01-05
Adaptive equalization in coherent fiber optic communication
Grant 8,041,233 - Hueda , et al. October 18, 2
2011-10-18
Multi-channel equalization to compensate for impairments introduced by interleaved devices
Grant 7,778,320 - Agazzi , et al. August 17, 2
2010-08-17
Compensating impairments of optical channel using adaptive equalization
Grant 7,623,797 - Crivelli , et al. November 24, 2
2009-11-24
Multidimensional Decision-directed Trained Adaptive Equalization
App 20090252216 - Carrer; Hugo Santiago ;   et al.
2009-10-08
Multidimensional decision-directed trained adaptive equalization
Grant 7,580,454 - Carrer , et al. August 25, 2
2009-08-25
Multidimensional decision-directed trained adaptive equalization
App 20060013296 - Carrer; Hugo Santiago ;   et al.
2006-01-19
Compensating impairments of optical channel using adaptive equalization
App 20060013597 - Crivelli; Diego Ernesto ;   et al.
2006-01-19
Adaptive equalization in coherent fiber optic communication
App 20060013590 - Hueda; Mario Rafael ;   et al.
2006-01-19

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