Patents by Inventor Lynn Nelson
Lynn Nelson has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20260129256Abstract: Aspects of the subject disclosure may include, for example, a fiber interconnect system that includes gateways and wall boxes. Gateways and wall boxes may include pluggable modules with client side connectors and may include optical connections. The client side connectors may be coupled to client devices via Ethernet connections, HDMI connections, and the like. The gateways and wall boxes may be coupled by optical fibers. Other embodiments are disclosed.Type: ApplicationFiled: January 5, 2026Publication date: May 7, 2026Applicant: AT&T Intellectual Property I, L.P.Inventors: Rajendra Damle, Lynn Nelson
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Patent number: 12532041Abstract: Aspects of the subject disclosure may include, for example, a fiber interconnect system that includes gateways and wall boxes. Gateways and wall boxes may include pluggable modules with client side connectors and may include optical connections. The client side connectors may be coupled to client devices via Ethernet connections, HDMI connections, and the like. The gateways and wall boxes may be coupled by optical fibers. Other embodiments are disclosed.Type: GrantFiled: June 26, 2024Date of Patent: January 20, 2026Assignee: AT&T Intellectual Property I, L.P.Inventors: Rajendra Damle, Lynn Nelson
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Publication number: 20260006280Abstract: Aspects of the subject disclosure may include, for example, a fiber interconnect system that includes gateways and wall boxes. Gateways and wall boxes may include pluggable modules with client side connectors and may include optical connections. The client side connectors may be coupled to client devices via Ethernet connections, HDMI connections, and the like. The gateways and wall boxes may be coupled by optical fibers. Other embodiments are disclosed.Type: ApplicationFiled: June 26, 2024Publication date: January 1, 2026Applicant: AT&T Intellectual Property I, L.P.Inventors: Rajendra Damle, Lynn Nelson
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Patent number: 9794020Abstract: A method and system for distributed spatial mode processing is disclosed. A number of optical signals are received over an optical link. Each optical signal is received via a respective one of a number of spatial modes of the optical link. The optical link includes a particular spatial mode not used for the receiving. A first one of the number of optical signals received from a first one of the number of spatial modes is transferred to a second one of the number of spatial modes via the particular spatial mode, wherein the first one of the number of optical signals is transmitted via the second one of the number of spatial modes.Type: GrantFiled: February 15, 2017Date of Patent: October 17, 2017Assignee: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Publication number: 20170155466Abstract: A method and system for distributed spatial mode processing is disclosed. A number of optical signals are received over an optical link. Each optical signal is received via a respective one of a number of spatial modes of the optical link. The optical link includes a particular spatial mode not used for the receiving. A first one of the number of optical signals received from a first one of the number of spatial modes is transferred to a second one of the number of spatial modes via the particular spatial mode, wherein the first one of the number of optical signals is transmitted via the second one of the number of spatial modes.Type: ApplicationFiled: February 15, 2017Publication date: June 1, 2017Applicant: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Patent number: 9608762Abstract: A method and system for distributed spatial mode processing is disclosed a number of optical signals are received over an optical link. Each optical signal is received via a respective one of a number of spatial modes of the optical link. The optical link includes a particular spatial mode not used for the receiving. A first one of the number of optical signals received from a first one of the number of spatial modes is transferred to a second one of the number of spatial modes via the particular spatial mode, wherein the first one of the number of optical signals is transmitted via the second one of the number of spatial modes.Type: GrantFiled: March 10, 2016Date of Patent: March 28, 2017Assignee: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Patent number: 9515742Abstract: A method for modifying the performance of an adaptive equalizer in a receiver is provided. A carrier wave comprising a first polarization state and a second polarization state, wherein there is a correlation between the first polarization state and the second polarization state, is received. The first polarization state and the second polarization state are demultiplexed to generate two respective constellations. A first expected value based on the first constellation, and a second expected value based on the second constellation, are calculated. An adaptive equalizer receives a first and second signals associated with the respective polarization states. The adaptive equalizer generates outputs based on the signals. These outputs are used to generate error values. Feedback is input into the adaptive equalizer, wherein the feedback is based on the error values.Type: GrantFiled: December 14, 2015Date of Patent: December 6, 2016Assignee: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Lynn Nelson
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Publication number: 20160269142Abstract: A method and system for distributed spatial mode processing is disclosed a number of optical signals are received over an optical link. Each optical signal is received via a respective one of a number of spatial modes of the optical link. The optical link includes a particular spatial mode not used for the receiving. A first one of the number of optical signals received from a first one of the number of spatial modes is transferred to a second one of the number of spatial modes via the particular spatial mode, wherein the first one of the number of optical signals is transmitted via the second one of the number of spatial modes.Type: ApplicationFiled: March 10, 2016Publication date: September 15, 2016Inventors: Xiang Zhou, PETER DAVID MAGILL, LYNN NELSON
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Publication number: 20160142149Abstract: A method for modifying the performance of an adaptive equalizer in a receiver is provided. A carrier wave comprising a first polarization state and a second polarization state, wherein there is a correlation between the first polarization state and the second polarization state, is received. The first polarization state and the second polarization state are demultiplexed to generate two respective constellations. A first expected value based on the first constellation, and a second expected value based on the second constellation, are calculated. An adaptive equalizer receives a first and second signals associated with the respective polarization states. The adaptive equalizer generates outputs based on the signals. These outputs are used to generate error values. Feedback is input into the adaptive equalizer, wherein the feedback is based on the error values.Type: ApplicationFiled: December 14, 2015Publication date: May 19, 2016Applicant: AT&T Intellectual Property I, LPInventors: Xiang Zhou, Lynn Nelson
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Patent number: 9312981Abstract: A method and system for distributed spatial mode processing is disclosed where a plurality of optical signals is received via a plurality of spatial modes on a first optical link, spatial mode conversion is performed on the plurality of optical signals to switch the plurality of optical signals to different ones of the plurality of spatial modes and the plurality of optical signals is transmitted via the different ones of the plurality of spatial modes on a second optical link where spatial mode filtering may occur.Type: GrantFiled: October 19, 2015Date of Patent: April 12, 2016Assignee: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Publication number: 20160043826Abstract: A method and system for distributed spatial mode processing is disclosed where a plurality of optical signals is received via a plurality of spatial modes on a first optical link, spatial mode conversion is performed on the plurality of optical signals to switch the plurality of optical signals to different ones of the plurality of spatial modes and the plurality of optical signals is transmitted via the different ones of the plurality of spatial modes on a second optical link where spatial mode filtering may occur.Type: ApplicationFiled: October 19, 2015Publication date: February 11, 2016Applicant: AT&T INTELLECTUAL PROPERTY I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Patent number: 9252988Abstract: A method for modifying the performance of an adaptive equalizer in a receiver is provided. A carrier wave including a first polarization state and a second polarization state, wherein there is a correlation between the first polarization state and the second polarization state, is received. The first polarization state and the second polarization state are demultiplexed to generate two respective constellations. A first expected value based on the first constellation, and a second expected value based on the second constellation, are calculated. An adaptive equalizer receives a first and second signals associated with the respective polarization states. The adaptive equalizer generates outputs based on the signals. These outputs are used to generate error values. Feedback is input into the adaptive equalizer, wherein the feedback is based on the error values.Type: GrantFiled: November 30, 2011Date of Patent: February 2, 2016Assignee: AT&T Intellectual Property I, LPInventors: Xiang Zhou, Lynn Nelson
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Patent number: 9197356Abstract: A method and system for distributed spatial mode processing is disclosed where a plurality of optical signals is received via a plurality of spatial modes on a first optical link, spatial mode conversion is performed on the plurality of optical signals to switch the plurality of optical signals to different ones of the plurality of spatial modes and the plurality of optical signals is transmitted via the different ones of the plurality of spatial modes on a second optical link where spatial mode filtering may occur.Type: GrantFiled: November 16, 2012Date of Patent: November 24, 2015Assignee: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Publication number: 20140140694Abstract: A method and system for distributed spatial mode processing is disclosed where a plurality of optical signals is received via a plurality of spatial modes on a first optical link, spatial mode conversion is performed on the plurality of optical signals to switch the plurality of optical signals to different ones of the plurality of spatial modes and the plurality of optical signals is transmitted via the different ones of the plurality of spatial modes on a second optical link where spatial mode filtering may occur.Type: ApplicationFiled: November 16, 2012Publication date: May 22, 2014Applicant: AT&T Intellectual Property I, L.P.Inventors: Xiang Zhou, Peter David Magill, Lynn Nelson
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Publication number: 20130138375Abstract: A method for modifying the performance of an adaptive equalizer in a receiver is provided. A carrier wave comprising a first polarization state and a second polarization state, wherein there is a correlation between the first polarization state and the second polarization state, is received. The first polarization state and the second polarization state are demultiplexed to generate two respective constellations. A first expected value based on the first constellation, and a second expected value based on the second constellation, are calculated. An adaptive equalizer receives a first and second signals associated with the respective polarization states. The adaptive equalizer generates outputs based on the signals. These outputs are used to generate error values. Feedback is input into the adaptive equalizer, wherein the feedback is based on the error values.Type: ApplicationFiled: November 30, 2011Publication date: May 30, 2013Applicant: AT&T INTELLECTUAL PROPERTY I, LPInventors: Xiang Zhou, Lynn Nelson
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Patent number: 8390797Abstract: Described herein are systems and methods for enhancing the resolution of an optical time-domain reflectometer (“OTDR”). One embodiment of the disclosure of this application is related to a device, comprising an optical measuring component collecting a first set of measurement data from a forward trace along an optical fiber with the optical measuring device using depolarized light, and a processing component calculating loss along the length of fiber. The optical measuring device further collects a second set of measurement data from a backward trace along the optical fiber with the optical measuring device using depolarized light.Type: GrantFiled: December 17, 2009Date of Patent: March 5, 2013Assignee: AT & T Intellectual Property I, LPInventors: Sheryl Woodward, Jonathan Nagel, Lynn Nelson
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Publication number: 20110149271Abstract: Described herein are systems and methods for enhancing the resolution of an optical time-domain reflectometer (“OTDR”). One embodiment of the disclosure of this application is related to a device, comprising an optical measuring component collecting a first set of measurement data from a forward trace along an optical fiber with the optical measuring device using depolarized light, and a processing component calculating loss along the length of fiber. The optical measuring device further collects a second set of measurement data from a backward trace along the optical fiber with the optical measuring device using depolarized light.Type: ApplicationFiled: December 17, 2009Publication date: June 23, 2011Inventors: Sheryl Woodward, Jonathan Nagel, Lynn Nelson
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Publication number: 20050105165Abstract: A method, pump and Raman amplifier control an amount of stimulated Brillouin scattering (SBS) produced by the Raman amplifier pump so as to regulate a power penalty experienced by a receiver due to the SBS. A multi-mode semiconductor laser produces a multi-mode pump light having a dominate mode at a predetermined wavelength. At least a portion of the multi-mode pump light is coupled to a Raman gain medium in a forward pumping direction. A reflection sensor monitors reflected light that is at least partially reflected from said Raman gain medium. The reflection sensor has a passband characteristic that passes optical power of a dominate SBS peak of said reflected light, but suppresses other SBS peaks that are offset in wavelength from said dominate SBS peak. The optical power of the dominate SBS peak is compared to an optical power of the multi-mode pump light, and it is determined whether a result of the comparing step is above a predetermined threshold.Type: ApplicationFiled: September 8, 2004Publication date: May 19, 2005Applicant: The Furukawa Electric Co., Ltd.Inventors: Yoshihiro Emori, Jake Bromage, Lynn Nelson, Shu Namiki
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Publication number: 20050009770Abstract: The present invention provides novel excipient formulations for delivering nucleic acids, particularly naked DNA, across cell membranes in vivo. The present invention also provides penetration enhancers which can be used to enhance delivery and uptake by cells of a wide variety of nucleic acids particularly therapeutic agents or DNA molecule containing a gene encoding a protein which can benefit normal animals, especially in the application of gene therapy and augmenting viability or survival rate of newborn farm animals.Type: ApplicationFiled: September 26, 2003Publication date: January 13, 2005Inventors: Lynn Nelson, Paula Gaynor, Rajendra Krishnan