Patents by Inventor Paula Lockhart
Paula Lockhart 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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Patent number: 12284780Abstract: A server rack is cabled to obviate the need for top-of-rack switches. Switches and severs are connected through de-mateable connection interfaces at distribution modules disposed along the raceway above the server cabinets. The distribution modules may have externally accessible ports, internally accessible ports, and/or payout spools for the switch cables and/or the server cables.Type: GrantFiled: December 2, 2022Date of Patent: April 22, 2025Assignee: CommScope Technologies LLCInventors: John Paul Anderson, Jason Mikel Bautista, Paula Lockhart, Kamlesh G. Patel, Michael J. Wentworth, William J. Young, Scott C. Sievers
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Patent number: 12276858Abstract: A method of preparing a preformed fiber optic circuit for later termination to at least one fiber optic connector includes providing a substrate for supporting a plurality of optical fibers, the substrate including at least one layer of flexible foil, wherein the flexible foil may be formed from polyethylene terephthalate (PET) according to one example and peeling a layer including at least the optical fibers from the at least one layer of flexible foil.Type: GrantFiled: March 17, 2023Date of Patent: April 15, 2025Assignee: CommScope Technologies LLCInventors: Thomas Marcouiller, Paula Lockhart, Wouter Vranken, Koen Vuerinckx, Laurens Izaäk Van Wuijckhuijse
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Patent number: 12078860Abstract: A fiber optic cable spool is disclosed herein. The fiber optic cable spool may include a first radial flange located at a first axial end of the fiber optic cable spool, a second radial flange located at a second axial end of the fiber optic cable spool, and a drum that extends axially between the first and second radial flanges. The fiber optic cable spool may also include a storage compartment located within the drum. The first radial flange may define a first opening for accessing the storage compartment within the drum. The drum may have a circumferential drum surface that defines a second opening for accessing the storage compartment within the drum.Type: GrantFiled: April 9, 2020Date of Patent: September 3, 2024Assignee: CommScope Technologies LLCInventors: Paula Lockhart, Michael J. Schomisch, Thomas Marcouiller
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Publication number: 20240126038Abstract: A panel system includes a chassis holding one or more tray arrangements, which are each configured to receive one or more cassettes at two or more bays. The tray arrangements and cassettes cooperate to define a cassette sensor arrangement and a port occupancy sensor arrangement having separate interface points. The cassette sensor arrangement may include electronic memory storing physical layer information about the cassette. All active components of the port occupancy sensor arrangement are disposed on the tray while the electronic memories of the cassette sensor arrangement are stored on the cassettes.Type: ApplicationFiled: October 23, 2023Publication date: April 18, 2024Inventors: Ryan Edward ENGE, Paula LOCKHART, Scott Martin KEITH, David Jan Irma VAN BAELEN, Jacob C. ANDERSON, Steven Walter KNOERNSCHILD, Brian J. FITZPATRICK, Pedro MALDONADO, Gary Federico GIBBS, James J. SOLHEID, Matthew J. HOLMBERG, Matthew Robert KIENER
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Patent number: 11852882Abstract: A packaging assembly for telecommunications modules comprises a plurality of telecommunications modules provided in a stacked arrangement in a first container, a plurality of telecommunications modules provided in a stacked arrangement in an adjacent second container, and a removable radius limiter mounted between the first and second containers for guiding all of the fiber optic cabling extending from the telecommunications modules with minimum bend radius protection.Type: GrantFiled: February 28, 2019Date of Patent: December 26, 2023Assignee: CommScope Technologies LLCInventors: Thomas Marcouiller, Paula Lockhart, Michael J. Schomisch, Tomas Fucsek, Roman Solich
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Publication number: 20230288657Abstract: A method of preparing a preformed fiber optic circuit for later termination to at least one fiber optic connector includes providing a substrate for supporting a plurality of optical fibers, the substrate including at least one layer of flexible foil, wherein the flexible foil may be formed from polyethylene terephthalate (PET) according to one example and peeling a layer including at least the optical fibers from the at least one layer of flexible foil.Type: ApplicationFiled: March 17, 2023Publication date: September 14, 2023Applicant: COMMSCOPE TECHNOLOGIES LLCInventors: Thomas MARCOUILLER, Paula LOCKHART, Wouter VRANKEN, Koen VUERINCKX, Laurens Izaäk VAN WUIJCKHUIJSE
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Publication number: 20230280562Abstract: A wall box includes an enclosure having a base and a cover connected to the base. The base and the cover enclose an interior region. The wall box further includes a plurality of fiber optic adapters mounted to the enclosure. The fiber optic adapters include an inner port positioned inside the interior region and an outer port positioned at an outer surface of the enclosure. A tray stack is mounted within the interior region. The tray stack includes a tray mount pivotally connected to the enclosure. The tray mount includes a top surface and an oppositely disposed bottom surface. A first splice tray mounting area is disposed on the top surface and a second splice tray mounting area is disposed on the bottom surface. A plurality of trays is disposed in the first splice tray mounting area. A tray is disposed in the second splice tray mounting area.Type: ApplicationFiled: February 27, 2023Publication date: September 7, 2023Inventors: Matthew Holmberg, James J. Solheid, Erik J. Gronvall, Paula Lockhart, Thomas Marcouiller
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Publication number: 20230189468Abstract: A server rack is cabled to obviate the need for top-of-rack switches. Switches and severs are connected through de-mateable connection interfaces at distribution modules disposed along the raceway above the server cabinets. The distribution modules may have externally accessible ports, internally accessible ports, and/or payout spools for the switch cables and/or the server cables.Type: ApplicationFiled: December 2, 2022Publication date: June 15, 2023Inventors: John Paul Anderson, Jason Mikel Bautista, Paula Lockhart, Kamlesh G. Patel, Michael J. Wentworth, William J. Young, Scott C. Sievers
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Publication number: 20230146432Abstract: A fiber optic telecommunications device includes a rack for mounting a plurality of chassis, each chassis including a plurality of trays slidably mounted thereon and arranged in a vertically stacked arrangement.Type: ApplicationFiled: November 15, 2022Publication date: May 11, 2023Inventors: Brent Campbell, Ryan Kostecka, Paula Lockhart, Scott C. Sievers, Dustin Tichy, Gregory J. Schaible, Jonathan T. Lawson, Oscar Fernando Bran de León
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Patent number: 11609400Abstract: A method of preparing a preformed fiber optic circuit for later termination to at least one fiber optic connector includes providing a substrate for supporting a plurality of optical fibers, the substrate including at least one layer of flexible foil, wherein the flexible foil may be formed from polyethylene terephthalate (PET) according to one example and peeling a layer including at least the optical fibers from the at least one layer of flexible foil.Type: GrantFiled: June 30, 2022Date of Patent: March 21, 2023Assignee: COMMSCOPE TECHNOLOGIES LLCInventors: Thomas Marcouiller, Paula Lockhart, Wouter Vranken, Koen Vuerinckx, Laurens Izaäk Van Wuijckhuijse
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Patent number: 11592636Abstract: A wall box includes an enclosure having a base and a cover connected to the base. The base and the cover enclose an interior region. The wall box further includes a plurality of fiber optic adapters mounted to the enclosure. The fiber optic adapters include an inner port positioned inside the interior region and an outer port positioned at an outer surface of the enclosure. A tray stack is mounted within the interior region. The tray stack includes a tray mount pivotally connected to the enclosure. The tray mount includes a top surface and an oppositely disposed bottom surface. A first splice tray mounting area is disposed on the top surface and a second splice tray mounting area is disposed on the bottom surface. A plurality of trays is disposed in the first splice tray mounting area. A tray is disposed in the second splice tray mounting area.Type: GrantFiled: June 10, 2021Date of Patent: February 28, 2023Assignee: CommScope Technologies LLCInventors: Matthew Holmberg, James J. Solheid, Erik J. Gronvall, Paula Lockhart, Thomas Marcouiller
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Patent number: 11536910Abstract: A cable assembly for optical monitoring is assembled by laying optical fibers into an adhesive layer on a substrate to form an optical circuit. First ends of the fibers are arranged in various groups and second ends of the fibers are arranged in various groups. Groups at a first end of the circuit are spliced to coupler input fibers and coupler output fibers. Groups at the second end of the circuit are terminated at one or more input connectors, one or more output connectors, and one or more monitoring connectors. Some cable assemblies monitor signals received at the input connectors. Other cable assemblies monitor signals received at both the input connectors and the output connectors.Type: GrantFiled: August 14, 2019Date of Patent: December 27, 2022Assignee: CommScope Technologies LLCInventors: Scott C. Sievers, Jill Anne Malecha, Kristofer Bolster, Paula Lockhart
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Patent number: 11506854Abstract: A fiber optic telecommunications device includes a rack for mounting a plurality of chassis, each chassis including a plurality of trays slidably mounted thereon and arranged in a vertically stacked arrangement.Type: GrantFiled: July 23, 2021Date of Patent: November 22, 2022Assignee: CommScope Technologies LLCInventors: Brent Campbell, Ryan Kostecka, Paula Lockhart, Scott C. Sievers, Dustin Tichy, Gregory J. Schaible, Jonathan T. Lawson, Oscar Fernando Bran de León
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Publication number: 20220326466Abstract: A method of preparing a preformed fiber optic circuit for later termination to at least one fiber optic connector includes providing a substrate for supporting a plurality of optical fibers, the substrate including at least one layer of flexible foil, wherein the flexible foil may be formed from polyethylene terephthalate (PET) according to one example and peeling a layer including at least the optical fibers from the at least one layer of flexible foil.Type: ApplicationFiled: June 30, 2022Publication date: October 13, 2022Applicant: COMMSCOPE TECHNOLOGIES LLCInventors: Thomas MARCOUILLER, Paula LOCKHART, Wouter VRANKEN, Koen VUERINCKX, Laurens Izaäk VAN WUIJCKHUIJSE
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Patent number: 11409068Abstract: A method of preparing a preformed fiber optic circuit for later termination to at least one fiber optic connector includes providing a substrate for supporting a plurality of optical fibers, the substrate including at least one layer of flexible foil, wherein the flexible foil may be formed from polyethylene terephthalate (PET) according to one example and peeling a layer including at least the optical fibers from the at least one layer of flexible foil.Type: GrantFiled: October 2, 2018Date of Patent: August 9, 2022Assignee: CommScope Technologies LLCInventors: Thomas Marcouiller, Paula Lockhart, Wouter Vranken, Koen Vuerinckx, Laurens Izaäk Van Wuijckhuijse
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Publication number: 20220187558Abstract: A fiber optic cable spool is disclosed herein. The fiber optic cable spool may include a first radial flange located at a first axial end of the fiber optic cable spool, a second radial flange located at a second axial end of the fiber optic cable spool, and a drum that extends axially between the first and second radial flanges. The fiber optic cable spool may also include a storage compartment located within the drum. The first radial flange may define a first opening for accessing the storage compartment within the drum. The drum may have a circumferential drum surface that defines a second opening for accessing the storage compartment within the drum.Type: ApplicationFiled: April 9, 2020Publication date: June 16, 2022Applicant: COMMSCOPE TECHNOLOGIES LLCInventors: Paula LOCKHART, Michael J. SCHOMISCH, Thomas MARCOUILLER
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Publication number: 20220011530Abstract: A wall box includes an enclosure having a base and a cover connected to the base. The base and the cover enclose an interior region. The wall box further includes a plurality of fiber optic adapters mounted to the enclosure. The fiber optic adapters include an inner port positioned inside the interior region and an outer port positioned at an outer surface of the enclosure. A tray stack is mounted within the interior region. The tray stack includes a tray mount pivotally connected to the enclosure. The tray mount includes a top surface and an oppositely disposed bottom surface. A first splice tray mounting area is disposed on the top surface and a second splice tray mounting area is disposed on the bottom surface. A plurality of trays is disposed in the first splice tray mounting area. A tray is disposed in the second splice tray mounting area.Type: ApplicationFiled: June 10, 2021Publication date: January 13, 2022Inventors: Matthew Holmberg, James J. Solheid, Erik J. Gronvall, Paula Lockhart, Thomas Marcouiller
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Publication number: 20210382256Abstract: A fiber optic telecommunications device includes a rack for mounting a plurality of chassis, each chassis including a plurality of trays slidably mounted thereon and arranged in a vertically stacked arrangement.Type: ApplicationFiled: July 23, 2021Publication date: December 9, 2021Inventors: Brent Campbell, Ryan Kostecka, Paula Lockhart, Scott C. Sievers, Dustin Tichy, Gregory J. Schaible, Jonathan T. Lawson, Oscar Fernando Bran de León
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Publication number: 20210318491Abstract: A cable assembly for optical monitoring is assembled by laying optical fibers into an adhesive layer on a substrate to form an optical circuit. First ends of the fibers are arranged in various groups and second ends of the fibers are arranged in various groups. Groups at a first end of the circuit are spliced to coupler input fibers and coupler output fibers. Groups at the second end of the circuit are terminated at one or more input connectors, one or more output connectors, and one or more monitoring connectors. Some cable assemblies monitor signals received at the input connectors. Other cable assemblies monitor signals received at both the input connectors and the output connectors.Type: ApplicationFiled: August 14, 2019Publication date: October 14, 2021Applicant: COMMSCOPE TECHNOLOGIES LLCInventors: Scott C. SIEVERS, Jill Anne MALECHA, Kristofer BOLSTER, Paula LOCKHART
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Patent number: 11131822Abstract: A breakout transition assembly including a plurality of optical fibers extending through a cable, a plurality of furcation tubes and a housing with a cable inlet and a furcation chamber. The cable, optical fibers and furcation tubes are fixed relative to the housing with a volume of hardened epoxy in the furcation chamber. The cable inlet includes a clearance that tapers between a first end and a second end. In another aspect, the breakout transition can also include a breakout holder comprising at least one guide, such that the plurality of furcation tubes are fixedly received in the at least one guide in the breakout holder, and the volume of hardened epoxy retains the breakout holder in an engaged position with the transition body.Type: GrantFiled: April 27, 2018Date of Patent: September 28, 2021Assignee: CommScope Technologies LLCInventors: Paula Lockhart, Clair Iburg