Corning Optical Communications LLC

États‑Unis d’Amérique

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Type PI
        Brevet 1 181
        Marque 89
Juridiction
        États-Unis 852
        International 305
        Canada 90
        Europe 23
Date
Nouveautés (dernières 4 semaines) 1
2026 juillet 1
2026 juin 1
2026 (AACJ) 2
2025 3
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Classe IPC
G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique 571
G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre 370
G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques 147
G02B 6/36 - Moyens de couplage mécaniques 133
G02B 6/00 - Guides de lumièreDétails de structure de dispositions comprenant des guides de lumière et d'autres éléments optiques, p. ex. des moyens de couplage 114
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Classe NICE
09 - Appareils et instruments scientifiques et électriques 77
41 - Éducation, divertissements, activités sportives et culturelles 6
42 - Services scientifiques, technologiques et industriels, recherche et conception 6
08 - Outils et instruments à main 5
06 - Métaux communs et minerais; objets en métal 3
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Statut
En Instance 21
Enregistré / En vigueur 1 249
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1.

CORNING CONNECT

      
Numéro de série 50002306
Statut En instance
Date de dépôt 2026-07-20
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 35 - Publicité; Affaires commerciales

Produits et services

Customer loyalty services including the providing of product updates, promotional offers, and commercial information in the field of optical communication products, fiber optic networks, and telecommunications hardware; Advertising, promotional, and marketing services, namely, preparing and executing promotional campaigns for members and customers in the field of optical communication products, fiber optic networks, and telecommunications hardware

2.

OPTICAL COMMUNICATION CABLE

      
Numéro d'application 19538216
Statut En instance
Date de dépôt 2026-02-12
Date de la première publication 2026-06-18
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Emmerich, Michael
  • Mcalpine, Warren Welborn
  • Wuensch, Guenter

Abrégé

An optical communication cable is provided having a cable body with an inner surface defining a passage within the cable body and a plurality of core elements within the passage. A film surrounds the plurality of core elements, wherein the film directs a radial force inward onto the plurality of core elements to restrain and hold the plurality of core elements in place.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

3.

FEMALE HARDENED OPTICAL CONNECTORS FOR USE WITH MALE PLUG CONNECTORS

      
Numéro d'application 19197463
Statut En instance
Date de dépôt 2025-05-02
Date de la première publication 2025-08-21
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Barnette, Jr., Robert Elvin
  • Tran, Hieu Vinh

Abrégé

A female hardened fiber optic connector for terminating an end of a fiber optic cable that is suitable for making an optical connection with another hardened cable assembly and cable assemblies using the same are disclosed. The female hardened fiber optic connector includes a connector assembly, a crimp body, a connector sleeve, and female coupling housing. The connector sleeve has one or more orientation features that cooperate with one or more orientation features inside the female coupling housing. The crimp body has a first shell and a second shell for securing the connector assembly at a front end of the shells and a cable attachment region rearward of the front end for securing a cable.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

4.

BINDER FILM FOR A FIBER OPTIC CABLE

      
Numéro d'application 19189368
Statut En instance
Date de dépôt 2025-04-25
Date de la première publication 2025-08-07
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Burns, Rodney Maurice
  • Dewell, James Garrett
  • Greenwood, Iii, Julian Latelle
  • Greer, Keith Aaron
  • Mcalpine, Warren Welborn

Abrégé

A fiber optic cable includes a cable core of core elements and a protective sheath surrounding the core elements, an armor surrounding the cable core, the armor comprising a single overlap portion when the fiber optic cable is viewed in cross-section, and a jacket surrounding the armor, the jacket having at least two longitudinal discontinuities extruded therein. A method of accessing the cable core without the use of ripcords includes removing a portion of the armor in an access section by pulling the armor away from the cable core so that an overlap portion separates around the cable core as it is being pulled past the cable core. A protective sheath protects the core elements as the armor is being pulled around the cable core.

Classes IPC  ?

  • B29C 48/06 - Moulage par extrusion, c.-à-d. en exprimant la matière à mouler dans une matrice ou une filière qui lui donne la forme désiréeAppareils à cet effet caractérisées par la forme à l’extrusion de la matière extrudée en forme de tige
  • B29D 11/00 - Fabrication d'éléments optiques, p. ex. lentilles ou prismes
  • B29K 105/20 - Inserts
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/46 - Procédés ou appareils adaptés à l'installation de fibres optiques ou de câbles optiques

5.

OPTICAL FIBER CABLE WITH REINFORCEMENT

      
Numéro d'application 19037166
Statut En instance
Date de dépôt 2025-01-25
Date de la première publication 2025-05-29
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Gimblet, Michael John
  • Greenwood, Iii, Julian Latelle
  • Lail, Jason Clay
  • Mcalpine, Warren Welborn
  • Mozdy, Eric John

Abrégé

An optical communication cable includes a cable jacket formed from a first material, a plurality of core elements located within the cable jacket, and an armor layer surrounding the plurality of core elements within the cable jacket, wherein the armor layer is a multi-piece layer having a first armor segment extending a portion of the distance around the plurality of core elements and a second armor segment extending a portion of the distance around the plurality of core elements, wherein a first lateral edge of the first armor segment is adjacent a first lateral edge of the second armor segment and a second lateral edge of the first armor segment is adjacent a second lateral edge of the second armor segment such that the combination of the first armor segment and the second armor segment completely surround the plurality of core elements.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

6.

HIGH DENSITY AND BANDWIDTH FIBER OPTIC APPARATUSES AND RELATED EQUIPMENT AND METHODS

      
Numéro d'application 18772618
Statut En instance
Date de dépôt 2024-07-15
Date de la première publication 2024-11-07
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

7.

MIC

      
Numéro de série 98828666
Statut Enregistrée
Date de dépôt 2024-10-30
Date d'enregistrement 2025-02-04
Propriétaire Corning Optical Communications LLC ()
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Optical cables

8.

VSNET

      
Numéro d'application 235068900
Statut Enregistrée
Date de dépôt 2024-09-19
Date d'enregistrement 2026-03-18
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

(1) Downloadable cloud-based software for product lifecycle management of radio access network (RAN)

9.

CORNING CORNING

      
Numéro d'application 019061426
Statut Enregistrée
Date de dépôt 2024-07-30
Date d'enregistrement 2025-01-15
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Telecommunications hardware and equipment, namely, pre-connectorized cable assemblies and tether distribution assemblies for use in an optical fibre network.

10.

FLEXNAP

      
Numéro d'application 019060716
Statut Enregistrée
Date de dépôt 2024-07-29
Date d'enregistrement 2024-12-13
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Telecommunications hardware and equipment, namely, pre-connectorized cable assemblies for use in an optical fibre network; fibre optic cable; terminals.

11.

FLEXNAP

      
Numéro d'application 234078200
Statut Enregistrée
Date de dépôt 2024-07-26
Date d'enregistrement 2026-01-09
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

(1) Telecommunications hardware and equipment, namely, pre-connectorized cable assemblies for use in an optical fiber network, fiber optic cable, terminals

12.

CONTOUR

      
Numéro d'application 234075700
Statut Enregistrée
Date de dépôt 2024-07-26
Date d'enregistrement 2026-01-09
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

(1) Optical fiber cable; optical fiber hardware, namely, optical fiber closures, optical fiber cabinets and optical fiber assemblies and the component parts thereof

13.

FLEXNAP Design

      
Numéro d'application 234078100
Statut En instance
Date de dépôt 2024-07-26
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

(1) Telecommunications hardware and equipment, namely, pre-connectorized cable assemblies and tether distribution assemblies for use in an optical fiber network

14.

Fiber optic local convergence points for multiple dwelling units

      
Numéro d'application 17571726
Numéro de brevet RE050042
Statut Délivré - en vigueur
Date de dépôt 2022-01-10
Date de la première publication 2024-07-16
Date d'octroi 2024-07-16
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Castonguay, Guy
  • Cox, Terry Dean
  • Liggett, Thomas Shaw
  • Strickland, Selena
  • Frazier, Brent Michael
  • Mcgranahan, Daniel S.
  • Jay, Raymond Glenn

Abrégé

There are provided fiber optic local convergence points (“LCPs”) adapted for use with multiple dwelling units (“MDUs”) that facilitate relatively easy installation and/or optical connectivity to a relatively large number of subscribers. The LCP includes a housing mounted to a surface, such as a wall, and a cable assembly with a connector end to be optically connected to a distribution cable and a splitter end to be located within the housing. The splitter end includes at least one splitter and a plurality of subscriber receptacles to which subscriber cables may be optically connected. The splitter end of the cable assembly of the LCP may also include a splice tray assembly and/or a fiber optic routing guide. Furthermore, a fiber distribution terminal (“FDT”) may be provided along the subscriber cable to facilitate installation of the fiber optic network within the MDU.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

15.

Optical communication cable

      
Numéro d'application 18403078
Numéro de brevet 12554086
Statut Délivré - en vigueur
Date de dépôt 2024-01-03
Date de la première publication 2024-06-06
Date d'octroi 2026-02-17
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Emmerich, Michael
  • Mcalpine, Warren Welborn
  • Wuensch, Guenter

Abrégé

An optical communication cable is provided having a cable body with an inner surface defining a passage within the cable body and a plurality of core elements within the passage. A film surrounds the plurality of core elements, wherein the film directs a radial force inward onto the plurality of core elements to restrain and hold the plurality of core elements in place.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

16.

CONTOUR

      
Numéro de série 98571821
Statut En instance
Date de dépôt 2024-05-28
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Optical fiber cable

17.

Multiports having connection ports formed in the shell and associated securing features

      
Numéro d'application 18428667
Numéro de brevet 12379551
Statut Délivré - en vigueur
Date de dépôt 2024-01-31
Date de la première publication 2024-05-23
Date d'octroi 2025-08-05
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports having connection ports formed in the shell and associated securing features are disclosed. One aspect of the disclosure is directed to a multiport for providing an optical connection comprising a shell comprising a first portion, at least one connection port comprising an optical connector opening, and a connection port passageway formed in the first portion of the shell, where the at least one securing feature is associated with the at least one connection port.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

18.

PRESSLOK

      
Numéro d'application 019028946
Statut Enregistrée
Date de dépôt 2024-05-17
Date d'enregistrement 2024-10-05
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ?
  • 08 - Outils et instruments à main
  • 09 - Appareils et instruments scientifiques et électriques

Produits et services

Hand tools, namely, hand-operated manual crimp tools used to attach fibre optic connectors to optical fibre and optical fibre cable. Fibre optic connectors.

19.

CORNING CORNING

      
Numéro de série 98538261
Statut En instance
Date de dépôt 2024-05-07
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Telecommunications hardware and equipment, namely, pre-connectorized cable assemblies and tether distribution assemblies comprised of cable connectors and optical fiber cables for use in an optical fiber network

20.

Female hardened optical connectors for use with male plug connectors

      
Numéro d'application 18406755
Numéro de brevet 12313888
Statut Délivré - en vigueur
Date de dépôt 2024-01-08
Date de la première publication 2024-05-02
Date d'octroi 2025-05-27
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Barnette, Jr., Robert Elvin
  • Tran, Hieu Vinh

Abrégé

A female hardened fiber optic connector for terminating an end of a fiber optic cable that is suitable for making an optical connection with another hardened cable assembly and cable assemblies using the same are disclosed. The female hardened fiber optic connector includes a connector assembly, a crimp body, a connector sleeve, and female coupling housing. The connector sleeve has one or more orientation features that cooperate with one or more orientation features inside the female coupling housing. The crimp body has a first shell and a second shell for securing the connector assembly at a front end of the shells and a cable attachment region rearward of the front end for securing a cable.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

21.

FLEXNAP

      
Numéro de série 98519059
Statut Enregistrée
Date de dépôt 2024-04-25
Date d'enregistrement 2025-02-04
Propriétaire Corning Optical Communications LLC ()
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

telecommunications hardware and equipment, namely, pre-connectorized computer cable assemblies for use in an optical fiber network, fiber optic cable, terminals

22.

Fiber optic closure with surface ornamentation

      
Numéro d'application 29551704
Numéro de brevet D1023985
Statut Délivré - en vigueur
Date de dépôt 2016-01-15
Date de la première publication 2024-04-23
Date d'octroi 2024-04-23
Propriétaire Corning Optical Communications, LLC (USA)
Inventeur(s)
  • Wilcox, Dayne
  • Kobeli, Lea
  • Noury, Marie
  • Van Beusekom, Marcelle

23.

Outdoor cabinet with surface ornamentation

      
Numéro d'application 29569910
Numéro de brevet D1023986
Statut Délivré - en vigueur
Date de dépôt 2016-07-01
Date de la première publication 2024-04-23
Date d'octroi 2024-04-23
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Wilcox, Dayne
  • Kobeli, Lea
  • Noury, Marie
  • Van Beusekom, Marcelle

24.

Fiber optic closure with surface ornamentation

      
Numéro d'application 29569830
Numéro de brevet D1022934
Statut Délivré - en vigueur
Date de dépôt 2016-06-30
Date de la première publication 2024-04-16
Date d'octroi 2024-04-16
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Wilcox, Dayne
  • Kobeli, Lea
  • Noury, Marie
  • Van Beusekom, Marcelle

25.

Multiports having a connection port insert and methods of making the same

      
Numéro d'application 18389869
Numéro de brevet 12353025
Statut Délivré - en vigueur
Date de dépôt 2023-12-20
Date de la première publication 2024-04-11
Date d'octroi 2025-07-08
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports comprising a connection port insert having at least one optical port along with methods for making are disclosed. One embodiment is directed to a multiport for providing an optical connection comprising a shell and a connection port insert. The shell comprises a first end having a first opening leading to a cavity. The connection port insert comprises a body having a front face and at least one connection port comprising an optical connector opening extending from the front face into the connection port insert with a connection port passageway extending through part of the connection port insert to a rear portion, where the connection port insert is sized so that at least a portion of the connection port insert fits into the first opening and the cavity of the shell.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

26.

Binder film for a fiber optic cable

      
Numéro d'application 18543043
Numéro de brevet 12287522
Statut Délivré - en vigueur
Date de dépôt 2023-12-18
Date de la première publication 2024-04-11
Date d'octroi 2025-04-29
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Burns, Rodney Maurice
  • Dewell, James Garrett
  • Greenwood, Iii, Julian Latelle
  • Greer, Keith Aaron
  • Mcalpine, Warren Welborn

Abrégé

A fiber optic cable includes a cable core of core elements and a protective sheath surrounding the core elements, an armor surrounding the cable core, the armor comprising a single overlap portion when the fiber optic cable is viewed in cross-section, and a jacket surrounding the armor, the jacket having at least two longitudinal discontinuities extruded therein. A method of accessing the cable core without the use of ripcords includes removing a portion of the armor in an access section by pulling the armor away from the cable core so that an overlap portion separates around the cable core as it is being pulled past the cable core. A protective sheath protects the core elements as the armor is being pulled around the cable core.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • B29D 11/00 - Fabrication d'éléments optiques, p. ex. lentilles ou prismes
  • G02B 6/46 - Procédés ou appareils adaptés à l'installation de fibres optiques ou de câbles optiques
  • B29K 105/20 - Inserts

27.

SAFETY POWER DISCONNECTION FOR POWER DISTRIBUTION OVER POWER CONDUCTORS TO POWER CONSUMING DEVICES

      
Numéro d'application 18511026
Statut En instance
Date de dépôt 2023-11-16
Date de la première publication 2024-03-14
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Hazani, Ami

Abrégé

Safety power disconnection for remote power distribution in power distribution systems is disclosed. The power distribution system includes one or more power distribution circuits each configured to remotely distribute power from a power source over current carrying power conductors to remote units to provide power for remote unit operations. A remote unit is configured to decouple power from the power conductors thereby disconnecting the load of the remote unit from the power distribution system. A current measurement circuit in the power distribution system measures current flowing on the power conductors and provides a current measurement to the controller circuit. The controller circuit is configured to disconnect the power source from the power conductors for safety reasons in response to detecting a current from the power source in excess of a threshold current level indicating a load.

Classes IPC  ?

  • H02J 13/00 - Circuits pour pourvoir à l'indication à distance des conditions d'un réseau, p. ex. un enregistrement instantané des conditions d'ouverture ou de fermeture de chaque sectionneur du réseauCircuits pour pourvoir à la commande à distance des moyens de commutation dans un réseau de distribution d'énergie, p. ex. mise en ou hors circuit de consommateurs de courant par l'utilisation de signaux d'impulsion codés transmis par le réseau
  • G01R 31/08 - Localisation de défauts dans les câbles, les lignes de transmission ou les réseaux
  • H02H 1/00 - Détails de circuits de protection de sécurité
  • H02H 7/26 - Protection sectionnelle de systèmes de câbles ou de lignes, p. ex. pour déconnecter une section dans laquelle un court-circuit, un défaut à la terre, ou une décharge d'arc se sont produits
  • H02J 1/14 - Équilibrage de la charge dans un réseau
  • H04B 10/077 - Dispositions pour la surveillance ou le test de systèmes de transmissionDispositions pour la mesure des défauts de systèmes de transmission utilisant un signal en service utilisant un signal de surveillance ou un signal supplémentaire
  • H04B 10/2575 - Radio sur fibre, p. ex. signal radio modulé en fréquence sur une porteuse optique
  • H04B 10/80 - Aspects optiques concernant l’utilisation de la transmission optique pour des applications spécifiques non prévues dans les groupes , p. ex. alimentation par faisceau optique ou transmission optique dans l’eau
  • H04Q 11/00 - Dispositifs de sélection pour systèmes multiplex
  • H04W 52/02 - Dispositions d'économie de puissance

28.

Optical fiber cable with reinforcement

      
Numéro d'application 18386811
Numéro de brevet 12210201
Statut Délivré - en vigueur
Date de dépôt 2023-11-03
Date de la première publication 2024-02-22
Date d'octroi 2025-01-28
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Gimblet, Michael John
  • Greenwood, Iii, Julian Latelle
  • Lail, Jason Clay
  • Mcalpine, Warren Welborn
  • Mozdy, Eric John

Abrégé

An optical communication cable includes a cable jacket formed from a first material, a plurality of core elements located within the cable jacket, and an armor layer surrounding the plurality of core elements within the cable jacket, wherein the armor layer is a multi-piece layer having a first armor segment extending a portion of the distance around the plurality of core elements and a second armor segment extending a portion of the distance around the plurality of core elements, wherein a first lateral edge of the first armor segment is adjacent a first lateral edge of the second armor segment and a second lateral edge of the first armor segment is adjacent a second lateral edge of the second armor segment such that the combination of the first armor segment and the second armor segment completely surround the plurality of core elements.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

29.

PRESSLOK

      
Numéro de série 98394050
Statut Enregistrée
Date de dépôt 2024-02-06
Date d'enregistrement 2025-01-21
Propriétaire Corning Optical Communications LLC ()
Classes de Nice  ?
  • 08 - Outils et instruments à main
  • 09 - Appareils et instruments scientifiques et électriques

Produits et services

Hand tools, namely, hand-operated manual crimp tools used to attach fiber optic connectors to optical fiber and optical fiber cable Fiber optic connectors

30.

OPTICAL FIBER ASSEMBLIES, AND METHODS AND APPARATUS FOR THE MANUFACTURE THEREOF

      
Numéro d'application 18238842
Statut En instance
Date de dépôt 2023-08-28
Date de la première publication 2023-12-14
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Burns, Rodney Maurice
  • Filippov, Andrey V.
  • Freeland, Riley Saunders
  • Hawtof, Daniel Warren
  • Mcalpine, Warren Welborn
  • Tedder, Catharina Lemckert

Abrégé

Methods for manufacturing cables and cables assemblies include providing powder particles within a tube extruded about optical fiber. The particles may be accelerated so that as they strike the tube and mechanically attach to the tube.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • B29C 48/05 - Moulage par extrusion, c.-à-d. en exprimant la matière à mouler dans une matrice ou une filière qui lui donne la forme désiréeAppareils à cet effet caractérisées par la forme à l’extrusion de la matière extrudée filamentaire, p. ex. fils
  • B29C 48/09 - Objets dont la section transversale comporte des cavités partiellement ou entièrement fermées, p. ex. tuyaux ou canaux
  • B29C 48/34 - Filières d’extrusion annulaires à croisillon, c.-à-d. pour recevoir simultanément la matière à mouler et la préforme à revêtir
  • B29C 48/156 - Revêtement d’au moins deux articles simultanément
  • B29D 11/00 - Fabrication d'éléments optiques, p. ex. lentilles ou prismes

31.

INDEPENDENTLY TRANSLATABLE MODULES AND FIBER OPTIC EQUIPMENT TRAYS IN FIBER OPTIC EQUIPMENT

      
Numéro d'application 18354840
Statut En instance
Date de dépôt 2023-07-19
Date de la première publication 2023-11-09
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Gonzalez Covarrubias, Juan Miguel
  • Juarez, Elmer Mariano
  • Klavuhn, Tory Allen
  • Lopez Sanchez, Manuel Alejandro
  • Martinez, Juan Garcia

Abrégé

Fiber optic equipment that supports independently translatable fiber optic modules and/or fiber optic equipment trays containing one or more fiber optic modules is disclosed. In some embodiments, one or more fiber optic modules are disposed in a plurality of independently translatable fiber optic equipment trays which are received in a tray guide system. In this manner, each fiber optic equipment tray is independently translatable within the guide system. One or more fiber optic modules may also be disposed in one or more module guides disposed in the fiber optic equipment trays to allow each fiber optic module to translate independently of other fiber optic modules in the same fiber optic equipment tray. In other embodiments, a plurality of fiber optic modules are disposed in a module guide system disposed in the fiber optic equipment that translate independently of other fiber optic modules disposed within the module guide system.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

32.

Gateway Coordinating Multiple Small Cell Radio Access Networks

      
Numéro d'application 18209208
Statut En instance
Date de dépôt 2023-06-13
Date de la première publication 2023-10-12
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Dandekar, Yashodhan
  • Dunn, Brian Patrick
  • Nama, Hithesh
  • Parsay, Behrooz
  • Singh, Jaspreet
  • Tiwari, Shashikant

Abrégé

A method of coordinating a plurality of radio access networks (RANs) includes aggregating, with a gateway, communications interfaces between a plurality of RANs and a packet core network through the gateway. A plurality of radio nodes (RNs) in each of the RANs is communicatively coupled to the gateway and to user equipment (UE) devices associated with the RNs in each of the RANs. The gateway also controls and coordinates mobility of the UE devices within and among the RANs. In addition, the gateway acts as a virtual enhanced NodeB (eNB) to the packet core network, thereby hiding the aggregated communications interfaces from the packet core network.

Classes IPC  ?

  • H04W 36/16 - Exécution d'une resélection à des fins spécifiques
  • H04L 47/125 - Prévention de la congestionRécupération de la congestion en équilibrant la charge, p. ex. par ingénierie de trafic
  • H04W 4/02 - Services utilisant des informations de localisation
  • H04W 76/27 - Transitions entre états de commande de ressources radio [RRC]
  • H04W 88/16 - Dispositions de passerelles
  • H04W 24/02 - Dispositions pour optimiser l'état de fonctionnement
  • H04W 28/00 - Gestion du trafic du réseauGestion des ressources du réseau

33.

Fiber optic apparatus for retrofit fiber optic connectivity

      
Numéro d'application 18302842
Numéro de brevet 12092888
Statut Délivré - en vigueur
Date de dépôt 2023-04-19
Date de la première publication 2023-08-17
Date d'octroi 2024-09-17
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Amaya Cruz, Sandra Irene
  • Gaertner, Larry Eugene
  • Garcia, Arturo Sanchez
  • Linas, Brent Vaudry
  • Montalvo Urbano, Adriana
  • Sanchez, Guadalupe Rodriguez
  • Villanueva Tavares, Fabiola Patricia

Abrégé

Embodiments of the disclosure are directed to a retrofit kit for a telecommunications cabinet that is configured to house copper electronic equipment. The kit includes a fiber optic apparatus configured to be mounted in an interior of the telecommunications cabinet and a retrofit door configured to be mounted to the telecommunications cabinet to cover the interior. The retrofit door includes a front surface, a plurality of sidewalls extending from the front surface, and a rear surface extending inward from the plurality of sidewalls. The rear surface is spaced apart from the front surface and defines an opening into a cavity of the retrofit door. The fiber optic apparatus and the retrofit door are configured such that when the fiber optic apparatus and the retrofit door are mounted, the at least one cavity of the retrofit door provides volume to accommodate the fiber optic apparatus.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

34.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 18171412
Numéro de brevet 12072545
Statut Délivré - en vigueur
Date de dépôt 2023-02-20
Date de la première publication 2023-06-29
Date d'octroi 2024-08-27
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

35.

PUSHLOK

      
Numéro d'application 225910800
Statut En instance
Date de dépôt 2023-05-19
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

(1) Fiber optic connectors and adapters; cable connectors and adapters; fiber optic and cable connector and adapter assemblies

36.

PUSHLOK

      
Numéro d'application 018876040
Statut Enregistrée
Date de dépôt 2023-05-17
Date d'enregistrement 2023-10-07
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Fibre optic connectors and adapters; cable connectors and adapters; fibre optic and cable connector and adapter assemblies.

37.

PUSHLOK

      
Numéro de série 97814748
Statut Enregistrée
Date de dépôt 2023-02-28
Date d'enregistrement 2024-07-09
Propriétaire Corning Optical Communications LLC ()
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

fiber optic connectors and adapters; cable connectors and adapters; fiber optic and cable connector and adapter assemblies

38.

EVERON

      
Numéro d'application 018833911
Statut Enregistrée
Date de dépôt 2023-02-09
Date d'enregistrement 2023-06-07
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

Optical fibre cable; patch cords; preconnectorized cable assemblies for use in an optical fibre network; optical fibre hardware, namely, mechanical splices, splice closures, splice trays and splice protectors, optical fibre connectors, adapters, distribution frames, housings, shelves, and mounting brackets, panels and patch panels, wall outlets, pulling grips, jumpers, analyzers; test equipment, namely, optical time domain reflectometers (OTDRs) used in an optical fibre network; downloadable LAN (local area network) operating software; downloadable WAN (wide area network) operating software. Providing design and testing services in the field of installation and maintenance of an optical fibre network; computer software development and software design for others; computer hardware and software design.

39.

Optical communication cable

      
Numéro d'application 17878166
Numéro de brevet 11880078
Statut Délivré - en vigueur
Date de dépôt 2022-08-01
Date de la première publication 2022-12-08
Date d'octroi 2024-01-23
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Emmerich, Michael
  • Mcalpine, Warren Welborn
  • Wuensch, Guenter

Abrégé

An optical communication cable is provided having a cable body with an inner surface defining a passage within the cable body and a plurality of core elements within the passage. A film surrounds the plurality of core elements, wherein the film directs a radial force inward onto the plurality of core elements to restrain and hold the plurality of core elements in place.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

40.

Multiports having connection ports with associated securing features and methods of making the same

      
Numéro d'application 17847605
Numéro de brevet 12429655
Statut Délivré - en vigueur
Date de dépôt 2022-06-23
Date de la première publication 2022-10-13
Date d'octroi 2025-09-30
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports having connection ports with associated securing features and methods for making the same are disclosed. In one embodiment comprises a multiport for providing an optical connection comprising a shell, a connection port insert, and at least one securing feature. The shell comprises a first end having a first opening leading to a cavity. The connection port insert comprises a body having a front face and at least one connection port comprising an optical connector opening extending from the front face into the connection port insert with a connection port passageway extending through part of the connection port insert to a rear portion, where the connection port insert is sized so that at least a portion of the connection port insert fits into the first opening and the cavity of the shell. The at least one securing feature is associated with the at least one connection port.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques

41.

Optical fiber cable with reinforcement

      
Numéro d'application 17826430
Numéro de brevet 11822139
Statut Délivré - en vigueur
Date de dépôt 2022-05-27
Date de la première publication 2022-09-15
Date d'octroi 2023-11-21
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Gimblet, Michael John
  • Greenwood, Iii, Julian Latelle
  • Lail, Jason Clay
  • Mcalpine, Warren Welborn
  • Mozdy, Eric John

Abrégé

An optical communication cable includes a cable jacket formed from a first material, a plurality of core elements located within the cable jacket, and an armor layer surrounding the plurality of core elements within the cable jacket, wherein the armor layer is a multi-piece layer having a first armor segment extending a portion of the distance around the plurality of core elements and a second armor segment extending a portion of the distance around the plurality of core elements, wherein a first lateral edge of the first armor segment is adjacent a first lateral edge of the second armor segment and a second lateral edge of the first armor segment is adjacent a second lateral edge of the second armor segment such that the combination of the first armor segment and the second armor segment completely surround the plurality of core elements.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

42.

Female hardened optical connectors for use with male plug connectors

      
Numéro d'application 17749847
Numéro de brevet 11892686
Statut Délivré - en vigueur
Date de dépôt 2022-05-20
Date de la première publication 2022-09-01
Date d'octroi 2024-02-06
Propriétaire CORNING OPTICAL COMMUNICATIONS, LLC (USA)
Inventeur(s)
  • Barnette, Jr., Robert Elvin
  • Tran, Hieu Vinh

Abrégé

A female hardened fiber optic connector for terminating an end of a fiber optic cable that is suitable for making an optical connection with another hardened cable assembly and cable assemblies using the same are disclosed. The female hardened fiber optic connector includes a connector assembly, a crimp body, a connector sleeve, and female coupling housing. The connector sleeve has one or more orientation features that cooperate with one or more orientation features inside the female coupling housing. The crimp body has a first shell and a second shell for securing the connector assembly at a front end of the shells and a cable attachment region rearward of the front end for securing a cable.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

43.

Multiports having connection ports formed in the shell and associated securing features

      
Numéro d'application 17737547
Numéro de brevet 11966089
Statut Délivré - en vigueur
Date de dépôt 2022-05-05
Date de la première publication 2022-08-18
Date d'octroi 2024-04-23
Propriétaire CORNING OPTICAL COMMUNICATIONS, LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports having connection ports formed in the shell and associated securing features are disclosed. One aspect of the disclosure is directed to a multiport for providing an optical connection comprising a shell comprising a first portion, at least one connection port comprising an optical connector opening, and a connection port passageway formed in the first portion of the shell, where the at least one securing feature is associated with the at least one connection port.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

44.

Power distribution system

      
Numéro d'application 17713889
Numéro de brevet 11689040
Statut Délivré - en vigueur
Date de dépôt 2022-04-05
Date de la première publication 2022-07-21
Date d'octroi 2023-06-27
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Hazani, Ami

Abrégé

Distributing higher currents demanded by a power consuming load(s) exceeding overcurrent limits of a current limiter circuit for a power source in a power distribution system. The power distribution system receives and distributes power from the power source to a power consuming load(s). The power distribution circuit is configured to limit current demand on the power source to not exceed a designed source current threshold limit. The power distribution circuit includes an energy storage circuit. The power distribution circuit is configured to charge the energy storage circuit with current supplied by the power source. Current demanded by the power consuming load(s) exceeding the source current threshold limit of the power source is supplied by the energy storage circuit. Thus, limiting current of the power source while supplying higher currents demanded by power consuming load(s) exceeding the source current limits of the power source can both be accomplished.

Classes IPC  ?

  • H02J 7/00 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries
  • G05F 1/46 - Régulation de la tension ou de l'intensité là où la variable effectivement régulée par le dispositif de réglage final est du type continu
  • H02J 7/34 - Fonctionnement en parallèle, dans des réseaux, de batteries avec d'autres sources à courant continu, p. ex. batterie tampon
  • H04W 52/02 - Dispositions d'économie de puissance
  • H04W 88/08 - Dispositifs formant point d'accès

45.

Binder film for a fiber optic cable

      
Numéro d'application 17696347
Numéro de brevet 11860430
Statut Délivré - en vigueur
Date de dépôt 2022-03-16
Date de la première publication 2022-06-30
Date d'octroi 2024-01-02
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Burns, Rodney Maurice
  • Dewell, James Garrett
  • Greenwood, Iii, Julian Latelle
  • Greer, Keith Aaron
  • Mcalpine, Warren Welborn

Abrégé

A fiber optic cable includes a cable core of core elements and a protective sheath surrounding the core elements, an armor surrounding the cable core, the armor comprising a single overlap portion when the fiber optic cable is viewed in cross-section, and a jacket surrounding the armor, the jacket having at least two longitudinal discontinuities extruded therein. A method of accessing the cable core without the use of ripcords includes removing a portion of the armor in an access section by pulling the armor away from the cable core so that an overlap portion separates around the cable core as it is being pulled past the cable core. A protective sheath protects the core elements as the armor is being pulled around the cable core.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • B29D 11/00 - Fabrication d'éléments optiques, p. ex. lentilles ou prismes
  • G02B 6/46 - Procédés ou appareils adaptés à l'installation de fibres optiques ou de câbles optiques
  • B29C 48/06 - Moulage par extrusion, c.-à-d. en exprimant la matière à mouler dans une matrice ou une filière qui lui donne la forme désiréeAppareils à cet effet caractérisées par la forme à l’extrusion de la matière extrudée en forme de tige
  • B29C 48/154 - Revêtement d’articles pleins, c.-à-d. d’articles non creux
  • B29C 48/25 - Éléments constitutifs, détails ou accessoiresOpérations auxiliaires
  • B29K 105/20 - Inserts

46.

Cable stranding apparatus employing a hollow-shaft guide member driver

      
Numéro d'application 17679414
Numéro de brevet 11718956
Statut Délivré - en vigueur
Date de dépôt 2022-02-24
Date de la première publication 2022-06-09
Date d'octroi 2023-08-08
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Chiasson, David Wesley
  • Conrad, Craig Miller
  • Moon, Jonathan Edward
  • Petersen, Mark Wade
  • Smith, David Henry

Abrégé

A cable-stranding apparatus includes a stationary guide, a motor, a driven guide, and a controller electrically coupled to the motor. The stationary guide is configured to guide strand elements in a spaced-apart configuration and to pass a core member. The motor is operatively associated with a guide driver. The driven guide is disposed at least partially within the guide driver so as to rotate therewith. The driven guide is configured to receive the strand elements from the stationary guide, individually guide the strand elements received from the stationary guide, and to further pass the core member. The controller is electrically coupled to the motor and configured to control the rotational speed and direction of the motor.

Classes IPC  ?

  • D07B 3/00 - Machines ou appareillages d'application générale pour la production de cordes ou câbles retordus à partir de brins constitutifs faits de matériaux identiques ou différents
  • D01H 13/00 - Autres caractéristiques structurelles communes, parties constitutives ou accessoires
  • D07B 7/14 - Parties constitutives des machinesDispositifs auxiliaires pour recouvrir ou guiper les cordes, câbles ou leurs brins constitutifs

47.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 17523253
Numéro de brevet 11294136
Statut Délivré - en vigueur
Date de dépôt 2021-11-10
Date de la première publication 2022-03-03
Date d'octroi 2022-04-05
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

48.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 17523236
Numéro de brevet 11294135
Statut Délivré - en vigueur
Date de dépôt 2021-11-10
Date de la première publication 2022-03-03
Date d'octroi 2022-04-05
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

49.

Fiber optic local convergence points for multiple dwelling units

      
Numéro d'application 16903269
Numéro de brevet RE048937
Statut Délivré - en vigueur
Date de dépôt 2020-06-16
Date de la première publication 2022-02-22
Date d'octroi 2022-02-22
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Castonguay, Guy
  • Cox, Terry Dean
  • Liggett, Thomas Shaw
  • Strickland, Selena
  • Frazier, Brent Michael
  • Mcgranahan, Daniel S.
  • Jay, Raymond Glenn

Abrégé

There are provided fiber optic local convergence points (“LCPs”) adapted for use with multiple dwelling units (“MDUs”) that facilitate relatively easy installation and/or optical connectivity to a relatively large number of subscribers. The LCP includes a housing mounted to a surface, such as a wall, and a cable assembly with a connector end to be optically connected to a distribution cable and a splitter end to be located within the housing. The splitter end includes at least one splitter and a plurality of subscriber receptacles to which subscriber cables may be optically connected. The splitter end of the cable assembly of the LCP may also include a splice tray assembly and/or a fiber optic routing guide. Furthermore, a fiber distribution terminal (“FDT”) may be provided along the subscriber cable to facilitate installation of the fiber optic network within the MDU.

Classes IPC  ?

  • G02B 6/00 - Guides de lumièreDétails de structure de dispositions comprenant des guides de lumière et d'autres éléments optiques, p. ex. des moyens de couplage
  • H04J 14/00 - Systèmes multiplex optiques
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

50.

Independently translatable modules and fiber optic equipment trays in fiber optic equipment

      
Numéro d'application 17499244
Numéro de brevet 11754796
Statut Délivré - en vigueur
Date de dépôt 2021-10-12
Date de la première publication 2022-01-27
Date d'octroi 2023-09-12
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Gonzalez Covarrubias, Juan Miguel
  • Juarez, Elmer Mariano
  • Klavuhn, Tory Allen
  • Lopez Sanchez, Manuel Alejandro
  • Martinez, Juan Garcia

Abrégé

Fiber optic equipment that supports independently translatable fiber optic modules and/or fiber optic equipment trays containing one or more fiber optic modules is disclosed. In some embodiments, one or more fiber optic modules are disposed in a plurality of independently translatable fiber optic equipment trays which are received in a tray guide system. In this manner, each fiber optic equipment tray is independently translatable within the guide system. One or more fiber optic modules may also be disposed in one or more module guides disposed in the fiber optic equipment trays to allow each fiber optic module to translate independently of other fiber optic modules in the same fiber optic equipment tray. In other embodiments, a plurality of fiber optic modules are disposed in a module guide system disposed in the fiber optic equipment that translate independently of other fiber optic modules disposed within the module guide system.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

51.

Miscellaneous Design

      
Numéro de série 97165795
Statut Enregistrée
Date de dépôt 2021-12-10
Date d'enregistrement 2023-12-26
Propriétaire Corning Optical Communications LLC ()
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Optical fiber transition housing, namely, telecommunications hardware products for the organization and management of fiber optic cables, cable assemblies, and jumpers being electronic circuit housings and splice module electronic circuit box housings

52.

Intermediate power supply unit for distributing lower voltage power to remote power distribution systems

      
Numéro d'application 17398562
Numéro de brevet 11412391
Statut Délivré - en vigueur
Date de dépôt 2021-08-10
Date de la première publication 2021-11-25
Date d'octroi 2022-08-09
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Bonja, Jeffrey Albert
  • Conner, Mark Edward
  • Hazani, Ami

Abrégé

An intermediate power supply unit for distributing lower voltage power to remote devices is disclosed. The intermediate power supply unit includes a higher voltage power input configured to receive power distributed by a power source and a power coupling circuit configured to couple the higher voltage power input to a plurality of power coupling outputs. If it is determined that a wire coupling the power source to the higher voltage power input is touched, the higher voltage power input is decoupled from the power coupling outputs. The intermediate power supply unit also includes a power converter circuit configured to convert voltage on higher voltage inputs to a lower voltage applied to one or more lower voltage outputs. The power converter circuit is also configured to distribute power from the one or more lower voltage outputs over a power conductor coupled to an assigned remote device.

Classes IPC  ?

  • H04W 16/24 - Structures des cellules
  • H02J 13/00 - Circuits pour pourvoir à l'indication à distance des conditions d'un réseau, p. ex. un enregistrement instantané des conditions d'ouverture ou de fermeture de chaque sectionneur du réseauCircuits pour pourvoir à la commande à distance des moyens de commutation dans un réseau de distribution d'énergie, p. ex. mise en ou hors circuit de consommateurs de courant par l'utilisation de signaux d'impulsion codés transmis par le réseau
  • H04W 88/08 - Dispositifs formant point d'accès
  • H02J 1/08 - Systèmes à trois filsSystèmes ayant plus de trois fils

53.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 17391368
Numéro de brevet 11609396
Statut Délivré - en vigueur
Date de dépôt 2021-08-02
Date de la première publication 2021-11-18
Date d'octroi 2023-03-21
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

54.

FIBER TO THE PEOPLE

      
Numéro d'application 018574498
Statut Enregistrée
Date de dépôt 2021-10-12
Date d'enregistrement 2022-02-09
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 35 - Publicité; Affaires commerciales

Produits et services

Promoting public awareness of the need for access to high-speed internet to underserved areas.

55.

Female hardened optical connectors for use with male plug connectors

      
Numéro d'application 17346596
Numéro de brevet 11402588
Statut Délivré - en vigueur
Date de dépôt 2021-06-14
Date de la première publication 2021-09-30
Date d'octroi 2022-08-02
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Barnette, Jr., Robert Elvin
  • Tran, Hieu Vinh

Abrégé

A female hardened fiber optic connector for terminating an end of a fiber optic cable that is suitable for making an optical connection with another hardened cable assembly and cable assemblies using the same are disclosed. The female hardened fiber optic connector includes a connector assembly, a crimp body, a connector sleeve, and female coupling housing. The connector sleeve has one or more orientation features that cooperate with one or more orientation features inside the female coupling housing. The crimp body has a first shell and a second shell for securing the connector assembly at a front end of the shells and a cable attachment region rearward of the front end for securing a cable.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

56.

Fiber optic apparatus for retrofit fiber optic connectivity

      
Numéro d'application 17338902
Numéro de brevet 11662537
Statut Délivré - en vigueur
Date de dépôt 2021-06-04
Date de la première publication 2021-09-23
Date d'octroi 2023-05-30
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Amaya Cruz, Sandra Irene
  • Gaertner, Larry Eugene
  • Garcia, Arturo Sanchez
  • Linas, Brent Vaudry
  • Urbano, Adriana Montalvo
  • Sanchez, Guadalupe Rodriguez
  • Villanueva Tavares, Fabiola Patricia

Abrégé

Embodiments of the disclosure are directed to a retrofit kit for a telecommunications cabinet that is configured to house copper electronic equipment. The kit includes a fiber optic apparatus configured to be mounted in an interior of the telecommunications cabinet and a retrofit door configured to be mounted to the telecommunications cabinet to cover the interior. The retrofit door includes a front surface, a plurality of sidewalls extending from the front surface, and a rear surface extending inward from the plurality of sidewalls. The rear surface is spaced apart from the front surface and defines an opening into a cavity of the retrofit door. The fiber optic apparatus and the retrofit door are configured such that when the fiber optic apparatus and the retrofit door are mounted, the at least one cavity of the retrofit door provides volume to accommodate the fiber optic apparatus.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

57.

HYBRID FIBER/COAXIAL TAPS, AND RELATED METHODS AND NETWORKS

      
Numéro d'application 17313112
Statut En instance
Date de dépôt 2021-05-06
Date de la première publication 2021-08-19
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s) Magnezi, Gavriel

Abrégé

Hybrid fiber/coaxial (coax) taps, and related methods and networks. The hybrid fiber/coax tap is configured to receive and convert downlink optical RF signals from a downlink distribution optical fiber to downlink electrical RF signals to be split and distributed to coax taps. Subscriber coax cables can be connected to the coax taps to “tap” the downlink electrical RF signals to subscribers. The hybrid fiber/coax tap is also configured to convert received uplink electrical RF signals on the coax taps into uplink optical RF signals to be distributed over an uplink distribution optical fiber connected to the output optical port. The hybrid fiber/coax tap also includes an input coax port configured to be connected to a coax distribution cable to receive a power signal from a coax network for powering fiber optic components. Electrical RF signals received on the coax port are passed on an output coax port to downstream taps.

Classes IPC  ?

  • H04B 10/2575 - Radio sur fibre, p. ex. signal radio modulé en fréquence sur une porteuse optique
  • H01R 31/06 - Pièces intermédiaires pour joindre deux pièces de couplage, p. ex. adaptateur
  • H01R 31/02 - Pièces intermédiaires pour la distribution d'énergie vers plusieurs circuits en parallèle, p. ex. fiche de dérivation
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques

58.

Ferrule-based fiber optic connectors with ferrule retraction balancing

      
Numéro d'application 17237369
Numéro de brevet 11719894
Statut Délivré - en vigueur
Date de dépôt 2021-04-22
Date de la première publication 2021-08-05
Date d'octroi 2023-08-08
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Isenhour, Micah Colen
  • Theuerkorn, Thomas

Abrégé

A ferrule-based fiber optic connectors having a ferrule retraction balancing characteristic for preserving optical performance are disclosed. The fiber optic connector comprises a connector assembly, a connector sleeve assembly and a balancing resilient member. The connector assembly comprises a ferrule and a resilient member for biasing the ferrule forward and the connector sleeve assembly comprises a housing and a ferrule sleeve, where the connector assembly is at least partially disposed in the passageway of the housing and the ferrule of the connector assembly is at least partially disposed in the ferrule sleeve. The balancing resilient member biases the housing to a forward position with the biasing resilient member having a predetermined resilient force that is greater than the friction force required for displacement of the ferrule within the ferrule sleeve.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

59.

Power distribution system

      
Numéro d'application 17238053
Numéro de brevet 11381099
Statut Délivré - en vigueur
Date de dépôt 2021-04-22
Date de la première publication 2021-08-05
Date d'octroi 2022-07-05
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s) Hazani, Ami

Abrégé

Distributing higher currents demanded by a power consuming load(s) exceeding overcurrent limits of a current limiter circuit for a power source in a power distribution system. The power distribution system receives and distributes power from the power source to a power consuming load(s). The power distribution circuit is configured to limit current demand on the power source to not exceed a designed source current threshold limit. The power distribution circuit includes an energy storage circuit. The power distribution circuit is configured to charge the energy storage circuit with current supplied by the power source. Current demanded by the power consuming load(s) exceeding the source current threshold limit of the power source is supplied by the energy storage circuit. Thus, limiting current of the power source while supplying higher currents demanded by power consuming load(s) exceeding the source current limits of the power source can both be accomplished.

Classes IPC  ?

  • H02J 3/38 - Dispositions pour l’alimentation en parallèle d’un seul réseau, par plusieurs générateurs, convertisseurs ou transformateurs
  • H02J 7/00 - Circuits pour la charge ou la dépolarisation des batteries ou pour alimenter des charges par des batteries
  • G05F 1/46 - Régulation de la tension ou de l'intensité là où la variable effectivement régulée par le dispositif de réglage final est du type continu
  • H02J 7/34 - Fonctionnement en parallèle, dans des réseaux, de batteries avec d'autres sources à courant continu, p. ex. batterie tampon
  • H04W 52/02 - Dispositions d'économie de puissance
  • H04W 88/08 - Dispositifs formant point d'accès

60.

Tools and methods for designing indoor and outdoor waveguide system networks

      
Numéro d'application 17213625
Numéro de brevet 11727161
Statut Délivré - en vigueur
Date de dépôt 2021-03-26
Date de la première publication 2021-07-15
Date d'octroi 2023-08-15
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Dewell, James Garrett
  • Hopper, David Barth
  • Jensen, Joseph Clinton

Abrégé

Design tools and methods of use for designing, ordering, and providing manufacturing and installation instructions for waveguide system networks include a system design tool including a location selection module to determine a selected location, a satellite imagery component to provide an image based on the selected location, an overlay module to overlay a design on the image, and a customization module to customize the design. The system design tool includes one or more design modules to at least one of automatically output and build via user input one or more design options based on the image, and a design customization module to select the design from the one or more design options. The system design tool includes a positioning module to set a pair of connectivity points such that a cable length may be automatically calculated based on a calculated distance between the pair of connectivity points.

Classes IPC  ?

61.

Fiber optic fanout kit

      
Numéro d'application 29574040
Numéro de brevet D0924173
Statut Délivré - en vigueur
Date de dépôt 2016-08-11
Date de la première publication 2021-07-06
Date d'octroi 2021-07-06
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Wilcox, Dayne
  • Kobeli, Lea
  • Noury, Marie
  • Van Beusekom, Marcelle

62.

Cleaning nozzle and nozzle assembly and cleaning methods for optical fiber connectors

      
Numéro d'application 17174836
Numéro de brevet 11668882
Statut Délivré - en vigueur
Date de dépôt 2021-02-12
Date de la première publication 2021-06-10
Date d'octroi 2023-06-06
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Brown, James Michael
  • Li, Yuehao
  • Panides, Elias
  • Zhang, Jingru
  • Zhang, Yi

Abrégé

A cleaning nozzle includes an outer housing having a central axis and an inner surface that defines an outer housing interior. An inner housing resides within the outer housing interior along the central axis and has an inner surface that defines an inner flow channel. The inner flow channel supports flow of the cleaning fluid and has a converging taper and a flow disrupter element. The nozzle assembly may include an adapter that receives a front end of the nozzle and that also holds a ferrule that supports an optical fiber having an end face. The nozzle assembly allows the nozzle to direct a jet stream of cleaning fluid to the ferrule end face and the fiber end face. The flow disrupter causes the jet stream to have a time-varying direction that enhances the cleaning of the ferrule end face and the optical fiber end face.

Classes IPC  ?

  • B08B 3/02 - Nettoyage par la force de jets ou de pulvérisations
  • B08B 3/08 - Nettoyage impliquant le contact avec un liquide le liquide ayant un effet chimique ou dissolvant
  • B08B 5/02 - Nettoyage par la force de jets, p. ex. le soufflage de cavités
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

63.

Optical communication cable

      
Numéro d'application 17145781
Numéro de brevet 11409064
Statut Délivré - en vigueur
Date de dépôt 2021-01-11
Date de la première publication 2021-05-06
Date d'octroi 2022-08-09
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Emmerich, Michael
  • Mcalpine, Warren Welborn
  • Wuensch, Guenter

Abrégé

An optical communication cable is provided having a cable body with an inner surface defining a passage within the cable body and a plurality of core elements within the passage. A film surrounds the plurality of core elements, wherein the film directs a radial force inward onto the plurality of core elements to restrain and hold the plurality of core elements in place.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

64.

Fiber optic connector having a compressible body and complimentary receptacle along with methods of making

      
Numéro d'application 17029700
Numéro de brevet 11579371
Statut Délivré - en vigueur
Date de dépôt 2020-09-23
Date de la première publication 2021-01-07
Date d'octroi 2023-02-14
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s) Wimmer, Michael

Abrégé

A fiber optic connector comprising a connector body that can receive the optical cable and a complimentary receptacle. Fiber optic connector comprises a ferrule body having a passageway to guide an optical fiber of the optical cable, and a compress body being arranged between the connector body and the ferrule body. The compress body has a hollow area to receive the optical fiber. The compress body is configured to exert a force to the ferrule body so that the end face of the ferrule body is moved in a forward direction away from the connector body, when an external force is applied to an outer surface of the compress body. Methods of making assemblies are also disclosed.

Classes IPC  ?

  • G02B 6/36 - Moyens de couplage mécaniques
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

65.

ACTIFI

      
Numéro d'application 018352737
Statut Enregistrée
Date de dépôt 2020-12-11
Date d'enregistrement 2021-05-06
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Telecommunications cables; telecommunications and data networking hardware, namely, devices for transmitting optical and electrical signals.

66.

Flame retardant additive for a low smoke, zero halogen compound

      
Numéro d'application 16984342
Numéro de brevet 10975226
Statut Délivré - en vigueur
Date de dépôt 2020-08-04
Date de la première publication 2020-11-19
Date d'octroi 2021-04-13
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Jiang, Dayue
  • Vasilakos, Kevin Andrew

Abrégé

A low smoke, zero halogen (LSZH) polymer composition is provided. The LSZH polymer composition includes a polymer resin, and a flame retardant package dispersed within the polymer resin. Less than 25% by weight of the polymer composition is the flame retardant package. The flame retardant package includes an acid source, a carbon source, and an LSZH additive. The LSZH additive includes a polyoxometalate ionic liquid and a synergist carrier. The LSZH polymer composition has a limiting oxygen index of greater than 31%. The LSZH polymer compound is suitable for use in electrical or tele-communication cables.

Classes IPC  ?

  • C08K 5/5399 - Phosphore lié à l'azote
  • C08K 3/34 - Composés contenant du silicium
  • C08K 9/12 - Ingrédients adsorbés
  • C08K 3/32 - Composés contenant du phosphore
  • C08K 5/053 - Alcools polyhydroxyliques
  • C08K 5/3492 - Triazines
  • C08K 13/02 - Ingrédients organiques et inorganiques
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • C08K 5/00 - Emploi d'ingrédients organiques
  • C08F 110/06 - Propène
  • C08K 5/3445 - Cycles à cinq chaînons
  • H01B 7/295 - Protection contre les dommages provoqués par des facteurs extérieurs, p. ex. gaines ou armatures par des températures extrêmes ou par les flammes en utilisant un matériau résistant aux flammes

67.

EVOLV

      
Numéro d'application 205892700
Statut Enregistrée
Date de dépôt 2020-10-21
Date d'enregistrement 2025-01-03
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

(1) Optical fiber hardware, namely, mechanical splices, splice closures, splice trays, splice protectors, optical fiber connectors, adapters, distribution frames, housings, shelves, mounting brackets, panels, patch panels, wall outlets, pulling grips, jumpers, terminals, terminal covers, patch cords, and pre-connectorized cable assemblies all for use in an optical fiber network; recorded and downloadable computer programs and software for use with mobile devices, namely, smartphones, portable computers, and tablet computers for use in e-commerce allowing users to perform electronic business transactions via a global computer network; recorded and downloadable computer programs and software for use with mobile devices, namely, smartphones, portable computers, and tablet computers for the management of field sales; recorded and downloadable computer programs and software for use with mobile devices, namely, smartphones, portable computers, and tablet computers for creating augmented reality visualization of products of others

68.

EVOLV

      
Numéro d'application 018321295
Statut Enregistrée
Date de dépôt 2020-10-15
Date d'enregistrement 2023-08-24
Propriétaire Corning Optical Communications LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Optical fibre hardware, namely, mechanical splices, splice closures, splice trays, splice protectors, optical fibre connectors, adapters, distribution frames, housings, shelves, mounting brackets, panels, patch panels, wall outlets, pulling grips, jumpers, terminals, terminal covers, patch cords, and pre-connectorized cable assemblies, all for use in an optical fibre network; computer programs and software for a mobile device adaptable for augmented reality product visualization; computer programs and software deployable or downloadable on mobile devices for ecommerce, field sales, or product visualization.

69.

Flame retardant compound on cable central member

      
Numéro d'application 16880188
Numéro de brevet 11886027
Statut Délivré - en vigueur
Date de dépôt 2020-05-21
Date de la première publication 2020-09-24
Date d'octroi 2024-01-30
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Heinz, Michael Alexander

Abrégé

An optical fiber cable includes a central strength member, a bedding compound surrounding the central strength member, a plurality of buffer tubes stranded around the central strength member and the bedding compound such that the bedding compound forms to the buffer tubes and occupies substantially the entirety of an inner core area between the buffer tubes and the central strength member. At least one of the buffer tubes contains a plurality of optical fibers and a jacket surrounds the plurality of buffer tubes. The cable may further include a second bedding compound that fills interstices in an outer core area between the buffer tubes and the jacket.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

70.

FASTACCESS

      
Numéro de série 90191426
Statut Enregistrée
Date de dépôt 2020-09-18
Date d'enregistrement 2021-05-25
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Fiber optic cable designed to facilitate easy stripping

71.

Cable stranding apparatus employing a hollow-shaft guide member driver

      
Numéro d'application 16875061
Numéro de brevet 11268238
Statut Délivré - en vigueur
Date de dépôt 2020-05-15
Date de la première publication 2020-09-03
Date d'octroi 2022-03-08
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Chiasson, David Wesley
  • Conrad, Craig Miller
  • Moon, Jonathan Edward
  • Petersen, Mark Wade
  • Smith, David Henry

Abrégé

A cable-stranding apparatus includes a stationary guide, a motor, a driven guide, and a controller electrically coupled to the motor. The stationary guide is configured to guide strand elements in a spaced-apart configuration and to pass a core member. The motor is operatively associated with a guide driver. The driven guide is disposed at least partially within the guide driver so as to rotate therewith. The driven guide is configured to receive the strand elements from the stationary guide, individually guide the strand elements received from the stationary guide, and to further pass the core member. The controller is electrically coupled to the motor and configured to control the rotational speed and direction of the motor.

Classes IPC  ?

  • D07B 3/00 - Machines ou appareillages d'application générale pour la production de cordes ou câbles retordus à partir de brins constitutifs faits de matériaux identiques ou différents
  • D07B 7/14 - Parties constitutives des machinesDispositifs auxiliaires pour recouvrir ou guiper les cordes, câbles ou leurs brins constitutifs
  • D01H 13/00 - Autres caractéristiques structurelles communes, parties constitutives ou accessoires

72.

DISTRIBUTED RADIO ACCESS NETWORKS (RANS) SUPPORTING COORDINATED AMPLIFIER GAIN OPTIMIZATION

      
Numéro d'application US2020013478
Numéro de publication 2020/163048
Statut Délivré - en vigueur
Date de dépôt 2020-01-14
Date de publication 2020-08-13
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Ahmavaara, Kalle
  • Nagaraj, Shirish
  • Pengoria, Deepak

Abrégé

A distributed radio access network (RAN) is provided. A selected wireless transceiver node(s) in a selected coverage cell receives a radio frequency (RF) test signal(s). The selected wireless transceiver node(s) determines an effective gain value based on a predefined characteristic of the RF test signal(s). The selected wireless transceiver node(s) communicates the effective gain value and other related parameters to a server apparatus in the distributed RAN. The server apparatus determines a common gain value for the selected wireless transceiver node(s) in the selected coverage cell based on the parameters. Accordingly, the selected wireless transceiver node(s) operates based on the common gain value. By determining a respective common gain value for each of the coverage cells in the distributed RAN, it may be possible for all the wireless transceiver nodes in the distributed RAN to communicate an uplink digital communications signal(s) without causing distortion in the uplink digital communications signal(s).

Classes IPC  ?

  • H04W 24/06 - Réalisation de tests en trafic simulé
  • H04W 24/02 - Dispositions pour optimiser l'état de fonctionnement

73.

Splice protector for fiber optic ribbons

      
Numéro d'application 15990661
Numéro de brevet RE048144
Statut Délivré - en vigueur
Date de dépôt 2018-05-27
Date de la première publication 2020-08-04
Date d'octroi 2020-08-04
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Faulkner, Michael Todd
  • Nielsen, Lars Kristian

Abrégé

A fiber optic cable assembly includes first and second fiber optic ribbons and a splice protector. The ribbons are spliced together such that the corresponding spliced fibers at the splice have a common lengthwise axis, widthwise axis orthogonal to the lengthwise axis, and thickness axis orthogonal to the lengthwise and widthwise axes. The splice protector supports the ribbons that are spliced to one another at the splice. The splice protector may include or even consist essentially of an adhesive that provides a flexible support for the splice. The splice protector may be at least half as flexible when cured over the splice as the first and second ribbons in bending about the widthwise axis.

Classes IPC  ?

  • G02B 6/255 - Épissage des guides de lumière, p. ex. par fusion ou par liaison
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

74.

Methods and systems for laser cleaving optical fibers

      
Numéro d'application 16850167
Numéro de brevet 11256039
Statut Délivré - en vigueur
Date de dépôt 2020-04-16
Date de la première publication 2020-07-30
Date d'octroi 2022-02-22
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Carberry, Joel Patrick
  • Chen, Minghan
  • Li, Ming-Jun
  • Liu, Anping
  • Nayak, Barada Kanta

Abrégé

A method of cleaving an optical fiber comprises inserting the optical fiber through a bore of a holding member, securing the optical fiber to the holding member with a bonding agent, operating at least one laser to emit at least one laser beam, and directing the at least one laser beam from the at least one laser to the end face of the holding member. At least a portion of the at least one laser beam reflects off the end face of the holding member and is thereafter incident on an end portion of the optical fiber. The at least one laser beam cleaves the end portion of the optical fiber less than 20 μm from the end face of the holding member. Related systems are also disclosed.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • B23K 26/382 - Enlèvement de matière par perçage ou découpage par perçage
  • B23K 26/073 - Détermination de la configuration du spot laser
  • G02B 6/25 - Préparation des extrémités des guides de lumière pour le couplage, p. ex. découpage

75.

Tools and methods for designing indoor and outdoor waveguide system networks

      
Numéro d'application 16815255
Numéro de brevet 10977394
Statut Délivré - en vigueur
Date de dépôt 2020-03-11
Date de la première publication 2020-07-23
Date d'octroi 2021-04-13
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Dewell, James Garrett
  • Hopper, David Barth
  • Jensen, Joseph Clinton

Abrégé

Design tools and methods of use for designing, ordering, and providing manufacturing and installation instructions for waveguide system networks include a system design tool including a location selection module to determine a selected location, a satellite imagery component to provide an image based on the selected location, an overlay module to overlay a design on the image, and a customization module to customize the design. The system design tool includes one or more design modules to at least one of automatically output and build via user input one or more design options based on the image, and a design customization module to select the design from the one or more design options. The system design tool includes a positioning module to set a pair of connectivity points such that a cable length may be automatically calculated based on a calculated distance between the pair of connectivity points.

Classes IPC  ?

  • G06Q 30/00 - Commerce
  • G06F 30/00 - Conception assistée par ordinateur [CAO]
  • G06Q 10/06 - Ressources, gestion de tâches, des ressources humaines ou de projetsPlanification d’entreprise ou d’organisationModélisation d’entreprise ou d’organisation
  • G06Q 10/10 - BureautiqueGestion du temps
  • G06Q 30/06 - Transactions d’achat, de vente ou de crédit-bail
  • G06F 111/02 - CAO dans un environnement de réseau, p. ex. CAO coopérative ou simulation distribuée
  • G06F 111/12 - Schématique symbolique

76.

SELECTIVE DISTRIBUTION AND/OR RECEPTION OF WIRELESS COMMUNICATIONS SIGNALS IN A NON-CONTIGUOUS WIRELESS DISTRIBUTED COMMUNICATIONS SYSTEM (WDCS) FOR REDUCING DOWNLINK TRANSMISSION POWER AND/OR UPLINK NOISE

      
Numéro d'application US2019017991
Numéro de publication 2020/149866
Statut Délivré - en vigueur
Date de dépôt 2019-02-14
Date de publication 2020-07-23
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Imanilov, Benjamin

Abrégé

Selective distribution and/or reception of wireless communications signals in a non-contiguous wireless distributed communications systems (WDCS) for reducing downlink transmission power and/or uplink noise is disclosed. A non-contiguous WDCS is a WDCS in which the remote units are clustered such that remote units with contiguous coverage areas receive downlink communications signals serviced by different cells to provide non-contiguous cell coverage areas. In one example, the WDCS is configured to selectively distribute, through each remote unit, only downlink communication signals for the cell that are identified as servicing the user equipment (UE) to conserve downlink power. In another example, the WDCS is configured to selectively receive uplink communications signals from remote units that contain user data from UE. Noise and/or interference signals associated with portions of the uplink communications signals that are not selectively received (e.g., blocked) are not combined with the selectively received uplink communications signals, thus reducing uplink noise.

Classes IPC  ?

  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
  • H04W 88/08 - Dispositifs formant point d'accès
  • H04B 7/022 - Diversité de siteMacro-diversité
  • H04W 72/04 - Affectation de ressources sans fil
  • H04W 72/12 - Planification du trafic sans fil

77.

Fiber optic local convergence points for multiple dwelling units

      
Numéro d'application 15715694
Numéro de brevet RE048082
Statut Délivré - en vigueur
Date de dépôt 2017-09-26
Date de la première publication 2020-07-07
Date d'octroi 2020-07-07
Propriétaire Corning Optical Communications LLP (USA)
Inventeur(s)
  • Castonguay, Guy
  • Cox, Terry Dean
  • Liggett, Thomas Shaw
  • Strickland, Selena

Abrégé

There are provided fiber optic local convergence points (“LCPs”) adapted for use with multiple dwelling units (“MDUs”) that facilitate relatively easy installation and/or optical connectivity to a relatively large number of subscribers. The LCP includes a housing mounted to a surface, such as a wall, and a cable assembly with a connector end to be optically connected to a distribution cable and a splitter end to be located within the housing. The splitter end includes at least one splitter and a plurality of subscriber receptacles to which subscriber cables may be optically connected. The splitter end of the cable assembly of the LCP may also include a splice tray assembly and/or a fiber optic routing guide. Furthermore, a fiber distribution terminal (“FDT”) may be provided along the subscriber cable to facilitate installation of the fiber optic network within the MDU.

Classes IPC  ?

  • G02B 6/00 - Guides de lumièreDétails de structure de dispositions comprenant des guides de lumière et d'autres éléments optiques, p. ex. des moyens de couplage
  • H04J 14/00 - Systèmes multiplex optiques
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

78.

HYBRID FIBER/COAXIAL TAPS, AND RELATED METHODS AND NETWORKS

      
Numéro d'application US2019058290
Numéro de publication 2020/101870
Statut Délivré - en vigueur
Date de dépôt 2019-10-28
Date de publication 2020-05-22
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Magnezi, Gavriel

Abrégé

Hybrid fiber/coaxial (coax) taps, and related methods and networks. The hybrid fiber/coax tap is configured to receive and convert downlink optical RF signals from a downlink distribution optical fiber to downlink electrical RF signals to be split and distributed to coax taps. Subscriber coax cables can be connected to the coax taps to "tap" the downlink electrical RF signals to subscribers. The hybrid fiber/coax tap is also configured to convert received uplink electrical RF signals on the coax taps into uplink optical RF signals to be distributed over an uplink distribution optical fiber connected to the output optical port. The hybrid fiber/coax tap also includes an input coax port configured to be connected to a coax distribution cable to receive a power signal from a coax network for powering fiber optic components. Electrical RF signals received on the coax port are passed on an output coax port to downstream taps.

Classes IPC  ?

  • H04B 10/2575 - Radio sur fibre, p. ex. signal radio modulé en fréquence sur une porteuse optique
  • H01R 9/03 - Dispositifs de connexion conçus pour assurer le contact avec plusieurs des conducteurs d'un câble multiconducteur
  • H04B 10/00 - Systèmes de transmission utilisant des ondes électromagnétiques autres que les ondes hertziennes, p. ex. les infrarouges, la lumière visible ou ultraviolette, ou utilisant des radiations corpusculaires, p. ex. les communications quantiques
  • H04B 10/25 - Dispositions spécifiques à la transmission par fibres

79.

EVOLV

      
Numéro de série 88896653
Statut Enregistrée
Date de dépôt 2020-05-01
Date d'enregistrement 2022-10-25
Propriétaire Corning Optical Communications LLC ()
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Optical fiber hardware, namely, mechanical splices, splice closures, splice trays, splice protectors, optical fiber connectors, adapters, distribution frames, housings, shelves, mounting brackets, panels, patch panels, wall outlets, pulling grips, jumpers, terminals, terminal covers, patch cords, and pre-connectorized cable assemblies all for use in an optical fiber network; recorded computer programs and recorded software for a mobile device adaptable for augmented reality product visualization; recorded computer programs and software deployable or downloadable on mobile devices for eCommerce, field sales, or product visualization

80.

WIRELESS COMMUNICATIONS SYSTEMS SUPPORTING SELECTIVE ROUTING OF CARRIER AGGREGATION (CA) AND MULTIPLE-INPUT MULTIPLE-OUTPUT (MIMO) DATA STREAMS

      
Numéro d'application US2019055290
Numéro de publication 2020/086270
Statut Délivré - en vigueur
Date de dépôt 2019-10-09
Date de publication 2020-04-30
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Harel, Dror

Abrégé

Wireless communications systems supporting selective routing of carrier aggregation (CA) and multiple-input multiple-output (MIMO) data streams are disclosed. The wireless communications system includes a signal router circuit communicatively coupled to one or more signal sources. The signal router circuit is configured to receive MIMO and CA communications signals for data transmission from the signal source(s) and distribute the communications signals (e.g., data streams) to remote units communicatively coupled to the signal router circuit. The signal router circuit determines whether to route each data stream in a MIMO configuration, a CA configuration, or both to provide an improved wireless communications environment for mobile communications devices connected to the remote units. The improved wireless communications environment may increase throughput, reduce interference and/or noise, and/or improve the transmission quality of wireless communications signals.

Classes IPC  ?

  • H04W 24/02 - Dispositions pour optimiser l'état de fonctionnement
  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission

81.

POWER DISTRIBUTION SYSTEM

      
Numéro d'application US2019057745
Numéro de publication 2020/086780
Statut Délivré - en vigueur
Date de dépôt 2019-10-24
Date de publication 2020-04-30
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Hazani, Ami

Abrégé

Distributing higher currents demanded by a power consuming load(s) exceeding overcurrent limits of a current limiter circuit for a power source in a power distribution system. The power distribution system receives and distributes power from the power source to a power consuming load(s). The power distribution circuit is configured to limit current demand on the power source to not exceed a designed source current threshold limit. The power distribution circuit includes an energy storage circuit. The power distribution circuit is configured to charge the energy storage circuit with current supplied by the power source. Current demanded by the power consuming load(s) exceeding the source current threshold limit of the power source is supplied by the energy storage circuit. Thus, limiting current of the power source while supplying higher currents demanded by power consuming load(s) exceeding the source current limits of the power source can both be accomplished.

Classes IPC  ?

  • H02J 1/04 - Systèmes d'alimentation en courant constant
  • H02J 1/14 - Équilibrage de la charge dans un réseau
  • H04W 88/08 - Dispositifs formant point d'accès
  • H04B 10/2575 - Radio sur fibre, p. ex. signal radio modulé en fréquence sur une porteuse optique
  • H02J 7/34 - Fonctionnement en parallèle, dans des réseaux, de batteries avec d'autres sources à courant continu, p. ex. batterie tampon
  • H04W 52/00 - Gestion de puissance

82.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 16719211
Numéro de brevet 11092767
Statut Délivré - en vigueur
Date de dépôt 2019-12-18
Date de la première publication 2020-04-23
Date d'octroi 2021-08-17
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

83.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 16719224
Numéro de brevet 11086089
Statut Délivré - en vigueur
Date de dépôt 2019-12-18
Date de la première publication 2020-04-23
Date d'octroi 2021-08-10
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

84.

Optical communication cable

      
Numéro d'application 16720361
Numéro de brevet 10914907
Statut Délivré - en vigueur
Date de dépôt 2019-12-19
Date de la première publication 2020-04-23
Date d'octroi 2021-02-09
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Emmerich, Michael
  • Mcalpine, Warren Welborn
  • Wuensch, Guenter

Abrégé

An optical communication cable is provided having a cable body with an inner surface defining a passage within the cable body and a plurality of core elements within the passage. A film surrounds the plurality of core elements, wherein the film directs a radial force inward onto the plurality of core elements to restrain and hold the plurality of core elements in place.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

85.

Multiports having a connection port insert and methods of making the same

      
Numéro d'application 16714033
Numéro de brevet 11415759
Statut Délivré - en vigueur
Date de dépôt 2019-12-13
Date de la première publication 2020-04-16
Date d'octroi 2022-08-16
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports comprising a connection port insert having at least one optical port along with methods for making are disclosed. One embodiment is directed to a multiport for providing an optical connection comprising a shell and a connection port insert. The shell comprises a first end having a first opening leading to a cavity. The connection port insert comprises a body having a front face and at least one connection port comprising an optical connector opening extending from the front face into the connection port insert with a connection port passageway extending through part of the connection port insert to a rear portion, where the connection port insert is sized so that at least a portion of the connection port insert fits into the first opening and the cavity of the shell.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques

86.

Multiports having connection ports with associated securing features and methods of making the same

      
Numéro d'application 16716554
Numéro de brevet 11409055
Statut Délivré - en vigueur
Date de dépôt 2019-12-17
Date de la première publication 2020-04-16
Date d'octroi 2022-08-09
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports having connection ports with associated securing features and methods for making the same are disclosed. In one embodiment comprises a multiport for providing an optical connection comprising a shell, a connection port insert, and at least one securing feature. The shell comprises a first end having a first opening leading to a cavity. The connection port insert comprises a body having a front face and at least one connection port comprising an optical connector opening extending from the front face into the connection port insert with a connection port passageway extending through part of the connection port insert to a rear portion, where the connection port insert is sized so that at least a portion of the connection port insert fits into the first opening and the cavity of the shell. The at least one securing feature is associated with the at least one connection port.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques

87.

Multiports having connection ports formed in the shell and associated securing features

      
Numéro d'application 16661991
Numéro de brevet 11327247
Statut Délivré - en vigueur
Date de dépôt 2019-10-23
Date de la première publication 2020-02-20
Date d'octroi 2022-05-10
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Dannoux, Thierry Luc Alain
  • Scotta, Felice

Abrégé

Multiports having connection ports formed in the shell and associated securing features are disclosed. One aspect of the disclosure is directed to a multiport for providing an optical connection comprising a shell comprising a first portion, at least one connection port comprising an optical connector opening, and a connection port passageway formed in the first portion of the shell, where the at least one securing feature is associated with the at least one connection port.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques

88.

Multimode optical transmission system employing modal-conditioning fiber

      
Numéro d'application 16594438
Numéro de brevet 10816734
Statut Délivré - en vigueur
Date de dépôt 2019-10-07
Date de la première publication 2020-01-30
Date d'octroi 2020-10-27
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Chen, Xin
  • Coleman, John Douglas
  • Li, Kangmei
  • Li, Ming-Jun
  • Liu, Jie
  • Wu, Qi

Abrégé

40 and a refractive index profile configured to optimally transmit light at a nominal wavelength of 850 nm; and at least one modal-conditioning fiber operably disposed in the optical path to perform at least one of modal filtering and modal converting of the optical modulated light.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
  • H04B 10/2581 - Transmission multimode

89.

High density and bandwidth fiber optic apparatuses and related equipment and methods

      
Numéro d'application 16376553
Numéro de brevet 10852499
Statut Délivré - en vigueur
Date de dépôt 2019-04-05
Date de la première publication 2020-01-02
Date d'octroi 2020-12-01
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Staber, Harley Joseph
  • Strause, Kevin Lee
  • Ugolini, Alan William

Abrégé

High-connection density and bandwidth fiber optic apparatuses and related equipment and methods are disclosed. In certain embodiments, fiber optic apparatuses are provided and comprise a chassis defining one or more U space fiber optic equipment units. At least one of the one or more U space fiber optic equipment units may be configured to support particular fiber optic connection densities and bandwidths in a given 1-U space. The fiber optic connection densities and bandwidths may be supported by one or more fiber optic components, including but not limited to fiber optic adapters and fiber optic connectors, including but not limited to simplex, duplex, and other multi-fiber fiber optic components. The fiber optic components may also be disposed in fiber optic modules, fiber optic patch panels, or other types of fiber optic equipment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

90.

Integrated electrical and optoelectronic package

      
Numéro d'application 16553893
Numéro de brevet 10942324
Statut Délivré - en vigueur
Date de dépôt 2019-08-28
Date de la première publication 2019-12-26
Date d'octroi 2021-03-09
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Evans, Alan Frank
  • Matiss, Andreas
  • Wimmer, Michael

Abrégé

An integrated electrical and optoelectronic package comprises an optical subassembly for the conversion of data between an optical and electrical format, an electronic chip including an integrated electric circuit for processing the data in the electrical format and an interposer. The interposer is configured as a supporting substrate to support the optical subassembly and the electronic chip. An optical connector may be coupled to the package. The optical subassembly comprises an optical adaptor used as an interface between a ferrule of the optical connector and an optoelectronic chip of the optical subassembly. Optical fibers of the optical cable are aligned to optical waveguides of the optoelectronic chip by at least one alignment pin of the optical adaptor.

Classes IPC  ?

  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

91.

Flame retardant compound including host-guest complex

      
Numéro d'application 16553992
Numéro de brevet 10538653
Statut Délivré - en vigueur
Date de dépôt 2019-08-28
Date de la première publication 2019-12-19
Date d'octroi 2020-01-21
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Jiang, Dayue
  • Langfeld, Kirsten
  • Williamson, Brandon Robert

Abrégé

A flame retardant compound is provided. The flame retardant compound includes a polymer base resin, a carbonific host compound, and a guest compound including at least one atom of a transition metal. The carbonific host compound and the guest compound form a host-guest complex, and the host-guest complex acts to inhibit at least one of smoke release and smoke formation when exposed to heat. The host-guest complex is distributed within the polymer base resin. An intumescent flame retardant compound is also provided. The intumescent flame retardant compound includes a base resin, an acid donor, a spumific agent, a cyclodextrin host compound, and a guest compound including at least one atom of molybdenum. The cyclodextrin host compound and the guest compound form a host-guest complex. The acid donor, carbonific host compound, and spumific agent react when exposed to a temperature above 280° C. to form a foam.

Classes IPC  ?

  • C08L 23/06 - Polyéthylène
  • C08L 23/08 - Copolymères de l'éthylène
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • H01B 7/295 - Protection contre les dommages provoqués par des facteurs extérieurs, p. ex. gaines ou armatures par des températures extrêmes ou par les flammes en utilisant un matériau résistant aux flammes
  • H01B 3/44 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques matières plastiquesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques résinesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques cires résines vinyliquesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques matières plastiquesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques résinesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques cires résines acryliques
  • H01B 3/30 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques matières plastiquesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques résinesIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances organiques cires

92.

Optical fiber ferrules incorporating a glass faceplate and methods of fabricating the same

      
Numéro d'application 16556750
Numéro de brevet 10809472
Statut Délivré - en vigueur
Date de dépôt 2019-08-30
Date de la première publication 2019-12-19
Date d'octroi 2020-10-20
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Neukirch, Ulrich Wilhelm Heinz
  • Yates, Wesley Allan

Abrégé

Embodiments of the present disclosure are directed to hybrid optical fiber ferrules and methods of fabricating the same. In one embodiment, an optical fiber ferrule includes a glass faceplate, a plastic body molded about the glass faceplate, and at least one fiber through-hole extending through the plastic body. In another embodiment, a method of fabricating an optical fiber ferrule includes disposing a glass faceplate within a die comprising at least one fiber die pin, an injecting the die with plastic to form a plastic body such that the glass faceplate is embedded within the plastic body, wherein the at least one fiber die pin defines at least one fiber through-hole. Other materials with suitable coefficients of thermal expansion may be used for the faceplates of the fiber optic ferrules according to the concepts disclosed.

Classes IPC  ?

  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

93.

Universal photonic adaptor for coupling an optical connector to an optoelectronic substrate

      
Numéro d'application 16555242
Numéro de brevet 10795086
Statut Délivré - en vigueur
Date de dépôt 2019-08-29
Date de la première publication 2019-12-19
Date d'octroi 2020-10-06
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Matiss, Andreas
  • Sutherland, James Scott

Abrégé

A photonic adaptor has a first face side to couple the photonic adaptor to an optical connector and a second face side to couple the photonic adaptor to an optoelectronic substrate. The photonic adaptor comprises a plurality of optical fibers being arranged between the first face side and the second face side of the photonic adaptor. The photonic adaptor comprises at least one alignment pin projecting out of at least the first face side of the photonic adaptor. The at least one alignment pin is configured to be inserted in the optical connector to align optical fibers of an optical cable to the optical fibers of the photonic adaptor.

Classes IPC  ?

  • G02B 6/26 - Moyens de couplage optique
  • G02B 6/02 - Fibres optiques avec revêtement
  • G02B 6/122 - Éléments optiques de base, p. ex. voies de guidage de la lumière

94.

Distribution point unit for coupling external electrical and optical cables

      
Numéro d'application 16557509
Numéro de brevet 10641978
Statut Délivré - en vigueur
Date de dépôt 2019-08-30
Date de la première publication 2019-12-19
Date d'octroi 2020-05-05
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Rutowicz, Lukasz Jan
  • Spreemann, Martin

Abrégé

A distribution point unit for coupling an external electrical and optical cable comprises a casing comprising a first port to receive the external optical cable and a second port to receive the external electrical cable. The distribution point unit comprises an electronic board comprising electronic components and at least one heat transferring device. A tray comprises at least one hole to receive a section of the at least one heat transferring device. The at least one heat transferring device is thermally coupled to at least one of the electronic components to thermally couple the at least one electronic component to the casing.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/42 - Couplage de guides de lumière avec des éléments opto-électroniques
  • H05K 7/20 - Modifications en vue de faciliter la réfrigération, l'aération ou le chauffage

95.

Independently translatable modules and fiber optic equipment trays in fiber optic equipment

      
Numéro d'application 16547660
Numéro de brevet 10606014
Statut Délivré - en vigueur
Date de dépôt 2019-08-22
Date de la première publication 2019-12-12
Date d'octroi 2020-03-31
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cooke, Terry Lee
  • Dean, Jr., David Lee
  • Klavuhn, Tory Allen
  • Martinez, Juan Garcia
  • Juarez, Elmer Mariano
  • Lopez Sanchez, Manuel Alejandro
  • Gonzalez Covarrubias, Juan Miguel

Abrégé

Fiber optic equipment that supports independently translatable fiber optic modules and/or fiber optic equipment trays containing one or more fiber optic modules is disclosed. In some embodiments, one or more fiber optic modules are disposed in a plurality of independently translatable fiber optic equipment trays which are received in a tray guide system. In this manner, each fiber optic equipment tray is independently translatable within the guide system. One or more fiber optic modules may also be disposed in one or more module guides disposed in the fiber optic equipment trays to allow each fiber optic module to translate independently of other fiber optic modules in the same fiber optic equipment tray. In other embodiments, a plurality of fiber optic modules are disposed in a module guide system disposed in the fiber optic equipment that translate independently of other fiber optic modules disposed within the module guide system.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

96.

Fiber optic apparatus for retrofit fiber optic connectivity

      
Numéro d'application 16549316
Numéro de brevet 11054600
Statut Délivré - en vigueur
Date de dépôt 2019-08-23
Date de la première publication 2019-12-12
Date d'octroi 2021-07-06
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Cruz, Sandra Irene Amaya
  • Garcia, Arturo Sanchez
  • Linas, Brent Vaudry
  • Urbano, Adriana Montalvo
  • Sanchez, Guadalupe Rodriguez
  • Tavares, Fabiola Patricia Villanueva

Abrégé

Embodiments of the disclosure are directed to a fiber optic apparatus for retrofit fiber optic connectivity. The fiber optic apparatus is configured to reduce the size and footprint of a typical fiber optic cabinet for retrofit deployment within existing copper infrastructure, while allowing a user to provide and manage fiber optic network connections between a network provider and a plurality of subscribers. In an exemplary embodiment, the fiber optic apparatus decreases width by vertically aligning features of the fiber optic apparatus, and decreases depth by angled mounting of splitter parking and horizontal positioning of vertically stacked ribbon-fanout kit (RFK) sets. Further, the fiber optic apparatus includes flexible tubing attached to a detachable strain relief bracket configured for removal the detachable strain relief bracket from the frame and reattachment to the telecommunications cabinet to facilitate flexibility in mounting of the fiber optic apparatus and fiber deployment.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre

97.

Method of applying powder to a substrate during a continuous process

      
Numéro d'application 16549525
Numéro de brevet 11000867
Statut Délivré - en vigueur
Date de dépôt 2019-08-23
Date de la première publication 2019-12-12
Date d'octroi 2021-05-11
Propriétaire Corning Optical Communications LLC (USA)
Inventeur(s)
  • Blazer, Bradley Jerome
  • Conrad, Craig Miller
  • Li, Ming
  • Mcalpine, Warren Welborn

Abrégé

A recirculating powder applicator includes an applicator body having an inlet on an upstream surface and an outlet on a downstream surface, wherein the inlet and outlet define a passage that extends transversely through the thickness of the applicator body, a powder conduit, an air inlet, an exhaust aperture located on one of the upstream or downstream surfaces, and a circulation chamber located on the interior of the applicator body. The powder conduit and air inlet are in fluid communication with the passage and the passage is in fluid communication with the circulation chamber. A method of applying powder to a substrate during a continuous process includes using a recirculating powder applicator.

Classes IPC  ?

  • B05B 7/14 - Appareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides provenant de plusieurs sources, p. ex. un liquide et de l'air, une poudre et un gaz agencés pour projeter des matériaux en particules
  • B05C 19/04 - Appareillages spécialement adaptés pour appliquer des matériaux en particules à des surfaces le matériau en particules étant projeté, versé ou répandu sur la surface de l'ouvrage
  • H01B 13/14 - Isolation des conducteurs ou des câbles par boudinage
  • D07B 7/14 - Parties constitutives des machinesDispositifs auxiliaires pour recouvrir ou guiper les cordes, câbles ou leurs brins constitutifs
  • D06B 1/16 - Application de liquides, de gaz ou de vapeurs aux matières textiles en vue d'effectuer un traitement, p. ex. lavage, teinture, blanchiment, encollage ou imprégnation par contact avec un organe portant la substance traitante avec un rouleau l'alimentation en substance traitante se faisant par l'intérieur du rouleau
  • B05B 14/48 - Aménagements pour collecter, réutiliser ou éliminer le matériau de pulvérisation excédentaire pour une utilisation dans des cabines de pulvérisation spécialement adaptés pour du matériau sous forme de particules
  • B05B 16/40 - Éléments de construction spécialement adaptés à cet effet, p. ex. planchers, parois ou toits
  • B05B 16/00 - Cabines de pulvérisation
  • B05D 1/12 - Application de matériaux en particules
  • B21C 23/30 - Application de revêtements métalliques sur des câbles, p. ex. pour l'isolation des câbles électriques dans des presses à extrusion à action continue
  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique
  • B05C 11/02 - Appareils pour étaler ou répartir des liquides ou d'autres matériaux fluides déjà appliqués sur une surfaceRéglage de l'épaisseur du revêtement

98.

WIRELESS COMMUNICATIONS SYSTEMS SUPPORTING CARRIER AGGREGATION AND SELECTIVE DISTRIBUTED ROUTING OF SECONDARY CELL COMPONENT CARRIERS BASED ON CAPACITY DEMAND

      
Numéro d'application US2019035105
Numéro de publication 2019/236437
Statut Délivré - en vigueur
Date de dépôt 2019-06-03
Date de publication 2019-12-12
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Harel, Dror

Abrégé

Wireless communications systems supporting carrier aggregation and selective distributed routing of secondary cell component carriers based on capacity demand are disclosed. The wireless communications system includes a signal router circuit communicatively coupled to a signal source. The signal router circuit is configured to distribute a primary cell component carrier, including control information, to each of multiple remote units to be distributed to any mobile device in a respective coverage area of any remote unit to avoid the need to support handovers. In addition, the signal router circuit is configured to selectively distribute one or more secondary cell component carriers to any subset of the remote units based on capacity demand associated with the remote units.

Classes IPC  ?

  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
  • H04B 7/024 - Utilisation coopérative d’antennes sur plusieurs sites, p. ex. dans les systèmes à plusieurs points coordonnés ou dans les systèmes coopératifs à "plusieurs entrées plusieurs sorties" [MIMO]
  • H04B 7/185 - Stations spatiales ou aériennes
  • H04W 36/00 - Dispositions pour le transfert ou la resélection
  • H04W 40/00 - Acheminement ou recherche d'itinéraire pour la communication
  • H04W 88/08 - Dispositifs formant point d'accès
  • H04W 84/00 - Topologies de réseau
  • H04W 56/00 - Dispositions de synchronisation

99.

Flexible optical fiber ribbon with intermittently bonded polymer layers

      
Numéro d'application 16543221
Numéro de brevet 10684434
Statut Délivré - en vigueur
Date de dépôt 2019-08-16
Date de la première publication 2019-12-05
Date d'octroi 2020-06-16
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s)
  • Chalk, Julie Ann
  • Chiasson, David Wesley
  • Nayak, Barada Kanta
  • Sistare, Rebecca Elizabeth

Abrégé

A flexible optical ribbon and associated systems and methods of manufacturing are provided. The ribbon includes a plurality of optical transmission elements and an inner layer comprising a cross-linked polymer material and an outer surface. The outer surface of the inner layer includes first areas having first concentrations of uncrosslinked polymer material and second areas having second concentrations of uncrosslinked polymer material. The first concentrations are greater than the second concentrations. The ribbon includes an outer polymer layer having an inner surface interfacing with the outer surface of the inner layer. The outer polymer layer has a higher level of bonding to the inner layer at the first areas than at the second areas due to the ability of the outer polymer material to bond or crosslink with the larger numbers of uncrosslinked polymer material in the first areas.

Classes IPC  ?

  • G02B 6/44 - Structures mécaniques pour assurer la résistance à la traction et la protection externe des fibres, p. ex. câbles de transmission optique

100.

FIBER OPTIC CONNECTOR HAVING A COMRPESSIBLE BODY AND COMPLIMENTARY RECEPTACLE ALONG WITH METHODS OF MAKING

      
Numéro d'application US2018035395
Numéro de publication 2019/231450
Statut Délivré - en vigueur
Date de dépôt 2018-05-31
Date de publication 2019-12-05
Propriétaire CORNING OPTICAL COMMUNICATIONS LLC (USA)
Inventeur(s) Wimmer, Michael

Abrégé

A fiber optic connector (20) comprising a connector body (100) that can receive the optical cable (10) and a complimentary receptacle. Fiber optic connector (20) comprises a ferrule body (200) having a passageway (210) to guide an optical fiber (11) of the optical cable (10), and a compress body (300) being arranged between the connector body (100) and the ferrule body (200). The compress body (300) has a hollow area (310) to receive the optical fiber (11). The compress body (300) is configured to exert a force (F2) to the ferrule body (200) so that the end face (220) of the ferrule body (200) is moved in a forward direction away from the connector body (100), when an external force (F1) is applied to an outer surface (303) of the compress body (300). Methods of making assemblies are also disclosed.

Classes IPC  ?

  • G02B 6/38 - Moyens de couplage mécaniques ayant des moyens d'assemblage fibre à fibre
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