Patents Assigned to Corning
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Patent number: 10448410Abstract: A method is shown for allocating a plurality of channels to a plurality of radio nodes (RNs) in a radio access network (RAN). In accordance with the method, an initial RN is selected from among the plurality of RNs. A first of the plurality of channels is assigned to the initial RN. The first channel is selected such that external interference experienced by the initial RN from sources other than the RAN on the first channel is minimized. A second RN is selected from among the plurality of RNs. A second of the plurality of channels is assigned to the second RN. The second channel is selected such that a metric reflective of an information carrying capacity of the RNs that have already been assigned one of the plurality of channels is maximized. The assigned channels are allocated to the respective RNs to which they have been assigned.Type: GrantFiled: October 17, 2018Date of Patent: October 15, 2019Assignee: Corning Optical Communications LLCInventors: Tsung-Yi Chen, Hithesh Nama, Jaspreet Singh
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Gain level control circuit supporting dynamic gain control in a wireless communications system (WCS)
Patent number: 10447400Abstract: A gain level control circuit in a wireless distribution system (WDS) is provided. The digital level control circuit receives a number of first digital communications signals having a number of first digital amplitudes and generates a number of second digital communications signals having a number of second digital amplitudes. When a selected second digital amplitude approaches a full-scale digital amplitude represented by a predefined number of binary bits, the gain level control circuit determines a selected first digital communications signal having a selected first digital amplitude causing the selected second digital amplitude to exceed the full-scale digital amplitude and adjusts the selected first digital amplitude to reduce the selected second digital amplitude to lower than or equal to the full-scale digital amplitude.Type: GrantFiled: January 14, 2019Date of Patent: October 15, 2019Assignee: Corning Optical Communications LLCInventor: Dror Harel -
Patent number: 10443009Abstract: A fluoropolymer coating composition comprises: fluorinated homopolymer particles dispersed in water, fluorinated copolymer particles dispersed in water, non-fluorinated polymer particles dispersed in water; and at least one aziridine compound comprising at least two aziridine groups. The composition is especially useful in low friction coating for telecommunication cables.Type: GrantFiled: June 18, 2018Date of Patent: October 15, 2019Assignee: Corning Research & Development CorporationInventors: Zhigang Yu, Yaming Wang, Wei Cai, Naiyong Jing
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Patent number: 10448205Abstract: Distributed antenna systems provide location information for client devices communicating with remote antenna units. The location information can be used to determine the location of the client devices relative to the remote antenna unit(s) with which the client devices are communicating. A location processing unit (LPU) includes a control system configured to receive uplink radio frequency (RF) signals communicated by client devices and determines the signal strengths of the uplink RF signals. The control system also determines which antenna unit is receiving uplink RF signals from the device having the greatest signal strength.Type: GrantFiled: January 22, 2018Date of Patent: October 15, 2019Assignee: Corning Optical Communications LLCInventor: Michael Sauer
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Patent number: 10436999Abstract: 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.Type: GrantFiled: April 20, 2017Date of Patent: October 8, 2019Assignee: Corning Optical Communications LLCInventors: Sandra Irene Amaya Cruz, Arturo Sanchez Garcia, Brent Vaudry Linas, Guadalupe Rodriguez Sanchez, Fabiola Patricia Villanueva Tavares, Adriana Montalvo Urbano
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Patent number: 10438039Abstract: A glass sensor substrate including metallizable through vias and related process is provided. The glass substrate has a first major surface, a second major surface and an average thickness of greater than 0.3 mm. A plurality of etch paths are created through the glass substrate by directing a laser at the substrate in a predetermined pattern. A plurality of through vias through the glass substrate are etched along the etch paths using a hydroxide based etching material. The hydroxide based etching material highly preferentially etches the substrate along the etch path. Each of the plurality of through vias is long compared to their diameter for example such that a ratio of the thickness of the glass substrate to a maximum diameter of each of the through vias is greater than 8 to 1.Type: GrantFiled: September 14, 2018Date of Patent: October 8, 2019Assignee: Corning IncorporatedInventors: Yuhui Jin, Matthew Evan Wilhelm
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Patent number: 10435585Abstract: A curable composition comprises a cationic polymerizable material. The curable composition further comprises a diluent component comprising a silane compound having a single silicon-bonded cationic polymerizable group. A method of forming a cured article with the curable composition is also disclosed. The method comprises applying the curable composition on a substrate to form a film. The method further comprises curing the film on the substrate to form the cured article. The present invention also provides the cured article formed in accordance with the method.Type: GrantFiled: May 15, 2014Date of Patent: October 8, 2019Assignee: Dow Corning CorporationInventors: Khristopher Alvarez, Chad Amb, Sarah Breed, Brandon Swatowski
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Patent number: 10435796Abstract: A method for forming a plurality of precision holes in a substrate by drilling, including affixing a sacrificial cover layer to a surface of the substrate, positioning a laser beam in a predetermined location relative to the substrate and corresponding to a desired location of one of the plurality of precision holes, forming a through hole in the sacrificial cover layer by repeatedly pulsing a laser beam at the predetermined location, and pulsing the laser beam into the through hole formed in the sacrificial cover layer. A work piece having precision holes including a substrate having the precision holes formed therein, wherein a longitudinal axis of each precision hole extends in a thickness direction of the substrate, and a sacrificial cover layer detachably affixed to a surface of the substrate, such that the sacrificial cover layer reduces irregularities of the precision holes.Type: GrantFiled: August 9, 2017Date of Patent: October 8, 2019Assignee: Corning IncorporatedInventors: Jeffrey John Domey, John Tyler Keech, Xinghua Li, Garrett Andrew Piech, Aric Bruce Shorey, Paul John Shustack, John Christopher Thomas
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Patent number: 10435324Abstract: A system and method for making an edge section of a thin, high purity fused silica glass sheet. The method includes a step of directing a laser to melt through the glass sheet with localized heating of a narrow portion of the glass sheet to form an edge section of the glass sheet, and continuing the edge section to form a closed loop defining a perimeter of the glass sheet. The method further includes rapidly cooling the glass sheet through the glass transition temperature as the melted glass of the edge section contracts and/or solidifies to form an unrefined-bullnose shape extending between first and second major surfaces of the glass sheet.Type: GrantFiled: August 16, 2017Date of Patent: October 8, 2019Assignee: Corning IncorporatedInventors: Venkata Adiseshaiah Bhagavatula, Daniel Warren Hawtof, Xinghua Li, Gary Edward Merz, John Stone, III
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Patent number: 10436945Abstract: Embodiments of durable, anti-reflective articles are described. In one or more embodiments, the article includes a substrate and an optical coating disposed on the major surface. The optical coating includes an anti-reflective coating and a scratch-resistant coating forming an anti-reflective surface. The article exhibits a maximum hardness of 12 GPa or greater, as measured on the anti-reflective surface by a Berkovich Indenter Hardness Test along an indentation depth of about 100 nm or greater. The articles of some embodiments exhibit a single side average light reflectance measured at the anti-reflective surface of about 8% or less over an optical wavelength regime in the range from about 400 nm to about 800 nm and a reference point color shift in transmittance or reflectance of less than about 2. In some embodiments, the article exhibits an angular color shift of about 5 or less at all angles from normal incidence to an incident illumination angle that is 20 degrees or greater.Type: GrantFiled: July 24, 2017Date of Patent: October 8, 2019Assignee: Corning IncorporatedInventors: Shandon Dee Hart, Karl William Koch, III, Charles Andrew Paulson, James Joseph Price
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Patent number: 10437003Abstract: An optical fiber distribution system is provided. The system includes a distribution cable having a plurality of cable optical fibers. The system includes a plurality of optical fiber tethers each including a tether optical fiber optically coupled to a cable optical fiber. The tethers provide access to and distribute the optical network at positions along the length of the optical fiber. The system is configured to provide access area organization and/or low profiles, such as through staggered tether lengths, tether webbing and/or access area sleeve arrangements.Type: GrantFiled: October 15, 2018Date of Patent: October 8, 2019Assignee: Corning Optical Communications LLCInventors: Joseph Clinton Jensen, Tory Allen Klavuhn, Lars Kristian Nielsen, Benjamin Gray Whitener
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Patent number: 10435323Abstract: A method of making a glass sheet includes exposing a refractory block material comprising at least one multivalent component to a reducing atmosphere for a time and at a temperature sufficient to substantially reduce the at least one multivalent component of the refractory block material. The method also includes flowing molten glass over the refractory block material that has been exposed to the reducing atmosphere while preventing substantial re-oxidation of the at least one multivalent component.Type: GrantFiled: January 12, 2015Date of Patent: October 8, 2019Assignee: Corning IncorporatedInventors: Matthew John Dejneka, Benjamin Zain Hanson, Thomas Dale Ketcham, James Robert Rustad, Susan Lee Schiefelbein, Kochuparambil Deenamma Vargheese
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Patent number: 10436994Abstract: An optical fiber cable includes a plurality of optical fibers and at least one tubular jacketing element surrounding the plurality of optical fibers. The jacketing element has a jacketing material containing at least a first ingredient being a thermoplastic polymer, a second ingredient being an intumescent material capable of releasing gas, under the influence of heat, for generating a foam, and a third ingredient being a stiffening agent capable of decomposing, under the influence of heat, with formation of a glass and/or of a ceramic material for stiffening the foam.Type: GrantFiled: October 26, 2017Date of Patent: October 8, 2019Assignee: Corning Optical Communications LLCInventor: Emanuela Gallo
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Patent number: 10427975Abstract: Glass and glass ceramic compositions having a combination of lithium silicate and petalite crystalline phases along with methods of making the glass and glass ceramic compositions are described. The compositions are compatible with conventional rolling and float processes, are transparent or translucent, and have high mechanical strength and fracture resistance. Further, the compositions are able to be chemically tempered to even higher strength glass ceramics that are useful as large substrates in multiple applications.Type: GrantFiled: November 6, 2018Date of Patent: October 1, 2019Assignee: Corning IncorporatedInventors: George Halsey Beall, Qiang Fu, Charlene Marie Smith
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Patent number: 10429553Abstract: An optical assembly includes a transparent substrate having a first major surface and a second major surface. The transparent substrate includes one or more damage layers disposed between a first non-damage layer and a second non-damage layer. Elongated laser-induced damage tracks are disposed within the damaged layer(s) to form at least one area pattern so that light directed toward the transparent substrate at an angle that exceeds a predetermined viewing angle (?) is scattered by the plurality of laser-induced damage tracks. Alternatively, if light is directed toward the transparent substrate at an angle that is less than the predetermined viewing angle (?), it is transmitted by the transparent substrate.Type: GrantFiled: February 24, 2016Date of Patent: October 1, 2019Assignee: Corning IncorporatedInventors: Dana Craig Bookbinder, Garrett Andrew Piech, James Andrew West
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Patent number: 10429593Abstract: Fiber optic connectors, connector housings, connectorized cable assemblies, and methods for the connectorization of cable assemblies are provided with particular cable adapter features, adapter extensions, multi-diametrical sealing flexures, subcutaneous sealing elements, and combinations thereof, for improved connector and cable performance, integrity, and durability.Type: GrantFiled: June 22, 2018Date of Patent: October 1, 2019Assignee: Corning Research & Development CorporationInventors: Adra Baca, Joel Christopher Rosson
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Patent number: 10429589Abstract: An optical fiber for efficient coupling of optical signals to photonic devices. The optical fiber includes a Cl doped tapered core region with a changing outer diameter and changing maximum core refractive index to provide improved coupling at wavelength of interest to photonic devices. The photonic devices may be, for example, silicon photonic devices with an operating wavelength at or near 1310 nm, or at or near 1550 nm.Type: GrantFiled: February 5, 2018Date of Patent: October 1, 2019Assignee: Corning IncorporatedInventors: Dana Craig Bookbinder, Ming-Jun Li, Dale Robert Powers, Pushkar Tandon
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Patent number: 10429594Abstract: Fiber optic connectors and connectorized fiber optic cables include connector housings having locking portions defined on the connector housing that allow the connector housing to be selectively coupled to a corresponding push-button securing member of a multiport assembly. Methods for selectively connecting a fiber optic connector to, and disconnecting the fiber optic connector from the multiport assemblies allow for connector housings to be forcibly and nondestructively removed from the multiport assembly.Type: GrantFiled: June 26, 2018Date of Patent: October 1, 2019Assignee: Corning Research & Development CorporationInventors: Thierry Luc Alain Dannoux, Joel Christopher Rosson, Felice Scotta, Dayne Wilcox, Michael Wimmer, Shane Woody, Zhiye Zhang
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Patent number: 10428209Abstract: 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.Type: GrantFiled: May 18, 2018Date of Patent: October 1, 2019Assignee: Corning Optical Communications LLCInventors: Dayue Jiang, Kirsten Langfeld, Brandon Robert Williamson
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Patent number: 10428525Abstract: A roofing shingle includes an asphalt-coated sheet and a reinforcement member. The asphalt-coated sheet includes a shingle mat and an asphalt coating applied to the shingle mat. The asphalt-coated sheet has a lower tab portion normally exposed on a roof and an upper headlap portion normally covered-up on a roof. At least a portion of the asphalt-coated sheet is coated with granules. The reinforcement member is adhered to the asphalt-coated sheet along an upper edge of the headlap portion, with the reinforcement member and the headlap portion together providing a nail pull-through value that is greater than an otherwise identical shingle having no such reinforcement material.Type: GrantFiled: May 15, 2018Date of Patent: October 1, 2019Assignee: Owens Corning Intellectual Capital, LLCInventors: James S. Belt, Bert W. Elliott