Patents Assigned to Corning
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Publication number: 20160081382Abstract: The present application relates to novel isomaltooligosaccharide (IMO) compositions containing isomaltulose, methods for preparing the same and uses thereof. Specifically, the IMO compositions according to the present application containing isomaltulose, which is a sugar component not contained in currently available isomaltooligosaccharide products, have a quality of sweetness and degree of sweetness differentiated from the existing isomaltooligosaccharide products and thus can be used as sweeteners for more various applications.Type: ApplicationFiled: May 20, 2014Publication date: March 24, 2016Applicant: CORN PRODUCTS DEVELOPMENT, INC.Inventor: Sang Wook Ahn
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Patent number: 9290730Abstract: A multilayered cell culture apparatus for the culturing of cells is disclosed. The cell culture apparatus is defined as an integral structure having a plurality of cell culture chambers in combination with tracheal space(s). The body of the apparatus has imparted therein gas permeable membranes in combination with tracheal spaces that will allow the free flow of gases between the cell culture chambers and the external environment. The flask body also includes an aperture that will allow access to the cell growth chambers by means of a needle or cannula. The size of the apparatus, and location of an optional neck and cap section, allows for its manipulation by standard automated assay equipment, further making the apparatus ideal for high throughput applications.Type: GrantFiled: April 16, 2014Date of Patent: March 22, 2016Assignee: Corning IncorporatedInventors: Gregory Roger Martin, Allison Jean Tanner
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Patent number: 9290943Abstract: A shingle blank includes a substrate coated with asphalt. A substantially V-shaped perforated cut line is formed in the substrate, and a substantially straight cut line extends from an apex the V-shaped perforated line toward a leading edge of the shingle blank. The V-shaped perforated cut line and the substantially straight cut line are structured and configured to facilitate separation of the shingle blank into discrete portions.Type: GrantFiled: January 5, 2012Date of Patent: March 22, 2016Assignee: Owens Corning Intellectual Capital, LLCInventors: Lawrence J. Grubka, Jennifer L. Frey, Hyun Gun Yu, Hun Song
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Patent number: 9290405Abstract: One embodiment of the disclosure relates to a method of making an optical fiber comprising the steps of: (i) exposing a silica based preform with at least one porous glass region having soot density of ? to a gas mixture comprising SiCl4 having SiCl4 mole fraction ySiCl4 at a doping temperature Tdop such that parameter X is larger than 0.03 to form the chlorine treated preform, wherein X = 1 1 + [ ( ? ? s - ? ) ? 0.209748 ? T dop ? Exp ? [ - 5435.33 / T dop ] y SiCl ? ? 4 3 / 4 ] and ?s is the density of the fully densified soot layer; and (ii) exposing the chlorine treated preform to temperatures above 1400° C. to completely sinter the preform to produce sintered optical fiber preform with a chlorine doped region; and (iii) drawing an optical fiber from the sintered optical preform.Type: GrantFiled: August 25, 2014Date of Patent: March 22, 2016Assignee: Corning IncorporatedInventors: Brian Lee Harper, Rostislav Radiyevich Khrapko, Snigdharaj Kumar Mishra, Sonya Marie Raney, Pushkar Tandon
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Patent number: 9291775Abstract: An optical fiber connector for coupling light to or from an input fiber is disclosed. The connector includes a first alignment member that holds an achromatic GRIN lens. The achromatic GRIN lens has a half-pitch axial length L, wherein 0.5 mm?L?5 mm. The optical fiber connector has a field fiber that interfaces with the achromatic GRIN lens. The connector is operable between operating wavelengths of 800 nm and 1600 nm with a coupling loss of less than 0.2 dB.Type: GrantFiled: February 18, 2014Date of Patent: March 22, 2016Assignee: Corning Optical Communications LLCInventors: Venkata Adiseshaiah Bhagavatula, Robert Adam Modavis
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Patent number: 9293268Abstract: A method for fabricating an EDLC includes (a) coating a porous activated carbon material onto current collector sheets to form carbon-based electrodes, (b) drying the carbon-based electrodes, (c) winding or stacking carbon-based electrodes interleaved with separator sheets to fabricate a jelly roll or prismatic electrode assembly, (d) inserting the electrode assembly into a package and forming electrical connections between the electrode assembly and package terminals, (e) filling the package with a liquid electrolyte, and (f) sealing the package. Steps (a)-(f) are performed in an atmosphere having a low moisture content. The atmosphere may be vacuum or purged with dry gas.Type: GrantFiled: November 22, 2013Date of Patent: March 22, 2016Assignee: Corning IncorporatedInventors: John Paul Krug, Kamjula Pattabhirami Reddy, James Scott Sutherland, Todd Marshall Wetherill
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Patent number: 9291802Abstract: A compact microplate imaging system, including: a tunable light source; a lens ensemble to collimate the light source onto the microplate and to transmit light that is reflected from the microplate; a beam splitter to divert a portion of the reflected light; an imaging lens to collect diverted light and to produce an optical image of the at least one sensor of the microplate; and an image sensor for receiving the optical image of the at least one sensor of the microplate. A method for interrogating a sensor using the compact microplate imaging system, as further defined herein, is also disclosed.Type: GrantFiled: February 13, 2012Date of Patent: March 22, 2016Assignee: Corning IncorporatedInventor: Qi Wu
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Patent number: 9290640Abstract: An aqueous binder composition is provided that includes a carbohydrate and a crosslinking agent. In exemplary embodiments, the carbohydrate-based binder composition may also include a catalyst, a coupling agent, a process aid, a crosslinking density enhancer, an extender, a moisture resistant agent, a dedusting oil, a colorant, a corrosion inhibitor, a surfactant, a pH adjuster, and combinations thereof. The carbohydrate may be natural in origin and derived from renewable resources. Additionally, the carbohydrate polymer may have a dextrose equivalent (DE) number from 2 to 20. In at least one exemplary embodiment, the carbohydrate is a water-soluble polysaccharide such as dextrin or maltodextrin and the crosslinking agent is citric acid. Advantageously, the carbohydrates have a low viscosity and cure at moderate temperatures. The environmentally friendly, formaldehyde-free binder may be used in the formation of insulation materials and non-woven chopped strand mats.Type: GrantFiled: October 17, 2014Date of Patent: March 22, 2016Assignee: Owens Corning Intellectual Capital, LLCInventors: Christopher M. Hawkins, Jesus M. Hernandez-Torres, Liang Chen
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Patent number: 9290407Abstract: A glass and an enclosure, including windows, cover plates, and substrates for mobile electronic devices comprising the glass. The glass has a crack initiation threshold that is sufficient to withstand direct impact, has a retained strength following abrasion that is greater than soda lime and alkali aluminosilicate glasses, and is resistant to damage when scratched. The enclosure includes cover plates, windows, screens, and casings for mobile electronic devices and information terminal devices.Type: GrantFiled: November 18, 2013Date of Patent: March 22, 2016Assignee: Corning IncorporatedInventors: Kristen L. Barefoot, Matthew John Dejneka, Sinue Gomez, Timothy Michael Gross, Nagaraja Shashidhar
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Patent number: 9290406Abstract: A method for producing an optical fiber is provided. The method includes the steps of drawing an optical fiber from a heated glass source in a furnace and introducing index perturbations to the optical fiber via a plurality of perturbation sources arranged at a plurality of different azimuthal locations. The index perturbations are introduced synchronously at different locations along the axial length of the fiber by the plurality of perturbation sources in a generally helical pattern on the outside surface of the fiber in one embodiment. According to another embodiment, the index perturbations are introduced by the plurality of perturbation sources at different frequencies.Type: GrantFiled: August 16, 2012Date of Patent: March 22, 2016Assignee: Corning IncorporatedInventors: Xin Chen, Charles Frederick Laing, Ming-Jun Li, Anping Liu, Eric John Mozdy, Joseph Doull Thaler
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Patent number: 9291773Abstract: Apparatus and methods for stripping tight-buffered optical fibers are disclosed. The methods include removing a portion of the buffer layer and thin-coating layer to expose the bare fiber at the optical fiber end, wherein the cuts to the optical fiber needed to strip the optical fiber are made simultaneously. In some methods, a portion of the cover is used to clean the bare fiber as the cover portion is removed. In other methods, the normal force that secures the cover is alleviated so that the cover portion can be removed without breaking the bare fiber. Different apparatus configured to effectuate the stripping methods are disclosed.Type: GrantFiled: October 14, 2013Date of Patent: March 22, 2016Assignee: Corning Cable Systems LLCInventors: Carl Randall Harrison, Gregory Earl McMinn, Brett Allen Menke, Chanh Cuong Vo
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Publication number: 20160077248Abstract: Optical films, and organic light-emitting display apparatuses employing the same, include a high refractive index pattern layer including a first surface and a second surface facing each other, wherein the first surface includes a pattern having a plurality of grooves. The plurality of grooves each have a curved surface and a depth greater than a width thereof. The high refractive index pattern layer is formed of a material having a refractive index greater than 1. The optical films, and the organic light-emitting display apparatuses, further include a low refractive index pattern layer formed of a material having a refractive index smaller than the refractive index of the material constituting the high refractive index pattern layer. The low refractive index pattern layer includes a filling material for filling the plurality of grooves.Type: ApplicationFiled: September 4, 2015Publication date: March 17, 2016Applicants: Samsung Electronics Co., Ltd., Corning Precision Materials Co., Ltd., Cheil Industries, Inc.Inventors: Hong-shik SHIM, Eun-young CHO, You-min SHIN, Eui-soo KIM, Chul-ho JEONG, Young OH, Hyun-min KIM
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Publication number: 20160077249Abstract: Optical films, and organic-light-emitting display apparatuses, include a high refractive index pattern layer including a first surface and a second surface facing each other. The first surface includes a pattern having grooves. The grooves each have a curved surface and a depth greater than a width. The high refractive index pattern layer is formed of a material having a refractive index greater than 1. Further included is a low refractive index pattern layer formed of a material having a refractive index smaller than that of the material constituting the high refractive index pattern layer. The low refractive index pattern layer includes a filling material for filling grooves. A tilt angle, ?, of each groove satisfies the following condition, 15°???75°.Type: ApplicationFiled: September 4, 2015Publication date: March 17, 2016Applicants: Corning Precision Materials Co., Ltd., Cheil Industries Inc., Samsung Electronics Co., Ltd.Inventors: Hong-shik SHIM, Eun-young CHO, Hyun-min KIM, You-min SHIN, Young OH, Chul-ho JEONG, Eui-soo KIM
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Patent number: 9287659Abstract: A coaxial cable connector for coupling an end of a coaxial cable to a terminal is disclosed. The connector has a coupler adapted to couple the connector to a terminal, a body assembled with the coupler and a post assembled with the coupler and the body. The post is adapted to receive an end of a coaxial cable. The post has an integral contacting portion that is monolithic with at least a portion of the post. When assembled the coupler and post provide at least one circuitous path resulting in RF shielding such that RF signals external to the coaxial cable connector are attenuated, such that the integrity of an electrical signal transmitted through coaxial cable connector is maintained regardless of the tightness of the coupling of the connector to the terminal.Type: GrantFiled: October 16, 2012Date of Patent: March 15, 2016Assignee: Corning Optical Communications RF LLCInventors: Donald Andrew Burris, William Bernard Lutz
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Patent number: 9285543Abstract: A fiber optic connector has a mechanical splice assembly and a mechanical splice assembly holder. The mechanical splice assembly holder includes a body section and a cable retention section. The cable retention section includes a pair of cable retention arms extending from the body section and a guiding groove that is extended out from the body section. The guiding groove is located between the two cable retention arms.Type: GrantFiled: December 19, 2013Date of Patent: March 15, 2016Assignee: Corning Cable Systems (Shanghai) Co., LtdInventor: JiWei Sun
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Patent number: 9283652Abstract: An edge grinding apparatus and method for grinding a glass substrate, with which a glass substrate can be ground by a fixed amount and the occurrence of defects can be minimized. The edge grinding apparatus includes an edge grinding unit which grinds a cut edge of a glass substrate while following the cut edge; a measuring unit which obtains positional information of the cut edge; and a control unit which receives the positional information of the cut edge from the measuring unit and controls a position of the edge grinding unit based on the positional information of the cut edge.Type: GrantFiled: October 9, 2012Date of Patent: March 15, 2016Assignee: Corning Precision Materials Co., Ltd.Inventors: Young Chae Ko, Se-Yeon Kim, Yeonhoon Kim, Jun-Seok Kim
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Patent number: 9282756Abstract: The application relates to a process comprising: a) steeping high amylose corn kernels at a temperature from about 71° C. to about 93° C. for a time from about 24 hours to about 72 hours; b) subjecting the high-temperature steep corn kernels to conventional wet milling; c) recovering starch with a total dietary fiber (TDF) content from about 33% to about 45% (w/w); and d) wherein the recovered starch has not been chemically modified.Type: GrantFiled: September 24, 2012Date of Patent: March 15, 2016Assignee: Corn Products Development, IncInventors: Baljit Ghotra, Robert A. Skorge, Marc D. Gunderson, Barry J. Nagle, Vincent R. Green
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Patent number: 9285086Abstract: Light diffusing optical fibers and light emitting apparatuses including light diffusing optical fibers are disclosed. In one embodiment, a light emitting apparatus includes a base, a transparent or translucent enclosure affixed to the base, a light diffusing optical fiber including a coiled filament enclosed within the enclosure, and a light source optically coupled to the light diffusing optical fiber. The coiled filament includes a glass core, an outer surface, and a plurality of light scattering structures situated within the coiled filament for scattering light through the outer surface of the coiled filament. The coiled filament has a loss in a range of 0.5 dB/turn to 10.0 dB/turn at a turn radius of less than 50 mm.Type: GrantFiled: November 8, 2013Date of Patent: March 15, 2016Assignee: Corning IncorporatedInventors: Michael Lucien Genier, Vineet Tyagi
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Patent number: 9285556Abstract: A hybrid cable assembly includes a hybrid cable, tether tubes, and an overmold. The hybrid cable includes both electrical-conductor and fiber-optic elements. The tethers receive a subset of the elements from the hybrid cable at a transition location in the form of a chamber, and the overmold surrounds the transition location. The overmold is elongate, flexible, and has a low profile configured to pass through narrow ducts.Type: GrantFiled: August 20, 2014Date of Patent: March 15, 2016Assignee: Corning Optical Communications LLCInventors: Donald Andrew Burris, Mark Edward Conner, Tory Allen Klavuhn, Lars Kristian Nielsen
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Patent number: 9284149Abstract: A method of winding a glass ribbon (10), including: winding an interleaving material (20) and the glass ribbon together to produce a roll (40); and tensioning the interleaving material so as to control a roll inter-layer pressure. By controlling the roll inter-layer pressure, the roll can be formed with straight side walls. The tension in the interleaving material can be controlled so as to be greater than 0 and ?0.25 pounds per linear inch of width of interleaving material. Also, there is provided an apparatus for winding glass ribbon together with interleaving material into a roll. The apparatus includes: an interleaving material supply path; a glass ribbon supply path; a roll winding mechanism (46); and a means (26) for applying tension to interleaving material traveling along the interleaving material supply path, as the interleaving material is wound into roll (40), so as to produce a pressure between the layers of the roll.Type: GrantFiled: November 29, 2011Date of Patent: March 15, 2016Assignee: Corning IncorporatedInventors: Gary Edward Merz, John Earl Tosch, Thaddeus Francis Trzeciak