Patents by Inventor Kristian Nielsen
Kristian Nielsen has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20220390700Abstract: Embodiments of a tensile strength limiting system are provided. The tensile strength limiting system is configured to cause breakage of an optical fiber cable at a predetermined tensile loading below a tensile strength of the optical fiber cable. The tensile strength limiting system includes a force limiter configured for attachment to the optical fiber cable strung on an aerial pole and a restriction through which the optical fiber cable is configured to be looped. At the predetermined tensile loading, the force limiter is configured to allow the optical fiber cable to pull through the restriction; and the restriction is configured to force the optical fiber cable to bend below a minimum bend radius of a strength member within the optical fiber cable such that the strength member breaks.Type: ApplicationFiled: August 16, 2022Publication date: December 8, 2022Inventors: Jeffrey Dean Danley, Joseph Clinton Jensen, Lars Kristian Nielsen, Grzegorz Tosik
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Publication number: 20220357542Abstract: Disclosed herein are preconnectorized cable assemblies and methods of making using a pull string. One embodiment of the disclosure relates to a method of manufacturing a distribution cable assembly using a pull string fed through a jacket of a distribution cable. Subunit cables are attached to the pull string through openings in the jacket of the distribution cable, and then pulled, via the pull string, through the jacket until drawn through a distribution end opening of the jacket. Another embodiment relates to a distribution cable assembly including junction shells covering side openings in the jacket. The junction shell includes a first half shell attached to a second half shell by a fastener. The first half shell includes stops proximate ends of a side opening to fix the junction shell along an axis of the jacket.Type: ApplicationFiled: July 25, 2022Publication date: November 10, 2022Inventors: Terry Lee Cooke, Michael Todd Faulkner, Christopher Shawn Houser, Lars Kristian Nielsen
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Publication number: 20220333885Abstract: A rifle bolt disassembly tool is provided. The rifle bolt disassembly tool has a fulcrum having a tooth and a lever. The tool is suitable for allowing a user to unscrew the bolt plug of the rifle in a safe and efficient manner. The present tool is especially suitable to remove the bolt plug of a Remington Model 700 rifle, but may also be used with other rifles.Type: ApplicationFiled: April 1, 2022Publication date: October 20, 2022Inventor: Kristian Nielsen
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Publication number: 20220285901Abstract: A method of delivering cables for a data center comprises: collecting information for different cables needed in a room of the data center, wherein the information includes cable type, length, and intended location data; determining groups of the different cables for bundling together at the data center based on the information; and for at least one of the groups, supplying the different cables for the group together as a common unit.Type: ApplicationFiled: March 7, 2022Publication date: September 8, 2022Inventors: Michael Todd Faulkner, Lars Kristian Nielsen, Marcus Ray Sullivan
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Patent number: 11346689Abstract: The present invention relates to an optical measuring system comprising a polymer-based single-mode fibre-optic sensor system (102), an optical interrogator (101), and an optical arrangement (103) interconnecting the optical interrogator (101) and the polymer-based single-mode fibre-optic sensor system (102). The invention further relates to an optical interrogator adapted to be connected to a polymer-based single-mode fibre-optic sensor system via an optical arrangement. The interrogator comprises a broadband light source arrangement (104) and a spectrum analysing arrangement which receives and analyses light reflected from the polymer-based single-mode fibre-optic sensor system.Type: GrantFiled: December 2, 2016Date of Patent: May 31, 2022Assignee: Danmarks Tekniske UniversitetInventors: Kristian Nielsen, Ole Bang
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Publication number: 20220043226Abstract: A configurator design tool is provided to facilitate the manufacture of pre-configured multi-fiber optical cable and loaded optical fiber cable storage reels. The configurator design tool also facilitates the configuration of fiber-optic data centers or other types of fiber-optic infrastructure. The present disclosure also contemplates methodology for manufacturing pre-configured multi-fiber optical cable and loaded optical fiber cable storage reels, and for configuring fiber-optic data centers or other types of fiber-optic infrastructure. Additional embodiments relate to contemplated pre-configured multi-fiber optical cable loaded optical fiber cable storage reels, and to fiber-optic data centers or other types of fiber-optic infrastructures.Type: ApplicationFiled: October 8, 2021Publication date: February 10, 2022Inventors: Scott Frederick Andrus, Terry Lee Cooke, Michael Todd Faulkner, Lars Kristian Nielsen, Marcus Ray Sullivan, Wendell Porter Weeks
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Publication number: 20220026659Abstract: Embodiments of a furcated optical fiber cable are provided. A main distribution cable has optical fibers surrounded by a cable jacket. The optical fibers are divided into at least two furcation legs. A furcation plug is located at a transition point between the main distribution cable and the at least two furcation legs. The furcation plug surrounds at least a portion of the main distribution cable and each of the at least two furcation legs. Optical connectors are provided for each of the at least two furcation legs, and each connector includes optical fibers that are spliced at a splice location to the optical fibers of the connector's respective furcation leg. The splice location is closer to the connector than to the furcation plug. A method of furcating an optical fiber cable and a pulling configuration for the furcated optical fiber cable are also provided.Type: ApplicationFiled: October 6, 2021Publication date: January 27, 2022Inventors: Michael Todd Faulkner, Lars Kristian Nielsen
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Patent number: 11150432Abstract: Embodiments of a furcated optical fiber cable are provided. A main distribution cable has optical fibers surrounded by a cable jacket. The optical fibers are divided into at least two furcation legs. A furcation plug is located at a transition point between the main distribution cable and the at least two furcation legs. The furcation plug surrounds at least a portion of the main distribution cable and each of the at least two furcation legs. Optical connectors are provided for each of the at least two furcation legs, and each connector includes optical fibers that are spliced at a splice location to the optical fibers of the connector's respective furcation leg. The splice location is closer to the connector than to the furcation plug. A method of furcating an optical fiber cable and a pulling configuration for the furcated optical fiber cable are also provided.Type: GrantFiled: June 9, 2020Date of Patent: October 19, 2021Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATIONInventors: Michael Todd Faulkner, Lars Kristian Nielsen
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Patent number: 11067366Abstract: A leveling jack for a gun sight (or ‘scope’) of a gun or rifle is provided. The leveling jack is movable between at least a first and a second position and is secured to a gun or rifle. The leveling jack has a bottom edge which may be secured to, for example, the picatinny rail of the top of the gun or rifle and an extended bar which contacts and levels the gun sight. The leveling jack may also be secured directly to the gun or rifle without utilizing a picatinny rail. The leveling jack is especially suitable for leveling the gun sight of the gun or rifle in a quick and efficient manner.Type: GrantFiled: June 9, 2020Date of Patent: July 20, 2021Assignee: FIX IT STICKSInventors: Kristian Nielsen, James Wener
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Publication number: 20210065936Abstract: Bundled cables and methods for preparing bundled cable are disclosed herein. In the method, a plurality of subunits is wound about a central member. The subunits include a subunit jacket made of a first thermoplastic composition and has a first outer surface, and the central member includes a central member jacket made of a second thermoplastic composition and has a second outer surface. A metal element is provided at an interface of the second outer surface and the first outer surface of the subunits. The metal element is heated such that at least one of the first thermoplastic composition or the second thermoplastic composition forms bonds with the other of the first thermoplastic composition or the second thermoplastic composition.Type: ApplicationFiled: August 11, 2020Publication date: March 4, 2021Inventors: David Ralph Maack, Lars Kristian Nielsen, James Arthur Register, III, William Taylor Rowell
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Publication number: 20210010781Abstract: A leveling jack for a gun sight (or ‘scope’) of a gun or rifle is provided. The leveling jack is movable between at least a first and a second position and is secured to a gun or rifle. The leveling jack has a bottom edge which may be secured to, for example, the picatinny rail of the top of the gun or rifle and an extended bar which contacts and levels the gun sight. The leveling jack may also be secured directly to the gun or rifle without utilizing a picatinny rail. The leveling jack is especially suitable for leveling the gun sight of the gun or rifle in a quick and efficient manner.Type: ApplicationFiled: June 9, 2020Publication date: January 14, 2021Inventors: Kristian Nielsen, James Wener
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Publication number: 20200301091Abstract: Embodiments of a furcated optical fiber cable are provided. A main distribution cable has optical fibers surrounded by a cable jacket. The optical fibers are divided into at least two furcation legs. A furcation plug is located at a transition point between the main distribution cable and the at least two furcation legs. The furcation plug surrounds at least a portion of the main distribution cable and each of the at least two furcation legs. Optical connectors are provided for each of the at least two furcation legs, and each connector includes optical fibers that are spliced at a splice location to the optical fibers of the connector's respective furcation leg. The splice location is closer to the connector than to the furcation plug. A method of furcating an optical fiber cable and a pulling configuration for the furcated optical fiber cable are also provided.Type: ApplicationFiled: June 9, 2020Publication date: September 24, 2020Inventors: Michael Todd Faulkner, Lars Kristian Nielsen
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Patent number: 10712519Abstract: Embodiments of a furcated optical fiber cable are provided. A main distribution cable has optical fibers surrounded by a cable jacket. The optical fibers are divided into at least two furcation legs. A furcation plug is located at a transition point between the main distribution cable and the at least two furcation legs. The furcation plug surrounds at least a portion of the main distribution cable and each of the at least two furcation legs. Optical connectors are provided for each of the at least two furcation legs, and each connector includes optical fibers that are spliced at a splice location to the optical fibers of the connector's respective furcation leg. The splice location is closer to the connector than to the furcation plug. A method of furcating an optical fiber cable and a pulling configuration for the furcated optical fiber cable are also provided.Type: GrantFiled: June 19, 2018Date of Patent: July 14, 2020Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATIONInventors: Michael Todd Faulkner, Lars Kristian Nielsen
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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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Publication number: 20190049685Abstract: 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: ApplicationFiled: October 15, 2018Publication date: February 14, 2019Inventors: Joseph Clinton Jensen, Tory Allen Klavuhn, Lars Kristian Nielsen, Benjamin Gray Whitener
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Publication number: 20190004273Abstract: Embodiments of a furcated optical fiber cable are provided. A main distribution cable has optical fibers surrounded by a cable jacket. The optical fibers are divided into at least two furcation legs. A furcation plug is located at a transition point between the main distribution cable and the at least two furcation legs. The furcation plug surrounds at least a portion of the main distribution cable and each of the at least two furcation legs. Optical connectors are provided for each of the at least two furcation legs, and each connector includes optical fibers that are spliced at a splice location to the optical fibers of the connector's respective furcation leg. The splice location is closer to the connector than to the furcation plug. A method of furcating an optical fiber cable and a pulling configuration for the furcated optical fiber cable are also provided.Type: ApplicationFiled: June 19, 2018Publication date: January 3, 2019Inventors: Michael Todd Faulkner, Lars Kristian Nielsen
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Patent number: 10162144Abstract: A cable assembly includes a distribution cable, a tether cable, and a network access point (NAP) assembly having a cavity defined therein. The distribution cable includes optical fibers and the tether cable includes an optical fiber. The optical fiber of the tether cable is tightly constrained within the tether cable and portion thereof extends from the tether cable into the cavity of the NAP assembly and is spliced to a portion of one of the optical fibers of the distribution cable extending into the cavity of the NAP assembly from a side of the distribution cable. The splice is positioned in the cavity. Tight constraint of the optical fiber of the tether cable within the tether cable limits transmission of fiber movement to the portion of the optical fiber of the tether cable extending into the cavity of the NAP assembly, thereby protecting the splice.Type: GrantFiled: December 7, 2017Date of Patent: December 25, 2018Assignee: Corning Optical Communications LLCInventors: Lars Kristian Nielsen, Humberto Perez Toledo, Ricardo Andre Rivas Alas
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Publication number: 20180356263Abstract: The present invention relates to an optical measuring system comprising a polymer-based single-mode fibre-optic sensor system (102), an optical interrogator (101), and an optical arrangement (103) interconnecting the optical interrogator (101) and the polymer-based single-mode fibre-optic sensor system (102). The invention further relates to an optical interrogator adapted to be connected to a polymer-based single-mode fibre-optic sensor system via an optical arrangement. The interrogator comprises a broadband light source arrangement (104) and a spectrum analysing arrangement which receives and analyses light reflected from the polymer-based single-mode fibre-optic sensor system.Type: ApplicationFiled: December 2, 2016Publication date: December 13, 2018Applicant: Danmarks Tekniske UniversitetInventors: Kristian NIELSEN, Ole BANG
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Publication number: 20180095233Abstract: A cable assembly includes a distribution cable, a tether cable, and a network access point (NAP) assembly having a cavity defined therein. The distribution cable includes optical fibers and the tether cable includes an optical fiber. The optical fiber of the tether cable is tightly constrained within the tether cable and portion thereof extends from the tether cable into the cavity of the NAP assembly and is spliced to a portion of one of the optical fibers of the distribution cable extending into the cavity of the NAP assembly from a side of the distribution cable. The splice is positioned in the cavity. Tight constraint of the optical fiber of the tether cable within the tether cable limits transmission of fiber movement to the portion of the optical fiber of the tether cable extending into the cavity of the NAP assembly, thereby protecting the splice.Type: ApplicationFiled: December 7, 2017Publication date: April 5, 2018Inventors: Lars Kristian Nielsen, Humberto Perez Toledo, Ricardo Andre Rivas Alas
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Patent number: RE48144Abstract: 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.Type: GrantFiled: May 27, 2018Date of Patent: August 4, 2020Assignee: Corning Optical Communications LLCInventors: Michael Todd Faulkner, Lars Kristian Nielsen