Patents by Inventor James Ott

James Ott 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).

  • Patent number: 9952398
    Abstract: A fiber optic telecommunications device includes a frame defining a right vertical support and a left vertical support. A chassis is mounted to the right and left vertical supports, wherein the chassis is configured to pivot about a pivot axis that is defined by one of the right and left vertical supports. A plurality of modules are mounted on the chassis, each of the modules slidable on the chassis along a direction extending between the right and left vertical supports, wherein the chassis is configured to pivot about a plane parallel to the sliding direction of the modules, each module defining fiber optic connection locations.
    Type: Grant
    Filed: September 2, 2016
    Date of Patent: April 24, 2018
    Assignee: CommScope Technologies LLC
    Inventor: Michael James Ott
  • Patent number: 9952400
    Abstract: A fiber optic cassette including a body defining a front and an opposite rear and an enclosed interior. A cable entry location is defined in the body for a cable to enter the interior of the cassette. The cable which enters at the cable entry location is attached to the cassette body and the fibers are extended into the cassette body and form terminations at connectors. The connectors are connected to adapters located at the front of the cassette. A front side of the adapters defines termination locations for cables to be connected to the fibers connected at the rear of the adapters. A cable including a jacket, a strength member, and fibers enters the cassette. The strength member is crimped to a crimp tube and is mounted to the cassette body, allowing the fibers to extend past the crimp tube into the interior of the cassette body. A strain relief boot is provided at the cable entry location.
    Type: Grant
    Filed: December 28, 2016
    Date of Patent: April 24, 2018
    Assignee: CommScope Technologies LLC
    Inventors: Michael James Ott, David Patrick Murray, Patrick J. Thompson
  • Patent number: 9927591
    Abstract: A packaging arrangement for telecommunications cabling is disclosed herein. The packaging arrangement includes a modular spool assembly defined by a first flange, an opposing second flange, and a spool hub separating the first flange from the second flange, wherein a telecommunications cable may be wound between the first and second flanges. Each flange defines a first cable contact side, a second cable-end storage side, and an opening allowing the telecommunications cable to pass from the first side to the second side, the second side defining a storage compartment for storing an end of the telecommunications cable passing through the opening in the flange.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: March 27, 2018
    Assignee: CommScope Technologies LLC
    Inventor: Michael James Ott
  • Patent number: 9897764
    Abstract: A method of manufacturing fiber optic connectors includes precision molding optical ferrule assemblies around optical fibers for use in the connectors. The optical ferrule assemblies are over-molded in two-parts: a ferrule and a hub. The ferrule is molded around a coated section of fiber and a fiber tip is formed (e.g., using a laser) at a stripped section of the optical fiber at a location axially spaced from the ferrule. The fiber is pulled into the ferrule to align the tip and the hub is formed to complete the ferrule assembly.
    Type: Grant
    Filed: September 25, 2013
    Date of Patent: February 20, 2018
    Assignee: COMMSCOPE TECHNOLOGIES LLC
    Inventors: Michael James Ott, Paul A. Suek
  • Publication number: 20170351393
    Abstract: Techniques described herein enable auto targeting assistance for input devices. Among a number of aspects of the present disclosure, techniques disclosed herein enable a computing device to receive a directional input signal from a wide range of input devices to select an interface element from a number of interface elements based on an arrangement of the interface elements. In some configurations, one or more angles and distances can be measured from an interface element to a vector derived from an input signal. The angles and distances can be used to select the interface element based on one or more criteria, including a weighted set of angles and distances. Auto scrolling functions can also bring a hidden interface element into a viewing area. The techniques disclosed herein can provide such functionality without requiring a UI programmer to provide complex code that associates individual interface elements for navigational purposes.
    Type: Application
    Filed: November 22, 2016
    Publication date: December 7, 2017
    Inventors: Michael James Ott, Jared Greiner, Michael David McGrath
  • Publication number: 20170336571
    Abstract: An optical fiber connection system includes a first and a second optical fiber, each with end portions that are terminated by a first and a second fiber optic connector, respectively. A fiber optic adapter connects the first and the second fiber optic connectors. A fiber alignment apparatus includes V-blocks and gel blocks. Each of the fiber optic connectors includes a connector housing and a sheath. The end portions of the optical fibers are positioned beyond distal ends of the respective connector housings. The sheath is slidably connected to the connector housing and slides between an extended configuration and a retracted configuration. The sheath covers the end portion of the respective optical fiber when the sheath is at the extended configuration and exposes the end portion when at the retracted configuration. The end portions of the optical fibers are cleaned when slid between the V-blocks and the gel blocks.
    Type: Application
    Filed: May 1, 2017
    Publication date: November 23, 2017
    Inventor: Michael James Ott
  • Publication number: 20170299831
    Abstract: A connection system includes an optical connector assembly; and an optical plug. The connector assembly includes a stack of gel-groove assemblies and a spring assembly mounted within a housing. Each of the gel-groove assemblies includes a first gel block at a first axial end, a second gel block at a second axial end, and a fiber mating region between the first and second gel blocks. The optical plug including sub-modules over-molded over arrays (e.g., ribbons) of the optical fibers. Each sub-module defines notches for receiving latches of the spring assembly when the optical plug is coupled to the first axial end of the optical adapter. Bare optical fibers extend from the plug, pass through the first axial gel block, and enter the fiber mating region when the plug is coupled to the adapter.
    Type: Application
    Filed: February 14, 2017
    Publication date: October 19, 2017
    Inventor: Michael James Ott
  • Publication number: 20170276881
    Abstract: A fiber optic alignment device includes a first and a second alignment block and a first and a second gel block. A fiber passage extends from a first end to a second end of the fiber optic alignment device. The fiber passage is adapted to receive a first optical fiber through the first end and a second optical fiber through the second end. An intermediate portion of the fiber passage is positioned between the first and the second ends. The intermediate portion is adapted to align the first and the second optical fibers between the first and the second alignment blocks. A first portion of the fiber passage is positioned between the first end and the intermediate portion of the fiber passage. The first portion extends between the first alignment block and the first gel block. A second portion of the fiber passage is positioned between the second end and the intermediate portion of the fiber passage. The second portion extends between the second alignment block and the second gel block.
    Type: Application
    Filed: March 7, 2017
    Publication date: September 28, 2017
    Inventor: Michael James Ott
  • Publication number: 20170235073
    Abstract: A fiber optic cassette including a body defining a front and an opposite rear and an enclosed interior. A cable entry location is defined in the body for a cable to enter the interior of the cassette. The cable which enters at the cable entry location is attached to the cassette body and the fibers are extended into the cassette body and form terminations at connectors. The connectors are connected to adapters located at the front of the cassette. A front side of the adapters defines termination locations for cables to be connected to the fibers connected at the rear of the adapters. A cable including a jacket, a strength member, and fibers enters the cassette. The strength member is crimped to a crimp tube and is mounted to the cassette body, allowing the fibers to extend past the crimp tube into the interior of the cassette body. A strain relief boot is provided at the cable entry location.
    Type: Application
    Filed: December 28, 2016
    Publication date: August 17, 2017
    Inventors: Michael James Ott, David Patrick Murray, Patrick J. Thompson
  • Patent number: 9720185
    Abstract: A processing system to connectorize optical cables includes processing stations on a table arrangement; and a track arrangement. The processing stations include: a strip-clean-cleave station that creates prepared ends of cable fibers and stub fibers; a splice station that fusion splices the prepared ends of cable and stub fibers; an overmold station that injection molds hubs around the splices; a UV cure station and a heat cure station for the injection molding; and a connector assembly station at which an optical connector is assembled at an end of each optical cable.
    Type: Grant
    Filed: May 21, 2015
    Date of Patent: August 1, 2017
    Assignees: CommScope Technologies LLC, ADC Czech Republic, S.R.O.
    Inventors: Joel Halls, Scott Carlson, Michael James Ott, Todd Curtis Strahl, Jan Vozdecky, Francisco Gerardo Carrillo Velarde, Yu Lu, Joseph Blaser, Mark D. Narum
  • Publication number: 20170139152
    Abstract: A fiber optic cable and connector assembly including a fiber optic connector mounted at the end of a fiber optic cable. The fiber optic connector includes a ferrule assembly including a stub fiber supported within a ferrule. The stub fiber is fusion spliced to an optical fiber of the fiber optic cable at a location within the fiber optic connector.
    Type: Application
    Filed: October 17, 2016
    Publication date: May 18, 2017
    Inventors: Michael James Ott, Thomas P. Huegerich, Steven C. Zimmel, Ponharith Nhep
  • Publication number: 20170131502
    Abstract: A fiber optic telecommunications device includes a frame defining a right vertical support and a left vertical support. A chassis is mounted to the right and left vertical supports, wherein the chassis is configured to pivot about a pivot axis that is defined by one of the right and left vertical supports. A plurality of modules are mounted on the chassis, each of the modules slidable on the chassis along a direction extending between the right and left vertical supports, wherein the chassis is configured to pivot about a plane parallel to the sliding direction of the modules, each module defining fiber optic connection locations.
    Type: Application
    Filed: September 2, 2016
    Publication date: May 11, 2017
    Inventor: Michael James Ott
  • Patent number: 9638868
    Abstract: An optical fiber connection system includes a first and a second optical fiber, each with end portions that are terminated by a first and a second fiber optic connector, respectively. A fiber optic adapter connects the first and the second fiber optic connectors. The fiber optic adapter includes a housing and a fiber alignment apparatus. The fiber alignment apparatus includes V-blocks and gel blocks. Each of the fiber optic connectors includes a connector housing and a sheath. The end portions of the optical fibers are positioned beyond distal ends of the respective connector housings. The sheath is slidably connected to the connector housing and slides between an extended configuration and a retracted configuration. The sheath covers the end portion of the respective optical fiber when the sheath is at the extended configuration and exposes the end portion when at the retracted configuration. The end portions of the optical fibers are cleaned when slid between the V-blocks and the gel blocks.
    Type: Grant
    Filed: March 23, 2015
    Date of Patent: May 2, 2017
    Assignee: CommScope Technologies LLC
    Inventor: Michael James Ott
  • Patent number: 9625657
    Abstract: A fiber optic alignment device includes a first and a second alignment block and a first and a second gel block. A fiber passage extends from a first end to a second end of the fiber optic alignment device. The fiber passage is adapted to receive a first optical fiber through the first end and a second optical fiber through the second end. An intermediate portion of the fiber passage is positioned between the first and the second ends. The intermediate portion is adapted to align the first and the second optical fibers between the first and the second alignment blocks. A first portion of the fiber passage is positioned between the first end and the intermediate portion of the fiber passage. The first portion extends between the first alignment block and the first gel block. A second portion of the fiber passage is positioned between the second end and the intermediate portion of the fiber passage. The second portion extends between the second alignment block and the second gel block.
    Type: Grant
    Filed: March 23, 2015
    Date of Patent: April 18, 2017
    Assignee: CommScope Technologies LLC
    Inventor: Michael James Ott
  • Publication number: 20170090140
    Abstract: A packaging arrangement for telecommunications cabling is disclosed herein. The packaging arrangement includes a modular spool assembly defined by a first flange, an opposing second flange, and a spool hub separating the first flange from the second flange, wherein a telecommunications cable may be wound between the first and second flanges. Each flange defines a first cable contact side, a second cable-end storage side, and an opening allowing the telecommunications cable to pass from the first side to the second side, the second side defining a storage compartment for storing an end of the telecommunications cable passing through the opening in the flange.
    Type: Application
    Filed: September 30, 2016
    Publication date: March 30, 2017
    Inventor: Michael James Ott
  • Patent number: 9606302
    Abstract: A ferrule for a fiber optic connector includes: a main body extending from a first end to a second end, the main body defining a bore extending from the first end to the second end; an end surface at the second end of the main body; and a raised portion on the end surface, the raised portion extending from the second end and surrounding the bore; wherein an optical fiber is configured to be positioned within the bore of the main body; and wherein the end surface is configured to be polished to remove the raised portion.
    Type: Grant
    Filed: March 13, 2014
    Date of Patent: March 28, 2017
    Assignee: CommScope Technologies LLC
    Inventors: Michael James Ott, Yu Lu
  • Patent number: 9575272
    Abstract: A connection system includes an optical connector assembly; and an optical plug. The connector assembly includes a stack of gel-groove assemblies and a spring assembly mounted within a housing. Each of the gel-groove assemblies includes a first gel block at a first axial end, a second gel block at a second axial end, and a fiber mating region between the first and second gel blocks. The optical plug including sub-modules over-molded over arrays (e.g., ribbons) of the optical fibers. Each sub-module defines notches for receiving latches of the spring assembly when the optical plug is coupled to the first axial end of the optical adapter. Bare optical fibers extend from the plug, pass through the first axial gel block, and enter the fiber mating region when the plug is coupled to the adapter.
    Type: Grant
    Filed: September 6, 2013
    Date of Patent: February 21, 2017
    Assignee: CommScope Technologies LLC
    Inventor: Michael James Ott
  • Patent number: 9535229
    Abstract: A fiber optic cassette including a body defining a front and an opposite rear and an enclosed interior. A cable entry location is defined in the body for a cable to enter the interior of the cassette. The cable which enters at the cable entry location is attached to the cassette body and the fibers are extended into the cassette body and form terminations at connectors. The connectors are connected to adapters located at the front of the cassette. A front side of the adapters defines termination locations for cables to be connected to the fibers connected at the rear of the adapters. A cable including a jacket, a strength member, and fibers enters the cassette. The strength member is crimped to a crimp tube and is mounted to the cassette body, allowing the fibers to extend past the crimp tube into the interior of the cassette body. A strain relief boot is provided at the cable entry location.
    Type: Grant
    Filed: October 5, 2012
    Date of Patent: January 3, 2017
    Assignee: CommScope Technologies LLC
    Inventors: Michael James Ott, David Patrick Murray, Patrick J. Thompson
  • Patent number: 9523824
    Abstract: A tool set for terminating an optical fiber with a fiber optic connector includes a crimping tool and a polishing tool. The crimping tool includes a locating feature for locating a housing of the fiber optic connector, a stop for locating an end of an optical fiber relative to the housing, and at least one anvil for crimping a crimp of the fiber optic connector to secure a position of the optical fiber relative to the housing. The polishing tool includes a locating feature for locating the housing and thereby locating the end of the optical fiber and a seat for activating a compression member of the fiber optic connector thereby securing the end of the optical fiber to the polishing tool.
    Type: Grant
    Filed: March 16, 2015
    Date of Patent: December 20, 2016
    Assignee: CommScope Technologies LLC
    Inventor: Michael James Ott
  • Publication number: 20160363732
    Abstract: Some example methods of connectorizing an end of an optical cable include providing the ferrule assembly including a ferrule, a stub optical fiber extending rearwardly from the ferrule, and a flange disposed about the ferrule; splicing the stub optical fiber to an optical fiber of the optical cable at a splice location; and overmolding a rear hub portion (e.g., without any protective layers disposed between the rear hub portion and the stub optical fiber and optical fiber of the optical cable) using an adhesive material. The flange may include Nylon 6, 6. Splicing the fibers may include pulling the fibers away from each other during splicing without separating the fibers.
    Type: Application
    Filed: August 19, 2014
    Publication date: December 15, 2016
    Inventors: Steven C. Zimmel, Michael Andrew Oar, Richard J. Drapeau, Dennis Marvin Braun, Michael James Ott