Patents by Inventor Steven Zimmel
Steven Zimmel 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: 20080107383Abstract: A fiber optic ferrule includes a body extending from a first end to a second opposite end, with the body including an axial passage extending between the first and second ends. The axial passage includes a first diameter portion having a diameter of at least 125 microns, and a second diameter portion having a diameter of at least 250 microns and less than a diameter of the buffer, the second diameter portion positioned between the first diameter and the second end. The axial passage further defines a tapered shape at the second end extending inward from the second end to the second diameter portion. A hub holds the ferrule. A method of assembling a terminated fiber optic cable is also provided.Type: ApplicationFiled: January 10, 2008Publication date: May 8, 2008Applicant: ADC TELECOMMUNICATIONS, INC.Inventors: Scott Droege, Steven Zimmel
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Publication number: 20080025684Abstract: A housing including a plurality of openings for receiving fiber optic connectors and protecting the polished end face of the connectors from damage while the connectors are stored within a telecommunications connection cabinet. A module with a plurality of optical fiber cables connected to a first optical fiber cable and terminated by a fiber optic connector. Each of the connectors are inserted within openings in a connector holder for storage and protection until the cables need to be connected to a customer equipment cable.Type: ApplicationFiled: August 8, 2007Publication date: January 31, 2008Applicant: ADC Telecommunications, Inc.Inventors: Soutsada Vongseng, Trevor Smith, Michael Barth, Jeffrey Norris, Steven Zimmel
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Publication number: 20080019655Abstract: A housing including a plurality of openings for receiving fiber optic connectors and protecting the polished end face of the connectors from damage while the connectors are stored within a telecommunications connection cabinet. A module with a plurality of optical fiber cables connected to a first optical fiber cable and terminated by a fiber optic connector. Each of the connectors are inserted within openings in a connector holder for storage and protection until the cables need to be connected to a customer equipment cable.Type: ApplicationFiled: August 8, 2007Publication date: January 24, 2008Applicant: ADC Telecommunications, Inc.Inventors: Soutsada Vongseng, Trevor Smith, Michael Barth, Jeffrey Norris, Steven Zimmel
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Publication number: 20070189692Abstract: A telecommunications assembly includes a chassis and a plurality of fiber optic splitter modules mounted within the chassis. Each splitter module includes at least one fiber optic connector. Within an interior of the chassis are positioned at least one fiber optic adapter. Inserting the splitter module through a front opening of the chassis at a mounting location positions the connector of the splitter module for insertion into and mating with the adapter of the chassis. The adapters mounted within the interior of the chassis are integrally formed as part of a removable adapter assembly. A method of mounting a fiber optic splitter module within a telecommunications chassis is also disclosed.Type: ApplicationFiled: February 13, 2006Publication date: August 16, 2007Inventors: Steven Zimmel, Trevor Smith, Ponharith Nhep
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Publication number: 20070110371Abstract: A fiber optic connector including a ferrule surrounding an optical fiber and a hub engaging the ferrule. The hub includes a front portion having first and second opposing surfaces and first and second tapered regions extending from the first and second opposing surfaces to a front face. A housing includes an anti-rotation seat configured to engage the first and second opposing surfaces, the anti-rotation seat including parallel first and second contact lines positioned at a front of the anti-rotation seat. A spring within a chamber of the housing biases the ferrule through a bore in the front of the housing. The first tapered region of the hub engages the first contact line and the second tapered region engages the second contact line when the hub and ferrule are in a first rotational position so that the optical fiber is maintained at a known orientation with respect to the connector.Type: ApplicationFiled: September 22, 2006Publication date: May 17, 2007Applicant: ADC Telecommunications, Inc.Inventors: Steven Zimmel, Keith Nelson
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Publication number: 20060269205Abstract: A telecommunications assembly including a housing and a plurality of modules mounted within the housing. The modules includes a rear face in which is mounted at least one fiber optic connector. Within an interior of the housing are positioned at least one fiber optic adapters. Inserting the module through a front opening of the housing at a mounting location positions the connector of the module for insertion into and mating with the adapter of the housing. The adapters within the interior of the housing are integrally formed as part of a removable adapter assembly. A method of mounting a telecommunications module within a chassis.Type: ApplicationFiled: May 25, 2005Publication date: November 30, 2006Inventor: Steven Zimmel
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Publication number: 20060269206Abstract: A fiber optic adapter assembly includes a plurality of adapters included in an integrally formed body. Each of the adapters may include a protective shutter mounted within one end. The adapter assembly may be configured to mount to a chassis and position the adapters for receiving fiber optic connectors of telecommunications modules mounted to the chassis.Type: ApplicationFiled: May 25, 2005Publication date: November 30, 2006Inventor: Steven Zimmel
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Publication number: 20060093301Abstract: A telecommunications assembly including a housing and a plurality of modules mounted within the housing. The modules includes a rear face in which is mounted at least one fiber optic connector. Within an interior of the housing are positioned at least one fiber optic adapters. Inserting the module through a front opening of the housing at a mounting location positions the connector of the module for insertion into and mating with the adapter of the housing. The adapters within the interior of the housing are mounted to a removable holder. A method of mounting a telecommunications module within a chassis.Type: ApplicationFiled: November 3, 2004Publication date: May 4, 2006Inventors: Steven Zimmel, Ponharith Nhep, Trevor Smith
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Publication number: 20060093268Abstract: A fiber optic cable assembly with an optical fiber extending through first and second overlapping cable jackets. The first cable jacket is slidably received within a longitudinal opening of the second cable jacket. A first end of the optical fiber is fixed with respect to the first cable jacket and a second optical fiber is fixed with respect to the second cable jacket. The two cable jackets overlap and are slidably movable with respect to each other. A method forming a cable assembly.Type: ApplicationFiled: November 3, 2004Publication date: May 4, 2006Inventor: Steven Zimmel
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Publication number: 20050276551Abstract: A furcation tube including a central channel for receiving a fiber optic drop cable in a first end and an upjacket in a second end to transition an optical fiber within the drop cable into the upjacket for termination. A method of transitioning an optical fiber from a drop cable to a smaller upjacket.Type: ApplicationFiled: June 15, 2004Publication date: December 15, 2005Inventors: Troy Brown, Steven Zimmel, Justin Horton
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Publication number: 20050232554Abstract: A fiber optic connector including a ferrule surrounding an optical fiber and a hub engaging the ferrule. The hub includes a front portion having first and second opposing surfaces and first and second tapered regions extending from the first and second opposing surfaces to a front face. A housing includes an anti-rotation seat configured to engage the first and second opposing surfaces, the anti-rotation seat including parallel first and second contact lines positioned at a front of the anti-rotation seat. A spring within a chamber of the housing biases the ferrule through a bore in the front of the housing. The first tapered region of the hub engages the first contact line and the second tapered region engages the second contact line when the hub and ferrule are in a first rotational position so that the optical fiber is maintained at a known orientation with respect to the connector.Type: ApplicationFiled: April 27, 2005Publication date: October 20, 2005Applicant: ADC Telecommunications, Inc.Inventors: Steven Zimmel, Keith Nelson
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Publication number: 20050185910Abstract: An optical fiber cable assembly comprising an optical fiber slidably enclosed within a hollow tubing, both the fiber and the tubing having corresponding first and second ends. The cable is terminated with the first and second ends of the tubing and the fiber constrained with respect to each other such that fiber and the tubing are approximately the same length when the cable is at a first temperature. The tubing is made of a material which contracts more than the optical fiber when the cable is exposed to temperatures below the first temperature, such that the fiber is longer than the tubing and excess fiber length is formed. An intermediate portion of the tubing permits the excess fiber length to accumulate without bending in a radius smaller than a minimum bend radius.Type: ApplicationFiled: March 2, 2005Publication date: August 25, 2005Applicant: ADC Telecommunications, Inc.Inventor: Steven Zimmel
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Publication number: 20050053341Abstract: An optical fiber cable assembly comprising an optical fiber slidably enclosed within a hollow tubing, both the fiber and the tubing having corresponding first and second ends. The cable is terminated with the first and second ends of the tubing and the fiber constrained with respect to each other such that fiber and the tubing are approximately the same length when the cable is at a first temperature. The tubing is made of a material which contracts more than the optical fiber when the cable is exposed to temperatures below the first temperature, such that the fiber is longer than the tubing and excess fiber length is formed. An intermediate portion of the tubing permits the excess fiber length to accumulate without bending in a radius smaller than a minimum bend radius.Type: ApplicationFiled: September 8, 2003Publication date: March 10, 2005Inventor: Steven Zimmel
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Publication number: 20050041928Abstract: A fiber optic cable connection system comprising a first fiber optic connector including a ferrule within which an optical fiber is mounted and a fiber optic adapter for receiving the first fiber optic connector including a sleeve for receiving the ferrule. The first fiber optic connector is mounted within a first threaded body with the fiber optic cable extending through an opening in a distal end of the first threaded body and the ferrule accessible through a proximal end of the first threaded body. The fiber optic adapter is mounted within a second threaded body and the second threaded body adapted for mounting to a bulkhead. The second threaded body adapted to engage the proximal end of the first threaded body with the first connector engaging the adapter and the ferrule extending into the sleeve. An outer housing is threadably mounted about both the first and second threaded bodies when the second threaded body is engaging the proximal end of the first threaded body.Type: ApplicationFiled: September 8, 2003Publication date: February 24, 2005Inventors: Steven Zimmel, Trevor Smith, Michael Shorter
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Publication number: 20050031276Abstract: A cable breakout assembly comprising: a cable furcation device joining a cable including an outerjacket and an inner optical fiber, to an upjacket. The upjacket includes an inner tube for receiving the optical fiber, a stranded strength member outside the inner tube, and an outer tube outside of the strength member. The cable furcation device includes a first end disposed around the end of the outer jacket of the cable. The second end has a projecting tube for receiving the outer tube of the upjacket, the first tube having an inner diameter receiving the inner tube and the optical fiber. The deice has an outer crimp surface, and a crimp ring crimps the strength member to the crimp surface. A heat shrunk tube is positioned around a portion of the upjacket, the cable furcation device, and a portion of the cable.Type: ApplicationFiled: September 14, 2004Publication date: February 10, 2005Applicant: ADC Telecommunications, Inc.Inventors: Steven Zimmel, Michael Shorter
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Publication number: 20050002621Abstract: A cable breakout assembly comprising: a cable furcation device joining a cable including an outer jacket and an inner optical fiber, to an upjacket. The upjacket includes an inner tube for receiving the optical fiber, a stranded strength member outside the inner tube, and an outer tube outside of the strength member. The cable furcation device includes a first end disposed around the end of the outer jacket of the cable. The second end has a projecting tube for receiving the outer tube of the upjacket, the first tube having an inner diameter receiving the inner tube and the optical fiber. The deice has an outer crimp surface, and a crimp ring crimps the strength member to the crimp surface. A heat shrunk tube is positioned around a portion of the upjacket, the cable furcation device, and a portion of the cable.Type: ApplicationFiled: July 2, 2003Publication date: January 6, 2005Inventors: Steven Zimmel, Michael Shorter