Patents by Inventor Anthony Kewitsch

Anthony Kewitsch 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: 10345526
    Abstract: Mechanisms and designs of large scale, modular, robotic software-defined patch-panels incorporate numerous features that ensure reliable operation. A telescopic arm assembly (104) with actuated gripper mechanism (103) is used to transport internally latching connectors (101) within a stacked array of translatable rows (102). A unique two-state magnetic latching feature provides reliable, low loss optical connections. Flexible, magnetically levitated internal structures are provided to assist the robot in automatically aligning to, engaging, and disengaging any internal connection in a fast reliable process within the stacked array.
    Type: Grant
    Filed: November 23, 2015
    Date of Patent: July 9, 2019
    Assignee: Telescent Inc.
    Inventors: Anthony Kewitsch, Don Zambos
  • Publication number: 20160202424
    Abstract: Mechanisms and designs of large scale, modular, robotic software-defined patch-panels incorporate numerous features that ensure reliable operation. A telescopic arm assembly (104) with actuated gripper mechanism (103) is used to transport internally latching connectors (101) within a stacked array of translatable rows (102). A unique two-state magnetic latching feature provides reliable, low loss optical connections. Flexible, magnetically levitated internal structures are provided to assist the robot in automatically aligning to, engaging, and disengaging any internal connection in a fast reliable process within the stacked array.
    Type: Application
    Filed: November 23, 2015
    Publication date: July 14, 2016
    Applicant: Telescent Inc.
    Inventors: Anthony Kewitsch, Don Zambos
  • Patent number: 9110249
    Abstract: Apparatus and methods to monitor optical intensity within optical fibers in a substantially non-invasive fashion are disclosed. Optical monitors are comprised of thin, conductive coatings applied to transparent substrates and patterned to form pairs of resistive elements, one of which intersects an optical beam propagating through optical fiber cables. Systems of distributed optical monitors interconnecting optical fiber links enable automated monitoring of the optical status across a communications networks.
    Type: Grant
    Filed: November 26, 2009
    Date of Patent: August 18, 2015
    Assignee: Telescent Inc.
    Inventor: Anthony Kewitsch
  • Patent number: 8488938
    Abstract: This invention discloses a highly scalable and modular automated optical cross connect switch comprised of large numbers of densely packed fiber strands suspended within a common volume. In particular, apparatus and methods enabling programmable interconnection of large numbers of optical fibers (100's-1000's) having structured and coherent braid representations are provided.
    Type: Grant
    Filed: May 13, 2010
    Date of Patent: July 16, 2013
    Assignee: Telescent Inc.
    Inventors: Anthony Kewitsch, Seth Greenberg, Paul Hudson
  • Publication number: 20120321255
    Abstract: This invention discloses scalable and modular automated optical cross-connect devices which exhibit low loss and scalability to high port counts. In particular, a device for the programmable interconnection of large numbers of optical fibers is provided, whereby a two-dimensional array of fiber optic connections is mapped in an ordered and rule based fashion into a one-dimensional array with tensioned fiber optic elements tracing substantially straight lines there between. Fiber optic elements are terminated in a stacked arrangement of flexible fiber optic elements with a capacity to retain excess fiber lengths while maintaining an adequate bend radius. The combination of these elements partitions the switch volume into multiple independent, non-interfering zones.
    Type: Application
    Filed: October 23, 2011
    Publication date: December 20, 2012
    Inventor: Anthony Kewitsch
  • Publication number: 20120219259
    Abstract: Composite fiber optic cables having exposed, conductive traces external to the cable jacket enable non-invasive, wireless electrical tone tracing of fiber optic cables. The cross sectional geometry of the fiber optic cable prevents conductive traces from short circuiting when abutting other cables or grounded conductive elements. Moreover, the structure allows convenient electrical contact to the conductive traces at any location along the longitudinal extent of the cable without requiring penetration of the cable jacket or removal of fiber optic connectors. Traceable fiber optic cables of various types are disclosed, including simplex, duplex and ribbon cables. Systems of traceable cables utilizing connectors with integrated electrical antenna elements attached to the conductive elements of cable and RFID tags for remote connector port identification are further disclosed.
    Type: Application
    Filed: February 27, 2012
    Publication date: August 30, 2012
    Applicant: TELESCENT INC.
    Inventor: Anthony Kewitsch
  • Publication number: 20110150488
    Abstract: Composite fiber optic cables having exposed, conductive traces external to the cable jacket enable non-invasive, wireless electrical tone tracing of fiber optic cables. The cross sectional geometry of the fiber optic cable prevents conductive traces from short circuiting when abutting other cables or grounded conductive elements. Moreover, the structure allows convenient electrical contact to the conductive traces at any location along the longitudinal extent of the cable without requiring penetration of the cable jacket or removal of fiber optic connectors. Traceable fiber optic cables of various types are disclosed, including simplex, duplex and ribbon cables. Systems of traceable cables utilizing connectors with integrated electrical antenna elements attached to the conductive elements of cable and RFID tags for remote connector port identification are further disclosed.
    Type: Application
    Filed: February 25, 2011
    Publication date: June 23, 2011
    Applicant: TELESCENT INC.
    Inventor: Anthony Kewitsch
  • Publication number: 20100316334
    Abstract: This invention discloses highly scalable and modular automated optical cross connect switch devices which exhibit low loss and scalability to high port counts. In particular, a device for the programmable interconnection of large numbers of optical fibers (100's-1000's) is provided, whereby a two-dimensional array of fiber optic connections is mapped in an ordered and rule-based fashion into a one-dimensional array with tensioned fiber optic circuit elements tracing substantially straight lines there between. Fiber optic elements are terminated in a stacked arrangement of flexible fiber optic circuit elements with a capacity to retain excess fiber lengths while maintaining an adequate bend radius. The combination of these elements partitions the switch volume into multiple independent, non-interfering zones, which retain their independence for arbitrary and unlimited numbers of reconfigurations.
    Type: Application
    Filed: August 21, 2008
    Publication date: December 16, 2010
    Inventor: Anthony Kewitsch
  • Publication number: 20100220953
    Abstract: This invention discloses a highly scalable and modular automated optical cross connect switch comprised of large numbers of densely packed fiber strands suspended within a common volume. In particular, apparatus and methods enabling programmable interconnection of large numbers of optical fibers (100's-1000's) having structured and coherent braid representations are provided.
    Type: Application
    Filed: May 13, 2010
    Publication date: September 2, 2010
    Applicant: TELESCENT INC.
    Inventors: Anthony Kewitsch, Seth Greenberg, Paul Hudson
  • Publication number: 20100104243
    Abstract: Devices to enhance the reliability of optical networks and to reduce the cost of repair are disclosed in this invention. In particular, compact and inexpensive fiber optic union adapters with built-in protective isolation prevent the transfer of damage from one connectorized fiber optic cable to another. The fiber optic union includes a split sleeve with an interior channel and a fiber stub centrally located within the interior channel. The fiber stub makes direct optical contact with the cable endfaces to enable efficient optical transmission between interconnected cables while providing a low loss, low back reflection adiabatic transition between the waveguide cores of the two cables.
    Type: Application
    Filed: January 5, 2010
    Publication date: April 29, 2010
    Applicant: TELESCENT INC.
    Inventor: Anthony Kewitsch
  • Publication number: 20100074616
    Abstract: Apparatus and methods to monitor optical intensity within optical fibers in a substantially non-invasive fashion are disclosed. Optical monitors are comprised of thin, conductive coatings applied to transparent substrates and patterned to form pairs of resistive elements, one of which intersects an optical beam propagating through optical fiber cables. Systems of distributed optical monitors interconnecting optical fiber links enable automated monitoring of the optical status across a communications networks.
    Type: Application
    Filed: November 26, 2009
    Publication date: March 25, 2010
    Applicant: TELESCENT INC.
    Inventor: Anthony Kewitsch
  • Patent number: 7542630
    Abstract: An optical device includes a phase modulator having a waveguide on a substrate. The phase modulator also includes an n-type region having a proximity to a p-type region that causes formation of a depletion region when a bias is not applied to the modulator. The depletion region is at least partially positioned in the light signal carrying region of the waveguide. The phase modulator is tuned by applying a reverse bias to the phase modulator. The reverse bias changes the size of the depletion region.
    Type: Grant
    Filed: May 21, 2008
    Date of Patent: June 2, 2009
    Assignee: Kotura, Inc.
    Inventors: Dawei Zheng, Dazeng Feng, Anthony Kewitsch, George Rakuljic
  • Publication number: 20090097797
    Abstract: This invention discloses methods to reconfigure highly scalable and modular automated optical cross connect switch devices comprised of large numbers of densely packed fiber strands suspended within a common volume. In particular, methods enabling programmable interconnection of large numbers of optical fibers (100's-1000's) are provided, whereby a two-dimensional input array of fiber optic connections is mapped in an ordered and rule-based fashion into a one-dimensional array. A particular algorithmic implementation for a system reconfigured by a three-axis robotic gripper as well as lateral translation of each row in the input port array is disclosed.
    Type: Application
    Filed: August 21, 2008
    Publication date: April 16, 2009
    Inventor: Anthony Kewitsch
  • Publication number: 20080253711
    Abstract: An optical device includes a phase modulator having a waveguide on a substrate. The phase modulator also includes an n-type region having a proximity to a p-type region that causes formation of a depletion region when a bias is not applied to the modulator. The depletion region is at least partially positioned in the light signal carrying region of the waveguide. The phase modulator is tuned by applying a reverse bias to the phase modulator. The reverse bias changes the size of the depletion region.
    Type: Application
    Filed: May 21, 2008
    Publication date: October 16, 2008
    Inventors: Dawei Zheng, Dazeng Feng, Anthony Kewitsch, George Rakuljic
  • Patent number: 7394948
    Abstract: An optical device includes a phase modulator having a waveguide on a substrate. The phase modulator also includes an n-type region having a proximity to a p-type region that causes formation of a depletion region when a bias is not applied to the modulator. The depletion region is at least partially positioned in the light signal carrying region of the waveguide. The phase modulator is tuned by applying a reverse bias to the phase modulator. The reverse bias changes the size of the depletion region.
    Type: Grant
    Filed: June 7, 2005
    Date of Patent: July 1, 2008
    Assignee: Kotura, Inc.
    Inventors: Dawei Zheng, Dazeng Feng, Anthony Kewitsch, George Rakuljic
  • Patent number: 7394949
    Abstract: An optical device includes a phase modulator positioned along a branch waveguide of a mach-zehnder interferometer. The phase modulator includes an n-type region having a proximity to a p-type region that causes a depletion region to form when a bias is not applied to the modulator. The depletion region is at least partially positioned in a light signal carrying region of the waveguide.
    Type: Grant
    Filed: June 7, 2005
    Date of Patent: July 1, 2008
    Assignee: Kotura, Inc.
    Inventors: Dazeng Feng, Dawei Zheng, Anthony Kewitsch, George Rakuljic
  • Publication number: 20080019642
    Abstract: Devices to enhance the reliability of optical networks and to reduce the cost of repair are disclosed in this invention. In particular, compact and inexpensive fiber optic union adapters with built-in protective isolation prevent the transfer of damage from one connectorized fiber optic cable to another. The fiber optic union includes a split sleeve with an interior channel and a fiber stub centrally located within the interior channel. The fiber stub makes direct optical contact with the cable endfaces to enable efficient optical transmission between interconnected cables while providing a low loss, low back reflection adiabatic transition between the waveguide cores of the two cables.
    Type: Application
    Filed: October 2, 2007
    Publication date: January 24, 2008
    Inventor: Anthony Kewitsch
  • Patent number: 7315681
    Abstract: In this invention, a fiber optic rotary joint and applications of such to retractable fiber optic cables is described. The fiber optic rotary joint consists of a spiral arrangement of a spring and optical fiber pair placed between rotating inner and outer diameters. The fiber optic rotary joint provides a finite number of turns of a fiber optic cable about a primary axis. These turns can be used, for example, with a rotating spool to provide a continuous retractable and extendable cable.
    Type: Grant
    Filed: August 9, 2005
    Date of Patent: January 1, 2008
    Inventor: Anthony Kewitsch
  • Publication number: 20070196053
    Abstract: Devices to enhance the reliability of optical networks and to reduce the cost of repair are disclosed in this invention. In particular, fiber optic union adapters with built-in protective isolation prevent a damaged, connectorized fiber optic cable from degrading other fiber optic terminations within the network should they be physically connected. The fiber optic union comprises a split sleeve with an interior channel and a fiber stub centrally located within the interior channel. The fiber stub prevents the ferrules of two different cables from making direct physical exchange but allows them to make efficient optical exchange. Opposite ends of the fiber stub are optically polished to enable physical contact to the ferrules of fiber optic cables with low insertion loss and low backreflection. Devices to achieve low loss isolated interconnection between cables containing dissimilar fiber types by use of a fiber taper are further disclosed.
    Type: Application
    Filed: February 17, 2006
    Publication date: August 23, 2007
    Inventor: Anthony Kewitsch
  • Publication number: 20070036506
    Abstract: In this invention, a fiber optic rotary joint and applications of such to retractable fiber optic cables is described. The fiber optic rotary joint consists of a spiral arrangement of a spring and optical fiber pair placed between rotating inner and outer diameters. The fiber optic rotary joint provides a finite number of turns of a fiber optic cable about a primary axis. These turns can be used, for example, with a rotating spool to provide a continuous retractable and extendable cable.
    Type: Application
    Filed: August 9, 2005
    Publication date: February 15, 2007
    Inventor: Anthony Kewitsch