Patents by Inventor Kenneth D. Temple

Kenneth D. Temple 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).

  • Publication number: 20080193092
    Abstract: Disclosed are fiber optic cables having a cable jacket or buffer tube with a cavity. Disposed within the cavity are at least one optical fiber and a coupling agent. The coupling agent acts to couple the at least one optical fiber to the cable jacket or buffer tube with a predetermined force, but the coupling agent does not substantially fill a cross-section area of the cavity, thereby providing a nearly “dry” fiber optic cable. Additionally, the fiber optic cable can optionally include one or more water-swellable components for blocking the migration of water within the cavity. Variations include fiber optic cables having the desired flame-retardant ratings for indoor use, outdoor cables with adequate water-blocking, and/or cables suitable for indoor/outdoor use.
    Type: Application
    Filed: February 13, 2007
    Publication date: August 14, 2008
    Inventors: Julian Latelle Greenwood, Samuel Don Nave, David Alan Seddon, Kenneth D. Temple
  • Publication number: 20080118210
    Abstract: A fiber optic cable includes at least one optical waveguide, at least one dry insert and a cable jacket. The at least one optical waveguide and at least one dry insert are at least partially disposed within an offset cavity of the cable jacket. The at least one dry insert is disposed in the offset cavity with the at least one optical waveguide near the central axis of the fiber optic cable.
    Type: Application
    Filed: November 22, 2006
    Publication date: May 22, 2008
    Inventors: David Alan Seddon, Kenneth D. Temple, Bradley J. Blazer, Anne G. Bringuier
  • Publication number: 20080056650
    Abstract: A non-round fiber optic cable that has improved crush performance is disclosed. The fiber optic cable includes at least one optical fiber, at least one strength element, and a cable jacket having a cavity. The at least one optical fiber is disposed within the cavity. The cable jacket further includes a concave upper wall and a concave lower wall disposed on opposite sides of the cavity, thereby improving the crush performance along the major axis of the optical fiber cable. In other embodiments, the fiber optic cable is a portion of a cable assembly.
    Type: Application
    Filed: August 31, 2006
    Publication date: March 6, 2008
    Inventors: Andreas Stingl, Jody L. Greenwood, Kenneth D. Temple
  • Publication number: 20040240809
    Abstract: A fiber optic dry tube assembly and a method of manufacturing the same includes at least one optical waveguide and a tube. The tube houses at least a portion of the at least one optical fiber and is formed from a bimodal polymeric material. The tube has an average ovality of about 10 percent or less. In other embodiments, the bimodal polymeric material that forms the tube has a melt index of about 1.0 g/10 minutes or less, a melt strength in the range of about 8 cN to about 35 cN at 190° C,. and/or a polydisperity of about 7 or greater. Additionally, the dry tube assemblies of the present invention can form a portion of a cable.
    Type: Application
    Filed: May 30, 2003
    Publication date: December 2, 2004
    Inventors: Catharina L. Tedder, Jody L. Greenwood, Kenneth D. Temple
  • Publication number: 20040240808
    Abstract: A tube assembly of the present invention has at least one subunit with at least one dry insert generally surrounding the subunit which may be disposed within a tube, thereby forming a tube assembly. The subunit includes a fiber optic ribbon and a sheath, wherein the sheath is tight-buffered about the fiber optic ribbon, thereby inhibiting buckling of the ribbon during temperature variations. Additionally, the tube assembly can be a portion of a fiber optic cable having a sheath that may include a plurality of strength members and a cable jacket. In other embodiments, the subunits and dry insert are disposed within a cavity, thereby forming a tubeless cable. Additionally, subunits may include a marking indicia for denoting the security level.
    Type: Application
    Filed: July 6, 2004
    Publication date: December 2, 2004
    Inventors: Brian K. Rhoney, Samuel D. Nave, Todd R. Rhyne, Scott M. Torrey, Martyn N. Easton, David C. Hall, Alan T. Parsons, Jody L. Greenwood, Kenneth D. Temple, Jason C. Lail
  • Publication number: 20040223707
    Abstract: An optical tube assembly having at least one optical waveguide, at least one dry insert, and a tube. In one embodiment, the dry insert has a first layer and a second layer attached together with an adhesive. The dry insert also includes a plurality of particles having an average particle size of about 600 microns or less for inhibiting microbending. The first layer may be a polyurethane foam having an average cell size of about 1000 microns or less and the second layer is a water-swellable layer. The dry insert is disposed within the tube and generally surrounds the at least one optical waveguide and the tube assembly can be a portion of a fiber optic cable.
    Type: Application
    Filed: June 7, 2004
    Publication date: November 11, 2004
    Inventors: Alan T. Parsons, Jody L. Greenwood, Kenneth D. Temple, Jason C. Lail
  • Publication number: 20040208462
    Abstract: An optical tube assembly having at least one optical waveguide, at least one dry insert, and a tube. The at least one optical waveguide is disposed within the tube and generally surrounds the at least one optical waveguide. In one embodiment, the dry insert has a first layer comprising a felt having at least one type of non-continuous filament. The dry insert may also include a plurality of water-swellable filaments. In another embodiment, a dry insert has a first layer, a second layer, and a plurality of water-swellable filaments. The first and second layers are attached together at least along the longitudinal edges thereof, thereby forming at least one compartment between the first and second layers and the plurality of water-swellable filaments are generally disposed in the at least one compartment. The dry insert also is advantageous in tubeless cable designs.
    Type: Application
    Filed: May 18, 2004
    Publication date: October 21, 2004
    Inventors: Alan T. Parsons, Jody L. Greenwood, Kenneth D. Temple, Jason C. Lail
  • Publication number: 20040120663
    Abstract: An optical tube assembly having at least one optical waveguide, at least one dry insert, and a tube. In one embodiment, the dry insert has a first layer and a second layer. The first layer is a polyurethane foam and the second layer is a water-swellable layer, wherein the dry insert is disposed within the tube and generally surrounds the at least one optical waveguide.
    Type: Application
    Filed: September 12, 2003
    Publication date: June 24, 2004
    Inventors: Jason C. Lail, Jody L. Greenwood, Douglas S. Hedrick, James L. Baucom, W. Welch McCollough, Kenneth D. Temple, Catharina L. Tedder
  • Patent number: 6520829
    Abstract: A model racing toy including a convertible model transport vehicle, a model vehicle and model vehicle accessories. The model transport vehicle may be converted by means of a push button or other such device into a model racing pit stop. The convertible transport includes a storable deployment ramp which is ejected when the conversion button is pressed, allowing the model vehicle to move from an exemplary position atop the model transport vehicle. The vehicle is equipped with activation points, motors and a speaker. The activation points compose a variety of different switches, designed to resemble vehicle parts. When a specific activation point is activated, it triggers a series of actions by the motors and speaker, prompting the user to make certain repairs. The successful making of repairs activates other activation points, which provide affirming messages and vehicle motion to simulate the continuance of a race after repair has been made.
    Type: Grant
    Filed: July 28, 2000
    Date of Patent: February 18, 2003
    Assignee: The Little Tikes Company
    Inventor: Kenneth D. Temple
  • Patent number: D340956
    Type: Grant
    Filed: June 15, 1992
    Date of Patent: November 2, 1993
    Assignee: The Little Tikes Company
    Inventor: Kenneth D. Temple
  • Patent number: D353285
    Type: Grant
    Filed: October 9, 1992
    Date of Patent: December 13, 1994
    Assignee: The Little Tikes Company
    Inventors: John W. Spirk, Jr., Kenneth D. Temple
  • Patent number: D356841
    Type: Grant
    Filed: February 23, 1994
    Date of Patent: March 28, 1995
    Assignee: The Little Tikes Company
    Inventor: Kenneth D. Temple
  • Patent number: D377075
    Type: Grant
    Filed: July 10, 1995
    Date of Patent: December 31, 1996
    Assignee: The Little Tikes Company
    Inventors: Kenneth D. Temple, Christopher G. Walter
  • Patent number: D384706
    Type: Grant
    Filed: July 12, 1996
    Date of Patent: October 7, 1997
    Assignee: The Little Tikes Company
    Inventor: Kenneth D. Temple
  • Patent number: D390906
    Type: Grant
    Filed: July 12, 1996
    Date of Patent: February 17, 1998
    Assignee: The Little Tikes Company
    Inventors: Nancy M. Pipik, Kenneth D. Temple