Patents Examined by Nasreen Parvin
  • Patent number: 6256446
    Abstract: A variable attenuator includes a rotatable actuator and cam arrangement arranged to vary a length of an air gap between ends of fibers in a transmission line. The cam arrangement includes a cylindrically shaped cam member having an end surface cut to fit a curve representing normalized attenuation-to-gap-length data, the cam follower(s) being fitted in a sliding member that holds the end of the optical fiber and moves it relative to a fixed end of another fiber connector member. The cam surface includes multiple identical cam surface sections extending less than 180° around the cam to define movement of the cam follower(s) and the sliding member between a maximum position and a minimum position.
    Type: Grant
    Filed: April 20, 1999
    Date of Patent: July 3, 2001
    Assignee: Amphenol Corporation
    Inventors: Albert Brunsting, Eric Walter, Thomas Clifford Olson
  • Patent number: 6250816
    Abstract: A cable connector plate interconnects ends of fiber optic cable. The connector plate includes a base having opposing front and back sides. At least three adapters are carried by the base and have respective axially-aligned end portions extending outwardly from each of the front and back sides of the base. The adapters receive and interconnect ends of fiber optic cable in optical alignment. The adapters are disposed at respective distinct angles relative to a notional plane facing either of the front and back sides of the base.
    Type: Grant
    Filed: September 29, 1999
    Date of Patent: June 26, 2001
    Assignee: Tyco Electronics Corporation
    Inventors: Dare P. Johnston, Michael Mattei, Robert P. Auteri, Erwin F. Hani, Michael T. Herda, Steven J. Muske, David W. Suttie
  • Patent number: 6208792
    Abstract: Waveguides according to this invention have a chalcogenide glass core that comprises Se and one or both of As and Ge, and further comprises one or more dopant elements selected from the elements that cause a change in optical energy gap Eg of the glass core. The amount of dopant is selected such that Eg is equal to or less than a 2-photon energy 2h&ngr;, where h is Planck's constant and &ngr;=c/&lgr;, where c is the speed of light in vacuum and &lgr; is an operating wavelength. The dopant elements furthermore are selected such that the chalcogenide glass core has a nonlinear refractive index n2 greater than 200n2 (SiO2), where n2 (SiO2) is the nonlinear index of silica at &lgr;. Typically, &lgr; is about 1.55 &mgr;m. Exemplary, the dopant elements are selected from Sb, Bi, Sn, Pb, In, Tl, Cu, Ag and S. Currently preferred dopants are Te, Sb, Tl, Cu and Ag.
    Type: Grant
    Filed: September 20, 1999
    Date of Patent: March 27, 2001
    Assignee: Lucent Technologies Inc.
    Inventors: Harold Yoonsung Hwang, Gadi Lenz, Malcolm Ellis Lines, Richart Elliott Slusher