Patents Examined by Rhonda Peace
  • Patent number: 9977211
    Abstract: An optical connection terminal assembly for a fiber optic communications network includes an optical connection terminal. The terminal includes a base, the base including an exterior wall, and a cover connected to the base wherein an interior cavity is defined between the base and the cover. The terminal further includes an all-dielectric self-supporting (“ADSS”) cable port defined in the cover, and a plurality of connector ports defined in the exterior wall of the base. The terminal assembly further includes an ADSS cable connector including a main body and a connector body, the ADSS cable connector positionable such that the connector body extends through the ADSS cable port into the interior cavity. The terminal assembly further includes an ADSS cable connected to the cable connector, wherein optical fibers of the ADSS cable extend through the ADSS cable connector and through the ADSS cable port into the interior cavity.
    Type: Grant
    Filed: April 21, 2017
    Date of Patent: May 22, 2018
    Assignee: AFL Telecommunications LLC
    Inventors: Wilfred Courchaine, Brett Villiger, Joseph Cignarale, Shirley Ball
  • Patent number: 9977311
    Abstract: A system for optical comb carrier envelope offset frequency control includes a mode-locked laser and a frequency shifter. The mode-locked laser produces a laser output. The frequency shifter shifts the laser output to produce a frequency shifted laser output based at least in part on one or more control signals. The frequency shifted laser output has a controlled carrier envelope offset frequency. The frequency shifter includes a first polarization converter, a rotating half-wave plate, and a second polarization converter.
    Type: Grant
    Filed: March 13, 2017
    Date of Patent: May 22, 2018
    Assignee: AOSense, Inc.
    Inventors: Arman Cingoz, Dmitriy Churin, Jonathan Roslund, Miao Zhu
  • Patent number: 9964723
    Abstract: Methods and systems for optical interconnection.
    Type: Grant
    Filed: December 14, 2015
    Date of Patent: May 8, 2018
    Assignee: WAVEFRONT RESEARCH, INC.
    Inventor: Thomas W. Stone
  • Patent number: 9958607
    Abstract: A light waveguide includes a first cladding layer, a groove formed in the first cladding layer, a core layer embedded in the groove, and a second cladding layer formed on the first cladding layer and the core layer. A width and thickness of one end of the core layer are larger than a width and thickness of the other end of the core layer.
    Type: Grant
    Filed: November 30, 2016
    Date of Patent: May 1, 2018
    Assignee: SHINKO ELECTRIC INDUSTRIES CO., LTD.
    Inventor: Kenji Yanagisawa
  • Patent number: 9958630
    Abstract: The present invention relates to an optical fiber organizer (1) comprising at least one fiber storage means (4, 10, 19), a first support (3) for supporting the storage means, whereby the storage means (4, 10, 19) are rotatable connected to the first support (3), a second support (2) with at least one cable termination retention means for securing an incoming or outgoing cable having at least one optical fiber, characterized by the first support (3) being rotatably connected to the second support (2).
    Type: Grant
    Filed: October 14, 2016
    Date of Patent: May 1, 2018
    Assignee: COMMSCOPE CONNECTIVITY BELGIUM BVBA
    Inventors: Bart Mattie Claessens, Bernardus Johannes Nicolas Geling, Roel Modest Willy Bryon, Kristof Vastmans
  • 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: 9952456
    Abstract: Integrated optical intensity or phase modulators capable of very low modulation voltage, broad modulation bandwidth, low optical power loss for device insertion, and very small device size are of interest. Such modulators can be of electro-optic or electro-absorption type made of an appropriate electro-optic or electro-absorption material in particular or referred to as an active material in general. An efficient optical waveguide structure for achieving high overlapping between the optical beam mode and the active electro-active region leads to reduced modulation voltage. In an embodiment, ultra-low modulation voltage, high-frequency response, and very compact device size are enabled by a semiconductor modulator device structure, together with an active semiconductor material that is an electro-optic or electro-absorption material, that are appropriately doped with carriers to substantially lower the modulator voltage and still maintain the high frequency response.
    Type: Grant
    Filed: June 9, 2014
    Date of Patent: April 24, 2018
    Assignee: Electronic Photonic IC Inc. (EPIC Inc.)
    Inventor: Yingyan Huang
  • Patent number: 9944847
    Abstract: The present invention generally relates to composition and methods for upconverting light. In some embodiments, the composition and methods comprise an organic material, a nanocrystal, and a ligand capable of facilitating energy transfer between the nanocrystal and the organic material. In certain embodiments, the nanocrystal has a first excited energy state with an energy greater than a triplet state of the organic material. The organic material, in some embodiments, may be aromatic and/or include one or more pi-conjugated carbon-carbon double bonds. In some cases, incident light may be absorbed by the nanocrystal to produce triplet excitons. The triplet excitons may then transfer from the nanocrystal to the organic material and undergo triplet-triplet annihilation, creating a singlet state of approximately twice the energy of the triplet exciton. In certain embodiments, the singlet state fluoresces, resulting in the formation of a high energy photon.
    Type: Grant
    Filed: February 16, 2016
    Date of Patent: April 17, 2018
    Assignee: Massachusetts Institute of Technology
    Inventors: Marc A. Baldo, Daniel N. Congreve, Nicholas John Thompson, Mark W. B. Wilson, Mengfei Wu, Moungi G. Bawendi, Vladimir Bulovic
  • Patent number: 9939586
    Abstract: A photodetector includes a germanium layer evanescently coupled to a ring resonator. The ring resonator increases the interaction length between light guided by the ring resonator and the germanium layer without increasing the size of the photodetector, thereby keeping the photodetector's dark current at a low level. The germanium layer absorbs the guided light and converts the absorbed light into electrical signals for detection. The increased interaction length in the resonator allows efficient transfer of light from the resonator to the germanium layer via evanescently coupling. In addition, the internal and external quality factors (Q) of the ring resonator can be matched to achieve (nearly) full absorption of light in the germanium with high quantum efficiency.
    Type: Grant
    Filed: January 30, 2017
    Date of Patent: April 10, 2018
    Assignee: Massachusetts Institute of Technology
    Inventors: Erman Timurdogan, Michael R. Watts, Zhan Su, Ehsan Shah Hosseini, Jie Sun
  • Patent number: 9939653
    Abstract: An apparatus and method that improves the stability of despeckling using stimulated Raman scattering in an optical fiber. Optical modes in the fiber are scrambled by physical movement of the optical fiber, focusing assembly, or laser beam. The improvement in stability may include a reduction in flicker or reduction in long-term drift.
    Type: Grant
    Filed: February 28, 2014
    Date of Patent: April 10, 2018
    Assignee: Projection Ventures Inc.
    Inventors: Barret Lippey, Ian Lee, John Arntsen, Rick Posch
  • Patent number: 9939708
    Abstract: An electro-optical modulator is provided. The electro-optical modulator comprises at least one optical waveguide; a plurality of segments, wherein each one of the segments comprises at least one waveguide electrode for supplying a voltage to the optical waveguide, wherein the segments are arranged one behind the other along the optical waveguide, and wherein each one of the segments comprises its own driver unit electrically connected to the waveguide electrode of the segment for supplying an electric signal. Each one of the segments forms an electrical resonant circuit, wherein the segments are configured in such a way that the resonance frequency of the electrical resonant circuit of at least one of the segments lies within the frequency range of an electrical signal supplied to the driver units.
    Type: Grant
    Filed: March 4, 2015
    Date of Patent: April 10, 2018
    Assignee: FRAUNHOFER-GESELLSCHAFT ZUR FÖRDERUNG DER ANGEW ANDTEN FORSCHUNG E.V.
    Inventors: Alessandro Aimone, Gerrit Fiol
  • Patent number: 9941640
    Abstract: A connector is provided and includes a housing with an electronic module receiving passageway positioned therein. The housing includes a first housing and a second housing. The first housing includes a pair of first sidewalls positioned opposite from each other and a pair of partitions forming a slot extending along each of the pair of first sidewalls. The second housing includes a pair of second sidewalls positioned opposite one another, an extension disposed on each the pair of second sidewalls and corresponding with the slot, and a plurality of ribs extending outward from the extension and corresponding with inner surface of the pair of partitions.
    Type: Grant
    Filed: December 11, 2015
    Date of Patent: April 10, 2018
    Assignees: TE Connectivity Corporation, Tyco Electronics (Shanghai) Co. Ltd.
    Inventors: Youwei Pan, Hongqiang Han, Wenyu Liu, Jianzhong Pan, Steven David Dunwoody, Richard James Long, Matthew Ryan Schmitt, Alex Michael Sharf, Kevin Edward Weidner
  • Patent number: 9939585
    Abstract: A waveguide device comprises a first circular waveguide segment (CWS) that imparts a 3?/8 relative phase shift to two orthogonal linearly polarized signals, and a second CWS that imparts a ?/8 relative phase shift to two orthogonal linearly polarized signals. A waveguide assembly (WGA) comprises the first CWS disposed coaxially adjacent to the second CWS. A source may provide dual linear polarized energy into the WGA. In a first mode, the first CWS is axially orientated relative to the second CWS, such that the first CWS polarization is offset by 90° degrees with respect to the second CWS polarization. The radiation source polarization may be offset by 45° relative to the first CWS polarization and the second CWS polarization. In a second mode, the first CWS may be orientated with respect to the second CWS, such that the first CWS polarization and the second CWS polarization are substantially the same.
    Type: Grant
    Filed: May 26, 2017
    Date of Patent: April 10, 2018
    Assignee: KVH Industries, Inc.
    Inventor: Thomas D. Monte
  • Patent number: 9941031
    Abstract: Provided is a method of manufacturing a downhole cable, the method including, forming a helical shape in an outer circumferential surface of a metal tube, the metal tube having a fiber element housed therein, and stranding a copper element in a helical space formed by the metallic tube. Also provided is a downhole cable including, a metallic tube having a helical space in an outer circumferential surface thereof, wherein the metallic tube has a fiber element housed therein, and a copper element, disposed in a helical space formed by the steel tube. Double-tube and multi-tube configurations of the downhole cable are also provided.
    Type: Grant
    Filed: January 18, 2017
    Date of Patent: April 10, 2018
    Assignee: AFL Telecommunications LLC
    Inventor: Brian Herbst
  • Patent number: 9933687
    Abstract: An optimized wavelength-tuned nonlinear frequency conversion process using a liquid crystal clad waveguide. The process includes implanting ions on a top surface of a lithium niobate crystal to form an ion implanted lithium niobate layer. The process also includes utilizing a tunable refractive index of a liquid crystal to rapidly change an effective index of the lithium niobate crystal.
    Type: Grant
    Filed: February 15, 2017
    Date of Patent: April 3, 2018
    Assignee: The United States of America as represented by the Administrator of the National Aeronautics and Space Administration
    Inventor: Mark A. Stephen
  • Patent number: 9933572
    Abstract: The base member 3 can be attached to and detached from a base-holding member 5 without using tools and the like. The base-holding member 5 has a positioning mechanism that decides the position of the base member 3 on the base-holding member 5. Here, a reference part that decides the position of the base member 3 on the base-holding member 5 in a direction parallel to an optical fiber installation surface 2, which is an upper surface of the base member 3, is called a horizontal positioning reference part. Also, a reference part that decides the position of the base member 3 on the base-holding member in a direction vertical to the optical fiber installation surface 2 (the direction vertical to the horizontal positioning reference part), which is the upper surface of the base member 3, is called a vertical positioning reference part 6. That is, the horizontal positioning reference part and the vertical positioning reference part 6 are provided on the base-holding member 5.
    Type: Grant
    Filed: February 24, 2016
    Date of Patent: April 3, 2018
    Assignees: FURUKAWA ELECTRIC CO., LTD., SEIWA GIKEN INC.
    Inventors: Tomohiro Akiyama, Takashi Tanaka, Kenji Mori
  • Patent number: 9933581
    Abstract: An optical fiber splicer includes a fiber fixing portion, a first optical fiber fixed to the fiber fixing portion, a clamp portion which is capable of holding and fixing an extending portion extended from the fiber fixing portion of the first optical fiber and a tip portion of a second optical fiber optically connected to the extending portion of the first optical fiber between a base member and a pressing member being openable and closable with respect to the base member, and a solid index matching material which is attached to a tip surface of the extending portion of the first optical fiber and is interposed between the first optical fiber and the second optical fiber.
    Type: Grant
    Filed: March 31, 2015
    Date of Patent: April 3, 2018
    Assignees: FUJIKURA LTD., NIPPON TELEGRAPH AND TELEPHONE CORPORATION
    Inventors: Takaharu Matsuda, Hung Huu Luong, Tatsuya Ota, Kazuhiro Takizawa, Hiroichi Katayose, Koji Ishizuka, Makoto Shinpo, Kunihiro Toge
  • Patent number: 9927572
    Abstract: Examples include hybrid silicon photonic device structures. Some examples include a method of integrating a photodetector with a photonic device on a silicon wafer to make a hybrid silicon photonic device structure. A dielectric layer is established on the silicon wafer. A pit is formed in a portion of the dielectric layer and the silicon wafer, wherein a bottom of the pit is silicon. A germanium layer is grown in the pit such that a top of the germanium layer is lower than a top of the silicon wafer. The germanium layer comprises the photodetector. A photonic device material that comprises the photonic device is bonded to the silicon wafer without planarization of the silicon wafer.
    Type: Grant
    Filed: January 4, 2017
    Date of Patent: March 27, 2018
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Geza Kurczveil, Di Liang, Zhihong Huang, Raymond G Beausoleil
  • Patent number: 9927677
    Abstract: An optical interferometer device is provided including a waveguide interferometer. The waveguide interferometer includes first and second waveguide arms in a waveguide plane, each waveguide arm including a n-type region and a p-type region forming a junction. The n-type region and the p-type region of the second waveguide arm are translationally symmetric with respect to the n-type region and the p-type region, respectively, of the first waveguide arm in the waveguide plane.
    Type: Grant
    Filed: June 10, 2016
    Date of Patent: March 27, 2018
    Assignee: Huawei Technologies Co. Ltd.
    Inventors: Dominic John Goodwill, Jia Jiang
  • Patent number: 9927679
    Abstract: A wavelength separating element is provided for separating a converted beam from a fundamental beam in an NLFC device, wherein the converted beam has a wavelength different from a wavelength of the fundamental beam. The wavelength separating element includes a first mirror surface and a second mirror surface opposite to the first mirror surface. The first and second mirror surfaces may have a high reflectivity of the converted beam relative to a reflectivity of the fundamental beam, and the first and second mirror surfaces are configured such that the fundamental and converted beams undergo multiple reflections between the first mirror surface and the second mirror surface to separate the converted beam from the fundamental beam. The fundamental and converted beams undergo at least three reflections at the first and second mirror surfaces, and/or undergo at least two reflections at one of the first mirror surface or the second mirror surface.
    Type: Grant
    Filed: December 3, 2015
    Date of Patent: March 27, 2018
    Assignee: Sharp Kabushiki Kaisha
    Inventors: Karl Peter Welna, Tim Michael Smeeton, Valerie Berryman-Bousquet