Patents Examined by Charlie Y Peng
  • Patent number: 11372183
    Abstract: Disclosed is a fire resistant, all dielectric fiber optic cable with high fiber count. The cable comprises a core including a central strength member and buffer tubes containing fibers, arranged around the central strength member. A first mica layer is arranged around the core. A glass yarn layer surrounds the first mica layer and is in direct contact therewith. A inner sheath surrounds the glass yarn layer. A second mica layer surrounds the inner sheath. An outer sheath surrounds the second mica layer. The buffer tubes contain a water-blocking filling material comprising a silicone gel, wherein said silicone gel has a drop point of at least 200° C.
    Type: Grant
    Filed: June 6, 2018
    Date of Patent: June 28, 2022
    Assignee: PRYSMIAN S.P.A.
    Inventors: Zekeriya Sirin, Baris Soenmez, Can Altingoez
  • Patent number: 11372172
    Abstract: An optical connector includes a first sub-assembly that is factory-installed to a first end of an optical fiber and a second sub-assembly that is field-installed to the first end of the optical fiber. The optical fiber and first sub-assembly can be routed through a structure (e.g., a building) prior to installation of the second sub-assembly. The second sub-assembly interlocks with the first sub-assembly to inhibit relative axial movement therebetween. Example first sub-assemblies include a ferrule, a hub, and a strain-relief sleeve that mount to an optical fiber. Example second sub-assemblies include a mounting block; and an outer connector housing forming a plug portion.
    Type: Grant
    Filed: March 16, 2020
    Date of Patent: June 28, 2022
    Assignee: CommScope Technologies LLC
    Inventors: Julian S. Mullaney, Eric Emmanuel Alston, William Alan Carrico
  • Patent number: 11366268
    Abstract: An integrated optical device includes a substrate. A waveguide includes a lithium niobate. A TiO2 coating is disposed at least in part over a longitudinal surface of the waveguide as a coated waveguide supported by the substrate. A silicon oxide substantially can cover and surround the waveguide in cross section over a longitudinal direction of said waveguide as an optical cladding. A method for substantially eliminating optical damage in lithium niobate devices is also described.
    Type: Grant
    Filed: September 14, 2020
    Date of Patent: June 21, 2022
    Assignee: University of Rochester
    Inventors: Qiang Lin, Jingwei Ling
  • Patent number: 11366269
    Abstract: Structures including an edge coupler and methods of fabricating a structure including an edge coupler. The edge coupler includes a waveguide core having an end surface and a tapered section that terminates at the end surface. The tapered section of the waveguide core includes a slab layer and a ridge layer on the slab layer. The slab layer and the ridge layer each terminate at the end surface. The slab layer has a first width dimension with a first width at a given location along a longitudinal axis of the waveguide core, the ridge layer has a second width dimension with a second width at the given location along the longitudinal axis of the waveguide core, and the first width is greater than the second width.
    Type: Grant
    Filed: August 5, 2020
    Date of Patent: June 21, 2022
    Assignee: GlobalFoundries U.S. Inc.
    Inventor: Yusheng Bian
  • Patent number: 11365903
    Abstract: An extremely low cost solar concentrator made of membranes or films is inflated into a Compound Parabolic Concentrator (CPC) a non-image concentrator. The portion of the inflatable concentrator, which is shaped into a CPC concentrator, is formed with reflective membranes or films, and the portions of the inflatable concentrator on the top of CPC and on the bottom of the concentrator are made of clear membranes or films. The incident light including parallel rays of light and diffuse light, as long as falling into the half acceptance angle of the CPC, will be concentrated to the bottom exit aperture of the CPC. Therefore, this type concentrator reduces the requirement to the accuracy of tracking for concentration. In addition, this type of concentrator demonstrates more tolerance to shape distortion for concentration than imaging system.
    Type: Grant
    Filed: September 12, 2016
    Date of Patent: June 21, 2022
    Inventor: Yonghua Wang
  • Patent number: 11360283
    Abstract: Devices, systems and methods to prevent damage to power and communication conductors located in cold occurring regions, with an elongated cylindrical tubular assembly of closed cell foam within a braided/woven layer that can be sealed to provide longitudinal strength and a snag resistant durable and flexible outer coating. The assembly along with communication and power lines is pulled through new power and communication ducts and conduits and in retrofitting existing power and communication ducts, so that the assembly reduces the volume spacing in the ducts/conduits that can be damaged by water intrusion which expands during freeze conditions.
    Type: Grant
    Filed: May 14, 2021
    Date of Patent: June 14, 2022
    Inventors: Steven Haagenson, John Huber, Jr.
  • Patent number: 11360366
    Abstract: In one embodiment, an electrochromic device includes a single active layer configured to be alternately placed in a light-transmitting state in which relatively large amounts of light can be transmitted through the active layer and a light-blocking state in which relatively small amounts of light can be transmitted through the active layer, wherein the device comprises no other layers of material that contribute to transitioning between the two states.
    Type: Grant
    Filed: May 16, 2018
    Date of Patent: June 14, 2022
    Assignee: UNIVERSITY OF SOUTH FLORIDA
    Inventors: Manoj Kumar Ram, Elias K. Stefanakos
  • Patent number: 11360260
    Abstract: A method for manufacturing an optical fiber includes: exposing a glass fiber by stripping a fiber coating layer at an end portion, on a splicing side, of each of a pair of optical fibers; fusion-splicing the glass fibers; and recoating a protective resin on a periphery of exposed portions of the glass fibers. The fiber coating layer includes a primary resin layer on an inner peripheral side and having a Young's modulus of 0.5 MPa or less and a secondary resin layer on an outer peripheral side and having a Young's modulus of 800 MPa or greater, the exposing includes forming a shape of a coating edge of the fiber coating layer which includes the primary resin layer and the secondary resin layer into a tapered shape which becomes narrower toward the end portion side, and the recoating includes coating the protective resin to include the coating edge.
    Type: Grant
    Filed: February 19, 2019
    Date of Patent: June 14, 2022
    Assignee: SUMITOMO ELECTRIC INDUSTRIES, LTD.
    Inventors: Saori Kubara, Suguru Takasaki, Shuhei Toyokawa
  • Patent number: 11353654
    Abstract: The present disclosure relates to semiconductor structures and, more particularly, to spiral waveguide absorbers and methods of manufacture. The structure includes: a photonics component; and a waveguide absorber with a grating pattern coupled to a node of the photonics component.
    Type: Grant
    Filed: September 24, 2020
    Date of Patent: June 7, 2022
    Assignee: GLOBALFOUNDRIES U.S. INC.
    Inventor: Yusheng Bian
  • Patent number: 11353651
    Abstract: The present disclosure relates to semiconductor structures and, more particularly, to multi-mode optical waveguide structures with isolated absorbers and methods of manufacture. The structure includes: a waveguide structure including tapered segments; and at least one isolated waveguide absorber adjacent to the waveguide structure along its length.
    Type: Grant
    Filed: November 2, 2020
    Date of Patent: June 7, 2022
    Assignee: GLOBALFOUNDRIES U.S. INC.
    Inventors: Abdelsalam A. Aboketaf, Won Suk Lee, Yusheng Bian
  • Patent number: 11353656
    Abstract: An on-chip polarizer for polarization filtering is described herein. The polarizer includes a rib waveguide on a supporting substrate, wherein the rib waveguide and the substrate may respectively comprise different materials. The rib waveguide may include a strip positioned over a slab of the same material. The strip may include a curvature along an optical propagation direction. In some embodiments, the curvature may include two bends that together form an approximately mirrored S-shaped curvature. The waveguide curvature may be configured to selectively guide an optical mode associated with a first polarization state while filtering-out another optical mode associated with a second polarization state. In some embodiments, the polarizer may allow propagation of a near lossless transverse magnetic (TM) mode while selectively radiating away a lossy transverse electric (TE) mode.
    Type: Grant
    Filed: November 25, 2020
    Date of Patent: June 7, 2022
    Assignee: SiLC Technologies, Inc.
    Inventors: Shuren Hu, Mehdi Asghari
  • Patent number: 11347013
    Abstract: An interconnect system for a building includes a pre-terminated trunk cable assembly that has different groups of optical fibers carried by subunits and terminated by ferrules. The interconnect system also includes trays for managing interconnections with the ferrules. A plurality of adapters are disposed on each tray and arranged in a direction along a longitudinal axis of the tray. The adapters may be oriented at an angle relative to the longitudinal axis to facilitate routing of the optical fibers. At least one tray mount receiver may also be provided on each tray to cooperate with a tray mount that can secure a select subunit to the tray.
    Type: Grant
    Filed: September 15, 2020
    Date of Patent: May 31, 2022
    Assignee: Corning Research & Development Corporation
    Inventors: Terry Lee Cooke, Karyne Poissant Prevratil, Sherrh Clint Reinhardt, Diana Rodriguez, Marcus Ray Sullivan
  • Patent number: 11346999
    Abstract: An optical fiber cable comprising an optical fiber, and a jacketing layer including at least two or more layers of a jacketing inner layer and a jacketing outer layer formed in this order concentrically, wherein the jacketing layer comprises at least two or more layers of a jacketing inner layer and a jacketing outer layer formed in this order concentrically; a material constituting the jacketing inner layer is composed of a resin material having an oxygen permeability of 2.0 cc·20 ?m/(m2·day·atm) or less; a material constituting the jacketing outer layer comprises at least one selected from a polyolefin-based resin, a polybutylene terephthalate-based resin, and a fluorine-based resin containing no chlorine atom in its structure; and the following general formula (i) and (ii) are satisfied when an outer diameter of the optical fiber is denoted by A (?m), an outer diameter of the optical fiber cable is denoted by B (?m), and a thickness of the jacketing outer layer is denoted by c (?m): 900?A?1100??(i) 0.
    Type: Grant
    Filed: September 11, 2020
    Date of Patent: May 31, 2022
    Assignee: Mitsubishi Chemical Corporation
    Inventors: Takeshi Morinaka, Akinori Ishikado, Hideki Kihara
  • Patent number: 11339000
    Abstract: A method and system for stocking and assembling SKUs includes stocking SKUs out of a lane, from the back of a downward slanting shelf, unit by unit, in long, narrow, single files separated by dividers, and with supplementary storage space available nearby. In addition it includes picking SKUs for multiple orders simultaneously off of shelves and onto a conveyor, registering all SKUs riding on the conveyor, and sorting and packing SKUs upon receiving notifications to do so as they ride on the conveyor. All coordinated such that after being brought to the stocking lane or supplementary storage space, SKUs are stocked into the shelves, picked off of the shelves and onto the conveyor, and then registered as riding on the conveyor, at which point timed notifications lead SKUs riding on the conveyor to be sorted and packed into orders which are then confirmed as being complete.
    Type: Grant
    Filed: January 28, 2019
    Date of Patent: May 24, 2022
    Inventor: Ranen Minsky
  • Patent number: 11339282
    Abstract: Provided is a flooding composition. The flooding composition includes in weight percent (wt %) based on the weight of the composition: (A) from 1 wt % to less than 5 wt % of a polytetrafluoroethylene (PTFE) powder; (B) a styrene-ethylene/propylene block copolymer; and (C) a mineral oil having a kinematic viscosity from 32 cSt to 100 cSt at 40° C. Also a fiber optic cable is provided. The fiber optic cable includes a buffer tube; at least one optical fiber in the buffer tube; and the flooding composition.
    Type: Grant
    Filed: July 11, 2018
    Date of Patent: May 24, 2022
    Assignee: Dow Global Technologies LLC
    Inventors: Gangwei Sun, Peng Gao, Mohamed Esseghir
  • Patent number: 11340407
    Abstract: Optical fiber hole forming pins configured to form optical fiber holding holes each have a first portion located adjacent to a first end surface and a second portion located adjacent to a second end surface and larger in diameter than the first portion. At least one of the plurality of optical fiber hole forming pins is different from the other optical fiber hole forming pins in position, in a first direction, of a step portion located at a boundary between the first portion configured to form a small diameter portion of each of the optical fiber holding holes and the second portion configured to form a large diameter portion of each of the optical fiber holding holes.
    Type: Grant
    Filed: January 30, 2019
    Date of Patent: May 24, 2022
    Assignee: SUMITOMO ELECTRIC INDUSTRIES, LTD.
    Inventors: Masaki Omura, Fumiya Uehara, Yusuke Takai
  • Patent number: 11327264
    Abstract: A tensioning spool apparatus for storage of optical fiber exhibiting reduced variation of tension during a retraction cycle versus an extension cycle of fiber over a predefined range of spool rotation cycles, the optical fiber dynamically extended under tension from the spool.
    Type: Grant
    Filed: September 3, 2020
    Date of Patent: May 10, 2022
    Assignee: TELESCENT INC.
    Inventors: Keith Wayne Reynolds, Michael Bijan Ahmadi, Anthony Stephen Kewitsch
  • Patent number: 11327260
    Abstract: Embodiments of the disclosure relate to an optical fiber cable having at least one optical fiber, a cable jacket and a foam layer. The cable jacket includes an inner surface and an outer surface in which the outer surface is an outermost surface of the optical fiber cable. The inner surface is disposed around the at least one optical fiber. The foam layer is disposed between the at least one optical fiber and the cable jacket. The foam layer is made of an extruded product of at least one thermoplastic elastomer (TPE), a chemical foaming agent, and a crosslinking agent. The foam layer has a closed-cell morphology having pores with an average effective circle diameter of less than 100 ?m. Further, the foam layer has a compression modulus of less than 1 MPa when measured at 50% strain.
    Type: Grant
    Filed: July 1, 2020
    Date of Patent: May 10, 2022
    Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATION
    Inventors: Anne Germaine Bringuier, Xiaole Cheng
  • Patent number: 11327226
    Abstract: A photonics sensing system includes, in part, first and second multipath integrated optical networks, an optical radiator, and an optical receiver. The first multipath integrated optical network includes, in part, N optical delay elements each supplying one of N delayed optical signals of a received optical pulse, N optical modules each supplying a portion of a different one of the N delayed optical signals, and an optical combiner adapted to combine the N delayed portions to generate a modulated optical signal. The smallest of the N delays is smaller than a width of the received optical pulse. The optical radiator is adapted to radiate the modulated optical signal. The optical receiver is adapted to receive a reflection of the transmitted signal. The second multipath integrated optical network is adapted to demodulate the reflected signal received by the optical receiver.
    Type: Grant
    Filed: April 22, 2020
    Date of Patent: May 10, 2022
    Assignee: California Institute of Technology
    Inventor: Seyed Ali Hajimiri
  • Patent number: 11320589
    Abstract: The present disclosure relates to semiconductor structures and, more particularly, to grating couplers integrated with one or more airgap and methods of manufacture. The structure includes: a substrate material comprising one or more airgaps; and a grating coupler disposed over the substrate material and the one or more airgaps.
    Type: Grant
    Filed: October 29, 2020
    Date of Patent: May 3, 2022
    Assignee: GLOBALFOUNDRIES U.S. INC.
    Inventors: Yusheng Bian, Siva P. Adusumilli, Bo Peng, Kenneth J. Giewont