Patents Examined by Charlie Y Peng
  • Patent number: 11314029
    Abstract: The present invention relates to an optical fibers management system comprising: a supporting frame; a plurality of splice trays pivotably mounted on the supporting frame and rotatable around respective parallel pivot axes between a closed position and an open position; a locking device pivotably mounted on the supporting frame and rotatable around a locking device rotation axis parallel to the pivot axes of the plurality of splice trays between a locking position and a support position, wherein in the locking position the locking device keeps the plurality of trays in the closed position, and in the support position the locking device supports the plurality of splice trays in the open position.
    Type: Grant
    Filed: October 2, 2020
    Date of Patent: April 26, 2022
    Assignee: PRYSMIAN S.P.A.
    Inventor: Nathan Paddick
  • Patent number: 11307320
    Abstract: A method for expediently processing and inverting elastic wave data to reduce the amount of data and to determine a physical properties model of the material medium and a source properties model. The data are processed to generate waveforms containing the phase difference between compressional- and shear-wave arrivals using auto-correlation, cross-correlation, or deconvolution of said data sensed at each of an arrangement of sensors, whereby said lengthy elastic wave data records are reduced substantially in time. Said waveform data are thereafter inverted using waveform inversion by modifying the source term in the equation of motion, wherein the source term is mathematically expressed as a product of time-independent source properties volume defined at every location in space within said material medium and a space-independent source-time function, whereby no prior knowledge of the number of sources, spatial distribution of source location, source amplitude, or source focal mechanism is needed.
    Type: Grant
    Filed: January 14, 2016
    Date of Patent: April 19, 2022
    Assignee: JYOTI BEHURA
    Inventor: Jyoti Behura
  • Patent number: 11307371
    Abstract: A data cable assembly includes at least one pair of conductors twisted about one another, optionally disposed along an outer surface of a pair separator. The conductors are covered by an inner jacket, and an armor disposed on the outer surface of the inner jacket. The inner jacket is covered by an outer jacket with a rip cord disposed between the armor and the outer jacket.
    Type: Grant
    Filed: September 4, 2020
    Date of Patent: April 19, 2022
    Inventor: Roman Krawczyk
  • Patent number: 11294126
    Abstract: [Object] To provide an optical coupling device that efficiently receives an optical signal from an optical fiber and has improved communication quality, and an optical communication system using the same. [Solving Means] An optical coupling device according to the present technology includes a light receiving and emitting device and an optical device. The light receiving and emitting device includes a light emitter that emits outgoing light, and a light receiver that receives incident light from outside. The light receiver has a light passing part through which the outgoing light passes. The light passing part is arranged on an optical axis of the incident light. The optical device causes incident light around the optical axis of the incident light to be refracted so as to be apart from the optical axis and to enter the light receiver.
    Type: Grant
    Filed: September 8, 2017
    Date of Patent: April 5, 2022
    Assignee: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
    Inventor: Yusuke Oyama
  • Patent number: 11287573
    Abstract: An optical device comprises first, second and third elements fabricated on a common substrate. The first element comprises an active waveguide structure supporting a first optical mode, the second element, fabricated on a planarized top surface of the first element, comprises a passive waveguide structure supporting a second optical mode, and the third element, at least partly butt-coupled to the first element, comprises an intermediate waveguide structure, positioned such that a top surface of the intermediate structure underlies a bottom surface of the passive waveguide structure. If the first optical mode differs from the second optical mode by more than a predetermined amount, a tapered waveguide structure in at least one of the second and third elements facilitates efficient adiabatic transformation between the first optical mode and the second optical mode. Mutual alignments of the first, second and third elements are defined using lithographic alignment marks.
    Type: Grant
    Filed: October 23, 2020
    Date of Patent: March 29, 2022
    Assignee: Nexus Photonics LLC
    Inventors: Chong Zhang, Hyun Dai Park, Minh Tran, Tin Komljenovic
  • Patent number: 11280959
    Abstract: An intact semiconductor wafer (wafer) includes a plurality of die. Each die has a top layer including routings of conductive interconnect structures electrically isolated from each other by intervening dielectric material. A top surface of the top layer corresponds to a top surface of the wafer. Below the top layer, each die has a device layer including optical devices and electronic devices. Each die has a cladding layer below the device layer and on a substrate of the wafer. Each die includes a photonic test port within the device layer. For each die, a light transfer region is formed within the intact wafer to extend through the top layer to the photonic test port within the device layer. The light transfer region provides a window for transmission of light into and out of the photonic test port from and to a location on the top surface of the wafer.
    Type: Grant
    Filed: April 23, 2020
    Date of Patent: March 22, 2022
    Assignee: Ayar Labs, Inc.
    Inventors: Roy Edward Meade, Chen Sun, Shahab Ardalan, John Fini, Forrest Sedgwick
  • Patent number: 11267211
    Abstract: A light guide structure (100) has a first main surface (101) and an opposite second main surface (102) and is configured to guide light in the light guide structure via total internal reflections at the first and the second main surfaces. The light guide structure comprises an out-coupling arrangement (120) configured to couple light propagating in the light guide structure out of it through the first and/or the second main surface. The light guide structure comprises two cladding layers (1111, 1112) and a core layer (110) sandwiched between the cladding layers, the core layer comprising a core material and the cladding layers comprising cladding materials, respectively. The core material has its elasticity higher than the elasticities of the cladding materials, and its refractive index for a design wavelength substantially the same as the refractive indices of the cladding materials.
    Type: Grant
    Filed: September 15, 2017
    Date of Patent: March 8, 2022
    Assignee: NANOCOMP OY LTD
    Inventor: Ville Kontturi
  • Patent number: 11262515
    Abstract: An optical fiber cable includes a core that includes an assembled plurality of optical fibers; an inner sheath that accommodates the core therein, a pair of tension members that are embedded in the inner sheath and that are disposed on opposite sides of the core, and an outer sheath that covers the inner sheath. The inner sheath is formed with a dividing portion that divides an inner peripheral surface and an outer peripheral surface of the inner sheath in a circumferential direction. The dividing portion extends along a longitudinal direction in which the optical fiber cable extends.
    Type: Grant
    Filed: November 17, 2017
    Date of Patent: March 1, 2022
    Assignee: FUJIKURA LTD.
    Inventors: Masatoshi Ohno, Shinnosuke Sato, Mizuki Isaji, Kouji Tomikawa, Akira Namazue, Ken Osato
  • Patent number: 11256030
    Abstract: Structures for an optical power splitter and methods of forming a structure for an optical power splitter. A first waveguide core provides an input port, and second and third waveguide cores provide respective output ports. A non-linear waveguide taper is coupled to the first waveguide core at a first interface and is coupled to the second and third waveguide cores at a second interface. The non-linear waveguide taper includes a first curved section having a first width dimension that increases with increasing longitudinal distance from the first interface. The non-linear waveguide taper includes a second curved section having a second width dimension that increases with increasing longitudinal distance from the second interface. The first and second curved sections join at a longitudinal location at which the first and second width dimensions are each equal to a maximum width of the non-linear waveguide taper.
    Type: Grant
    Filed: October 5, 2020
    Date of Patent: February 22, 2022
    Assignees: GlobalFoundries U.S. Inc., Khalifa University of Science and Technology
    Inventors: Sujith Chandran, Yusheng Bian, Jaime Viegas, Ajey Poovannummoottil Jacob
  • Patent number: 11256042
    Abstract: Waveguide substrate, waveguide substrate assemblies and methods of fabricating waveguide substrates having various waveguide routing schemes are disclosed. In one embodiment, a waveguide substrate includes a first surface and a second surface, and a plurality of waveguides within the waveguide substrate. The plurality of waveguides defines a plurality of inputs at the first surface. A subset of the plurality of waveguides extends to the second surface to at least partially define a plurality of outputs at the second surface. In one waveguide routing scheme, at least one branching waveguide extends between one of the first surface and the second surface to a surface other than the first surface and the second surface. Another waveguide routing scheme arranges the plurality of waveguides into optical receive-transmit pairs for duplex pairing of optical signals.
    Type: Grant
    Filed: September 24, 2020
    Date of Patent: February 22, 2022
    Assignee: Corning Research & Development Corporation
    Inventors: Alan Frank Evans, Christian Fiebig, Claudio Mazzali, James Scott Sutherland
  • Patent number: 11256052
    Abstract: Embodiments of the disclosure relate to an optical fiber cable. The optical fiber cable includes a subunit having a first interior surface and a first exterior surface. The first interior surface defines a central bore along a longitudinal axis of the optical fiber cable. At least one optical fiber is disposed within the central bore of the subunit, and a plurality of strengthening yarns is disposed around the subunit. A cable sheath disposed around the plurality of strengthening yarns. The cable sheath has a second interior surface and a second exterior surface. The second exterior surface defines an outermost surface of the optical fiber cable. The cable sheath includes from 55% to 68% by weight of a mineral-based flame retardant additive and from 35% to 45% by weight of a polymer blend. The polymer blend includes a co-polyester or co-polyether and a polyolefin or a polyolefin elastomer.
    Type: Grant
    Filed: July 2, 2020
    Date of Patent: February 22, 2022
    Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATION
    Inventors: Michael Alexander Heinz, Ravinder Kumar Kinnera
  • Patent number: 11249259
    Abstract: The invention discloses an outdoor optical fiber connector, which includes a female head flange assembly, a male head assembly, an insertion core fixing assembly and a docking assembly, and the docking assembly includes a pluggable locking member or a threaded locking member, and the female head flange assembly is provided with two docking structures respectively docked with the pluggable locking member and the threaded locking member. The connector of the invention provides multiple docking modes, meeting different installation requirements, and the connector is an ultra-small outdoor connector, having a compact overall space, and have a convenient and fast installation.
    Type: Grant
    Filed: August 20, 2020
    Date of Patent: February 15, 2022
    Assignee: ROSENBERGER (SHANGHAI) TECHNOLOGY CO., LTD.
    Inventors: Mingzhen Hu, Daigen Chen, Fang Ji, Yi Zhang
  • Patent number: 11231555
    Abstract: A fiber optic connector arrangement includes a printed circuit board coupled to a connector housing. The printed circuit board includes a memory storage device that is configured to store physical layer information pertaining to the fiber optic connector arrangement. The printed circuit board also defines contacts that are electrically coupled to the memory storage device to enable the physical layer information to be read from the memory storage device by a media reading interface. A connector assembly includes at least one adapter assembly; a printed circuit board; and a media reading interface. The connector assembly also may include a tactile pressure sensor. The adapter assembly defines at least a first port and a second port that are configured to connect optical fibers of two connector arrangements. One or more connector assemblies can be mounted to a fiber panel system.
    Type: Grant
    Filed: June 8, 2020
    Date of Patent: January 25, 2022
    Assignee: CommScope Technologies LLC
    Inventors: Mark Smrha, Michael D. Schroeder, Michael Gunderson, Vern Loch
  • Patent number: 11226464
    Abstract: The present disclosure relates to a fan-out arrangement. The fan-out arrangement may include a main cable that includes a jacket containing a plurality of optical fibers and a plurality of breakout cables that receive the optical fibers of the main cable. The fan-out arrangement may include a fan-out device for transitioning the optical fibers from the main cable to the breakout cable. The fan-out device may include a fan-out housing that includes oppositely positioned first and second housing ends. The fan-out device may also include a fiber transition insert that mounts within the fan-out housing.
    Type: Grant
    Filed: March 4, 2020
    Date of Patent: January 18, 2022
    Assignee: CommScope Technologies LLC
    Inventors: Mandy Lea Trnka, Scott L. Carlson, Jaime Gonzalez Batista, Yu Lu
  • Patent number: 11226457
    Abstract: Embodiments herein describe optical assemblies that use a spacer element to attach and align a laser to a waveguide in a photonic chip. Once aligned, the laser can transfer optical signals into the photonic chip which can then perform an optical function such as modulation, filtering, amplification, and the like. In one embodiment, the spacer element is a separate part (e.g., a glass or semiconductor block) that is attached between the photonic chip and a submount on which the laser is mounted. The spacer establishes a separation distance between the photonic chip and the submount which in turn aligns the laser with the waveguide in the photonic chip. In another embodiment, rather than the spacer element being a separate part, the spacer element may be integrated into the submount.
    Type: Grant
    Filed: May 28, 2020
    Date of Patent: January 18, 2022
    Assignee: Cisco Technology, Inc.
    Inventor: Jock T. Bovington
  • Patent number: 11221508
    Abstract: Disclosed herein, in accordance with some aspects of the present disclosure, are adaptive harmonic diffractive liquid crystal lenses and methods of making and use thereof.
    Type: Grant
    Filed: February 1, 2019
    Date of Patent: January 11, 2022
    Assignee: Versatile Research LLC
    Inventor: Guoqiang Li
  • Patent number: 11217916
    Abstract: An automotive booster cable system includes a first battery clamp attached to a first battery a second battery clamp attached to a second battery; an optional electrical plug adapter with an adapter electrical connector for mating with the second battery clamp; and a booster cable assembly having a first polarized electrical booster connector for mating with the first battery clamp and a second polarized electrical booster connector for mating with either the electrical plug adapter or the second battery clamp.
    Type: Grant
    Filed: November 19, 2020
    Date of Patent: January 4, 2022
    Assignee: Cytherean Mandelbrot LLC
    Inventor: Joseph Stecewycz
  • Patent number: 11215760
    Abstract: An optical coupler device comprises a substrate having a substantially planar upper surface, and a grating structure on the upper surface of the substrate. In one embodiment, the grating structure comprises a copropagating array of waveguides that are substantially parallel to each other and extend along at least a portion of the upper surface of the substrate. Each of the waveguides has opposing sidewalls, wherein a width of each waveguide is defined by a distance between the opposing sidewalls. The opposing sidewalls each have a periodic structure that produces a sidewall modulation for each of the waveguides. An input port is in optical communication with the grating structure. The input port is configured to direct an input light beam in plane into the grating structure such that the beam propagates along the waveguides. The grating structure is configured to diffract the beam out of plane and into free space.
    Type: Grant
    Filed: February 25, 2020
    Date of Patent: January 4, 2022
    Assignee: Honeywell International Inc.
    Inventors: Matthew Wade Puckett, Karl D. Nelson
  • Patent number: 11204475
    Abstract: Apparatuses and methods for optical fiber loop relaxation are provided for telecommunications management apparatuses, such as fiber optic telecommunications trays. The apparatus includes a radius limiter block for routing fibers therearound, and a fiber loop management recess provided on a peripheral surface of the radius limiter block. The fiber loop management recess is configured to receive a fiber loop management device between the radius limiter block and the fibers routed around the radius limiter block.
    Type: Grant
    Filed: January 14, 2019
    Date of Patent: December 21, 2021
    Assignee: CommScope Connectivity Belgium BVBA
    Inventors: Maarten Aerts, Eric Schurmans, Conny Van De Velde, Chris Knaepen
  • Patent number: 11199673
    Abstract: Examples herein relate to optoelectronic systems or modules. In particular, implementations herein relate to an optoelectronic module or system that includes a substrate having opposing first and second sides and an optoelectronic component having opposing first and second sides flip chip assembled to the substrate. The optoelectronic component is configured to emit at least one optical signal to the substrate, receive at least one optical signal from the substrate, or both. The optoelectronic system further includes an underfill exclusion structure configured to prevent underfill material dispensed between the optoelectronic component and the substrate from flowing into an optical area or path of the at least one optical signal transmitted between the optoelectronic component and the substrate. The underfill exclusion structure is spaced apart from at least one of the optoelectronic component or the substrate.
    Type: Grant
    Filed: July 31, 2019
    Date of Patent: December 14, 2021
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Paul Kessler Rosenberg, Geza Kurczveil