Patents Examined by Hung Q Lam
  • Patent number: 10768378
    Abstract: A fiber alignment device includes: a fixation block; an alignment element having a first end portion fixed in the fixation block and a second end portion formed with a protrudent platform, an alignment groove being formed in the alignment element and extending to an end of the protrudent platform in a central axis of the alignment element; an alignment sleeve having a first end portion fitted on the second end portion of the alignment element; and a spring element having a first end extending into the alignment sleeve and pressed against the alignment groove in the protrudent platform. The front end of the ferrule assembly is inserted into the alignment sleeve and when the fiber is inserted into the alignment groove of the alignment element, the position accuracy of the fiber in the fiber bore of the ferrule assembly is calibrated to reach position accuracy of the fiber in the alignment groove of the alignment element. A high precision fiber optic connector may be manufactured with a low precision ferrule.
    Type: Grant
    Filed: July 1, 2015
    Date of Patent: September 8, 2020
    Assignee: CommScope Telecommunications (Shanghai) Co. Ltd.
    Inventors: Zhaoyang Tong, Lin Lin, Lei Liu
  • Patent number: 10761396
    Abstract: Optical modulators are described having a Mach-Zehnder interferometer and a pair of RF electrodes interfaced with the Mach-Zehnder interferometer in which the Mach-Zehnder interferometer comprises optical waveguides formed from semiconductor material. The optical modulator also comprises a ground plane spaced away in a distinct plane from transmission line electrodes formed from the association of the pair of RF electrodes interfaced with the Mach-Zehnder interferometer. The ground plane can be associated with a submount in which an optical chip comprising the Mach-Zehnder interferometer and the pair of RF electrodes is mounted on the submount with the two semiconductor optical waveguides are oriented toward the submount. Methods for forming the modulators are described.
    Type: Grant
    Filed: March 17, 2017
    Date of Patent: September 1, 2020
    Assignee: NeoPhotonics Corporation
    Inventors: Chengkun Chen, Maxime Poirier, Raghuram Narayan, Milind Gokhale, Marcel G. Boudreau
  • Patent number: 10754097
    Abstract: Disclosed are an adapter (6) and an adapter assembly using the adapter (6). The adapter (6) comprises an adapter shell (13, 12, 11), wherein an adapter socket contact part (18), an adapter socket locking structure, an adapter plug contact part (14), an adapter plug locking structure, and a seal fit portion for being inserted into a corresponding connecting sleeve (4) in a sealing manner are arranged on the adapter shell (13, 12, 11), and the seal fit portion is located between the adapter socket locking structure and the adapter plug locking structure. The adapter and the adapter assembly using same have a waterproof function.
    Type: Grant
    Filed: April 6, 2016
    Date of Patent: August 25, 2020
    Assignee: AVIC JONHON OPTRONIC TECHNOLOGY CO., LTD.
    Inventors: Yunzhao Han, Weike Li, Wenhao Yao, Xutao Wang, Kai Hu, Tao Liu, Geng Xu
  • Patent number: 10754099
    Abstract: An optical fiber adapter includes housing, a base body, an occluder, and optical fiber components. A first end surface of the housing includes an insertion opening. A second end surface of the housing includes a connection opening. A through groove is in the housing, and the insertion opening communicates with the connection opening through the through groove. The first end surface includes positioning portions around a periphery of the insertion opening. A hook portion is extending outwardly from the positioning portion. The base body is in the through groove of the housing. The occluder is connected to the partition plate. The optical fiber component is at the assembling portion. The housing of the optical fiber adapter does not have the protruding portions. Hence, several optical fiber adapters can be densely arranged side-by-side. Therefore, the number of the adapters arranged in the optical fiber cassette can be increased.
    Type: Grant
    Filed: December 6, 2018
    Date of Patent: August 25, 2020
    Assignee: ADVANCED-CONNECTEK INC.
    Inventors: Yang-Yang Cui, Gui-Hua Wen
  • Patent number: 10746934
    Abstract: By determining an alignment point for a photonic element in a substrate of a given material; applying, via a laser aligned with the photonic element according to the alignment point, an etching pattern to the photonic element to produce a patterned region and an un-patterned region in the photonic element, wherein applying the etching pattern alters a chemical bond in the given material for the patterned region of the photonic element that increases a reactivity of the given material to an etchant relative to a reactivity of the un-patterned region, and wherein the patterned region defines an engagement feature in the un-patterned region that is configured to engage with a mating feature on a Photonic Integrated Circuit (PIC); and removing the patterned region from the photonic element via the etchant, various systems and methods may make use of laser patterning in optical components to enable alignment of optics to chips.
    Type: Grant
    Filed: August 8, 2018
    Date of Patent: August 18, 2020
    Assignee: Cisco Technology, Inc.
    Inventors: Vipulkumar Patel, Matthew J. Traverso, Ashley J. Maker, Jock T. Bovington
  • Patent number: 10732374
    Abstract: A sliding tray is configured to support one or more optical communications modules and includes a body portion having one or more mounting locations for the one or more optical communications modules. A trough projects from the body portion and is configured to support optical fibers connected to the one or more optical communications modules. A cover is pivotably connected to the tray for selectively covering the trough. A front wall of the cover may include a labeling surface, with a removable lens covering the labeling surface. A stop to limit the sliding direction of said sliding tray in the rearward direction may also be provided.
    Type: Grant
    Filed: January 16, 2019
    Date of Patent: August 4, 2020
    Assignee: CommScope, Inc. of North Carolina
    Inventor: Gil Ruiz
  • Patent number: 10725244
    Abstract: Optical coupling techniques between an optical fiber and another optical device, such as a planar optical waveguide, or a probed region are disclosed. An optical fiber for lateral optical coupling includes a cladding, a core disposed in the cladding, a reflecting structure inclined relative to the fiber axis, and a light-converging structure embedded in the cladding. The reflecting structure is configured to reflect light between the core and a lateral coupling path extending and providing lateral optical coupling between the core and an exterior of the fiber. The cladding-embedded light-converging structure is configured to intercept and converge light traveling along the lateral coupling path. In some implementations, the optical fiber is a fiber-optic transition coupled between a main optical fiber and another optical device or a probed region. A coupled optical system including an optical fiber coupled to another optical device is also disclosed.
    Type: Grant
    Filed: November 13, 2018
    Date of Patent: July 28, 2020
    Assignee: INSTITUT NATIONAL D'OPTIQUE
    Inventors: Alex Paquet, Marco Michele Sisto, Yves Taillon
  • Patent number: 10718921
    Abstract: A modular optical fiber distribution unit and related distribution system is provided. The distribution unit includes a shifted fiber arrangement that allows for modular network assembly. For example, the distribution unit includes a distribution body including a plurality of body optical fibers and a field optical fiber leg including a plurality of field optical fibers including at least one active field optical fiber and at least one inactive field optical fiber. Each active field tether optical fiber is optically coupled to one of the body optical fibers and at least one body optical fiber is not coupled to an active field optical fiber. The positioning of the active and inactive field tether optical fibers in a predetermined manner disclosed herein allows for modular network assembly.
    Type: Grant
    Filed: May 23, 2017
    Date of Patent: July 21, 2020
    Assignee: CORNING OPTICAL COMMUNICATIONS LLC
    Inventor: Diego David Torres
  • Patent number: 10718916
    Abstract: A fastening member is configured to be removably attached to an optical fiber connector including a supporting member supporting an optical fiber and a flange part expanding outward in a radial direction. The fastening member includes a base portion and an engaging portion. The base portion defines a slit having a width smaller than a diameter of the flange part of the optical fiber connector and greater than a diameter of the supporting member of the optical fiber connector. The engaging portion extends from the base portion perpendicularly to the base portion. The engaging portion includes a spring portion at a tip portion of the engaging portion.
    Type: Grant
    Filed: December 21, 2018
    Date of Patent: July 21, 2020
    Assignee: NICHIA CORPORATION
    Inventor: Masaki Omori
  • Patent number: 10718919
    Abstract: A cable adapter module includes a cable tray that holds a plurality of cables and an adapter tray removably attached to the cable tray. The adapter tray includes a plurality of adapters configured to connect the plurality of cables. The cable adapter module may also include a plurality of cable clips configured to secure the plurality of cables to the cable tray. The cable tray of the cable adapter module may also include a plurality of steps configured to hold the plurality of cables. The cable tray of the cable adapter module may also include a plurality of splice slots extending from the base wall towards the top of the cable tray, and at least one splice holder removably attached to the plurality of splice slots.
    Type: Grant
    Filed: August 13, 2018
    Date of Patent: July 21, 2020
    Assignee: AFL Telecommunications LLC
    Inventors: Wilfred J. Courchaine, Steve Polidan, Phillip Turner, Matthew Johnston, Roger Vaughn
  • Patent number: 10712505
    Abstract: An optical fiber connector configured for engaging with an external optical fiber connector includes a fiber core, a connector body, a coupling tube, and at least one coupling holder. The connector body has a first end portion and a second end portion, and the first end portion connects and fixes the fiber core. The second end portion is depressed inwardly to define a coupling space, and the external optical fiber connector is detachably plugged into the coupling space and coupled with the fiber core. The coupling tube is disposed in the connector body, and a portion of the coupling tube is located in the coupling space. One end portion of the fiber core is inserted in the coupling tube. The coupling holder is disposed in the coupling space, and corresponding to the coupling tube.
    Type: Grant
    Filed: December 18, 2018
    Date of Patent: July 14, 2020
    Assignee: PEGATRON CORPORATION
    Inventors: Cheng-Yi Liao, Cheng-Chung Chen, Wei-Chun Tsao
  • Patent number: 10690862
    Abstract: A connector assembly includes an adapter, a housing, a ferrule, and a sensor. The housing is received by the adapter and has a bore. The ferrule is translatable within the bore of the housing. The sensor is mounted on the housing or on the adapter. The sensor is configured for detecting translation of the ferrule. An electrical characteristic of the sensor changes to indicate translation of the ferrule to a predetermined position.
    Type: Grant
    Filed: July 1, 2016
    Date of Patent: June 23, 2020
    Assignee: Go!Foton Holdings, Inc.
    Inventors: Kenichiro Takeuchi, Haiguang Lu, Chi Kong Paul Ng
  • Patent number: 10690866
    Abstract: An optical connector according to the present disclosure includes: optical transmission paths that have end faces aligned in a predetermined region, and transmit optical signals. The optical transmission paths correspond to transmission channels or reception channels. The optical transmission paths of the transmission channels and the reception channels are arranged to have point symmetry about a center of the predetermined region. This configuration allows for a connection even if a direction of an optical connector is changed.
    Type: Grant
    Filed: December 15, 2015
    Date of Patent: June 23, 2020
    Assignee: SONY CORPORATION
    Inventors: Yasuhisa Nakajima, Masanari Yamamoto
  • Patent number: 10684528
    Abstract: A radio frequency, RF, waveguide array. The array comprises a substrate and an electrical RF transmission line array. The substrate comprises a plurality of optical waveguides, each waveguide being elongate in a first direction. The electrical RF transmission line array is located on a face of the substrate and comprises a plurality of RF transmission lines. Each transmission line comprises a signal electrode and at least two ground electrodes located on either side of the signal electrode. Each electrode extends in the first direction. Each signal electrode is positioned to provide a signal to two respective waveguides, i.e. each RF transmission line is positioned adjacent to two respective waveguides. The ground electrodes include at least two intermediate ground electrodes positioned between each pair of signal electrodes. Intermediate ground electrodes of different RF transmission lines are separated from each other by channels.
    Type: Grant
    Filed: June 30, 2017
    Date of Patent: June 16, 2020
    Assignee: Lumentum Technology UK Limited
    Inventors: Flavio Dell'Orto, Marco Villa
  • Patent number: 10680714
    Abstract: Techniques related to optical devices including a high contrast grating (HCG) lens are described herein. In an example, an optical device includes a transparent substrate. A laser emitter or detector at a first side of the transparent substrate to emit or detect a laser light transmitted via the transparent substrate. A HCG lens is at a second side of the transparent substrate to transmit and refract the laser light.
    Type: Grant
    Filed: January 17, 2019
    Date of Patent: June 9, 2020
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Wayne Victor Sorin, Michael Renne Ty Tan, David A. Fattal, Sagi Varghese Mathai
  • Patent number: 10667720
    Abstract: Systems and methods for integrating and/or registering a shape sensing fiber in or to various instruments are described herein. Registration fixtures and registration techniques for matching the coordinate system of a fiber to the coordinate system of an elongate instrument or other device are provided. Various systems and methods for integrating a shape sensing fiber into an elongate instrument or other device are also described herein.
    Type: Grant
    Filed: September 7, 2016
    Date of Patent: June 2, 2020
    Assignee: Auris Health, Inc.
    Inventors: Serena H. Wong, Jason J. Hsu, Francis Macnamara, Gene Reis, Randall L. Schlesinger, Neal A. Tanner
  • Patent number: 10659168
    Abstract: The present disclosure pertains to systems and methods for low-power optical transceivers. In one embodiment, a low-power optical transceiver may include a microcontroller and an optical receiver and an optical transmitter in communication with and controlled by the microcontroller. The optical receiver may include a photodetector configured to receive a first optical representation of a first signal to be received and to generate an electrical representation of the first signal. An amplifier may amplify the electrical representation of the first signal, and an output in electrical communication with the amplifier may generate an electrical output. The optical transmitter may include a laser diode configured to generate a second optical representation of a second signal to be transmitted. The microcontroller may be configured to control an output power of the laser diode.
    Type: Grant
    Filed: August 22, 2017
    Date of Patent: May 19, 2020
    Assignee: Schweitzer Engineering Laboratories, Inc.
    Inventors: David M. Rector, Raymond W. Rice, Steven Watts, Vince B. Hadley
  • Patent number: 10656338
    Abstract: A wafer-level optoelectronic packaging method includes fabricating a pre-singulated wafer. The pre-singulated wafer has a plurality of sub-mounts. A first sub-mount of the plurality of sub-mounts includes an optical waveguide formed on a substrate, a multi-layered sub-mount boundary wall that is formed on the optical waveguide, and a v-groove that is external to the sub-mount boundary wall. A plurality of optical dies are attached to the corresponding plurality of sub-mounts, such that each optical die is aligned to the optical waveguide of the corresponding sub-mount. A cap-wafer including a plurality of caps is attached to the pre-singulated wafer to obtain an encapsulated pre-singulated wafer. The encapsulated pre-singulated wafer is diced to obtain a plurality of optoelectronic packages. The optical waveguide of each optoelectronic package serves as an interconnection conduit between the corresponding optical die and an optical fiber placed in the corresponding v-groove.
    Type: Grant
    Filed: November 2, 2017
    Date of Patent: May 19, 2020
    Assignee: POET Technologies, Inc.
    Inventor: Yee Loy Lam
  • Patent number: 10649167
    Abstract: A fiber management tray (10) is disclosed. The fiber management tray (10) can have a body (12) including a bottom wall (14) with side walls (16) extending outwardly from the bottom wall (14). The fiber management tray (10) can include a termination region (18) that has a first side (24) and a second side (26). The termination region (18) includes a termination panel (13) that holds connectors (20). The fiber management tray (10) can include a hinge area (56) for mounting said tray (10) to a tray tower (58) and a storage basket (32) located between the termination region (18) and the hinge area (56). The storage basket (32) can include a first pocket (44) that communicates with the second side (26) of the termination region (18) and an opposite second pocket (48) that communicates with the first side (24) of the termination region (18). The fiber management tray (10) can define at least one fiber routing path on each of the first and second pockets (44, 48) of the storage basket (32).
    Type: Grant
    Filed: November 26, 2015
    Date of Patent: May 12, 2020
    Assignee: CommScope Connectivity Belgium BVBA
    Inventors: Kurt Cornelissen, Erwin Beckers, Robert Vanhentenrijk, Conny Van de Velde, Daniel Francois Daems
  • Patent number: 10634853
    Abstract: A connector for sealably engaging and disengaging contacts therein can include a first unit and a second unit that is movable with respect to the first unit between an unmated position and a mated position. The first unit can have one or more closed chambers therein. Each closed chamber of the first unit contains fluid and one or more first contacts. The second unit can have one or more closed chambers therein, each closed chamber of the second unit containing fluid and one or more second contacts. Each second contact is configured to engage one of the first contacts. The one or more closed chambers of the first unit remain sealed from the one or more closed chambers of the second unit throughout mating and demating of the first and second units.
    Type: Grant
    Filed: January 16, 2019
    Date of Patent: April 28, 2020
    Assignee: Pontus Subsea Connectors LLC
    Inventor: James L. Cairns