Patents Examined by Akm Enayet Ullah
  • Patent number: 9841561
    Abstract: A SOI bent taper structure is used as a mode convertor. By tuning the widths of the bent taper and the bend angles, almost lossless mode conversion is realized between TE0 and TE1 in a silicon waveguide. The simulated loss is <0.05 dB across C-band. This bent taper can be combined with bi-layer TM0-TE1 rotator to reach very high efficient TM0-TE0 polarization rotator. An ultra-compact (9 ?m) bi-layer TM0-TE1 taper based on particle swarm optimization is demonstrated. The entire TM0-TE0 rotator has a loss <0.25 dB and polarization extinction ratio >25 dB, worst-case across the C-band.
    Type: Grant
    Filed: February 10, 2017
    Date of Patent: December 12, 2017
    Assignee: Elenion Technologies, LLC
    Inventor: Yangjin Ma
  • Patent number: 9835806
    Abstract: A fiber optic ferrule includes a body extending from a first end to a second opposite end, with the body including an axial passage extending between the first and the second ends. The axial passage includes a first diameter portion having a diameter of at least 125 microns, a second diameter portion having a diameter of at least 250 microns and less than a diameter of a buffer, and a smooth and continuous transition between the first and the second diameter portions. The second diameter portion is positioned between the first diameter portion and the second end. The axial passage further defines a tapered shape at the second end extending inward from the second end toward the second diameter portion. In certain embodiments, another smooth and continuous transition can be provided between the taper shape and the second diameter portion. In certain embodiments, the axial passage is smooth and continuous between the first and the second ends of the body. A hub holds the ferrule.
    Type: Grant
    Filed: May 23, 2016
    Date of Patent: December 5, 2017
    Assignee: CommScope Technologies LLC
    Inventor: Steven C. Zimmel
  • Patent number: 9829644
    Abstract: A spring push for a fiber optic connector includes an engagement member having a slot to receive a handle that also engages a distal portion of the engagement number. The spring push, along with the handle, allows for fiber optic connectors to be installed and removed from adapters in high density applications. The spring push can be installed into a connector housing and, along with other components, be a fiber optic connector. The engagement member may also originate from other parts of the fiber optic connector.
    Type: Grant
    Filed: February 10, 2017
    Date of Patent: November 28, 2017
    Assignee: US Conec, Ltd.
    Inventors: Hiep V. Nguyen, Joseph P. Howard
  • Patent number: 9829632
    Abstract: A bent taper is provided that includes one or more waveguide bends, at least one of which has a tapering waveguide width along at least a portion thereof. In one embodiment, the bent taper is an S-shaped bent taper that is configured as a TE0-TE1 mode convertor. Such a bent taper can be combined with a linear bi-layer taper configured as a TM0-TE1 mode converter to form a TM0-TE0 polarization rotator.
    Type: Grant
    Filed: January 6, 2016
    Date of Patent: November 28, 2017
    Assignee: Elenion Technologies, LLC
    Inventors: Yangjin Ma, Michael J. Hochberg
  • Patent number: 9829636
    Abstract: Apparatus and method are disclosed for co-aligning a number of laterally displaced radiation beams from respective radiation source outputs, each beam having a respective waveband. The apparatus comprises a collimating element for receiving each of said radiation beams with respective lateral displacements and a combining element for receiving each of said radiation beams passed by said collimating element. The apparatus further comprises a radiation source mount for positioning the radiation source outputs relative to the collimating element. The method comprises longitudinally positioning the radiation source outputs upon the mount, relative to the collimating element, in dependence upon the waveband of each beam, to cause the radiation beams passed by the combining element to be co-aligned.
    Type: Grant
    Filed: April 15, 2014
    Date of Patent: November 28, 2017
    Assignee: BAE SYSTEM plc
    Inventors: Craig Daniel Stacey, Christopher Stace
  • Patent number: 9829665
    Abstract: A fiber optic splice enclosure includes a basket. The basket includes an outer shell, the outer shell including an outer sidewall defining at least a portion of a periphery of the basket. The basket further includes an insert disposed within the outer shell, the insert including a first sidewall and a second sidewall spaced apart from each other along a transverse axis and each extending along a longitudinal axis to define an inner channel therebetween. The first sidewall and the second sidewall are each further spaced apart from the outer sidewall along the longitudinal axis to define a first outer channel and a second outer channel. The fiber optic splice enclosure further includes a splice tray assembly including at least one splice tray, the splice tray assembly disposed within the inner channel.
    Type: Grant
    Filed: April 27, 2017
    Date of Patent: November 28, 2017
    Assignee: AFL Telecommunications LLC
    Inventors: Patrick E. Dobbins, David Reeve, Richard Megill, Vahid Ebrahimi
  • Patent number: 9829638
    Abstract: An optical multiplexer and methods of making and calibrating the same are disclosed. A method of aligning components in a multichannel optical/optoelectronic transmitter includes passively fixing a plurality of light emitters in place on a substrate; adjusting positions of a first lens passing light from a first light emitter and an optical signal transmission medium receiving the light from the first light emitter until a far field spot of the light from the first light emitter is at or near an end of the transmission medium; fixing one or more optical subassemblies on the substrate; and adjusting positions of the optical subassembly(ies) to align light from the remaining light emitters with the far field spot. Some embodiments include multiple optical subassemblies, each including a lens and a filter. Other embodiments include one optical subassembly including a mirror and a beam combiner.
    Type: Grant
    Filed: June 7, 2017
    Date of Patent: November 28, 2017
    Assignee: Source Photonics, Inc.
    Inventors: Moshe Amit, Mark Heimbuch
  • Patent number: 9829639
    Abstract: A tunable optical filter is described, utilizing a diffraction grating and a rotating mirror. By incorporating a phase screen, or the combination of a phase screen and a transmission amplitude-modulated mask, located in front of the rotating mirror, or possibly at other locations in the optical path, the selected wavelength's passband spectrum can be shaped in a variety of ways. In particular, the output spectrum of the tunable optical filter can be made flatter within the passband, while maintaining good isolation of adjacent channels or wavelengths.
    Type: Grant
    Filed: September 22, 2016
    Date of Patent: November 28, 2017
    Assignee: DICON FIBEROPTICS, INC.
    Inventors: Alexander Jacob Birman, Ho-Shang Lee
  • Patent number: 9829641
    Abstract: An integrated optical coupling device may include a substrate, a coating layer disposed on the substrate, and a prism disposed on the coating layer. The prism may include a first surface and a second surface. The integrated optical coupling device may also include a first lens disposed on the first surface of the prism, a second lens disposed on the second surface of the prism, and an anti-reflection coating layer disposed on the first lens and the second lens.
    Type: Grant
    Filed: September 8, 2016
    Date of Patent: November 28, 2017
    Assignee: SiFotonics Technologies Co, Ltd.
    Inventors: Tuo Shi, Shipeng Yan, Nai Zhang, Dong Pan
  • Patent number: 9823417
    Abstract: Disclosed is a waveguide polarizing optical device, including a first waveguide polarizer (6), a section of a second optical waveguide (31) and a second thin-plate polarizer (52) having a physical thickness T and a refractive index n, the second thin-plate polarizer (52) being disposed on the optical path between a waveguide end (8) of the first polarizer (6) and one end (32) of the second optical waveguide (31), the physical distance d between the waveguide end (8) of the first polarizer (6) and the end (32) of the second optical waveguide (31) being less than or equal to twice the Rayleigh length and the physical thickness T of the second polarizer (52) being less than or equal to the physical distance d.
    Type: Grant
    Filed: July 6, 2015
    Date of Patent: November 21, 2017
    Assignee: IXBLUE
    Inventors: Pascal Simonpietri, Stephane Chouvin, Cedric Molucon
  • Patent number: 9823430
    Abstract: This disclosure generally relates to high-speed fiber optic networks that use light signals to transmit data over a network. The disclosed subject matter includes devices and methods relating to lens receptacles and/or optoelectronic subassemblies. In some aspects, the disclosed devices and methods relate to a lens receptacle including a receptacle body extending between a receptacle top and a receptacle bottom, the receptacle body including: a port body defining a receptacle port with a port opening at the receptacle top; a receptacle window defining a base of the receptacle port; a lens array including lenses positioned on the receptacle window; and at least one receptacle alignment feature.
    Type: Grant
    Filed: August 20, 2015
    Date of Patent: November 21, 2017
    Assignee: FINISAR CORPORATION
    Inventors: Maziar Amirkiai, Tao Wu, Mark Donovan, Hongyu Deng
  • Patent number: 9817195
    Abstract: A cable sealing device is described herein for use in a sealed optical fiber connector that includes a spreading member disposed around and axially movable with respect to a cable and elastic sleeve concentrically disposed around the cable and over the spreading member. The elastic sleeve includes a first cable sealing portion disposed in fixed sealing contact with the cable, a central sealing portion that is axially offset from the first cable sealing portion and concentrically arranged around the spreading member, and a first flexible membrane portion disposed between the first cable sealing portion and the central sealing portion.
    Type: Grant
    Filed: September 6, 2016
    Date of Patent: November 14, 2017
    Assignee: 3M INNOVATIVE PROPERTIES COMPANY
    Inventors: Michel T. Menguy, Thomas Cavallaro
  • Patent number: 9804345
    Abstract: An optical module-member is provided, including: a layer-shaped optical waveguide; a light-emitting unit substrate including an insulating substrate, light-emitting element-mounting portions where light-emitting elements are configured to be mounted so as to be optically connected to the optical waveguide, and driving element-mounting portions which are electrically connected to the light-emitting element-mounting portions where driving elements for driving the light-emitting elements are configured to be mounted; and a light-receiving unit substrate which is separated from the light-emitting unit substrate, the light-receiving unit substrate including: an insulating substrate, light-receiving element-mounting portions where light-receiving elements are configured to be mounted so as to be optically connected to the optical waveguide, and signal amplification element-mounting portions which are electrically connected to the light-receiving element-mounting portions and where signal amplification elements for
    Type: Grant
    Filed: July 1, 2014
    Date of Patent: October 31, 2017
    Assignee: SUMITOMO BAKELITE CO., LTD.
    Inventors: Makoto Fujiwara, Shinya Arai
  • Patent number: 9804343
    Abstract: A multiport optical fiber connection terminal with a compact footprint has a configuration that allows for easy accessibility and interconnection of cables, while providing several mounting options and including storage space within the terminal. The terminal may include cable connectors that are configured to allow for weather proof installation of pre-terminated fiber optic cables with the terminal ports.
    Type: Grant
    Filed: July 18, 2016
    Date of Patent: October 31, 2017
    Assignee: Clearfield, Inc.
    Inventors: John P. Hill, Walter E. Power, II, Randy Van Horn
  • Patent number: 9804348
    Abstract: An optical apparatus, comprising a Silicon Photonics (SiP) device, with multiple optical waveguides and an array of collimating lenses, configured to receive light from the multiple optical waveguides in paths not including optical fibers and to collimate the light of the multiple optical waveguides into collimated beams. A receptacle is configured to receive an external optical device in an orientation aligned with the collimated beams from the array of collimating lenses.
    Type: Grant
    Filed: May 8, 2016
    Date of Patent: October 31, 2017
    Assignee: MELLANOX TECHNOLOGIES, LTD.
    Inventors: Avner Badihi, Sylvie Rockman, Elad Mentovich
  • Patent number: 9798043
    Abstract: Provided is an optical fiber which has exceptional heat resistance and is highly safe. This optical fiber has a core, and a sheath of a least one layer around the outside circumference of the core, the sheath including a polymer that contains a repeating unit (A) derived from a fluoroalkyl (meth)acrylate having a specific structure.
    Type: Grant
    Filed: January 16, 2015
    Date of Patent: October 24, 2017
    Assignee: Mitsubishi Chemical Corporation
    Inventors: Hideki Kihara, Akinori Ishikado, Yoshihiro Tsukamoto
  • Patent number: 9798087
    Abstract: Example implementations relate to mounting optoelectronic devices and wavelength-division multiplexing optical connectors. For example, an implementation includes a transparent interposer having an integrated plurality of lenses. A plurality of optoelectronic devices are mounted to a bottom surface of the transparent interposer, each of the optoelectronic devices being paired to a respective lens of the plurality of lenses. The bottom surface of the transparent interposer is mounted to a substrate within a region of an optical socket. The optical socket receives a filter-based wavelength-division multiplexing (WDM) optical connector. Each lens of the plurality of lenses is paired to a respective filter of the WDM optical connector when the WDM optical connector is mated to the optical socket.
    Type: Grant
    Filed: November 1, 2016
    Date of Patent: October 24, 2017
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Sagi Mathai, Michael Renne Ty Tan, Wayne Victor Sorin, Paul Kessler Rosenberg
  • Patent number: 9798080
    Abstract: Method and apparatus for producing metal-coated optical fiber involves providing a length of optical fiber having a glass fiber with or without a carbon layer surrounded by a liquid-soluble polymeric coating. The optical fiber is passed through a series of solution baths such that the fiber will contact the solution in each bath for a predetermined dwell time, the series of solution baths effecting removal of the polymer coating and subsequent electroless plating of metal on the glass fiber. The optical fiber is collected after metal plating so that a selected quantity of the metal-coated optical fiber is gathered, Preferably, the glass fiber passes through the series of solution baths without contacting anything except for the respective solution in each.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: October 24, 2017
    Assignee: AFL Telecommunications LLC
    Inventors: Matsuhiro Miyamoto, Masami Miyachi
  • Patent number: 9791635
    Abstract: An optical fiber connector for terminating a fiber cable comprising a plurality of optical fibers, comprises an outer connector housing, a ferrule essentially free of adhesive, a backbone, and a collar body disposed between the ferrule and backbone. The collar body includes a remote gripping region to remotely grip the plurality of optical fibers outside of the ferrule. In some aspects, the collar body includes a fiber comb portion that separates potentially tangled fibers, arranges the plurality of fibers in a uniform pitch, and provides for straightforward feeding of the fiber array into ferrule bores during a fiber cable insertion process. In some aspects, the connector includes a resilient element disposed between the backbone and a rear portion of the collar body, and an intermediate spring element disposed between a front portion of the collar body and a rear portion of the ferrule.
    Type: Grant
    Filed: August 12, 2013
    Date of Patent: October 17, 2017
    Assignee: 3M Innovative Properties Company
    Inventors: Mark R. Richmond, Johnny P. Bryant, Ding Wang, James R. Bylander, Nathan Stipek
  • Patent number: 9791641
    Abstract: Inverted 45° semiconductor mirrors as vertical optical couplers for PIC chips, particularly optical receivers and transmitters. An inverted 45° semiconductor mirror functions to couple light between a plane in the PIC chip defined by thin film layers and a direction normal to a top surface of the PIC chip where it may be generated or collected by an off-chip component, such as a wire terminal. In an exemplary embodiment, a (110) plane of a cubic crystalline semiconductor may provide a 45° facet inverted relative to a (100) surface of the semiconductor from which light is to be emitted. In further embodiments, a (110) plane may be exposed by undercutting a device layer of a semiconductor on insulator (SOI) substrate. Alternatively, a pre-etched substrate surface may be bonded to a handling wafer, thinned, and then utilized for PIC waveguide formation.
    Type: Grant
    Filed: October 15, 2015
    Date of Patent: October 17, 2017
    Assignee: Intel Corporation
    Inventors: John Heck, Haisheng Rong