Patents Examined by Hung Q Lam
  • Patent number: 11448827
    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: April 28, 2020
    Date of Patent: September 20, 2022
    Assignee: POET Technologies, Inc.
    Inventor: Yee Loy Lam
  • Patent number: 11442226
    Abstract: Aspects of the present disclosure are directed to structural modifications introduced in a waveguide structure in order to more tightly pack adjacent waveguide turns in an optical gyroscope fabricated on a planar silicon platform as a photonic integrated circuit. Increasing number of turns of the gyroscope coil increases total waveguide length as well as enclosed area of the gyroscope loop, which translates to increased sensitivity to rotational measurement.
    Type: Grant
    Filed: June 30, 2021
    Date of Patent: September 13, 2022
    Assignee: ANELLO PHOTONICS, INC.
    Inventors: Avi Feshali, Mario Paniccia, Warren Bruce Jin
  • Patent number: 11419518
    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: May 12, 2020
    Date of Patent: August 23, 2022
    Assignee: Auris Health, Inc.
    Inventors: Serena H. Wong, Jason J. Hsu, Francis Macnamara, Gene Reis, Randall L. Schlesinger, Neal A. Tanner
  • Patent number: 11415765
    Abstract: The invention relates to an optical light guiding system, comprising an interface for coupling in and/or an interface for decoupling data and at least one data channel for transmitting data, and a method for transmitting data in optical systems, comprising the steps of coupling data into an interface of a beam guidance element; the transmission of the data by means of a first and/or a second data channel, which are arranged within the beam guiding element (or the casing), wherein the data channels can also be used for the fractional monitoring of the beam guiding element; and decoupling the data from an interface.
    Type: Grant
    Filed: February 11, 2019
    Date of Patent: August 16, 2022
    Assignee: HIGHYAG LASERTECHNOLOGIE GMBH
    Inventors: Eduard Armbruster, Frank Schulze
  • Patent number: 11409046
    Abstract: A wafer structure includes a diffractive lens disposed on a backside of a wafer and coupled to a front side waveguide, the diffractive lens being configured to receive light and focus the light to the front side waveguide.
    Type: Grant
    Filed: January 10, 2020
    Date of Patent: August 9, 2022
    Assignee: INTERNATIONAL BUSINESS MACHINES CORPORATION
    Inventors: Yoba Amoah, Brennan J. Brown, John J. Ellis-Monaghan, Ashleigh R. Kreider
  • Patent number: 11412207
    Abstract: Techniques for producing an overcoat layer on slanted surface-relief structures and devices obtained using the techniques are disclosed. In some embodiments, a method of planarizing an overcoat layer over a surface-relief structure includes removing a portion of the overcoat layer using an ion beam at a glancing angle. The overcoat layer includes planar surface portions and non-planar surface portions. Each of the non-planar surface portions includes a first sloped side and a second sloped side facing the first sloped side. The glancing angle is selected such that the first sloped side of each non-planar surface portion is shadowed from the ion beam by an adjacent planar surface portion such that the ion beam does not reach at least the first sloped side of each non-planar surface portion but reaches the second sloped side of each non-planar surface portion.
    Type: Grant
    Filed: October 22, 2019
    Date of Patent: August 9, 2022
    Assignee: META PLATFORMS TECHNOLOGIES, LLC
    Inventor: Nihar Ranjan Mohanty
  • Patent number: 11395700
    Abstract: A protective structure for the distal treatment end of a surgical laser fiber inserted into a patient through a scope includes uniformly-spaced ruler or scale markings that are visible through the scope and that enable the size of an object within the field of view of the scope to be precisely determined.
    Type: Grant
    Filed: May 16, 2019
    Date of Patent: July 26, 2022
    Assignee: OPTICAL INTEGRITY, INC.
    Inventors: Joe D. Brown, Daniel Malphurs, Howard S. Klymas
  • Patent number: 11397340
    Abstract: A heating electrode for lowering stress of a light waveguide and a VOA. The heating electrode is provided on an upper cladding layer (04) of a PLC waveguide. The heating electrode is formed by combining two or more sub-heating electrodes (13) arranged at internals. Adjacent sub-heating electrodes (13) are connected by means of conductive electrodes (14) having a conductive function. By dividing a complete elongated heating electrode into a plurality of sub-heating electrodes (13), the stress exerted to a waveguide core layer is lowered without affecting the heating efficiency, and thus the reliability of optical indexes of a device is effectively improved.
    Type: Grant
    Filed: December 19, 2016
    Date of Patent: July 26, 2022
    Inventors: Weidong Ma, Xiaohui Xu, Ding Li
  • Patent number: 11387533
    Abstract: A semiconductor device including an Integrated Circuit (IC) package and a plastic waveguide. The IC package includes a semiconductor chip; and an embedded antenna formed within a Redistribution Layer (RDL) coupled to the semiconductor chip, wherein the RDL is configured to transport a Radio Frequency (RF) signal between the semiconductor chip and the embedded antenna. The plastic waveguide is attached to the IC package and configured to transport the RF signal between the embedded antenna and outside of the IC package.
    Type: Grant
    Filed: July 11, 2018
    Date of Patent: July 12, 2022
    Assignee: Infineon Technologies AG
    Inventors: Maciej Wojnowski, Dirk Hammerschmidt, Walter Hartner, Johannes Lodermeyer, Chiara Mariotti, Thorsten Meyer
  • Patent number: 11378751
    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: July 8, 2020
    Date of Patent: July 5, 2022
    Assignee: Cisco Technology, Inc.
    Inventors: Vipulkumar Patel, Matthew J. Traverso, Ashley J. Maker, Jock T. Bovington
  • Patent number: 11366253
    Abstract: Methods, systems and devices for diffractive waveplate lens and mirror systems allowing electronically pointing and focusing light at different focal planes. The system can be incorporated into a variety of optical schemes for providing electrical control of transmission. In another embodiment, the system comprises diffractive waveplates of different functionality to provide a system for controlling not only focusing but other propagation properties of light including direction, phase profile, and intensity distribution. The diffractive waveplate lens and mirror systems are applicable to optical communication systems.
    Type: Grant
    Filed: January 17, 2020
    Date of Patent: June 21, 2022
    Assignees: Beam Engineering for Advanced Measurements Co., U.S. Government as Represented by the Secretary of the Army
    Inventors: Nelson V. Tabirian, Svetlana Serak, Olena Uskova, David E. Roberts, Anna Tabirian, Diane Steeves, Brian Kimball
  • Patent number: 11366254
    Abstract: Optical beam steering and focusing systems, devices, and methods that utilize diffractive waveplates are improved to produce high efficiency at large beam deflection angles, particularly around normal incidence, by diffractive waveplate architectures comprising a special combination of liquid crystal polymer diffractive waveplate both layers with internal twisted structure and at a layer with uniform structure.
    Type: Grant
    Filed: January 17, 2020
    Date of Patent: June 21, 2022
    Assignee: BEAM ENGINEERING FOR ADVANCED MEASUREMENTS CO.
    Inventors: Nelson Tabirian, David E. Roberts, Sarik Nersisyan, Olena Uskova, Anna Tabirian
  • Patent number: 11317064
    Abstract: A display subsystem for a virtual image generation system for use by an end user comprises a display, an optical fiber having a polarization-maintaining (PM) transmission fiber section and a non-PM scanning fiber section, a light source configured for injecting a linearly polarized light beam into the transmission fiber section, such that the linearly polarized light beam is emitted from the scanning fiber section, a mechanical scanning drive assembly in which the scanning fiber section is affixed, wherein the mechanical scanning drive assembly is configured for displacing the scanning optical fiber section is order to scan the emitted light beam, and a display configured for receiving the scanned light beam and generating an image to the end user.
    Type: Grant
    Filed: January 8, 2020
    Date of Patent: April 26, 2022
    Assignee: Magic Leap, Inc.
    Inventors: Ivan Yeoh, Lionel Ernest Edwin, David Tinch
  • Patent number: 11307362
    Abstract: An optical ferrule includes at least one light affecting element configured to affect one or more characteristics of light from an optical waveguide as the light propagates in the optical ferrule, the light affecting element having an input surface. At least one receiving element receives and secures the optical waveguide to the ferrule so that an output surface of the waveguide is optically coupled to the input surface of the light affecting element. A waveguide stop limits movement of the waveguide toward the input surface of the light affecting element when the optical waveguide is installed in the receiving element. A space between the output surface of the optical waveguide and the input surface of the light affecting element is inaccessible to the optical waveguide when the optical waveguide is installed in the receiving element.
    Type: Grant
    Filed: October 3, 2016
    Date of Patent: April 19, 2022
    Assignee: 3M INNOVATIVE PROPERTIES COMPANY
    Inventors: Michael A. Haase, Terry L. Smith, Bing Hao, Changbao Ma
  • Patent number: 11280958
    Abstract: An optical fiber having an effective area that can be easily increased and bending loss characteristics that can be easily improved is provided. The optical fiber includes a glass fiber including a core and a cladding; a first resin coating layer that is in contact with the glass fiber and surrounds the glass fiber; and a second resin coating layer that surrounds the first resin coating layer and has a Young's modulus greater than a Young's modulus of the first resin coating layer. An effective area is greater than or equal to 110 ?m2 and less than or equal to 180 ?m2 at a wavelength of 1550 nm. A cable cut-off wavelength is less than or equal to 1530 nm. A uniformity of thickness of the first resin coating layer is greater than or equal to 60% and less than or equal to 80%.
    Type: Grant
    Filed: February 27, 2019
    Date of Patent: March 22, 2022
    Assignee: SUMITOMO ELECTRIC INDUSTRIES, LTD.
    Inventors: Yuki Kawaguchi, Yoshiaki Tamura, Hirotaka Sakuma
  • Patent number: 11269199
    Abstract: We describe methods of producing gratings such as Bragg gratings with optical waveguides. Described are the writing and erasing of gratings within SiON waveguides by forming standing waves. Methods, systems, instruments, and devices are described that provide improved transmission of light through such waveguides.
    Type: Grant
    Filed: April 11, 2019
    Date of Patent: March 8, 2022
    Assignee: Pacific Biosciences of California, Inc.
    Inventors: Mark McDonald, Aaron Rulison, Paul Lundquist, Tsuei-Lian Wang, Deborah Pao-Tung Kwo, Shang Wang
  • Patent number: 11262510
    Abstract: An adapter assembly is formed from an adapter housing with a recess configured to accept an adapter panel hook. The adapter assembly is secured within a panel using the adapter panel hook. The adapter panel hook has opposing side portions connected by a joining plate. Each side portion has an elastic pawl with opposing elastic members. The elastic members are configured to be secured between the adapter outer housing and panel wall opening to reduce vibration at the adapter housing.
    Type: Grant
    Filed: October 23, 2019
    Date of Patent: March 1, 2022
    Assignee: Senko Advanced Components, Inc.
    Inventors: Kim Man Wong, Kazuyoshi Takano
  • Patent number: 11262501
    Abstract: Optical fiber connections and their applications in downhole assemblies are described herein. The downhole assembly includes a well completion element with an end that couples with a corresponding well completion element. An optical fiber extends along at least a portion of the well completion element and transmits an optical signal using a first mode. The well completion element includes an optical fiber connector that is coupled to the optical fiber. The connector also includes a mode converter that receives the optical signal from the optical fiber and converts the optical signal from the first mode to a second larger mode. This second larger mode may be more robustly communicated to a corresponding optical fiber connector affixed to the corresponding well completion element.
    Type: Grant
    Filed: December 2, 2015
    Date of Patent: March 1, 2022
    Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Irfan Bulu, Francois M. Auzerais, Robert Graham, Mohamed Aly Sadek
  • Patent number: 11262519
    Abstract: A cable storage device (100) includes a removal station (110) and a storage spool (120). Slack length of the cable (190) is advanced into the cable storage device. At least a jacket (195) of the cable (190) is removed at the removal station (110). At least a signal-carrying portion of the cable (190) is wound at the storage spool (120). The removed jacket (195) exits the cable storage device (100). The cable (190) can be axially secured at the cable storage device (100). Certain types of spools can index the cable.
    Type: Grant
    Filed: May 17, 2017
    Date of Patent: March 1, 2022
    Assignee: COMMSCOPE CONNECTIVITY BELGIUM BVBA
    Inventors: Johan Geens, Jan Willem Rietveld, Bart Vos, Olivier Hubert Daniel Yves Rousseaux
  • Patent number: 11262511
    Abstract: The present disclosure relates to an optical fiber alignment device that has an alignment housing that includes first and second ends. The alignment housing defines a fiber insertion axis that extends through the alignment housing between the first and second ends. The alignment housing includes a fiber alignment region at an intermediate location between the first and second ends. First and second fiber alignment rods are positioned within the alignment housing. The first and second fiber alignment rods cooperate to define a fiber alignment groove that extends along the fiber insertion axis. The first and second fiber alignment rods each having rounded ends positioned at the first and second ends of the alignment housing.
    Type: Grant
    Filed: December 24, 2019
    Date of Patent: March 1, 2022
    Assignees: CommScope Technologies LLC, CommScope Connectivity Belgium BVBA
    Inventors: Michael Gurreri, Robert Charles Flaig, Randall Bobby Paul, Danny Willy August Verheyden, David Donald Erdman, Dwight A. Bretz