Patents by Inventor Anping Liu

Anping Liu has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20180252883
    Abstract: An optical communication cable and related systems and methods are provided. The optical cable includes a plurality of wrapped core elements, and the outer surfaces of adjacent wrapped core elements are joined together by discrete bond sections. The discrete bonds sections may be structures such as laser welds, ultrasonic welds, or adhesive material. The discrete bonds hold the wrapped core elements together in the wrapped pattern, such as an SZ stranding pattern.
    Type: Application
    Filed: May 2, 2018
    Publication date: September 6, 2018
    Inventors: Anne Germaine Bringuier, Joel Patrick Carberry, David Wesley Chiasson, Anping Liu, Barada Kanta Nayak
  • Publication number: 20180221988
    Abstract: A method for laser processing a transparent workpiece includes forming a contour line having defects in the transparent workpiece, which includes directing a pulsed laser beam oriented along a beam pathway through a beam converting element and through a phase modifying optical element such that the portion of the pulsed laser beam directed into the transparent workpiece includes a phase shifted focal line having a cross-sectional phase contour that includes phase contour ridges induced by the phase modifying optical element and extending along phase ridge lines. Moreover, the phase shifted focal line generates an induced absorption within the transparent workpiece to produce a defect within the transparent workpiece including a central defect region and a radial arm that extends outward from the central defect region in a radial defect direction oriented within 20° of the phase ridge lines of the phase shifted focal line.
    Type: Application
    Filed: January 18, 2018
    Publication date: August 9, 2018
    Inventors: Anping Liu, Matthew Ryan Ross
  • Publication number: 20180210212
    Abstract: An optical fiber for converting a Gaussian laser beam into a Bessel laser beam may include a first segment optically coupled to a second segment with a transition region, the first segment having a first outer diameter greater than a second outer diameter of the second segment. The first segment may include a first core portion with a first cladding portion extending around the first core portion. The first core portion may have an annular core region with a relative refractive index relative to the first cladding portion. The second segment may include a second core portion with a second cladding portion extending around the second core portion. The second core portion has a relative refractive index relative to the second cladding portion and the relative refractive index of the first annular core region may be substantially equal to the relative refractive index of the second core portion.
    Type: Application
    Filed: January 18, 2018
    Publication date: July 26, 2018
    Inventors: Ming-Jun Li, Anping Liu
  • Patent number: 9983753
    Abstract: The present disclosure provides an optical-capacitive sensor panel device. In one aspect, the panel device includes a transparent substrate having a first surface; an optical sensor array formed on the first surface of the transparent substrate, the optical sensor array including a plurality of photosensitive pixels spaced apart from each other and arranged on the first surface to form a lattice structure; a plurality of row electrodes formed on the optical sensor array and electrically coupled to a first group of the photosensitive pixels; a plurality of column electrodes formed on the optical sensor array crossing the row electrodes and electrically coupled to a second group of the photosensitive pixels; and an insulating layer formed between the row electrodes and the column electrodes.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: May 29, 2018
    Assignee: Bidirectional Display Inc.
    Inventors: Hsuan-Yeh Chang, Anping Liu
  • Patent number: 9977207
    Abstract: An optical communication cable and related systems and methods are provided. The optical cable includes a plurality of wrapped core elements, and the outer surfaces of adjacent wrapped core elements are joined together by discrete bond sections. The discrete bonds sections may be structures such as laser welds, ultrasonic welds, or adhesive material. The discrete bonds hold the wrapped core elements together in the wrapped pattern, such as an SZ stranding pattern.
    Type: Grant
    Filed: May 31, 2016
    Date of Patent: May 22, 2018
    Assignee: Corning Optical Communications LLC
    Inventors: Anne Germaine Bringuier, Joel Patrick Carberry, David Wesley Chiasson, Anping Liu, Barada Kanta Nayak
  • Publication number: 20180059350
    Abstract: A crush resistant, kink resistant optical cable including crush resistant, kink resistant optical fiber buffer tubes and systems and method for making the same are provided. The buffer tubes include a depression pattern formed along the outer surface of the buffer tube. The depression pattern provides areas of decreased thickness in the buffer tube facilitating flexibility and kink resistance. The system and method relates to laser ablation for forming the depression pattern in the buffer tube.
    Type: Application
    Filed: August 30, 2017
    Publication date: March 1, 2018
    Inventors: Joel Patrick Carberry, David Wesley Chiasson, Jeffrey Dean Danley, Anping Liu, Barada Kanta Nayak
  • Publication number: 20180031770
    Abstract: A method of forming an optical surface on an end portion of an optical fiber comprises inserting the optical fiber through a ferrule bore of a ferrule so that the end portion extends past an end face on the ferrule. At least one laser beam is emitted from at least one laser and directed to the end face of the ferrule. The at least one laser beam is shaped into an ellipse and comprises at least 90 percent linearly-polarized light incident on the end face of the ferrule as S-polarized light. The at least one laser is operated so that the S-polarized light reflects off the end face of the ferrule and cleaves the end portion of the optical fiber.
    Type: Application
    Filed: September 27, 2017
    Publication date: February 1, 2018
    Inventors: Joel Patrick Carberry, Anping Liu, Barada Kanta Nayak
  • Publication number: 20180016179
    Abstract: A method of processing a flexible glass sheet having a thickness of equal to or less than 300 ?m includes separating an outer edge portion of the flexible glass sheet from a bonded portion of the flexible glass sheet along a separation path while the bonded portion of the flexible glass sheet remains bonded with respect to a first major surface of a carrier substrate. The step of separating the outer edge portion provides the flexible glass sheet with a new outer edge extending along the separation path. A lateral distance between the new outer edge of the flexible glass sheet and an outer periphery of the first major surface of the carrier substrate is equal to or less than about 750 ?m.
    Type: Application
    Filed: January 6, 2016
    Publication date: January 18, 2018
    Inventors: Erin Kathleen Canfield, Todd Benson Fleming, Xinghua Li, Anping Liu, Leonard Thomas Masters
  • Publication number: 20170341812
    Abstract: A glass container including a body having a delamination factor less than or equal to 10 and at least one marking is described. The body has an inner surface, an outer surface, and a wall thickness extending between the outer surface and the inner surface. The marking is located within the wall thickness. In particular, the marking is a portion of the body having a refractive index that differs from a refractive index of an unmarked portion of the body. Methods of forming the marking within the body are also described.
    Type: Application
    Filed: May 31, 2017
    Publication date: November 30, 2017
    Applicant: CORNING INCORPORATED
    Inventors: Steven Edward DeMartino, Daniel Warren Hawtof, Ming-Jun Li, Anping Liu, John Stephen Peanasky, Christopher Lee Timmons, Qi Wu
  • Patent number: 9810847
    Abstract: A method of forming an optical surface on an end portion of an optical fiber inserting the optical fiber through a ferrule bore of a ferrule so that the end portion extends past an end face on the ferrule. At least one laser beam is emitted from at least one laser and directed to the end face of the ferrule at a location spaced from the ferrule bore. The at least one laser beam is also directed at an angle relative to the end face of the ferrule so as to be incident on the end portion of the optical fiber after reflecting off the end face of the ferrule. The at least one laser is operated to cleave the end portion of the optical fiber, and the end face on the ferrule does not crack due to thermal expansion when the at least one laser is operated.
    Type: Grant
    Filed: November 18, 2014
    Date of Patent: November 7, 2017
    Assignee: Corning Optical Communications LLC
    Inventors: Joel Patrick Carberry, Anping Liu, Barada Kanta Nayak
  • Publication number: 20170275197
    Abstract: Cutting a desired final shape in a glass sheet, wherein the glass sheet is about 0.3 mm or less in thickness by applying a laser beam to the glass and continuously moving the laser relative to the glass along the cutting line. The laser is of a circular shape, and cooling fluid is applied simultaneously with the application of the laser, such that the cooling fluid at least reduces the temperature of the glass in order to propagate a fracture in the glass. The method includes controlling at least one of: (i) an energy density of the laser, (ii) a velocity of the laser relative to the glass along the cutting line, (iii) a fluid flow of the cooling fluid, and (iv) a minimum radius of curvature of the cutting line, such that a B10 edge strength of a cut edge of the glass is at least about 300 MPa.
    Type: Application
    Filed: August 13, 2015
    Publication date: September 28, 2017
    Inventors: Andrew Stephen Altman, Todd Benson Fleming, Anping Liu, James Joseph Watkins
  • Publication number: 20170240456
    Abstract: A method and corresponding apparatus for processing optical fiber include directing light from a directed light source toward an optical fiber on a fiber draw. A fiber core of the optical fiber is heated, using at least the light from the directed light source, to a fiber core temperature within a glass transformation temperature range of the fiber core. The method can be used to reduce fictive temperature of the fiber core, with Rayleigh scattering being reduced, leading to lower attenuation losses in the fiber core.
    Type: Application
    Filed: February 14, 2017
    Publication date: August 24, 2017
    Inventors: Ravindra Kumar Akarapu, Ming-Jun Li, Anping Liu, Barada Kanta Nayak, Bruce Warren Reding
  • Publication number: 20170203994
    Abstract: Systems and methods utilizing two Airy beams to process a non-rounded edge of a glass substrate or to cleave a glass substrate are disclosed. The method includes generating first and second Airy beams and causing them to cross at a crossing to define a curved intensity profile in the vicinity of the crossing point where the first and second Airy beams have respective local radii of curvature RA and RB. The method also includes scanning the curved intensity profile either along the non-rounded outer edge or through the glass along a scan path to form on the glass substrate a rounded outer edge having a radius of curvature RE that is smaller than the first and second local radii of curvature RA and RB. The radius of curvature RE can be adjusted by changing a beam angle between the first and second Airy beams.
    Type: Application
    Filed: January 12, 2017
    Publication date: July 20, 2017
    Inventors: Minghan Chen, Ming-Jun Li, Anping Liu, Gaozhu Peng
  • Publication number: 20170097702
    Abstract: The present disclosure provides an optical-capacitive sensor panel device. In one aspect, the panel device includes a a transparent substrate having a first surface; an optical sensor array formed on the first surface of the transparent substrate, the optical sensor array including a plurality of photosensitive pixels spaced apart from each other and arranged on the first surface to form a lattice structure; a plurality of row electrodes formed on the optical sensor array and electrically coupled to a first group of the photosensitive pixels; a plurality of column electrodes formed on the optical sensor array crossing the row electrodes and electrically coupled to a second group of the photosensitive pixels; and an insulating layer formed between the row electrodes and the column electrodes.
    Type: Application
    Filed: September 30, 2016
    Publication date: April 6, 2017
    Inventors: Hsuan-Yeh Chang, Anping Liu
  • Publication number: 20170078513
    Abstract: The present disclosure provides an image sensor panel and a method for capturing graphical information using the image sensor panel. In one aspect, the image sensor panel includes a substrate and a sensor array on the substrate, the sensor array including a plurality of photosensitive pixels. The substrate includes a first region defined by the sensor array and a second region other than the first region. The second region is optically transparent and has an area greater than that of the first region.
    Type: Application
    Filed: September 18, 2016
    Publication date: March 16, 2017
    Inventors: Hsuan-Yeh Chang, Anping Liu
  • Publication number: 20170050877
    Abstract: Methods and apparatus provide for: cutting a thin glass sheet along a curved cutting line, where the curve is divided into a plurality of line segments; applying a laser beam and continuously moving the laser beam along the cutting line; applying a cooling fluid simultaneously with the application of the laser beam in order to propagate a fracture in the glass sheet along the cutting line; and varying one or more cutting parameters as the laser beam moves from one of the plurality of line segments to a next one of the plurality of line segments, wherein the one or more cutting parameters include at least one of: (i) a power of the laser beam, (ii) a speed of the movement, (iii) a pressure of the cooling fluid, and (iv) a flow rate of the cooling fluid.
    Type: Application
    Filed: February 17, 2015
    Publication date: February 23, 2017
    Inventors: Andrew Stephen Altman, Carlton Wesley Cole, Todd Benson Fleming, Anping Liu, James Joseph Watkins
  • Publication number: 20170045706
    Abstract: A system and method for marking a moving surface of a fiber optic cable is provided. The system includes a supply of the fiber optic cable, a laser generating device configured to generate a laser beam that forms markings by interacting with the material of the moving surface of the fiber optic cable. The system includes a movement device moving the fiber optic cable through the system at a speed of at least 50 m per minute. The system includes a laser directing device located in the path of the laser beam and configured to change the path of the laser beam to direct the laser beam to a plurality of discrete locations on the moving surface to form a series of marks on the moving surface. The moving surface includes a plurality of tracking indicia to allow the position of the moving surface to be determined.
    Type: Application
    Filed: August 1, 2016
    Publication date: February 16, 2017
    Inventors: Joel Patrick Carberry, Anping Liu, Eric J. Mozdy, Barada Kanta Nayak
  • Publication number: 20160356974
    Abstract: An optical communication cable and related systems and methods are provided. The optical cable includes a plurality of wrapped core elements, and the outer surfaces of adjacent wrapped core elements are joined together by discrete bond sections. The discrete bonds sections may be structures such as laser welds, ultrasonic welds, or adhesive material. The discrete bonds hold the wrapped core elements together in the wrapped pattern, such as an SZ stranding pattern.
    Type: Application
    Filed: May 31, 2016
    Publication date: December 8, 2016
    Inventors: Anne Germaine Bringuier, Joel Patrick Carberry, David Wesley Chiasson, Anping Liu, Barada Kanta Nayak
  • Patent number: 9416046
    Abstract: A method cleaving an end portion of an optical fiber involves providing a ferrule having a first end, a second end, and a ferrule bore extending between the first and second ends. An optical fiber is inserted through the ferrule bore so that an end portion of the optical fiber extends past an end face on the second end of the ferrule. At least one laser beam is emitted from at least one laser and directed to be incident on the end portion of the optical fiber at a first location. The at least one laser beam is emitted and directed to have a maximum beam width that is less than an outer diameter of the optical fiber at the first location so that the at least one laser can be operated to form a hole in the optical fiber at the first location.
    Type: Grant
    Filed: January 13, 2015
    Date of Patent: August 16, 2016
    Assignee: CORNING OPTICAL COMMUNICATIONS LLC
    Inventors: Joel Patrick Carberry, Anping Liu, Barada Kanta Nayak
  • Patent number: 9290406
    Abstract: A method for producing an optical fiber is provided. The method includes the steps of drawing an optical fiber from a heated glass source in a furnace and introducing index perturbations to the optical fiber via a plurality of perturbation sources arranged at a plurality of different azimuthal locations. The index perturbations are introduced synchronously at different locations along the axial length of the fiber by the plurality of perturbation sources in a generally helical pattern on the outside surface of the fiber in one embodiment. According to another embodiment, the index perturbations are introduced by the plurality of perturbation sources at different frequencies.
    Type: Grant
    Filed: August 16, 2012
    Date of Patent: March 22, 2016
    Assignee: Corning Incorporated
    Inventors: Xin Chen, Charles Frederick Laing, Ming-Jun Li, Anping Liu, Eric John Mozdy, Joseph Doull Thaler