Patents by Inventor Lun Kai Cheng

Lun Kai Cheng 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).

  • Patent number: 11965759
    Abstract: Ultrasonic measurements of fluid properties are performed with the aid of an optical fiber or a package of optical fibers by exciting ultrasound waves at a first location along the optical fiber in the fluid by means of light from the optical fiber and detecting an effect of the ultrasound waves on light reflection or propagation in the optical fiber and/or a further optical fiber in the package at a second location along the optical fiber or at the end of the optical fiber.
    Type: Grant
    Filed: December 16, 2019
    Date of Patent: April 23, 2024
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Gert-Jan Adriaan Van Groenestijn, Paul Louis Maria Joseph Van Neer, Fokko Pieter Wieringa, Arno Willem Frederik Volker, Lun Kai Cheng
  • Publication number: 20230029510
    Abstract: A semi-translucent photovoltaic device is described having a translucent substrate with a photovoltaic stack interrupted in spatially distributed openings filled with a translucent polymer. Also disclosed is a method of manufacturing the device. The method comprises providing the substrate at a first side with the photovoltaic stack; removing material from the stack in spatially distributed regions, therewith forming openings within these regions; blanket-wise depositing a protective layer over the substrate with the photovoltaic stack; blanket-wise depositing a layer of a radiation-curable precursor for the translucent polymer over the protective layer; irradiating the substrate from a second side opposite its first side to therewith selectively cure the radiation-curable precursor within and in front of the spatially distributed openings, the radiation-curable precursor being converted therewith into said translucent polymer; removing an uncured remainder of the layer of the radiation-curable precursor.
    Type: Application
    Filed: December 24, 2020
    Publication date: February 2, 2023
    Inventors: Lun-Kai CHENG, Wai Sing MAN, Kwong Shing TSANG
  • Patent number: 11493703
    Abstract: A laser device for optical communication comprises a first laser unit connected to a first optical fiber for supplying a transmission laser beam thereto. wherein the laser device is configured for providing a reference laser beam in addition to the transmission laser beam. For providing the reference laser beam the laser device further includes a second laser unit connected to a second optical fiber for supplying the reference laser beam to the second optical fiber. The first laser unit is configured for providing the transmission laser beam as a linear polarized beam that is polarized in a first polarization direction, and the second laser unit is configured for providing the reference laser beam as a linear polarized beam that is polarized in a second polarization direction.
    Type: Grant
    Filed: July 12, 2019
    Date of Patent: November 8, 2022
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai Cheng, Kristiaan Albert Broekens, Hendrik De Man
  • Patent number: 11493325
    Abstract: Translations of an object in a plurality of different spatial directions are measured using a plurality of interferometers to detect interference with light that has been reflected from a diffusively reflective surface, preferably using diffuse reflection from the same planar surface to measure in each of the different spatial directions. At least the interferometers that measure translation in directions that are not perpendicular to the surface each comprises a single mode fiber and a collimator configured to transmit the outgoing light to the object successively through the single mode fiber and the collimator, and to collect reflection into the single mode fiber with the collimator both along a same beam direction. It has been found that, when reflection of a beam with a beam direction at an oblique angle to a diffusively reflective surface is used, the interference resulting from translation of the object is due substantially only to translation in the beam direction.
    Type: Grant
    Filed: August 26, 2019
    Date of Patent: November 8, 2022
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai Cheng, Arno Willem Frederik Volker, Peter Martijn Toet
  • Publication number: 20220026251
    Abstract: Ultrasonic measurements of fluid properties are performed with the aid of an optical fiber or a package of optical fibers by exciting ultrasound waves at a first location along the optical fiber in the fluid by means of light from the optical fiber and detecting an effect of the ultrasound waves on light reflection or propagation in the optical fiber and/or a further optical fiber in the package at a second location along the optical fiber or at the end of the optical fiber.
    Type: Application
    Filed: December 16, 2019
    Publication date: January 27, 2022
    Inventors: Gert-Jan Adriaan VAN GROENESTIJN, Paul Louis Maria Joseph VAN NEER, Fokko Pieter WIERINGA, Arno Willem Frederik VOLKER, Lun Kai CHENG
  • Publication number: 20210389118
    Abstract: Translations of an object in a plurality of different spatial directions are measured using a plurality of interferometers to detect interference with light that has been reflected from a diffusively reflective surface, preferably using diffuse reflection from the same planar surface to measure in each of the different spatial directions. At least the interferometers that measure translation in directions that are not perpendicular to the surface each comprises a single mode fiber and a collimator configured to transmit the outgoing light to the object successively through the single mode fiber and the collimator, and to collect reflection into the single mode fiber with the collimator both along a same beam direction. It has been found that, when reflection of a beam with a beam direction at an oblique angle to a diffusively reflective surface is used, the interference resulting from translation of the object is due substantially only to translation in the beam direction.
    Type: Application
    Filed: August 26, 2019
    Publication date: December 16, 2021
    Inventors: Lun Kai CHENG, Arno Willem Frederik VOLKER, Peter Martijn TOET
  • Publication number: 20210318500
    Abstract: A laser device for optical communication comprises a first laser unit connected to a first optical fiber for supplying a transmission laser beam thereto. wherein the laser device is configured for providing a reference laser beam in addition to the transmission laser beam. For providing the reference laser beam the laser device further includes a second laser unit connected to a second optical fiber for supplying the reference laser beam to the second optical fiber. The first laser unit is configured for providing the transmission laser beam as a linear polarized beam that is polarized in a first polarization direction, and the second laser unit is configured for providing the reference laser beam as a linear polarized beam that is polarized in a second polarization direction.
    Type: Application
    Filed: July 12, 2019
    Publication date: October 14, 2021
    Inventors: Lun Kai CHENG, Kristiaan Albert BROEKENS, Hendrik DE MAN
  • Patent number: 10753774
    Abstract: A fiber optic sensor device comprising an optical fiber with a multilayer coating on the optical fiber at least in a fiber section of the optical fiber. The multilayer coating comprises a chrome layer on the optical fiber, a metal layer such as a copper layer on the chrome layer and an indium or lead layer on the metal layer. The indium or lead layer having a thickness larger than thicknesses of the chrome and metal layers, preferably with a thickness about equal to the radius of the optical fiber.
    Type: Grant
    Filed: November 25, 2016
    Date of Patent: August 25, 2020
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai Cheng, Hendrik Rendering, Oana Elena Van Der Togt
  • Patent number: 10634525
    Abstract: Local strain and optionally other properties of an optical sensing fiber are detected as a function of position along the optical sensing fiber. A light pulse with a plurality of simultaneous laser modes at mutually different wavelengths is transmitted into the optical sensing fiber. Light produced by backscattering of the light pulse in the optical fiber is fed to a multi-way coupler, via a first and second optical path with different optical path lengths. Intensities of different phase combinations of light from the paths are detected by detectors at the outputs of the multiway coupler. A data processing system computes relative phase values of light from the first and second paths for a series to time points with time delays corresponding to scattering at different positions along the fiber. In an embodiment, inelastically scattered light such as due to Brillouin scattering and/or Raman scattered light is selective passed to the detectors and detected.
    Type: Grant
    Filed: December 23, 2015
    Date of Patent: April 28, 2020
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai Cheng, Erwin Johannes Martinus Giling
  • Patent number: 10267709
    Abstract: An optical sensor interrogation system can have a light source arranged for emitting light; a first optical arrangement arranged for intercepting the light and to forward the light to an optical sensor and to receive light therefrom. The wavelength reference is adapted to provide a reference wavelength. The system can further have a second optical arrangement adapted to receive reflected light from the optical sensor, a lens system for transferring the light into a beam and a scanning assembly including a scanning unit and/or a diffractive optical element. The system can still further have a detector for receiving optical response from the scanning assembly and a data processing system. A method is used to manufacture an optical sensor interrogation system.
    Type: Grant
    Filed: May 6, 2013
    Date of Patent: April 23, 2019
    Assignee: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
    Inventors: Lun Kai Cheng, Remco Alexander Nieuwland, Peter Martijn Toet, Michiel Peter Oderwald
  • Publication number: 20180356262
    Abstract: A fiber optic sensor device comprising an optical fiber with a multilayer coating on the optical fiber at least in a fiber section of the optical fiber. The multilayer coating comprises a chrome layer on the optical fiber, a metal layer such as a copper layer on the chrome layer and an indium or lead layer on the metal layer. The indium or lead layer having a thickness larger than thicknesses of the chrome and metal layers, preferably with a thickness about equal to the radius of the optical fiber.
    Type: Application
    Filed: November 25, 2016
    Publication date: December 13, 2018
    Applicant: Nederlandse Organisatie voor toegepast-natuurweten schappelijk onderzoek TNO
    Inventors: Lun Kai CHENG, Hendrik RENDERING, Oana Elena VAN DER TOGT
  • Publication number: 20180299256
    Abstract: The thickness of an at least partially transparent layer is measured using wavelength band limited light, with a coherence length that is less than twice the thickness of the layer. Reflections from layer are fed to a 2-n coupler (n>2) via optical transmission paths of different optical length. The 2-n coupler mix light from the path into n combinations of light from the paths, each combination with a different mutual phase offset between the light from the two paths. This leads to coherent interference between reflections from the front and back of the layer when the difference between the optical lengths of the optical transmission paths compensates for the path between reflection from the front and the back. A processing circuit computes information indicative of a phase difference between the reflections from n intensities of the 2-n coupler. The use of n>2 signals makes it possible to eliminate the influence of reflection amplitude variations on the computed phase difference.
    Type: Application
    Filed: October 3, 2016
    Publication date: October 18, 2018
    Applicant: Nederlandse Organisatie voor toegepast- natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai CHENG, Teunis Cornelis VAN DEN DOOL, Willem DE JONG
  • Publication number: 20170350735
    Abstract: Local strain and optionally other properties of an optical sensing fiber are detected as a function of position along the optical sensing fiber. A light pulse with a plurality of simultaneous laser modes at mutually different wavelengths is transmitted into the optical sensing fiber. Light produced by backscattering of the light pulse in the optical fiber is fed to a multi-way coupler, via a first and second optical path with different optical path lengths. Intensities of different phase combinations of light from the paths are detected by detectors at the outputs of the multiway coupler. A data processing system computes relative phase values of light from the first and second paths for a series to time points with time delays corresponding to scattering at different positions along the fiber. In an embodiment, inelastically scattered light such as due to Brillouin scattering and/or Raman scattered light is selective passed to the detectors and detected.
    Type: Application
    Filed: December 23, 2015
    Publication date: December 7, 2017
    Inventors: Lun Kai CHENG, Erwin Johannes Martinus GILING
  • Patent number: 9791259
    Abstract: Distance to a target is sensed using a common path interferometer, wherein a first fraction of light from a light source is collected after reflection by a partially reflective element together with reflection from a target of a second fraction of light from the light source that has been transmitted by the partially reflective element. The collected light is split in two parts, both containing a part of the first fraction and part of the reflection from the target. The parts are fed through a first and second optical branch path to an input side of a three-way optical coupler respectively. Light from at three terminals on a second side of the N way coupler is fed to respective light intensity detectors. Information representing an excess distance traveled by the first fraction from detection signals determined by the least three light intensity detectors.
    Type: Grant
    Filed: April 17, 2014
    Date of Patent: October 17, 2017
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai Cheng, Ronald Antonius Jan Hagen
  • Patent number: 9677960
    Abstract: A pressure sensing assembly (1), comprising: an elongate, axially extending tube (100), having a flexible tube wall (102) that encloses an inner pressure chamber (106); and at least one sensor unit (200), including: two tube wall fixation devices (210), connected to the tube wall (102) at respective axially spaced apart positions, and configured to fix respective diameters (D, d) of the tube wall at said positions; and a first strain sensing element (220), connected to the tube wall (102) at a first position axially in between said two tube wall devices (210), and configured to provide a first signal indicative of an axial elongation of the tube wall resulting from a change in axial curvature of the tube wall when a pressure differential between the inner pressure chamber (106) and an outside environment (108) of the tube is applied across the tube wall at said first position.
    Type: Grant
    Filed: August 29, 2013
    Date of Patent: June 13, 2017
    Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
    Inventors: Lun Kai Cheng, Peter Martijn Toet, Rik Jansen
  • Patent number: 9507081
    Abstract: The invention relates to a sensor system comprising a waveguide, which waveguide comprises a grating in at least a part of the waveguide, which waveguide further comprises a coating, the coating comprising a polymer, which polymer comprises a chain, in which chain are present an aromatic group and a chemical group selected from the group of sulfonyl groups, carbonyl groups, carbonate groups, fluorocarbon groups, siloxane groups, pyridine groups and amide groups.
    Type: Grant
    Filed: June 25, 2015
    Date of Patent: November 29, 2016
    Assignee: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
    Inventors: Arjen Boersma, Theodorus Henricus Cornelus Panken, Lun Kai Cheng
  • Patent number: 9494732
    Abstract: A transversal load insensitive optical waveguide includes a primary section having a core. The waveguide may further include an outer cladding. The primary section includes a primary section surface and the outer cladding includes an exterior surface mechanically attached to the primary section surface by an interior cladding structure forming a mechanical connection. The cladding structure is such that for at least part of a distance between each two radial corresponding points on the exterior surface and the primary section surface respectively, the mechanical connection deviates from being radial, so that a radially-directed load on an exterior surface of the outer cladding is deflected by the cladding structure.
    Type: Grant
    Filed: January 25, 2013
    Date of Patent: November 15, 2016
    Assignee: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
    Inventors: Lun Kai Cheng, Peter Martijn Toet
  • Publication number: 20160076872
    Abstract: Distance to a target is sensed using a common path interferometer, wherein a first fraction of light from a light source is collected after reflection by a partially reflective element together with reflection from a target of a second fraction of light from the light source that has been transmitted by the partially reflective element. The collected light is split in two parts, both containing a part of the first fraction and part of the reflection from the target. The parts are fed through a first and second optical branch path to an input side of a three-way optical coupler respectively. Light from at three terminals on a second side of the N way coupler is fed to respective light intensity detectors. Information representing an excess distance traveled by the first fraction from detection signals determined by the least three light intensity detectors.
    Type: Application
    Filed: April 17, 2014
    Publication date: March 17, 2016
    Inventors: Lun Kai Cheng, Ronald Antonius Jan Hagen
  • Publication number: 20150330814
    Abstract: The invention relates to a sensor system comprising a waveguide, which waveguide comprises a grating in at least a part of the waveguide, which waveguide further comprises a coating, the coating comprising a polymer, which polymer comprises a chain, in which chain are present an aromatic group and a chemical group selected from the group of sulfonyl groups, carbonyl groups, carbonate groups, fluorocarbon groups, siloxane groups, pyridine groups and amide groups.
    Type: Application
    Filed: June 25, 2015
    Publication date: November 19, 2015
    Inventors: Arjen Boersma, Theodorus Henricus Cornelus Panken, Lun Kai Cheng
  • Publication number: 20150323418
    Abstract: The invention relates to a method of interrogating a multiple number of optic sensors. The method comprises the steps of providing a multiple number of optic sensors included in a single optic path and having spectrally separated resonance spectra, and providing a single interrogation unit coupled to the single optic paths. Further, the method comprises the steps of selecting a limited number of interrogation wavelengths for each optic sensor and programming a programmable laser source, included in the single interrogation unit, in a sequence of the selected interrogation wavelengths. In addition, the method comprises the steps of interrogating the optic sensors by operating the laser source in the sequence of the selected interrogation wavelengths, and performing measurements on the programmable laser source output for correcting the interrogating step.
    Type: Application
    Filed: November 22, 2013
    Publication date: November 12, 2015
    Applicant: Nederlandse Organisatie voor toegepast- natuurwetenschappelijk onderzoek TNO
    Inventors: Lun-Kai Cheng, Peter Martijn Toet