Patents by Inventor Simon CAREAU

Simon CAREAU 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: 20230229032
    Abstract: Liquid crystal (LC) beam control devices using a dispersion shaped (DS) half wave plate (HWP), with specific physical characteristics, allows the broadened beam to maintain significantly better the color cohesion. Beneficial aspects of using a HWP with an appropriate thickness and birefringence index which makes it inefficient in the blue wavelength spectrum, therefore reducing the blue photon depletion in the center of the broadened beam is described herein. Combinations of an homeotropic LC cell and DS HWP structures for reduced color separation, faster relaxation time and reduced ground state scattering is further described herein.
    Type: Application
    Filed: May 4, 2021
    Publication date: July 20, 2023
    Inventors: Tigran GALSTIAN, Armen ZOHRABYAN, Simon CAREAU
  • Patent number: 11703721
    Abstract: Liquid crystal light beam control devices and their manufacture are described. Beneficial aspects of beam broadening devices employed for controlled illumination and architectural purposes are presented including improving beam divergence control, improving beam broadening dynamic range control, beam divergence preconditioning, improving projected beam intensity uniformity.
    Type: Grant
    Filed: October 4, 2018
    Date of Patent: July 18, 2023
    Inventors: Vladimir Presniakov, Karen Asatryan, Armen Zohrabyan, Tigran Galstian, Aram Bagramyan, Simon Careau
  • Patent number: 11156895
    Abstract: A liquid crystal optical device providing refractive Fresnel lens type element control over light passing through an aperture is provided. The device includes a layer of liquid crystal material contained by flat substrates having flat alignment layers; and an arrangement of electrodes configured to provide a spatially varying voltage distribution within a number of lensing zones within said liquid crystal layer. The arrangement of electrodes includes ring-shaped electrodes defining boundaries between Fresnel lensing zones. The liquid crystal optical device is structured to provide a spatial variation in the optical phase delay with an abrupt transition at a boundary between lensing zones to increase the effective aperture of the optical device.
    Type: Grant
    Filed: November 19, 2018
    Date of Patent: October 26, 2021
    Inventors: Tigran Galstian, Karen Asatryan, Vladimir Presniakov, Aram Bagramyan, Armen Zohrabyan, Simon Careau
  • Patent number: 10503042
    Abstract: A liquid crystal optical device is provided including at least two LC cells. A first LC cell layer has a predominant director orientation imparting a transversally non-uniform phase delay to a first polarization of an unpolarized incident light field passing therethrough while incident light of a second polarization orthogonal to the first light polarization passes therethrough undergoing transversally uniform phase delay. The first LC cell is configured to project a center extraordinary ray onto an optical axis of the device at the image surface. A second LC cell layer has a predominant director oriented orthogonally to the other predominant director in a plane perpendicular to the optical axis. The second LC layer imparts a transversally non-uniform phase delay to the second polarization of the incident light passing therethrough, the second LC cell being configured to project a center ordinary ray onto the optical axis at the image surface.
    Type: Grant
    Filed: March 12, 2014
    Date of Patent: December 10, 2019
    Assignee: LENSVECTOR INC.
    Inventors: Peter Clark, Tigran Galstian, Karen Asatryan, Vladimir Presniakov, Aram Bagramyan, Amir Tork, Armen Zohrabyan, Simon Careau
  • Publication number: 20190086761
    Abstract: A liquid crystal optical device providing refractive Fresnel lens type element control over light passing through an aperture is provided. The device includes a layer of liquid crystal material contained by flat substrates having flat alignment layers; and an arrangement of electrodes configured to provide a spatially varying voltage distribution within a number of lensing zones within said liquid crystal layer. The arrangement of electrodes includes ring-shaped electrodes defining boundaries between Fresnel lensing zones. The liquid crystal optical device is structured to provide a spatial variation in the optical phase delay with an abrupt transition at a boundary between lensing zones to increase the effective aperture of the optical device.
    Type: Application
    Filed: November 19, 2018
    Publication date: March 21, 2019
    Inventors: Tigran GALSTIAN, Karen ASATRYAN, Vladimir PRESNIAKOV, Aram BAGRAMYAN, Armen ZOHRABYAN, Simon CAREAU
  • Publication number: 20190033669
    Abstract: Liquid crystal light beam control devices and their manufacture are described. Beneficial aspects of beam broadening devices employed for controlled illumination and architectural purposes are presented including improving beam divergence control, improving beam broadening dynamic range control, beam divergence preconditioning, improving projected beam intensity uniformity.
    Type: Application
    Filed: October 4, 2018
    Publication date: January 31, 2019
    Inventors: Vladimir Presniakov, Karen Asatryan, Armen Zohrabyan, Tigran Galstian, Aram Bagramyan, Simon Careau
  • Publication number: 20190025657
    Abstract: Liquid crystal light beam control devices and their manufacture are described. Beneficial aspects of beam broadening devices employed for controlled illumination and architectural purposes are presented including improving beam divergence control, improving beam broadening dynamic range control, beam divergence preconditioning, improving projected beam intensity uniformity and reducing color separation in the projected beam. Both beam control devices having in-plane and homeotropic ground state liquid crystal alignment are presented.
    Type: Application
    Filed: May 25, 2016
    Publication date: January 24, 2019
    Inventors: Vladimir PRESNIAKOV, Karen ASATRYAN, Armen ZOHRABYAN, Tigran GALSTIAN, Aram BAGRAMYAN, Simon CAREAU
  • Patent number: 10126607
    Abstract: Liquid crystal light beam control devices and their manufacture are described. Beneficial aspects of beam broadening devices employed for controlled illumination and architectural purposes are presented including improving beam divergence control, improving beam broadening dynamic range control, beam divergence preconditioning, improving projected beam intensity uniformity.
    Type: Grant
    Filed: March 6, 2018
    Date of Patent: November 13, 2018
    Assignee: LENSVECTOR INC.
    Inventors: Vladimir Presniakov, Karen Asatryan, Armen Zohrabyan, Tigran Galstian, Aram Bagramyan, Simon Careau
  • Publication number: 20180196318
    Abstract: Liquid crystal light beam control devices and their manufacture are described. Beneficial aspects of beam broadening devices employed for controlled illumination and architectural purposes are presented including improving beam divergence control, improving beam broadening dynamic range control, beam divergence preconditioning, improving projected beam intensity uniformity.
    Type: Application
    Filed: March 6, 2018
    Publication date: July 12, 2018
    Inventors: Vladimir PRESNIAKOV, Karen ASATRYAN, Armen ZOHRABYAN, Tigran GALSTIAN, Aram BAGRAMYAN, Simon CAREAU
  • Patent number: 9833312
    Abstract: A liquid crystal optical device is provided, including a layered structure including at least two support substrates. An external hole patterned control electrode is provided on one of the substrates and has an aperture. An internal hole patterned control electrode is provided on one of the substrates within the aperture, the internal and outer control electrodes being separated by a gap, which forms part of the aperture. A weakly conductive material is provided on one of the substrates over the aperture. A planar transparent electrode is provided on another one of the substrates. An alignment surface is provided on the substrates over the electrodes. A layer of liquid crystal material is contained by the substrates and in contact with the alignment surface of the substrates. A floating transparent electrode is provided on a side of one of the substrates opposite the outer and the internal hole patterned electrode.
    Type: Grant
    Filed: December 18, 2013
    Date of Patent: December 5, 2017
    Assignee: LENSVECTOR INC.
    Inventors: Tigran Galstian, Karen Asatryan, Vladimir Presniakov, Aram Bagramyan, Amir Tork, Armen Zohrabyan, Simon Careau
  • Patent number: 9612504
    Abstract: A spatially non-uniform electrode structure is proposed for controlling a spatially non-uniform electric field driving a tunable liquid crystal lens. The spatially non-uniform electrode structure enables the generation of a predetermined spatially non-uniform electric field profile where complex capacitive coupling between multiple different electrically floating neighboring electrode segments is employed for the generation of the electrical field of desired form by supplying an initial electric potential to a limited number of electrodes.
    Type: Grant
    Filed: November 12, 2013
    Date of Patent: April 4, 2017
    Assignee: LENSVECTOR INC.
    Inventors: Tigran Galstian, Vladimir Presniakov, Karen Asatryan, Amir Tork, Armen Zohrabyan, Aram Bagramyan, Simon Careau
  • Publication number: 20160041449
    Abstract: A liquid crystal optical device is provided including at least two LC cells. A first LC cell layer has a predominant director orientation imparting a transversally non-uniform phase delay to a first polarization of an unpolarized incident light field passing therethrough while incident light of a second polarization orthogonal to the first light polarization passes therethrough undergoing transversally uniform phase delay. The first LC cell is configured to project a center extraordinary ray onto an optical axis of the device at the image surface. A second LC cell layer has a predominant director oriented orthogonally to the other predominant director in a plane perpendicular to the optical axis. The second LC layer imparts a transversally non-uniform phase delay to the second polarization of the incident light passing therethrough, the second LC cell being configured to project a center ordinary ray onto the optical axis at the image surface.
    Type: Application
    Filed: March 12, 2014
    Publication date: February 11, 2016
    Inventors: Peter Clark, Tigran Galstian, Karen Asatryan, Vladimir Presniakov, Aram Bagramyan, Amir Tork, Armen Zohrabyan, Simon Careau
  • Publication number: 20160000557
    Abstract: A liquid crystal optical device is provided, including a layered structure including at least two support substrates. An external hole patterned control electrode is provided on one of the substrates and has an aperture. An internal hole patterned control electrode is provided on one of the substrates within the aperture, the internal and outer control electrodes being separated by a gap, which forms part of the aperture. A weakly conductive material is provided on one of the substrates over the aperture. A planar transparent electrode is provided on another one of the substrates. An alignment surface is provided on the substrates over the electrodes. A layer of liquid crystal material is contained by the substrates and in contact with the alignment surface of the substrates. A floating transparent electrode is provided on a side of one of the substrates opposite the outer and the internal hole patterned electrode.
    Type: Application
    Filed: December 18, 2013
    Publication date: January 7, 2016
    Applicant: LENSVECTOR INC.
    Inventors: Tigran GALSTIAN, Karen ASATRYAN, Vladimir PRESNIAKOV, Aram BAGRAMYAN, Amir TORK, Armen ZOHRABYAN, Simon CAREAU
  • Patent number: 9201285
    Abstract: An electrode structure is proposed for controlling a spatially non-uniform electric field driving a tunable liquid crystal lens or beam steering device. The spatially non-uniform electrode structure enables the generation of a predetermined spatially non-uniform electric field profile where complex capacitive coupling between multiple different electrically floating neighboring electrode segments is employed for the generation of the electrical field of desired form by supplying an initial electric potential to a limited number of electrodes.
    Type: Grant
    Filed: November 11, 2013
    Date of Patent: December 1, 2015
    Assignee: LENSVECTOR INC.
    Inventors: Tigran Galstian, Vladimir Presniakov, Karen Asatryan, Amir Tork, Armen Zohrabyan, Aram Bagramyan, Simon Careau
  • Publication number: 20150301427
    Abstract: A spatially non-uniform electrode structure is proposed for controlling a spatially non-uniform electric field driving a tunable liquid crystal lens. The spatially non-uniform electrode structure enables the generation of a predetermined spatially non-uniform electric field profile where complex capacitive coupling between multiple different electrically floating neighboring electrode segments is employed for the generation of the electrical field of desired form by supplying an initial electric potential to a limited number of electrodes.
    Type: Application
    Filed: November 12, 2013
    Publication date: October 22, 2015
    Applicant: LENSVECTOR INC.
    Inventors: Tigran GALSTIAN, Vladimir PRESNIAKOV, Karen ASATRYAN, Amir TORK, Armen ZOHRABYAN, Aram BAGRAMYAN, Simon CAREAU