Patents by Inventor Fedor Dimov

Fedor Dimov 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: 11815681
    Abstract: Systems and methods for reducing glare from a heads-up display (HUD). Internal and external antireflective coatings may be provided on interior and outer surfaces of glass layers surrounding a holographic polymer layer. A substrate guided hologram may be integrated into a HUD to diffract and direct external radiation to the edge of a HUD. An arrangement for forming a substrate guided hologram includes an array of reflectors and a shaped glass block. Antireflective coated glass layers may be index-matched to opposite sides of a holographic polymer film prior to recording a reflection hologram. An inactive playback beam may be used to monitor the diffraction efficiency of a reflection hologram and of a spurious transmission hologram with the recording of the reflection hologram to maximize the difference between the diffraction efficiencies of useful reflection hologram and spurious transmission hologram.
    Type: Grant
    Filed: October 27, 2020
    Date of Patent: November 14, 2023
    Assignee: LUMINIT LLC
    Inventor: Fedor Dimov
  • Publication number: 20220128814
    Abstract: Systems and methods for reducing glare from a heads-up display (HUD). Internal and external antireflective coatings may be provided on interior and outer surfaces of glass layers surrounding a holographic polymer layer. A substrate guided hologram may be integrated into a HUD to diffract and direct external radiation to the edge of a HUD. An arrangement for forming a substrate guided hologram includes an array of reflectors and a shaped glass block. Antireflective coated glass layers may be index-matched to opposite sides of a holographic polymer film prior to recording a reflection hologram. An inactive playback beam may be used to monitor the diffraction efficiency of a reflection hologram and of a spurious transmission hologram with the recording of the reflection hologram to maximize the difference between the diffraction efficiencies of useful reflection hologram and spurious transmission hologram.
    Type: Application
    Filed: October 27, 2020
    Publication date: April 28, 2022
    Inventor: FEDOR DIMOV
  • Patent number: 11294178
    Abstract: A transparent holographic diffuser screen that diffracts the light beams of a digital light projector, which focuses a real image in the plane of the aforementioned transparent holographic diffuser screen, which redirects the light to an eyebox at a pre-determined viewing position generating as a set of diffracted diffused beams that can be seen from the eyebox as a flat in-plane image. The transparent holographic diffuser screen may be used to provide either a highest luminance or a largest eyebox. Potential applications include use for automotive applications, which may include applications for displaying videos, playing games, and video conference apps.
    Type: Grant
    Filed: August 30, 2021
    Date of Patent: April 5, 2022
    Assignee: LUMINIT LLC
    Inventors: Fedor Dimov, Maung Myo Kyaw, John Trung Tran, Angela Liu
  • Publication number: 20220099971
    Abstract: This application relates to a see-through head-mounted display using recorded substrate-guided holographic continuous lens (SGHCL) and a microdisplay with narrow spectral band source or laser illumination. The high diffraction efficiency of the volume SGHCL creates very high luminance of the virtual image.
    Type: Application
    Filed: February 25, 2020
    Publication date: March 31, 2022
    Inventors: FEDOR DIMOV, JUAN RUSSO
  • Publication number: 20210302731
    Abstract: This application is directed to a compact, lightweight, low power, front-lit monochrome or full-color LCOS display assembly featuring a volume substrate-guided hologram (SGH) optic based on thin and transparent holographic components (THC) with laser-based illumination.
    Type: Application
    Filed: March 31, 2020
    Publication date: September 30, 2021
    Inventor: FEDOR DIMOV
  • Publication number: 20210263319
    Abstract: This application relates to a see-through head-mounted display using recorded substrate-guided holographic continuous lens (SGHCL) and a scanning laser beam that creates an image on a diffuser or a microdisplay with laser illumination. The high diffraction efficiency of the volume SGHCL creates very high luminance of the virtual image.
    Type: Application
    Filed: November 6, 2020
    Publication date: August 26, 2021
    Inventor: FEDOR DIMOV
  • Publication number: 20210263316
    Abstract: This application relates to a see-through head-mounted display using recorded substrate-guided holographic continuous lens (SGHCL) and a microdisplay with narrow spectral band source or laser illumination. The high diffraction efficiency of the volume SGHCL creates very high luminance of the virtual image.
    Type: Application
    Filed: February 25, 2020
    Publication date: August 26, 2021
    Inventors: FEDOR DIMOV, JUAN RUSSO
  • Patent number: 10890417
    Abstract: The Compound Eye Laser Illumination Seeker (CELIS) is a tracking system used to guide items to point at a laser-illuminated target, with the illumination being either pulsed or modulated at either a specific rate or within a range of rates. The CELIS, comprising a multiaperture compound receiver optics (MACRO) to collect the signal, a set of light guides to combine the received light into light representing individual angular sectors and redirect it to detectors whose output represents the illumination signal in that quadrant, a spectral filter, an angle filter, the set of detectors, and processing electronics. The output is an electronic signal indicating the angular difference between the pointing direction of the signal and the pointing direction of the tracking device.
    Type: Grant
    Filed: May 7, 2019
    Date of Patent: January 12, 2021
    Assignee: LUMINIT LLC
    Inventors: Jun Ai, Fedor Dimov, Russell Kurtz, Emmanuel Gorce
  • Publication number: 20200378725
    Abstract: The Compound Eye Laser Illumination Seeker (CELIS) is a tracking system used to guide items to point at a laser-illuminated target, with the illumination being either pulsed or modulated at either a specific rate or within a range of rates. The CELIS, comprising a multiaperture compound receiver optics (MACRO) to collect the signal, a set of light guides to combine the received light into light representing individual angular sectors and redirect it to detectors whose output represents the illumination signal in that quadrant, a spectral filter, an angle filter, the set of detectors, and processing electronics. The output is an electronic signal indicating the angular difference between the pointing direction of the signal and the pointing direction of the tracking device.
    Type: Application
    Filed: May 7, 2019
    Publication date: December 3, 2020
    Inventors: Jun Ai, Fedor Dimov, Russell Kurtz, Emmanuel Gorce
  • Patent number: 10788610
    Abstract: A method for design and fabrication of holographic optical elements for a compact holographic sight is proposed. The method includes use of ray-trace software to design holographic elements having optical power using an intermediate hologram with parameters obtained through minimization of the merit function defining image quality.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: September 29, 2020
    Assignee: Luminit LLC
    Inventors: Dmitry Voloschenko, Engin B. Arik, Fedor Dimov, Kevin Yu, Khin Swe Yin, Neven Rakuljic
  • Publication number: 20200142106
    Abstract: A substrate-guided holographic diffuser has a light-guide section configured to in-couple light and transmit the light within itself via total internal reflection. It can also have a brightness enhancement section that recycles non-diffracted light within the light-guide section. A hologram section that receives light from the light-guide section has a holographic structure defining acceptance conditions and is positioned relative to the internally reflected light such that the internally reflected light meets the acceptance conditions of the holographic structure. The internally reflected light is out-coupled by the holographic structure as a projected image of light scattered from a diffuser.
    Type: Application
    Filed: November 26, 2019
    Publication date: May 7, 2020
    Inventors: Dimitry VOLOSCHENKO, Fedor DIMOV, Kevin YU, Engin ARIK
  • Patent number: 10591804
    Abstract: A plug-and-play fiber-coupled nonlinear optical quantum wave-converter, optimized for quantum communications, comprises a commercial periodically-poled, waveguide-based, nonlinear optical chip, coupled with a pair of substrate-guided holographic (SGH) wavelength division multiplexers (WDM) and a pair of SGH filters; it offers bidirectional difference frequency conversion (DFG) and sum frequency conversion (SFG) simultaneously in a single packaged device.
    Type: Grant
    Filed: March 30, 2016
    Date of Patent: March 17, 2020
    Assignee: Luminit LLC
    Inventors: Jun Ai, Fedor Dimov, Xiaowei Xia, Selim Shahriar, Russell Kurtz, Chris Griffo
  • Publication number: 20200033608
    Abstract: The present invention is a Substrate guided hologram that allows a wider range of optical devices based on SGHs with improved parameters such as larger NTE displays with a wider field of view, thinner substrates and more compact form factors. The Substrate-Guided Hologram of the subject invention includes a holographic lens which is positioned at an angle to and spaced from a holographic grating, with a mirror located at a diagonal to each of the lens and the grating.
    Type: Application
    Filed: October 2, 2019
    Publication date: January 30, 2020
    Inventors: Fedor DIMOV, Neven RAKULJIC, Seth COE-SULLIVAN
  • Publication number: 20200018883
    Abstract: A method for design and fabrication of holographic optical elements for a compact holographic sight is proposed. The method includes use of ray-trace software to design holographic elements having optical power using an intermediate hologram with parameters obtained through minimization of the merit function defining image quality.
    Type: Application
    Filed: September 12, 2019
    Publication date: January 16, 2020
    Inventors: DMITRY VOLOSCHENKO, ENGIN B. ARIK, FEDOR DIMOV, KEVIN YU, KHIN (A/K/A LILLIAN) SWE YIN, NEVEN RAKULJIC
  • Publication number: 20200019118
    Abstract: Multiple pairs of substrate-guided wave-based holograms (SGWHs) are laminated to a common thin substrate to form a transparent substrate-guided wave-based holographic CHMSL (SGWHC) that diffracts playback LED illumination over a wide angular range. This device is made pursuant to a technique that includes the steps of recording a first set of SGWHs with one setup, that upon playback, will couple and guide the diffracted light inside the substrate, and a second set of SGWHs recorded with another setup, that will diffract and couple the guided light out.
    Type: Application
    Filed: August 30, 2019
    Publication date: January 16, 2020
    Inventors: FEDOR DIMOV, ENGIN ARIK, JUN AI, XIAOWEI XIA, NEVEN RAKULJIC, CHRIS GRIFFO, JAY PERLIN, LEO KATSENELENSON, STANLEY TAFENG KAO, CHINMAYA DHARMADHIKARI
  • Patent number: 10534114
    Abstract: A substrate-guided holographic diffuser has a light-guide section configured to in-couple light and transmit the light within itself via total internal reflection. It can also have a brightness enhancement section that recycles non-diffracted light within the light-guide section. A hologram section that receives light from the light-guide section has a holographic structure defining acceptance conditions and is positioned relative to the internally reflected light such that the internally reflected light meets the acceptance conditions of the holographic structure. The internally reflected light is out-coupled by the holographic structure as a projected image of light scattered from a diffuser.
    Type: Grant
    Filed: December 29, 2011
    Date of Patent: January 14, 2020
    Assignee: Luminit LLC.
    Inventors: Dmitry Voloschenko, Fedor Dimov, Kevin Yu, Engin Arik
  • Patent number: 10473938
    Abstract: The present invention is a Substrate guided hologram that allows a wider range of optical devices based on SGHs with improved parameters such as larger NTE displays with a wider field of view, thinner substrates and more compact form factors. The Substrate-Guided Hologram of the subject invention includes a holographic lens which is positioned at an angle to and spaced from a holographic grating, with a mirror located at a diagonal to each of the lens and the grating.
    Type: Grant
    Filed: December 29, 2017
    Date of Patent: November 12, 2019
    Assignee: LUMINIT LLC
    Inventors: Fedor Dimov, Neven Rakuljic, Seth Coe-Sullivan
  • Patent number: 10451786
    Abstract: A method for design and fabrication of holographic optical elements for a compact holographic sight is proposed. The method includes use of ray-trace software to design holographic elements having optical power using an intermediate hologram with parameters obtained through minimization of the merit function defining image quality.
    Type: Grant
    Filed: August 14, 2018
    Date of Patent: October 22, 2019
    Assignee: Luminit, LLC
    Inventors: Dmitry Voloschenko, Engin B. Arik, Fedor Dimov, Kevin Yu, Khin Swe Yin, Neven Rakuljic
  • Patent number: 10452025
    Abstract: Multiple pairs of substrate-guided wave-based holograms (SGWHs) are laminated to a common thin substrate to form a transparent substrate-guided wave-based holographic CHMSL (SGWHC) that diffracts playback LED illumination over a wide angular range. This device is made pursuant to a technique that includes the steps of recording a first set of SGWHs with one setup, that upon playback, will couple and guide the diffracted light inside the substrate, and a second set of SGWHs recorded with another setup, that will diffract and couple the guided light out.
    Type: Grant
    Filed: May 5, 2014
    Date of Patent: October 22, 2019
    Assignee: LUMINIT LLC
    Inventors: Fedor Dimov, Engin Arik, Jun Ai, Xiaowei Xia, Neven Rakuljlc, Chris Griffo, Jay Perlin, Leo Katsenelenson, Stanley Tafeng Kao, Chinmaya Dharmadhikari
  • Publication number: 20190317261
    Abstract: A holographic substrate-guided wave-based see-through display can has a microdisplay, capable of emitting light in the form of an image. The microdisplay directs its output to a holographic optical element, capable of accepting the light in the form of an image. The microdisplay directs its output to a holographic optical element, capable of accepting the image from the microdisplay, and capable of transmitting the light. The holographic optical element couples its output to an elongate substrate, capable of accepting the light from the holographic lens at a first location, and transmitting the light along a length of the substrate by total internal reflection to a second location, the elongate substrate being capable of transmitting the accepted light from the second location.
    Type: Application
    Filed: March 18, 2019
    Publication date: October 17, 2019
    Applicant: Luminit, LLC
    Inventors: Fedor Dimov, Tin Aye, Kevin Yu, Svetlana Soboleva, Khin Swe Yin, Myo Kyaw, Dmitry Voloschenko