Patents by Inventor Roman Aleksandrovich Okun

Roman Aleksandrovich Okun 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: 20230221570
    Abstract: The disclosure relates to augmented reality devices, namely to near-field displays, to planar waveguides with diffractive optical elements and displays based on such planar waveguides. The architecture of diffractive optical elements, performed in a waveguide and a method for operating the architecture of diffractive optical elements, eliminating image dispersion and expanding the horizontal field of view are provided. The method for operating the architecture of diffractive optical elements, expanding the vertical field of view and a device for displaying an augmented reality containing the proposed architecture of diffractive optical elements are provided. The augmented reality glasses includes the proposed augmented reality display device.
    Type: Application
    Filed: February 27, 2023
    Publication date: July 13, 2023
    Inventors: Vladimir Nikolaevich BORISOV, Aleksandr Evgenyevich ANGERVAKS, Nikolay Viktorovich MURAVYEV, Roman Aleksandrovich OKUN, Mikhail Vyacheslavovich POPOV, Gavril Nikolaevich VOSTRIKOV
  • Publication number: 20230185101
    Abstract: The disclosure relates to augmented reality devices based on a curved waveguide. An augmented reality device is provided. The augmented reality device includes a projection system to project an undistorted image, an input optical compensator located on the path of light rays out-coupled from the projection system, a curved waveguide comprising an input diffractive optical element and an output diffractive optical element. The output diffractive optical element performs the function of an output optical compensator that converts the light beams of a distorted image at the output of the waveguide into parallel light beams to output an undistorted image. Augmented reality glasses comprising an augmented reality device are also proposed. There is provided the ability to project a virtual image without aberrations, distortions and doubling of the image.
    Type: Application
    Filed: November 7, 2022
    Publication date: June 15, 2023
    Inventors: Nikolay Viktorovich MURAVEV, Aleksandr Evgenyevich ANGERVAKS, Gavril Nikolaevich VOSTRIKOV, Jaeyeol RYU, Anastasia Sergeevna PEREVOZNIKOVA, Vladimir Nikolaevich BORISOV, Roman Aleksandrovich OKUN, Kyusub KWAK, Jeonggeun YUN, Jongchul CHOI, Myongjo CHOI
  • Publication number: 20230090308
    Abstract: The disclosure relates to augmented reality devices, and more particularly, to augmented reality glasses and methods for operating the same. An augmented reality display device is provided. The augmented reality display device includes a projection system, an optical compensator positioned after the projection system, and a flexible waveguide. The flexible waveguide can change its curvature and comprises an input diffraction grating and an output diffraction grating. The optical compensator is configured to introduce pre-distortion to the image and optically zoom the image received from the projection system, the pre-distortion in the image and optical zoom of the image being opposite to those introduced by the flexible waveguide to the undistorted image in accordance with chosen radius of the flexible waveguide. Flexible diffraction grating distorts the pre-distorted image. The output diffraction grating outputs undistorted image to a user's eyes.
    Type: Application
    Filed: September 8, 2022
    Publication date: March 23, 2023
    Inventors: Vladimir Nikolaevich BORISOV, Aleksandr Evgenyevich ANGERVAKS, Nikolay Viktorovich MURAVEV, Roman Aleksandrovich OKUN, Gavril Nikolaevich VOSTRIKOV, Mikhail Vyacheslavovich POPOV, Jaeyeol RYU, Kyusub KWAK, Jeonggeun YUN, Jongchul CHOI, Myongjo CHOI
  • Publication number: 20230081473
    Abstract: The disclosure relates to augmented reality devices and methods for operating such devices. A waveguide with a diffractive optical elements-based architecture for an augmented reality device is provided. The waveguide includes a light in-coupling zone, a light expanding zone, and a light out-coupling zone. Each zone includes its own set of diffractive optical elements performing the light in-couple, light expand and light out-couple function. There are further provided an augmented reality display device and augmented reality glasses based on the waveguide with the diffractive optical elements-based architecture.
    Type: Application
    Filed: August 8, 2022
    Publication date: March 16, 2023
    Inventors: Vladimir Nikolaevich BORISOV, Aleksandr Evgenyevich ANGERVAKS, Nikolay Viktorovich MURAVEV, Roman Aleksandrovich OKUN, Gavril Nikolaevich VOSTRIKOV, Mikhail Vyacheslavovich POPOV
  • Publication number: 20230032936
    Abstract: A method and systems for simultaneous recording of superimposed holographic gratings for augmented reality devices are provided.
    Type: Application
    Filed: May 19, 2022
    Publication date: February 2, 2023
    Inventors: Aleksandr Evgenyevich ANGERVAKS, Roman Aleksandrovich OKUN, Gavril Nikolaevich VOSTRIKOV, Nikolay Viktorovich MURAVEV, Vladimir Nikolaevich BORISOV, Mikhail Vyacheslavovich POPOV
  • Publication number: 20220121031
    Abstract: Provided is a waveguide guiding light to a target area, the waveguide including an input-coupling diffractive optical element (DOE) inputting the light into the waveguide, an expanding DOE expanding the light input into the waveguide through the input-coupling DOE, an output-coupling DOE outputting the light expanded in the waveguide by the expanding DOE to an outside of the waveguide, wherein the expanding DOE includes a plurality of expanding segments, and the output-coupling DOE includes a plurality of output-coupling segments.
    Type: Application
    Filed: October 20, 2021
    Publication date: April 21, 2022
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Aleksandr Evgenyevich ANGERVAKS, Nikolay Viktorovich MURAVYEV, Vladimir Nikolaevich BORISOV, Roman Aleksandrovich OKUN, Gavril Nikolaevich VOSTRIKOV, Mikhail Vyacheslavovich POPOV
  • Publication number: 20220108458
    Abstract: A method of eye tracking includes: irradiating a light pattern, output from at least one collimated light source, to a cornea surface; detecting at least a part of the light pattern reflected from the cornea surface, the at least the part of the light pattern being guided by a sensor waveguide; obtaining a mapping image corresponding to the at least the part of the light pattern; and determining a direction of a gaze based on the obtained mapping image. The sensor waveguide used to determine the direction of the gaze is different from a waveguide for displaying output information.
    Type: Application
    Filed: October 7, 2021
    Publication date: April 7, 2022
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Gavril Nikolaevich VOSTRIKOV, Nikolay Viktorovich MURAVYEV, Vladimir Nikolaevich BORISOV, Aleksandr Evgenyevich ANGERVAKS, Roman Aleksandrovich OKUN, Mikhail Vyacheslavovich POPOV
  • Publication number: 20220091419
    Abstract: Provided is a holographic waveguide including a waveguide element configured to guide light, and a diffractive optical element including an aberration correction hologram pattern, the diffractive optical element being provided adjacent to the waveguide element and configured to correct aberrations generated in the light traveling along the waveguide element by the waveguide element.
    Type: Application
    Filed: August 25, 2021
    Publication date: March 24, 2022
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Aleksandr Evgenyevich Angervaks, Nikolay Viktorovich Muravyev, Vladimir Nikolaevich Borisov, Roman Aleksandrovich Okun, Gavril Nikolaevich Vostrikov, Mikhail Vyacheslavovich Popov