Patents by Inventor Weichuan GAO

Weichuan GAO 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: 20210080726
    Abstract: A display device includes a projector and a display that has a first surface and a second surface. The projector is configured to project image light toward the display. The display is configured to output diffused image light from the first surface and to transmit ambient light from the second surface to the first surface. The display device also includes an optical assembly that has a substrate with substantially uniform thickness. The optical assembly is configured to receive the diffused image light and transmit a portion of the diffused image light output from the first surface of the display at a first optical power. The optical assembly is also configured to receive the ambient light and transmit a portion of the ambient light through the optical assembly at a second optical power that is less than the first optical power.
    Type: Application
    Filed: March 5, 2020
    Publication date: March 18, 2021
    Inventors: Ying GENG, Brian WHEELWRIGHT, Jacques GOLLIER, Yusufu Njoni Bamaxam SULAI, Babak AMIRSOLAIMANI, Weichuan GAO, Gang LI, Mengfei WANG, Adrian TRAVIS
  • Publication number: 20210080725
    Abstract: A display device includes an optical diffuser configured to, in response to receiving image light, output diffused image light having a same polarization as the image light. The optical diffuser is also configured to transmit ambient light. The display device also includes an optical assembly that includes a substrate, a reflector coupled to the substrate, and a beam splitter coupled to the substrate. The optical assembly is configured to transmit the diffused image light at a first optical power by reflecting the diffused image light at the reflector and at the beam splitter and to transmit the transmitted ambient light at a second optical power that is less than the first optical power without reflection at the reflector or the beam splitter. A method for transmitting light through the display device is also disclosed.
    Type: Application
    Filed: March 5, 2020
    Publication date: March 18, 2021
    Inventors: Yusufu Njoni Bamaxam SULAI, Gang LI, Ying GENG, Brian WHEELWRIGHT, Jacques GOLLIER, Babak AMIRSOLAIMANI, Weichuan GAO
  • Publication number: 20210072542
    Abstract: A beam scanner of a projector-based near-eye display includes a prismatic element with a reflective polarizer and a quarter-wave waveplate (QWP). The beam-folding prismatic element receives a polarized light beam from a light source and couples the beam to a tiltable reflector, e.g. a 2D tiltable MEMS reflector, for angular scanning the beam. The light beam impinging onto the tiltable reflector is separated from the light beam reflected from the tiltable reflector by polarization. The polarization-based separation is achieved by causing the light beam to propagate through the QWP before and after impinging onto the tiltable reflector. Upon double propagation of the light beam through the QWP, the beam changes its polarization to an orthogonal polarization, which enables its separation from the impinging beam. The beam scanner may receive multiple light beams from multiple light sources. A projector and a near-eye display based on such beam scanners are also disclosed.
    Type: Application
    Filed: September 6, 2019
    Publication date: March 11, 2021
    Inventors: Brian Wheelwright, Weichuan Gao, Stephen James McNally
  • Patent number: 10935794
    Abstract: A beam scanner of a projector-based near-eye display includes a polarization volume hologram (PVH) grating. The PVH grating receives a polarized light beam from a light source and couples the beam to a tiltable reflector, e.g. a 2D tiltable MEMS reflector, for angular scanning the beam. The light beam impinging onto the tiltable reflector is separated from the light beam reflected from the tiltable reflector by polarization, due to the PVH grating diffracting light of only one handedness of polarization. Upon reflection from the tiltable reflector, the beam changes the handedness of polarization, which enables its separation from the impinging beam. The beam scanner may receive multiple light beams from multiple light sources. A projector and a near-eye display based on such beam scanners are also disclosed.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: March 2, 2021
    Assignee: FACEBOOK TECHNOLOGIES, LLC
    Inventors: Babak Amirsolaimani, Brian Wheelwright, Ying Geng, Weichuan Gao
  • Patent number: 10890776
    Abstract: A near-eye display assembly includes an electronic display for providing image light, a circular polarizer disposed downstream of the electronic display for circularly polarizing the image light, and a pancake lens disposed downstream of the circular polarizer for conveying the image light to an eyebox of the near-eye display. The circular polarizer includes a quarter-wave waveplate disposed between the electronic display and the pancake lens, and spaced apart from the electronic display and the pancake lens, to additionally defocus ghost image artifacts at the eyebox.
    Type: Grant
    Filed: February 19, 2019
    Date of Patent: January 12, 2021
    Assignee: FACEBOOK TECHNOLOGIES, LLC
    Inventors: Weichuan Gao, Marina Zannoli, Yusufu Njoni Bamaxam Sulai, Kara Emery
  • Publication number: 20200371358
    Abstract: An optical device includes a first polarization selective reflector positioned in a first orientation so that the first polarization selective reflector: receives first light in a first direction; redirects a first portion, of the first light, having a first polarization to a second direction that is non-parallel to the first direction; and receives second light in a third direction and transmit a first portion, of the second light. A second polarization selective reflector positioned in a second orientation non-parallel to the first orientation, and adjacent to the first polarization selective reflector so that the second polarization selective reflector: receives third light in a fourth direction; redirects a first portion, of the third light, having the first polarization to a fifth direction that is non-parallel to the fourth direction; and receives fourth light in a sixth direction and transmit a first portion, of the fourth light having the second polarization.
    Type: Application
    Filed: May 14, 2020
    Publication date: November 26, 2020
    Inventors: Andrew John OUDERKIRK, Tanya MALHOTRA, Brian WHEELWRIGHT, Weichuan GAO, Ying GENG
  • Publication number: 20200371389
    Abstract: An optical device includes a light source configured to provide illumination light and a waveguide. The waveguide has an input surface, an output surface distinct from and non-parallel to the input surface, and an output coupler. The waveguide is configured to receive, at the input surface, the illumination light provided by the light source and propagate the illumination light via total internal reflection. The waveguide is also configured to redirect, by the output coupler, the illumination light so that the illumination light is output from the output surface for illuminating a spatial light modulator.
    Type: Application
    Filed: April 29, 2020
    Publication date: November 26, 2020
    Inventors: Ying GENG, Jacques GOLLIER, Fenglin PENG, Weichuan GAO
  • Publication number: 20200371369
    Abstract: An optical device includes a first polarization selective reflector; a second polarization selective reflector positioned relative to the first polarization selective reflector so that the first polarization selective reflector directs first light having a first nonplanar polarization toward the second polarization selective reflector and the second polarization selective reflector directs at least a portion of the first light toward the first polarization selective reflector as second light. The optical device includes a first reflector positioned relative to the first polarization selective reflector so that the first polarization selective reflector directs at least a portion of the second light having a second nonplanar polarization toward the first reflector as third light.
    Type: Application
    Filed: May 14, 2020
    Publication date: November 26, 2020
    Inventors: Andrew John OUDERKIRK, Tanya MALHOTRA, Weichuan GAO, Ying GENG, Babak AMIRSOLAIMANI
  • Publication number: 20200371370
    Abstract: An optical device includes a first polarization selective reflector; and a second polarization selective reflector positioned relative to the first polarization selective reflector so that the first polarization selective reflector directs first light having a first polarization toward the second polarization selective reflector and the second polarization selective reflector directs second light having a second polarization toward the first polarization selective reflector. A first plane defined by the first polarization selective reflector intersects a second plane defined by the second polarization selective reflector at a first angle.
    Type: Application
    Filed: May 14, 2020
    Publication date: November 26, 2020
    Inventors: Andrew John Ouderkirk, Tanya Malhotra, Weichuan Gao, Ying Geng
  • Publication number: 20200371359
    Abstract: An optical device includes a first polarization selective reflector; a second polarization selective reflector positioned relative to the first polarization selective reflector so that the first polarization selective reflector directs first light toward the second polarization selective reflector and the second polarization selective reflector directs at least a portion of the first light toward the first polarization selective reflector as second light. The optical device includes a first reflector positioned relative to the first polarization selective reflector so that the first polarization selective reflector directs at least a portion of the second light received from the second polarization selective reflector toward the first reflector as third light and the first reflector directs at least a portion of third light toward the first polarization selective reflector.
    Type: Application
    Filed: May 14, 2020
    Publication date: November 26, 2020
    Inventors: Andrew John OUDERKIRK, Tanya MALHOTRA, Weichuan GAO, Ying GENG
  • Publication number: 20200371354
    Abstract: An optical device includes a first polarization selective reflector positioned relative to a spatial light modulator; and a first reflective assembly positioned relative to the first polarization selective reflector so that the first polarization selective reflector receives first light from the spatial light modulator and directs at least a portion of the first light having a first polarization toward the first reflective assembly as second light. The first reflective assembly receives the second light from the first polarization selective reflector and directs at least a portion of the second light toward the first polarization selective reflector as third light having a second polarization. The second polarization is distinct from the first polarization.
    Type: Application
    Filed: May 14, 2020
    Publication date: November 26, 2020
    Inventors: Andrew John OUDERKIRK, Tanya MALHOTRA, Weichuan GAO
  • Publication number: 20200341268
    Abstract: An optical lens assembly includes an optical lens and a Pancharatnam Berry Phase (“PBP”) element coupled to the optical lens. The PBP element is configured to provide chromatic aberration correction for the optical lens. An Abbe number of the PBP element and an Abbe number of the optical lens have opposite signs.
    Type: Application
    Filed: April 21, 2020
    Publication date: October 29, 2020
    Inventors: Babak AMIRSOLAIMANI, Brian WHEELWRIGHT, Yusufu Njoni Bamaxam SULAI, Weichuan GAO, Fenglin PENG, Ying GENG