Patents by Inventor Lionel LI

Lionel LI 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: 20240142224
    Abstract: Examples of a light field metrology system for use with a display are disclosed. The light field metrology may capture images of a projected light field, and determine focus depths (or lateral focus positions) for various regions of the light field using the captured images. The determined focus depths (or lateral positions) may then be compared with intended focus depths (or lateral positions), to quantify the imperfections of the display. Based on the measured imperfections, an appropriate error correction may be performed on the light field to correct for the measured imperfections. The display can be an optical display element in a head mounted display, for example, an optical display element capable of generating multiple depth planes or a light field display.
    Type: Application
    Filed: December 29, 2023
    Publication date: May 2, 2024
    Inventors: Ivan Li Chuen YEOH, Lionel Ernest EDWIN, Samuel A. MILLER
  • Publication number: 20240126086
    Abstract: Systems and methods are disclosed for operating a head-mounted display system based on user perceptibility. The display system may be an augmented reality display system configured to provide virtual content on a plurality of depth planes by presenting the content with different amounts of wavefront divergence. Some embodiments include obtaining an image captured by an imaging device of the display system. Whether a threshold measure or more of motion blur is determined to be exhibited in one or more regions of the image. Based on a determination that the threshold measure or more of motion blur is exhibited in one or more regions of the image, one or more operating parameters of the wearable display are adjusted. Example operating parameter adjustments comprise adjusting the depth plane on which content is presented (e.g., by switching from a first depth plane to a second depth plane), adjusting a rendering quality, and adjusting power characteristics of the system.
    Type: Application
    Filed: December 22, 2023
    Publication date: April 18, 2024
    Inventors: Lionel Ernest Edwin, Ivan Li Chuen Yeoh, Samuel A. Miller, Edwin Joseph Selker, Adam Charles Carlson, Bjorn Nicolaas Servatius Vlaskamp, Paul M. Greco
  • Patent number: 11959841
    Abstract: A device and method for isolating extracellular vesicles from biofluids is disclosed. A nanoporous silicon nitride membrane is provided with a tangential flow of biofluid. A pressure gradient through the nanoporous silicon nitride membrane facilitates capture of extracellular vesicles from the tangential flow vector of biofluid. Reversal of the pressure gradient results in the release of the extracellular vesicles for subsequent collection.
    Type: Grant
    Filed: January 8, 2018
    Date of Patent: April 16, 2024
    Assignee: UNIVERSITY OF ROCHESTER
    Inventors: James Lionel McGrath, Kilean Scott Lucas, Henry Hung Li Chung
  • Publication number: 20240108217
    Abstract: A display system can include a head-mounted display configured to project light to an eye of a user to display virtual image content at different amounts of divergence and collimation. The display system can include an inward-facing imaging system images the user's eye and processing electronics that are in communication with the inward-facing imaging system and that are configured to obtain an estimate of a center of rotation of the user's eye. The display system may render virtual image content with a render camera positioned at the determined position of the center of rotation of said eye.
    Type: Application
    Filed: December 7, 2023
    Publication date: April 4, 2024
    Inventors: Samuel A. MILLER, Lomesh AGARWAL, Lionel Ernest EDWIN, Ivan Li Chuen YEOH, Daniel FARMER, Sergey Fyodorovich PROKUSHKIN, Yonatan MUNK, Edwin Joseph SELKER, Bradley Vincent STUART, Jeffrey Scott SOMMERS
  • Publication number: 20240094528
    Abstract: A wearable device may include a head-mounted display (HMD) for rendering a three-dimensional (3D) virtual object which appears to be located in an ambient environment of a user of the display. The relative positions of the HMD and one or more eyes of the user may not be in desired positions to receive, or register, image information outputted by the HMD. For example, the HMD-to-eye alignment may vary for different users and may change over time (e.g., as a user moves around and/or the HMD slips or is otherwise displaced). The wearable device may determine a relative position or alignment between the HMD and the user's eyes. Based on the relative positions, the wearable device may determine if it is properly fitted to the user, may provide feedback on the quality of the fit to the user, and may take actions to reduce or minimize effects of any misalignment.
    Type: Application
    Filed: November 28, 2023
    Publication date: March 21, 2024
    Inventors: Lionel Ernest EDWIN, Zachary C. NIENSTEDT, Ivan Li Chuen YEOH, Samuel A. MILLER, Yan XU, Jordan Alexander CAZAMIAS
  • Patent number: 11935206
    Abstract: A virtual image generation system comprises a planar optical waveguide having opposing first and second faces, an in-coupling (IC) element configured for optically coupling a collimated light beam from an image projection assembly into the planar optical waveguide as an in-coupled light beam, a first orthogonal pupil expansion (OPE) element associated with the first face of the planar optical waveguide for splitting the in-coupled light beam into a first set of orthogonal light beamlets, a second orthogonal pupil expansion (OPE) element associated with the second face of the planar optical waveguide for splitting the in-coupled light beam into a second set of orthogonal light beamlets, and an exit pupil expansion (EPE) element associated with the planar optical waveguide for splitting the first and second sets of orthogonal light beamlets into an array of out-coupled light beamlets that exit the planar optical waveguide.
    Type: Grant
    Filed: April 5, 2023
    Date of Patent: March 19, 2024
    Assignee: Magic Leap, Inc
    Inventors: Brian T. Schowengerdt, Mathew D. Watson, David Tinch, Ivan Li Chuen Yeoh, John Graham Macnamara, Lionel Ernest Edwin, Michael Anthony Klug, William Hudson Welch
  • Publication number: 20240077741
    Abstract: A dynamically actuable lens includes a substrate having a surface and a metasurface diffractive optical element (DOE) formed on the surface. The metasurface DOE includes a plurality of raised portions and defines a plurality of recesses between adjacent raised portions. The dynamically actuable lens also includes a movable cover overlying the metasurface DOE and comprising a hydrophilic material, a quantity of a fluid disposed on the movable cover, and a drive mechanism coupled to the movable cover. The drive mechanism is configured to move the movable cover toward the metasurface DOE to displace a portion of the quantity of the fluid into the plurality of recesses, thereby rendering the metasurface DOE in an “off” state, and move the movable cover away from the metasurface DOE, causing the portion of the quantity of the fluid retracting from the plurality of recesses, thereby rendering the metasurface DOE in an “on” state.
    Type: Application
    Filed: November 8, 2023
    Publication date: March 7, 2024
    Applicant: Magic Leap, Inc.
    Inventors: Ivan Li Chuen Yeoh, Lionel Ernest Edwin
  • Patent number: 10719260
    Abstract: The embodiments set forth a technique that enables the storage of data at a first data storage device. The technique includes, at the first data storage device, dividing the data to produce a first and second portion of the data, in which the first and second portions are associated with a computed exclusive or (“XOR”) value. Also, the technique includes deleting the second portion stored at the first data storage device, based at least in part on whether the computed XOR value is established. Also, the technique includes receiving a first replicated metadata, in which the first replicated metadata indicates a location of the second portion stored at the second data storage device. Furthermore, the technique includes communicating either the first portion or the second portion, to a remote computing device, based at least in part on the first replicated metadata.
    Type: Grant
    Filed: September 19, 2018
    Date of Patent: July 21, 2020
    Assignee: Apple Inc.
    Inventors: Vinay Ari, Guy D. Hemmo, Nicholas K. Puz, Lionel Li, Bernard L. Gallet
  • Publication number: 20190102103
    Abstract: The embodiments set forth a technique that enables the storage of data at a first data storage device. The technique includes, at the first data storage device, dividing the data to produce a first and second portion of the data, in which the first and second portions are associated with a computed exclusive or (“XOR”) value. Also, the technique includes deleting the second portion stored at the first data storage device, based at least in part on whether the computed XOR value is established. Also, the technique includes receiving a first replicated metadata, in which the first replicated metadata indicates a location of the second portion stored at the second data storage device. Furthermore, the technique includes communicating either the first portion or the second portion, to a remote computing device, based at least in part on the first replicated metadata.
    Type: Application
    Filed: September 19, 2018
    Publication date: April 4, 2019
    Inventors: Vinay ARI, Guy D. HEMMO, Nicholas K. PUZ, Lionel LI, Bernard L. GALLET
  • Publication number: 20180035181
    Abstract: An example embodiment includes a liquid crystal on silicon (LCOS) system. The LCOS system includes multiple pixels, a pixel voltage supply source (voltage source), an external buffer, and a local buffer. The voltage source is configured to supply an analog ramp to the pixels. The external buffer is configured to buffer the voltage source from the pixels. The local buffer is configured to buffer the external buffer from a subset of pixels of the plurality of pixels.
    Type: Application
    Filed: June 12, 2017
    Publication date: February 1, 2018
    Inventors: Jonathan B. Ashbrook, Lionel Li, Brian R. Carey, Nicholas F. Jungels
  • Patent number: 9681207
    Abstract: An example embodiment includes a liquid crystal on silicon (LCOS) system. The LCOS system includes multiple pixels, a pixel voltage supply source (voltage source), an external buffer, and a local buffer. The voltage source is configured to supply an analog ramp to the pixels. The external buffer is configured to buffer the voltage source from the pixels. The local buffer is configured to buffer the external buffer from a subset of pixels of the plurality of pixels.
    Type: Grant
    Filed: January 24, 2013
    Date of Patent: June 13, 2017
    Assignee: FINISAR CORPORATION
    Inventors: Jonathan B. Ashbrook, Lionel Li, Brian R. Carey, Nicholas F. Jungels
  • Patent number: 9310420
    Abstract: An example embodiment includes a continuity testing method of a pixel in a liquid crystal on silicon integrated circuit. The method includes writing a first voltage to a pixel. The pixel is isolated and a wire that is selectively coupled to the pixel is discharged. The method also includes enabling a sensing amplifier configured to sense voltage on the wire. The pixel is electrically coupled to the wire and a resultant voltage on the wire is sensed.
    Type: Grant
    Filed: January 24, 2013
    Date of Patent: April 12, 2016
    Assignee: FINISAR CORPORATION
    Inventors: Jonathan B. Ashbrook, Lionel Li, Brian R. Carey
  • Patent number: 9191123
    Abstract: A circuit may include a photodiode configured to receive an optical signal and convert the optical signal to a current signal. The circuit may also include a transimpedance amplifier coupled to the photodiode and configured to convert the current signal to a voltage signal. The circuit may also include an equalizer coupled to the transimpedance amplifier and configured to equalize the voltage signal to at least partially compensate for a loss of a high frequency component of the optical signal. The equalizer and the transimpedance amplifier may be housed within a single integrated circuit.
    Type: Grant
    Filed: March 9, 2015
    Date of Patent: November 17, 2015
    Assignee: FINISAR CORPORATION
    Inventors: Georgios Kalogerakis, Lionel Li, The'Linh Nguyen
  • Publication number: 20150180587
    Abstract: A circuit may include a photodiode configured to receive an optical signal and convert the optical signal to a current signal. The circuit may also include a transimpedance amplifier coupled to the photodiode and configured to convert the current signal to a voltage signal. The circuit may also include an equalizer coupled to the transimpedance amplifier and configured to equalize the voltage signal to at least partially compensate for a loss of a high frequency component of the optical signal. The equalizer and the transimpedance amplifier may be housed within a single integrated circuit.
    Type: Application
    Filed: March 9, 2015
    Publication date: June 25, 2015
    Inventors: Georgios Kalogerakis, Lionel Li, The'Linh Nguyen
  • Patent number: 8977139
    Abstract: A circuit may include a photodiode configured to receive an optical signal and convert the optical signal to a current signal. The circuit may also include a transimpedance amplifier coupled to the photodiode and configured to convert the current signal to a voltage signal. The circuit may also include an equalizer coupled to the transimpedance amplifier and configured to equalize the voltage signal to at least partially compensate for a loss of a high frequency component of the optical signal. The equalizer and the transimpedance amplifier may be housed within a single integrated circuit.
    Type: Grant
    Filed: October 29, 2012
    Date of Patent: March 10, 2015
    Assignee: Finisar Corporation
    Inventors: Georgios Kalogerakis, Lionel Li, The'linh Nguyen
  • Publication number: 20140204299
    Abstract: An example embodiment includes a liquid crystal on silicon (LCOS) system. The LCOS system includes multiple pixels, a pixel voltage supply source (voltage source), an external buffer, and a local buffer. The voltage source is configured to supply an analog ramp to the pixels. The external buffer is configured to buffer the voltage source from the pixels. The local buffer is configured to buffer the external buffer from a subset of pixels of the plurality of pixels.
    Type: Application
    Filed: January 24, 2013
    Publication date: July 24, 2014
    Applicant: FINISAR CORPORATION
    Inventors: Jonathan B. Ashbrook, Lionel Li, Brian R. Carey, Nicholas F. Jungels
  • Publication number: 20140204298
    Abstract: An example embodiment includes a continuity testing method of a pixel in a liquid crystal on silicon integrated circuit. The method includes writing a first voltage to a pixel. The pixel is isolated and a wire that is selectively coupled to the pixel is discharged. The method also includes enabling a sensing amplifier configured to sense voltage on the wire. The pixel is electrically coupled to the wire and a resultant voltage on the wire is sensed.
    Type: Application
    Filed: January 24, 2013
    Publication date: July 24, 2014
    Applicant: FINISAR CORPORATION
    Inventors: Jonathan B. Ashbrook, Lionel Li, Brian R. Carey
  • Publication number: 20140119746
    Abstract: A circuit may include a photodiode configured to receive an optical signal and convert the optical signal to a current signal. The circuit may also include a transimpedance amplifier coupled to the photodiode and configured to convert the current signal to a voltage signal. The circuit may also include an equalizer coupled to the transimpedance amplifier and configured to equalize the voltage signal to at least partially compensate for a loss of a high frequency component of the optical signal. The equalizer and the transimpedance amplifier may be housed within a single integrated circuit.
    Type: Application
    Filed: October 29, 2012
    Publication date: May 1, 2014
    Applicant: FINISAR CORPORATION
    Inventors: Georgios KALOGERAKIS, Lionel LI, The'linh NGUYEN