Patents by Inventor Noah Bronstein

Noah Bronstein 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: 20260050068
    Abstract: Light detection and ranging (lidar) technology is capable of using light to measure the distance to objects in a field of view. A lidar system typically comprises a lidar transmitter, a lidar receiver, and a clock. The lidar transmitter transmits light into the field of view, and the light is reflected back to the lidar receiver after striking objects in the field of view. Techniques are described herein for encoding channel information into light transmissions so that the lidar receiver can use the encoded channel information to reduce the out-of-channel noise in channel-specific photodetection signals.
    Type: Application
    Filed: August 10, 2023
    Publication date: February 19, 2026
    Applicant: AEye, Inc.
    Inventors: Noah Bronstein, Allan Steinhardt, Hod Finkelstein, John Stockton, Ankur Anchlia
  • Patent number: 12482055
    Abstract: Techniques for resolving a range to an object using histograms are disclosed. A frame collection time for a depth-image frame is divided into a plurality of different collection subframes, where each collection subframe encompasses a plurality of light pulse cycles. Counts of accumulated photon detections by a pixel during the different collection subframes are allocated to histogram bins using different bin maps for the collection subframes. Each bin map defines a different mapping of time to bins for the light pulse cycles within its applicable collection subframe, and each mapping defines a bin width for its bins so that its bin map covers a maximum detection range for the depth-image frame. A range to an object in the pixel's field of view (within the maximum detection range) can be resolved according to a combination of peak bin positions in the histogram data with respect to the different collection subframes.
    Type: Grant
    Filed: December 15, 2022
    Date of Patent: November 25, 2025
    Assignee: AEye. Inc.
    Inventors: Hod Finkelstein, Noah Bronstein, Allan Steinhardt
  • Publication number: 20230196501
    Abstract: Techniques for resolving a range to an object using histograms are disclosed. A frame collection time for a depth-image frame is divided into a plurality of different collection subframes, where each collection subframe encompasses a plurality of light pulse cycles. Counts of accumulated photon detections by a pixel during the different collection subframes are allocated to histogram bins using different bin maps for the collection subframes. Each bin map defines a different mapping of time to bins for the light pulse cycles within its applicable collection subframe, and each mapping defines a bin width for its bins so that its bin map covers a maximum detection range for the depth-image frame. A range to an object in the pixel's field of view (within the maximum detection range) can be resolved according to a combination of peak bin positions in the histogram data with respect to the different collection subframes.
    Type: Application
    Filed: December 15, 2022
    Publication date: June 22, 2023
    Inventors: Hod Finkelstein, Noah Bronstein, Allan Steinhardt
  • Patent number: 11227964
    Abstract: Luminescent solar concentrators in accordance with various embodiments of the invention can be designed to minimize photon thermalization losses and incomplete light trapping using various components and techniques. Cadmium selenide core, cadmium sulfide shell (CdSe/CdS) quantum dot (“QD”) technology can be implemented in such devices to allow for near-unity QDs and sufficiently large Stokes shifts. Many embodiments of the invention include a luminescent solar concentrator that incorporates CdSe/CdS quantum dot luminophores. In further embodiments, anisotropic luminophore emission can be implemented through metasurface/plasmonic antenna coupling. In several embodiments, red-shifted luminophores are implemented. Additionally, top and bottom spectrally-selective filters, such as but not limited to selectively-reflective metasurface mirrors and polymeric stack filters, can be implemented to enhance the photon collection efficiency.
    Type: Grant
    Filed: August 27, 2018
    Date of Patent: January 18, 2022
    Assignees: California Institute of Technology, The Regents of the University of California, The Board of Trustees of the University of Illinois
    Inventors: David R. Needell, Noah Bronstein, Armand P. Alivisatos, Harry A. Atwater, Ralph Nuzzo, Haley Bauser, Ognjen Ilic, Junwen He, Lu Xu, Colton Bukowsky, Sunita Darbe, Zach Nett, Brent Koscher
  • Publication number: 20190067504
    Abstract: Luminescent solar concentrators in accordance with various embodiments of the invention can be designed to minimize photon thermalization losses and incomplete light trapping using various components and techniques. Cadmium selenide core, cadmium sulfide shell (CdSe/CdS) quantum dot (“QD”) technology can be implemented in such devices to allow for near-unity QDs and sufficiently large Stokes shifts. Many embodiments of the invention include a luminescent solar concentrator that incorporates CdSe/CdS quantum dot luminophores. In further embodiments, anisotropic luminophore emission can be implemented through metasurface/plasmonic antenna coupling. In several embodiments, red-shifted luminophores are implemented. Additionally, top and bottom spectrally-selective filters, such as but not limited to selectively-reflective metasurface mirrors and polymeric stack filters, can be implemented to enhance the photon collection efficiency.
    Type: Application
    Filed: August 27, 2018
    Publication date: February 28, 2019
    Applicants: California Institute of Technology, The Regents of the University of California, The Board of Trustees of the University of lllinois
    Inventors: David R. Needell, Noah Bronstein, Armand P. Alivisatos, Harry A. Atwater, Ralph Nuzzo, Haley Bauser, Ognjen Ilic, Junwen He, Lu Xu