Patents Assigned to Photon, Inc.
  • Patent number: 11982616
    Abstract: A method for determining a quality condition of an agricultural product comprises: receiving a received light at a light detector, the received light comprising reflected, scattered, refracted, and/or deflected light from the agricultural product; transmitting the received light to a spectrometer; producing agricultural product (AP) spectral data of the received light using the spectrometer; with a computer in electrical communication with the spectrometer, comparing the AP spectral data to reference spectral data to determine whether the agricultural product has the quality condition, the reference spectral data corresponding to known quality conditions of the agricultural product; and with the computer, generating an output signal corresponding to the quality condition of the agricultural product.
    Type: Grant
    Filed: March 4, 2022
    Date of Patent: May 14, 2024
    Assignee: Headwall Photonics Inc.
    Inventor: Kwok-Keung Wong
  • Patent number: 11978754
    Abstract: A photodetector device includes a semiconductor material layer and at least one photodiode in the semiconductor material layer. The at least one photodiode is configured to be biased beyond a breakdown voltage thereof to generate respective electrical signals responsive to detection of incident photons. The respective electrical signals are independent of an optical power of the incident photons. A textured region is coupled to the semiconductor material layer and includes optical structures positioned to interact with the incident photons in the detection thereof by the at least one photodiode. Two or more photodiodes may define a pixel of the photodetector device, and the optical structures may be configured to direct the incident photons to any of the two or more photodiodes of the pixel.
    Type: Grant
    Filed: March 1, 2022
    Date of Patent: May 7, 2024
    Assignee: Sense Photonics, Inc.
    Inventor: Hod Finkelstein
  • Patent number: 11971575
    Abstract: Absolute temperature measurements of integrated photonic devices can be accomplished with integrated bandgap temperature sensors located adjacent the photonic devices. In various embodiments, the temperature of the active region within a diode structure of a photonic device is measured with an integrated bandgap temperature sensor that includes one or more diode junctions either in the semiconductor device layer beneath the active region or laterally adjacent to the photonic device, or in a diode structure formed above the semiconductor device layer and adjacent the diode structure of the photonic device.
    Type: Grant
    Filed: December 19, 2022
    Date of Patent: April 30, 2024
    Assignee: OpenLight Photonics, Inc.
    Inventors: John Parker, Benjamin M. Curtin
  • Patent number: 11973313
    Abstract: A diode laser arrangement includes at least one emitter, first and second cooling devices and a first connecting layer. The emitter is configured to emit a laser beam and is disposed between the first and second cooling devices. The first and second cooling devices are each configured for cooling the emitter. The emitter is connected to the first cooling device by the first connecting layer, and the first connecting layer has a connecting material or is composed of a connecting material selected from a group including gold, a gold alloy, silver, a silver alloy, a silver sintered material, copper, a copper alloy, nickel, a nickel alloy, palladium, a palladium alloy, platinum, a platinum alloy, rhodium, a rhodium alloy, iridium, an iridium alloy, germanium, a germanium alloy, tin, a tin alloy, aluminum, an aluminum alloy, indium, an indium alloy, lead and a lead alloy.
    Type: Grant
    Filed: June 18, 2019
    Date of Patent: April 30, 2024
    Assignee: TRUMPF Photonics, Inc.
    Inventors: Stephan Strohmaier, Arne-Heike Meissner-Schenk, Gerald Urban, Gerd Hansen, Christian Carstens
  • Patent number: 11971577
    Abstract: A device comprises first, second and third elements fabricated on a common substrate. The first element comprises an active waveguide structure comprising: a first portion supporting a first optical mode. The second element comprises a passive waveguide structure supporting a second optical mode. The third element, at least partly butt-coupled to the second portion, comprises an intermediate waveguide structure supporting intermediate optical modes. At least part of the second element is non-linear, supporting frequency conversion. A tapered waveguide structure in at least one of the second and third elements facilitates efficient adiabatic transformation between the first optical mode and one intermediate optical mode. No adiabatic transformation occurs between any intermediate optical mode and the first optical mode. Mutual alignments of the elements are defined using lithographic alignment marks.
    Type: Grant
    Filed: June 13, 2022
    Date of Patent: April 30, 2024
    Assignee: Nexus Photonics, Inc
    Inventors: Minh Tran, Tin Komljenovic
  • Patent number: 11966091
    Abstract: A multichannel optical coupler array can include a coupler housing structure and longitudinal waveguides. At least one of the longitudinal waveguides can be a vanishing core waveguide having an inner vanishing core having a first refractive index (N-1), an outer core having a second refractive index (N-2), and an outer cladding having a third refractive index (N-3). A refractive index transition between N-1 and N-2 can have a function form N(r), where r is a transverse distance from the inner vanishing core center. The function N(r) can be a smooth function having a positive average of the second derivative or function N(r) can be a step function with at least one step approximating the smooth function. The coupler housing structure may have non-circular holes formed by convex-shaped housing structure elements.
    Type: Grant
    Filed: October 25, 2021
    Date of Patent: April 23, 2024
    Assignee: Chiral Photonics, Inc.
    Inventors: Victor Il'ich Kopp, Jongchul Park, Daniel Neugroschl
  • Patent number: 11955576
    Abstract: An apparatus and method for producing a perpetual energy harvester which harvests ambient near ultraviolet to infrared radiation and provides continual power regardless of the environment. The device seeks to harvest the largely overlooked blackbody radiation through use of a semiconductor thermal harvester, providing a continuous source of power. Additionally, increased power output is provided through a solar harvester. The solar and thermal harvesters are physically connected but electrically isolated. “Perpetual energy harvester” as mentioned in this invention is interpreted to mean an energy harvester which is configured to harvest energy during day and/or night and/or light and/or dark.
    Type: Grant
    Filed: April 28, 2023
    Date of Patent: April 9, 2024
    Assignee: Banpil Photonics, Inc.
    Inventor: Achyut Dutta
  • Patent number: 11947042
    Abstract: In an optical emitter device, when point emitters are placed on the focal plane of a lens system, each individual point emitter will point to a specific free space angle depending on the position of the point emitter relative to the longitudinal central axis of the lens system. Point emitters comprising end-fire tapers combined with both a turning mirror and a micro-lens provide improved performance, because, unlike grating couplers, end-fire tapers enable uniform broadband operation with all possible polarization states. A turning mirror may be added to direct the light emission from the end-fire tapers to vertically upwards, which enables both a two-dimensional point emitter array and a more streamlined assembly process.
    Type: Grant
    Filed: July 10, 2020
    Date of Patent: April 2, 2024
    Assignee: Voyant Photonics, Inc.
    Inventors: Sajan Shrestha, Christopher T. Phare, Lawrence Dah Ching Tzuang
  • Patent number: 11940817
    Abstract: Apparatuses, systems, and methods for open path laser spectroscopy with mobile platforms. An example system may include a first mobile platform and a second mobile platform, each of which supports a payload. A light beam directed from one payload to another may define a measurement path, which may be at a particular height above the ground. The payloads may determine a gas concentration along the measurement path. Wind information at the measurement height may be used to determine a gas flux. One or both of the mobile platforms may then move to a new location, and take a measurement along a new measurement path. By combining the measurement paths, gas flux through a flux surface may be determined.
    Type: Grant
    Filed: January 15, 2020
    Date of Patent: March 26, 2024
    Assignee: Bridger Photonics, Inc.
    Inventors: Aaron Thomas Kreitinger, Michael James Thorpe, Peter Aaron Roos
  • Patent number: 11937368
    Abstract: Described are various configurations of high-speed via structures. Various embodiments can reduce or entirely eliminate insertion loss in high-speed signal processing environments by using impedance compensation structures that decrease a mismatch in components of a circuit. An impedance compensation structure can include a metallic structure placed near a via to lower an impedance difference between the via and a conductive pathway connected to the via.
    Type: Grant
    Filed: April 5, 2021
    Date of Patent: March 19, 2024
    Assignee: OpenLight Photonics, Inc.
    Inventor: Christopher Paul Wyland
  • Patent number: 11927485
    Abstract: Systems, methods, and computer program products for thermal contrast determinations are provided. An example imaging system includes a first infrared (IR) imaging device that generates first IR image data of a field of view of the first IR imaging device and a computing device connected with the first IR imaging device. The computing device receives probe temperature data from a temperature probe indicative of an external environment of the imaging system and receives the first IR image data from the first IR imaging device. The computing device determines background temperature data based upon the first IR image data, determines gas temperature data based upon the probe temperature data, and determines a thermal contrast for each pixel based upon a comparison between the background temperature data and the gas temperature data. The computing device further determines a detection limit for each pixel as a function of thermal contrast.
    Type: Grant
    Filed: December 17, 2021
    Date of Patent: March 12, 2024
    Assignee: Rebellion Photonics, Inc.
    Inventors: Chuan Zhao, Patrick Charles O'Driscoll, Reza Katebi, Amirhossein Rafati
  • Patent number: 11921211
    Abstract: Embodiments of the disclosure are drawn to apparatuses and methods for a rotating optical reflector. Optical systems may have a limited field of view, and so in order to expand the area that the optical system collects data from, the field of view of the optical system may be scanned across a target area. The present disclosure is directed to a rotating optical reflector, which includes a transmissive layer which refracts light onto a reflective layer, which has a normal which is not parallel to the axis about which the optical reflector is rotated. The optical reflector may be both statically and dynamically balanced, which may allow an increased size of the optical reflector, which in turn may increase the aperture of an optical system (e.g., a lidar system) using the rotating optical reflector.
    Type: Grant
    Filed: January 30, 2023
    Date of Patent: March 5, 2024
    Assignee: Bridger Photonics, Inc.
    Inventors: Peter Aaron Roos, Michael James Thorpe, Aaron Thomas Kreitinger, Christopher Ray Wilson
  • Publication number: 20240069261
    Abstract: Excitation used to produce luminescence is cancelled using interference with an excitation cancelling beam by controlling or setting a phase difference. An excitation beam and an excitation cancelling beam are produced from a common source and the excitation beam directed quantum light emitter to produce luminescence. A residual excitation beam and the excitation cancelling beam are coupled to interfere destructively so that the luminescence is available for detection or otherwise without substantial portions of the excitation beam.
    Type: Application
    Filed: August 23, 2022
    Publication date: February 29, 2024
    Applicant: Photonic Inc.
    Inventors: Youn Seok Lee, Gary Wolfowicz, Mohsen Keshavarz Akhlaghi
  • Patent number: 11914264
    Abstract: Photonic ring modulators with high tuning efficiency and small footprint can be formed in a hybrid material platform from a silicon bus waveguide vertically coupled to an optically active compound semiconductor (e.g., III-V) ring resonator. The performance of the modulator, e.g., in terms of the tuning efficiency and the maximum insertion loss, may be optimized by suitable levels of an applied bias voltage and a heater power of a heater optionally included in the ring modulator. The disclosed hybrid photonic ring modulators may be used, e.g., in photonic transceiver circuits with high lane count.
    Type: Grant
    Filed: October 7, 2020
    Date of Patent: February 27, 2024
    Assignee: OpenLight Photonics, Inc.
    Inventors: John Parker, Jonathan Edgar Roth, Gregory Alan Fish
  • Patent number: 11899232
    Abstract: Method for fabricating of all-optical-fiber based optical polarizer devoid of fusing of first and second optical fibers. The method includes a process of forming a substantially adiabatic optical fiber taper by pulling an optical fiber and interrupting this process when an optical power parameter measured at an output of the optical fiber is reduced below a pre-defined threshold as a result of said pulling. An optically-tapered single-mode polarization-maintaining optical fiber element fabricated according to the method and configured as such all-optical-fiber polarizer.
    Type: Grant
    Filed: June 6, 2022
    Date of Patent: February 13, 2024
    Assignee: AdValue Photonics, Inc.
    Inventors: Jihong Geng, Shibin Jiang
  • Patent number: 11879616
    Abstract: A luminaire for providing configurable static lighting or dynamically-adjustable lighting. The luminaire uses an array of focusing elements that act on light provided via a corresponding array of sources or via an edge-lit lightguide. Designs are provided for adjusting the number of distinct beams produced by the luminaire, as well as the angular width, angular profile, and pointing angle of the beams. Designs are also provided for systems utilizing the adjustable luminaires in various applications.
    Type: Grant
    Filed: May 4, 2023
    Date of Patent: January 23, 2024
    Assignee: Glint Photonics, Inc.
    Inventors: Christopher Gladden, Andrew Kim, Peter Kozodoy, Barbara Kruse
  • Patent number: 11879775
    Abstract: Various embodiments disclosed herein describe a divided-aperture infrared spectral imaging (DAISI) system that is adapted to acquire multiple IR images of a scene with a single-shot (also referred to as a snapshot). The plurality of acquired images having different wavelength compositions that are obtained generally simultaneously. The system includes at least two optical channels that are spatially and spectrally different from one another. Each of the at least two optical channels are configured to transfer IR radiation incident on the optical system towards an optical FPA unit comprising at least two detector arrays disposed in the focal plane of two corresponding focusing lenses. The system further comprises at least one temperature reference source or surface that is used to dynamically calibrate the two detector arrays and compensate for a temperature difference between the two detector arrays.
    Type: Grant
    Filed: December 23, 2020
    Date of Patent: January 23, 2024
    Assignee: Rebellion Photonics, Inc.
    Inventors: Robert Timothy Kester, Nathan Adrian Hagen
  • Patent number: 11876343
    Abstract: Methods, devices, and systems for laser diode packaging platforms are provided. In one aspect, a laser diode assembly includes a heat sink and a plurality of laser diode units horizontally spaced apart from one another on the heat sink. Each laser diode unit includes: a first submount positioned on the heat sink and spaced apart from adjacent another first submount, a laser diode including an active layer between a first-type doped semiconductor layer and a second-type doped semiconductor layer, a bottom side of the laser diode being positioned on the first submount, and a second submount positioned on a top side of the laser diode and spaced apart from adjacent another second submount. The first submount, the laser diode, and the second submount in the laser diode unit are vertically positioned on the heat sink. The laser diodes of the plurality of laser diode units are electrically connected in series.
    Type: Grant
    Filed: May 18, 2021
    Date of Patent: January 16, 2024
    Assignee: Trumpf Photonics, Inc.
    Inventors: Thilo Vethake, Stefan Heinemann, Le Zhao
  • Patent number: 11867564
    Abstract: Various embodiments disclosed herein describe a divided-aperture infrared spectral imaging (DAISI) system that is adapted to acquire multiple IR images of a scene with a single-shot (also referred to as a snapshot). The plurality of acquired images having different wavelength compositions that are obtained generally simultaneously. The system includes at least two optical channels that are spatially and spectrally different from one another. Each of the at least two optical channels are configured to transfer IR radiation incident on the optical system towards an optical FPA unit comprising at least two detector arrays disposed in the focal plane of two corresponding focusing lenses. The system further comprises at least one temperature reference source or surface that is used to dynamically calibrate the two detector arrays and compensate for a temperature difference between the two detector arrays.
    Type: Grant
    Filed: April 8, 2022
    Date of Patent: January 9, 2024
    Assignee: Rebellion Photonics, Inc.
    Inventors: Robert Timothy Kester, Nathan Adrian Hagen
  • Patent number: 11868024
    Abstract: A method of practicing the invention includes at least the following steps of generating pump laser radiation having a spectrum containing a plurality of equidistant spectral lines; passing the pump laser radiation through a non-linear medium of a singly resonant, single-frequency optical parametric oscillator, wherein the pump laser radiation is continuously a wave or is pulsed, wherein the pulse duration in the latter case is longer than the time the optical parametric oscillation requires to reach its steady state; and coupling out the non-resonant idler or signal laser radiation from the optical parametric oscillator as usable frequency converted laser radiation. Further provided is a laser device used to carry out the method of the invention.
    Type: Grant
    Filed: January 11, 2021
    Date of Patent: January 9, 2024
    Assignee: TOPTICA Photonics, Inc.
    Inventors: Adam Taylor Heiniger, Matthew James Cich