Patents Examined by Md M Rahman
  • Patent number: 11435282
    Abstract: According to one embodiment, a gas analysis device includes: a base including a concave portion; a window includes a first film and a second film; an optical part that is located at a side of the window opposite to the base side and includes a light projector and a light receiver; and an optical path length controller that is located between the base and the window and has a controllable thickness. The concave portion includes a first sidewall that is oblique to a surface of the base, and a second sidewall that is oblique to the surface of the base. An oblique direction of the second sidewall is opposite to an oblique direction of the first sidewall. The light projector is configured to irradiate light toward the first sidewall. The light receiver is configured to convert light reflected by the second sidewall.
    Type: Grant
    Filed: April 30, 2021
    Date of Patent: September 6, 2022
    Assignee: KABUSHIKI KAISHA TOSHIBA
    Inventors: Shinji Saito, Tsutomu Kakuno, Rei Hashimoto, Kei Kaneko
  • Patent number: 11435444
    Abstract: An autonomous vehicle having a lidar sensor system is described. A computing system is configured to determine that the lidar sensor system is to update a code that is included in light signals emitted by the lidar sensor system. The computing system transmits a command signal to the lidar sensor system, wherein the command signal causes the lidar sensor system to transition from emitting light signals with a first code therein to emitting light signals with a second code therein, wherein the first code is different from the second code.
    Type: Grant
    Filed: September 27, 2019
    Date of Patent: September 6, 2022
    Assignee: GM CRUISE HOLDINGS LLC
    Inventors: Matt Cox, Robert Vets, Peter Megson, Cornelis Jacob Lekkerkerker
  • Patent number: 11426067
    Abstract: A method for analyzing the wavefront effect of an optical system includes: illuminating a measurement mask (110, 310) with illumination light, producing an interferogram in a specified plane using a diffraction grating (150) from a wavefront from the illuminated measurement mask and traveling through the optical system; and capturing the interferogram with a detector (170). Different angular distributions of the illumination light incident on the measurement mask are produced via a mirror arrangement of independently settable mirror elements. A plurality of interferograms are captured in a plurality of measurement steps, wherein these measurement steps differ respectively in angular distribution of the illumination light that is incident on the measurement mask.
    Type: Grant
    Filed: March 26, 2020
    Date of Patent: August 30, 2022
    Assignee: CARL ZEISS SMT GMBH
    Inventor: Rolf Freimann
  • Patent number: 11422030
    Abstract: An approach to noninvasively and remotely detect the presence, location, and/or quantity of a target substance in a scene via a spectral imaging system comprising a spectral filter array and image capture array. For a chosen target substance, a spectral filter array is provided that is sensitive to selected wavelengths characterizing the electromagnetic spectrum of the target substance. Elements of the image capture array are optically aligned with elements of the spectral filter array to simultaneously capture spectrally filtered images. These filtered images identify the spectrum of the target substance. Program instructions analyze the acquired images to compute information about the target substance throughout the scene. A color-coded output image may be displayed on a smartphone or computing device to indicate spatial and quantitative information about the detected target substance.
    Type: Grant
    Filed: February 26, 2021
    Date of Patent: August 23, 2022
    Assignee: INNOPIX, INC.
    Inventors: Gary L. McQuilkin, Gregory L. Engelke
  • Patent number: 11422032
    Abstract: Disclosed herein is a device (100) for multicolor optical imaging of a sample (102) with wavelength-dependent optical path length enhancement, the device (100) comprising an optical resonator (106) for enhancing an optical path length, wherein the optical resonator (106) has a first finesse at a first wavelength and a second finesse at a second wavelength; a sample holder (104) for mounting the sample (102) in the optical resonator (106), wherein the sample holder (104) is configured to hold the sample (102) such that an optical axis (112) of the optical resonator (106) intersects with the sample (102);a first imaging system (114) for imaging the sample (102) at the first wavelength with a first imaging technique, and a second imaging system (126) for imaging the sample (102) at the second wavelength with a second imaging technique, wherein the second wavelength is different from the first wavelength; wherein the first finesse and the second finesse are chosen such that the optical resonator (106) enhances a
    Type: Grant
    Filed: October 25, 2019
    Date of Patent: August 23, 2022
    Assignee: Technische Universität München
    Inventors: Hristo Iglev, Oliver Hayden, Reinhard Kienberger, Markus Wurzer, Albert Schletter, Johann Riemensberger
  • Patent number: 11415509
    Abstract: An integrated device for the detection of cancerous tissue including an optical fiber configured to receive at a first end modulated infrared light and to conduct the modulated infrared light from the first end to a second end; and a plasmonic metasurface, disposed on the second end of the optical fiber, configured to localize evanescent infrared light to sub-100 nanometer distances from the plasmonic metasurface of the optical fiber such that the localized evanescent infrared light penetrates only the membrane portion of a cell held against the second end, wherein the second end is configured to receive reflected light reflected from the membrane portion the cell, the reflected light including spectroscopic information indicative of whether the cell is noncancerous or cancerous.
    Type: Grant
    Filed: May 8, 2018
    Date of Patent: August 16, 2022
    Assignee: CORNELL UNIVERSITY
    Inventors: Gennady Shvets, Shourya Dutta Gupta
  • Patent number: 11415568
    Abstract: Systems and methods for implicit chemical resolution of vacuum gas oils and fit quality determination are disclosed. The systems and methods include utilizing an FT-IR spectrum of an unknown VGO composition, and a database of FT-IR spectra of known VGO compositions, to determine a model of composition for the unknown VGO composition. Additionally, the fit quality for the model of composition is determined by performing a partial least squares analysis on specific spectral regions of interest in the FT-IR spectrum of the unknown VGO composition.
    Type: Grant
    Filed: September 10, 2019
    Date of Patent: August 16, 2022
    Assignee: ExxonMobil Technology and Engineering Company
    Inventors: Bryan T. Bowie, John E. Lee, Bryan E. Hagee
  • Patent number: 11408820
    Abstract: A produce freshness sensor inexpensive enough to be discarded after each produce use, and multi-functional that is affixed to the produce by the grower that monitors parameters that affects produce freshness (to measure color and chemical composition), the sensor being used throughout the produce distribution system. A sensor monitors produce freshness and comprises one or more emitters, a temperature sensor, a microprocessor, and a transceiver mounted on a printed circuit board. The sensor is affixed relative to the produce. Power usage is critical to prolong operational time of the temperature sensor. Data collection and transmission are controlled to minimize run time and power usage. An initial baseline is established when the sensor is affixed relative to the produce, the start time and baseline measurements being recorded relative to the baseline. The real-time information is subsequently processed to provide analysis and relevant data to users throughout the produce distribution system.
    Type: Grant
    Filed: March 7, 2022
    Date of Patent: August 9, 2022
    Inventor: C. Bruce Banter
  • Patent number: 11402366
    Abstract: Methods of characterizing ion-exchanged chemically strengthened Li-containing glasses include: a) measuring a mode spectrum of the glass sample; b) using the mode spectrum, estimating a first contribution to the center tension associated with a spike region and estimating a second contribution to the center tension due to a deep region only, wherein the deep region is assumed to follow a power-law stress profile; and c) determining a total center tension by adding of the first and second contributions to the center tension. The methods can be used for quality control during manufacturing of glass samples by comparing the total center tension to a center tension specification that provides optimum strength and durability.
    Type: Grant
    Filed: February 8, 2021
    Date of Patent: August 2, 2022
    Assignee: CORNING INCORPORATED
    Inventors: Rostislav Vatchev Roussev, Vitor Marino Schneider
  • Patent number: 11396394
    Abstract: The invention relates to a method and device for orienting an umbilicated fruit, in which, during a first orientation phase (22), the presence of at least a portion of an umbilicus is detected in at least one initial image (II), then the fruit is driven (24) in spinning rotation about a first axis of rotation at an angular amplitude of between 5° and 45°, and then the presence of at least a portion of an umbilicus is detected in at least one subsequent image (IU). If at least a portion of an umbilicus is detected in at least one initial image (II) and no longer detected in each subsequent image (IU), the first orientation phase is stopped and the method is continued.
    Type: Grant
    Filed: April 24, 2017
    Date of Patent: July 26, 2022
    Assignee: MAF AGROBOTIC
    Inventor: Philippe Blanc
  • Patent number: 11391677
    Abstract: A metrology apparatus (302) includes a higher harmonic generation (HHG) radiation source for generating (310) EUV radiation. Operation of the HHG source is monitored using a wavefront sensor (420) which comprises an aperture array (424, 702) and an image sensor (426). A grating (706) disperses the radiation passing through each aperture so that the image detector captures positions and intensities of higher diffraction orders for different spectral components and different locations across the beam. In this way, the wavefront sensor can be arranged to measure a wavefront tilt for multiple harmonics at each location in said array. In one embodiment, the apertures are divided into two subsets (A) and (B), the gratings (706) of each subset having a different direction of dispersion. The spectrally resolved wavefront information (430) is used in feedback control (432) to stabilize operation of the HGG source, and/or to improve accuracy of metrology results.
    Type: Grant
    Filed: January 23, 2020
    Date of Patent: July 19, 2022
    Assignee: ASML Netherlands B. V.
    Inventors: Stefan Michiel Witte, Gijsbert Simon Matthijs Jansen, Lars Christian Freisem, Kjeld Sijbrand Eduard Eikema, Simon Gijsbert Josephus Mathijssen
  • Patent number: 11391668
    Abstract: A concentration measuring device 100 comprises: a measurement cell 4 having a flow path, a light source 1, a photodetector 7 for detecting light emitted from the measurement cell, and an arithmetic circuit 8 for calculating light absorbance and concentration of a fluid to be measured on the basis of an output of the photodetector, the measurement cell includes a cell body, a window portion 3 fixed to the cell body so as to contact the flow path, and a reflective member 5 for reflecting light incident on the measurement cell through the window portion, the window portion is fixed to the cell body 40 by a window holding member 30 via a gasket 15, an annular sealing protrusion 15a is provided on a first surface of the gasket for supporting the window portion, and an annular sealing protrusion 42a is also provided on a support surface 42 of the cell body for supporting the second surface opposite to the first surface of the gasket.
    Type: Grant
    Filed: September 17, 2019
    Date of Patent: July 19, 2022
    Assignee: FUJIKIN INCORPORATED
    Inventors: Masaaki Nagase, Kazuteru Tanaka, Keiji Hirao, Tadayuki Yakushijin, Kouji Nishino, Michio Yamaji, Nobukazu Ikeda
  • Patent number: 11385189
    Abstract: A method and apparatus are disclosed which enable the analysis of a break in a vehicle glazing panel without the attendance of a technician, the method and apparatus utilize capturing an image of the break and processing the image of the break to enable the suitability for repair or replacement of the glazing panel to be determined.
    Type: Grant
    Filed: November 30, 2020
    Date of Patent: July 12, 2022
    Assignee: Belron International Limited
    Inventors: Mark Hansen, Ian Hales, Abdul Farooq, Melvyn Smith, Gwen Daniel
  • Patent number: 11385173
    Abstract: [Object] An optimal structure for spectroscopically analyzing a solid-phase or liquid-phase sample in a wavelength range of 1100 to 1200 nm by using supercontinuum light is provided. [Solution] Supercontinuum light generated by producing nonlinear effects in light from a pulse laser source 1 by a nonlinear element 2 and having a wavelength range including 1100 nm or greater and 1200 nm or less is subjected to pulse stretching by a pulse stretching element 3, and a solid-phase or a liquid-phase sample S is irradiated with the supercontinuum light. In the supercontinuum light, elapsed time and wavelength within one pulse are in a one-to-one correspondence, and computation means 5 computes a spectrum based on a change over time in an output from a light receiver 4 that has received light that has passed through the sample S.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: July 12, 2022
    Assignee: Ushio Denki Kabushiki Kaisha
    Inventors: Go Yamada, Takuma Yokoyama
  • Patent number: 11383238
    Abstract: A microfluidic apparatus is provided. The microfluidic apparatus includes an electrochromic layer including a plurality of individually independently addressable regions; a microfluidic layer defining a microfluidic channel for allowing a microfluid to pass therethrough; and a plurality of photodetectors configured to detect light transmit through the microfluid.
    Type: Grant
    Filed: July 26, 2019
    Date of Patent: July 12, 2022
    Assignees: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD., BOE Technology Group Co., Ltd.
    Inventors: Nan Zhao, Peizhi Cai, Haochen Cui, Yuelei Xiao, Fengchun Pang, Le Gu, Yingying Zhao, Hui Liao, Yue Geng, Wenliang Yao
  • Patent number: 11385103
    Abstract: Provided herein are color charts and water color pigment solutions useful, for example, in the calibration of reflectance-based diagnostic analyzers.
    Type: Grant
    Filed: March 5, 2021
    Date of Patent: July 12, 2022
    Assignee: Siemens Healthcare Diagnostics Inc.
    Inventors: Gary W. Rheinheimer, Chris T. Zimmerle, Linda Anderson-Mauser
  • Patent number: 11378483
    Abstract: A method or system of determining integrity of a closed container comprising at least one gas. The determination is based on applying a mechanical force to at least one side of the container and transmitting a light signal across at least a portion of an outside surface of at least one side of the container using an optical sensor. The optical sensor is sensitive to the at least one gas inside the container. Detecting a transmitted light signal and determining, based on the detected light signal, if the at least one gas inside the container has been detected outside of the container.
    Type: Grant
    Filed: October 16, 2018
    Date of Patent: July 5, 2022
    Inventors: Märta Lewander Xu, Patrik Lundin, Mikael Sebesta, Axel Fredrik Bohman, Lee Michael Vine
  • Patent number: 11378521
    Abstract: An optical condition determination system includes a simulation execution unit that performs an optical simulation on a surface texture model that models a surface texture of a target object of the appearance inspection, and a defect model that models a defect of the target object, under a plurality of optical conditions to generate a surface texture image and a defect image, an image synthesizing unit that synthesizes the surface texture image and the defect image generated by an optical simulation under the same optical condition to generate a synthetic image, an evaluation value calculating unit that calculates an evaluation value representing easiness of detecting the defect in the synthetic image, a correlation analysis unit that analyzes a correlation between an optical condition and the evaluation value corresponding to the synthetic image, and an optimum condition searching unit that searches for the optical condition suitable for the appearance inspection based on an analysis result of the correlatio
    Type: Grant
    Filed: July 8, 2020
    Date of Patent: July 5, 2022
    Assignee: HITACHI, LTD.
    Inventors: Hiroaki Kasai, Keiko Oka, Hisae Shibuya, Akio Yazaki
  • Patent number: 11366011
    Abstract: An optical device may comprise an array of sensor elements and an array of optical channels disposed on the array of sensor elements. At least one optical channel of the array of optical channels may be configured to pass bandpass filtered light to at least one sensor element of the array of sensor elements. At least one other optical channel of the array of optical channels may be configured to pass non-bandpass filtered light to at least one other sensor element of the array of sensor elements.
    Type: Grant
    Filed: February 7, 2020
    Date of Patent: June 21, 2022
    Assignee: VIAVI Solutions Inc.
    Inventors: Valton Smith, William D. Houck
  • Patent number: 11366047
    Abstract: A vacuum manifold for filtration microscopy includes a manifold top having multiple openings, and a capture membrane positioned above and spaced apart from the manifold top, where the capture membrane is configured to deflect into contact with a surface of the manifold top when a negative pressure is applied to the multiple openings. A method for filtration microscopy includes the steps of providing a vacuum manifold including a manifold top having a plurality of openings, and a capture membrane positioned above and spaced apart from the manifold top; applying sample drops to sample spots on the membrane, the sample spots positioned above the plurality of openings; applying a negative pressure to the openings such that the capture membrane contacts a surface of the manifold top; and optically imaging particulates on the capture membrane.
    Type: Grant
    Filed: December 9, 2020
    Date of Patent: June 21, 2022
    Assignee: Optofluidics Inc.
    Inventors: Thomas Castner, Robert Hart, Colby Ashcroft, Brian DiPaolo, Nathan Wall