Patents Examined by Shawn Decenzo
  • Patent number: 11327026
    Abstract: A system comprises a faceted structure imaging assembly and a faceted structure image analyzer. Signature information of the gemstone is obtained and compared to stored signature information. The signature information includes angular spectrum information generated by the imaging assembly while a colored light pattern is reflected onto the gemstone. The signature information uniquely identifies the gemstone and indicates whether an entity was the source of the gemstone. The signature information comparison involves comparing an angular spectrum image obtained by the imaging assembly to stored angular spectrum images. In one example, the system compares the obtained signature information to stored signature information to validate a source of the gemstone. In another example, the system obtains signature information of the gemstone and forwards the signature information to a remote validation system.
    Type: Grant
    Filed: April 29, 2019
    Date of Patent: May 10, 2022
    Assignee: The RealReal, Inc.
    Inventors: Loretta Catherine Castoro, Meghan Elizabeth Ryterski, Matthew Bryan Heger, Ludovico Borghi, Emily Elizabeth Calara English, Chengyu Zhu, Jose Sasian
  • Patent number: 11320360
    Abstract: Provided herein are systems and methods of optical particle counters which account and adjust for the refractive index of the carrier fluid being analyzed. The provided systems are robust and may be implemented in a variety of optical particle counters including obscured light, reflected light, emitted light and scattered light particle counters. The described systems may be useful with any fluid, including gases or liquids. In some cases, the system can account for the differences in refractive index between two liquids, for example, ultrapure water and an acid, such as sulfuric, hydrochloric, hydrofluoric, acetic, phosphoric, chromic phosphoric, and the like. By accounting for the refractive index of the carrier fluid, the described systems and methods are also more sensitive and able to more accurately detect and characterize smaller particles, including nanoscale sized particles.
    Type: Grant
    Filed: August 30, 2019
    Date of Patent: May 3, 2022
    Assignee: Particle Measuring Systems, Inc.
    Inventors: James M. Lumpkin, Brian A. Knollenberg, John R. Mitchell
  • Patent number: 11313721
    Abstract: A compact spectrometer includes an excitation light source configured to generate excitation light and arranged to illuminate a spot on a sample. A dispersive element includes at least one movable component and spatially separates output light emanating from the sample in response to the excitation light into a plurality of different wavelength bands. A moveable component of the dispersive element causes the plurality of different wavelength bands of the output light to be scanned across a detector. The detector includes at least one light sensor that senses the wavelength bands of the output light and generates an output electrical signal in response to the sensed output light.
    Type: Grant
    Filed: June 11, 2019
    Date of Patent: April 26, 2022
    Assignee: Oak Analytics
    Inventors: Ruibo Wang, Pawel Adam Menzfeld
  • Patent number: 11313725
    Abstract: State-of-the-art portable Raman spectrometers use discrete free-space optical components that must be aligned well and that don't tolerate vibrations well. Conversely, the inventive spectrometers are made with monolithic photonic integration to fabricate some or all optical components on one or more planar substrates. Photonic integration enables dense integration of components, eliminates manual alignment and individual component assembly, and yields superior mechanical stability and resistance to shock or vibration. These features make inventive spectrometers especially suitable for use in high-performance portable or wearable sensors. They also yield significant performance advantages, including a large (e.g., 10,000-fold) increase in Raman scattering efficiency resulting from on-chip interaction of the tightly localized optical mode and the analyte and a large enhancement in spectral resolution and sensitivity resulting from the integration of an on-chip Fourier-transform spectrometer.
    Type: Grant
    Filed: July 14, 2020
    Date of Patent: April 26, 2022
    Assignee: Massachusetts Institute of Technology
    Inventors: Tian Gu, Derek Kita, Juejun Hu
  • Patent number: 11307025
    Abstract: A device and method for detecting an angle of a shearer rocker arm based on optical fiber sensing. The device includes an optical system and a mechanical system. The optical system includes a broadband light source, a polarizer, collimating lenses, a gradient-rotation media plate, a polarization beam splitter, and a data processing module. The mechanical system includes a connecting base, connecting rods, a slider, a bracket, and a sensor housing. When the shearer operates, the rocker arm converts rotation angle information to linear displacement related to a gradient refractive index by using a connecting rod mechanism, and a position on the gradient-rotation media plate through which linearly polarized light produced by the optical system passes also changes. Due to an optical rotation effect, corresponding rotation angles of a plane of polarization that are formed after the light passing through the gradient-rotation media plate also vary.
    Type: Grant
    Filed: July 7, 2020
    Date of Patent: April 19, 2022
    Assignee: CHINA UNIVERSITY OF MINING AND TECHNOLOGY
    Inventors: Shaoyi Xu, Zhencai Zhu, Wei Li, Fangfang Xing, Yuqiao Wang, Hongyu Xue, Qiang Peng, Guang Chen, Feng Dong
  • Patent number: 11300506
    Abstract: A droplet sensor has an optical cover with a curved surface that forms a part of a spheroid, a light source positioned at a first focal point of an ellipse, the first focal point facing the curved surface, and a photodetector positioned at a second focal point of the ellipse. The ellipse has an eccentricity determined such that the curved surface has an effective detection area that satisfies conditions for total internal reflection at an interface with a gas and that does not satisfy the conditions for total internal reflection at an interface with a liquid.
    Type: Grant
    Filed: November 7, 2018
    Date of Patent: April 12, 2022
    Assignee: MITSUMI ELECTRIC CO., LTD.
    Inventors: Yuya Kawasaki, Hideo Kurosawa
  • Patent number: 11300577
    Abstract: A method of spectroscopically measuring percent glycated hemoglobin or a glycated hemoglobin:total hemoglobin ratio in a biological sample is disclosed. The method includes the use of a turbidity normalization algorithm to normalize the total hemoglobin concentration calculated from the spectroscopic measurements to substantially remove any turbidity interference therefrom. The turbidity normalization eliminates the negative bias observed with intralipid/lipemia and thus provides a glycated hemoglobin assay with no significant interference from intralipid/lipemia.
    Type: Grant
    Filed: November 15, 2019
    Date of Patent: April 12, 2022
    Assignee: Siemens Healthcare Diagnostics Inc.
    Inventors: Justin Jones, Jian Dai, Candice Robinson
  • Patent number: 11300447
    Abstract: A system for determining a characteristic of a sample includes a light source for directing light into an input of a spectrometer. The spectrometer splits the received light into light outputs each having a different wavelength. An active wavelength selection module (AWSM) includes an optical receiving component (ORC). An actuator is coupled to the spectrometer and/or the ORC to adjust a relative position between the spectrometer and the AWSM so that light is receivable by the ORC from a selected one of the plurality of light outputs. The ORC is configured to direct the received light to a sample. A collector is positioned to collect a portion of light that passes through the sample, and to deliver the collected light to an analysis module. The analysis module is configured to determine a quantity of light transmitted through the sample and to correlate transmitted light with a characteristic of the sample.
    Type: Grant
    Filed: July 22, 2020
    Date of Patent: April 12, 2022
    Assignee: C Technologies Inc
    Inventors: I-Tsung Shih, Mark Salerno, Matthew Muller, Yusheng Zhang, Peter Halatin, Vladimir Gorbunov
  • Patent number: 11300527
    Abstract: A method for detecting lens cleanliness of a lens disposed in a flat-field optical path, the flat-field optical path including a light source, the lens, a camera, the light source is a narrow-band multispectral uniform surface light source, the camera's light-sensitive surface is disposed perpendicular to an optical axis of the lens and in the light position of the lens, the method including collecting the bright-field image data and dark-field image data in a plurality of spectra through the lens; for each pixel, performing a spectral differential flat-field correction operation to yield a plurality of spectral differentials; and displaying the spectral differentials in the form of a plurality of images to show a uniformity of each of the plurality of images, wherein a non-uniform area on each of the plurality of images is determined to have been caused by an impurity of the lens.
    Type: Grant
    Filed: September 24, 2021
    Date of Patent: April 12, 2022
    Assignee: MLOptic Corp.
    Inventors: Jiang He, Teresa Zhang, Wei Zhou, Peihong Bai
  • Patent number: 11302164
    Abstract: Embodiments of a sensor device, method and system employ a multiplicity of environmental sensors as a single monitoring and alerting mechanism, operable to provide a profile of any contaminant in terms of various gases and particles in the atmosphere, quantified in terms of relative concentrations. In various embodiments, the sensor device can comprise hardware and firmware elements, including an electronic control system, a case, a shield and a cover. The environmental sensors can be secured as part of the electronic control system and the shield can be formed so as to facilitate proper channeling of air and sound for effective operation.
    Type: Grant
    Filed: November 8, 2021
    Date of Patent: April 12, 2022
    Assignee: Halo Smart Solutions, Inc.
    Inventors: David Antar, Paul Galburt, Frank L. Jacovino, John B. Plunkett
  • Patent number: 11302165
    Abstract: Embodiments of a sensor device, method and system employ a multiplicity of environmental sensors as a single monitoring and alerting mechanism, operable to provide a profile of any contaminant in terms of various gases and particles in the atmosphere, quantified in terms of relative concentrations. In various embodiments, the sensor device can comprise hardware and firmware elements, including an electronic control system, a case, a shield and a cover. The environmental sensors can be secured as part of the electronic control system and the shield can be formed so as to facilitate proper channeling of air and sound for effective operation.
    Type: Grant
    Filed: November 8, 2021
    Date of Patent: April 12, 2022
    Assignee: Halo Smart Solutions, Inc.
    Inventors: David Antar, Paul Galburt, Frank L. Jacovino, John B. Plunkett
  • Patent number: 11293871
    Abstract: A method and system are presented for use in measuring one or more characteristics of patterned structures. The method comprises: performing measurements on a patterned structure by illuminating the structure with exciting light to cause Raman scattering of one or more excited regions of the pattern structure, while applying a controlled change of at least temperature condition of the patterned structure, and detecting the Raman scattering, and generating corresponding measured data indicative of a temperature dependence of the detected Raman scattering; and analyzing the measured data and generating data indicative of spatial profile of one or more properties of the patterned structure.
    Type: Grant
    Filed: May 15, 2018
    Date of Patent: April 5, 2022
    Assignee: Nova Ltd
    Inventor: Yonatan Oren
  • Patent number: 11287369
    Abstract: A method is disclosed for increasing an intensity of a signal detected in a spectroscopy device using a vapor cell and a spectroscopy device using the same. An operation method of the spectroscopy device may include: causing a first light for exciting an atom trapped in a vapor cell in a first hyperfine ground state to a first excited state to be incident on the vapor cell; causing a second light for exciting an atom trapped in the vapor cell in a second hyperfine ground state to a second excited state to be incident on the vapor cell; causing a third light for exciting the atom in the second excited state to a third excited state to be incident on the vapor cell; and detecting fluorescence which is emitted while the atom in the third excited state returns to the ground state.
    Type: Grant
    Filed: November 24, 2020
    Date of Patent: March 29, 2022
    Assignee: KOREA RESEARCH INSTITUTE OF STANDARDS AND SCIENCE
    Inventors: Taek Jeong, Han Seb Moon, Dai Hyuk Yu, Jae Hoon Lee, Hyun Gue Hong
  • Patent number: 11287323
    Abstract: A semiconductor substrate processing apparatus includes a transfer chamber disposed between process chambers performing processing of a semiconductor substrate, a transfer robot disposed inside the transfer chamber to load the semiconductor substrate into the process chamber and unload the semiconductor substrate whose processing has been performed in the process chamber, an optical assembly irradiates irradiation light having multiple wavelengths onto the semiconductor substrate, the optical assembly splitting measurement light reflected from a surface of the semiconductor substrate into first and second measurement light and collecting interference light caused by first reflected light and second reflected light, a light detector detecting the interference light and converting the interference light into an electric signal to produce an interference signal, and a controller extracting spectrum information for each wavelength of the measurement light from the interference signal and calculating distribution
    Type: Grant
    Filed: August 26, 2020
    Date of Patent: March 29, 2022
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Hoonseop Kim, Vladmir Protopopov, Minju Kim
  • Patent number: 11287317
    Abstract: An optical measurement device may include a light source; an emission optic configured to direct a first portion of light generated by the light source to a measurement target; a collection optic configured to receive light from the measurement target; an optical conduit configured to direct a second portion of light generated by the light source to a spectral reference; the spectral reference; a sensor; and a filter. A first portion of the filter may be provided between the collection optic and a first portion of the sensor. A second portion of the filter may be provided between the spectral reference and a second portion of the sensor.
    Type: Grant
    Filed: August 20, 2020
    Date of Patent: March 29, 2022
    Assignee: VIAVI Solutions Inc.
    Inventors: William D. Houck, Valton Smith
  • Patent number: 11278205
    Abstract: A device and method for guided insertion of microelectrodes into tissue, the device involving a flexible optical fiber for optical coherence tomography imaging, a metal layer coating the optical fiber for recording electrical signals and an outer insulation layer coating the metal layer along the optical fiber length, and the method involving inserting an optical fiber coated with a metal layer and further coated with an insulation layer into a tissue, collecting intraoperative image data through the optical fiber by optical coherence tomography, receiving the image data on a computer and displaying the image on a monitor, using the image data to determine a location in the tissue, receiving an electrical nerve signal through the metal layer, and measuring the electrical nerve signal on an electro-physiological recording system.
    Type: Grant
    Filed: November 30, 2020
    Date of Patent: March 22, 2022
    Assignee: SYNAPTIVE MEDICAL INC.
    Inventors: Siu Wai Jacky Mak, Fangxin Li
  • Patent number: 11278677
    Abstract: A data collection device for attachment to an injection device, such as an injector pen, includes a sensor arrangement to detect movement of a movable component of the injection device relative to the data collection device during delivery of a medicament by the injection device, and a processor arrangement configured to, based on said detected movement, determine a medicament dosage administered by the injection device. The processor arrangement may monitor the time that has elapsed since the medicament dosage was administered, and control a display to show the mediacament dosage and elapsed time to provide a memory aid to the user. In an example embodiment, the sensor arrangement includes an optical encoder and the movable component includes a plurality of light barrier formations. The movable component may be a number sleeve that provides a visual indication of a dose programmed into the injection device.
    Type: Grant
    Filed: March 2, 2020
    Date of Patent: March 22, 2022
    Assignee: Sanofi-Aventis Deutschland GMBH
    Inventors: Frank Erbstein, Paul Richard Draper, Robert Frederick Veasey, David Aubrey Plumptre, Joseph Butler
  • Patent number: 11275034
    Abstract: An inspection apparatus includes: a light source that generates and outputs light; a stage on which an inspection target is arranged; an irradiation optical system that irradiates light from the light source to the inspection target; a detector that receives the light diffracted from the inspection target and generates diffraction image; and a detector moving device configured to move the detector on a z-axis, which is an optical axis of the light, and an x-y plane perpendicular to the z-axis. Furthermore, while the detector moves on the x-y plane and the z-axis through the detector moving device, the detector generates a plurality of the diffraction images with different positions on the x-y plane and the z-axis with respect to the inspection target, and thus simultaneously implements phase retrieval and super resolution of diffraction images.
    Type: Grant
    Filed: September 16, 2020
    Date of Patent: March 15, 2022
    Assignee: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Kyungwon Yun, Taewan Kim, Seungbeom Park, Jaehyeon Son, Myungjun Lee, Jaehwang Jung
  • Patent number: 11255658
    Abstract: An ellipsometer includes a light source, a polarizer, an asymmetric wavelength retarder, an analyzer and an optical detection component. The light source is configured to provide a light beam having multiple wavelengths incident to a sample. The polarizer is disposed between the light source and the sample, and configured to polarize the light beam. The asymmetric wavelength retarder is configured to provide a varied retardation effect on the light beam varied by wavelength. The analyzer is configured to analyze a polarization state of the light beam reflected by the sample. The optical detection component is configured to detect the light beam from the analyzer.
    Type: Grant
    Filed: August 25, 2020
    Date of Patent: February 22, 2022
    Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY LTD.
    Inventors: Feng Yuan Hsu, Chi-Ming Yang, Ching-Hsiang Hsu, Chyi Shyuan Chern
  • Patent number: 11248954
    Abstract: According to an aspect, there is provided a spectrometer comprising a first and second enclosed volumes. The second enclosed volume is formed by an absorption cell for containing a sample gas. The first enclosed volume of the spectrometer comprises an interferometer with a source of electromagnetic radiation, a first focusing mirror adapted to focus electromagnetic radiation received from the interferometer to the absorption cell, a second focusing mirror adapted to focus electromagnetic radiation received from the absorption cell and a detector adapted to detect electromagnetic radiation focused by the second focusing mirror. Moreover, the spectrometer comprises a main frame plate on which elements in the first enclosed volume are mounted and which is fixed to the absorption cell arranged on an opposing side of the main frame plate.
    Type: Grant
    Filed: June 26, 2020
    Date of Patent: February 15, 2022
    Assignee: GASMET TECHNOLOGIES OY
    Inventor: Rami Vuorinen