Patents Assigned to Sensors, Inc.
  • Publication number: 20230343130
    Abstract: Methods and systems for sensing a user interaction (e.g., a fingerprint) with a display of an electronic device are disclosed. In some embodiments, the method includes illuminating, with a light source, a position of a user interaction on the display. In some embodiments, the method includes detecting, with a detector, a backscattered light from the position. In some embodiments, the light source and the detector are located on a same layer of the display.
    Type: Application
    Filed: September 23, 2020
    Publication date: October 26, 2023
    Applicant: Obsidian Sensors, Inc.
    Inventors: John HONG, Bing WEN
  • Publication number: 20230314228
    Abstract: Disclosed herein are MEMS devices and systems and methods of manufacturing or operating the MEMS devices and systems. In some embodiments, the MEMS devices and systems are used in imaging applications.
    Type: Application
    Filed: April 10, 2023
    Publication date: October 5, 2023
    Applicant: Obsidian Sensors, Inc.
    Inventors: John HONG, Bing WEN, Edward CHAN, Tallis CHANG, Sean ANDREWS
  • Patent number: 11763693
    Abstract: In some embodiments, a computer system comprises processors, a request manager coupled to the processors and configured to receive practice test requests, a practice test manager configured to retrieve practice test data, a real time session manager configured to establish a real time session with a user computer, an AI-based analyzer configured to execute a machine learning model to determine accuracy of results received from the user computer, a non-transitory computer-readable storage medium storing sequences of instructions for: receiving, using the request manager, a request for performing a practice test; retrieving, using the practice test manager, data for the practice test; using the real time session manager: establishing a real time session with the user computer to enable the user computer to access the data and execute the practice test; and as the practice test is executed, collecting test results and transmitting them to user devices.
    Type: Grant
    Filed: August 17, 2021
    Date of Patent: September 19, 2023
    Assignee: Myriad Sensors, Inc.
    Inventors: Clifton Roozeboom, David Bakker, Robert Douthitt, John Bower, Corin Dubie
  • Publication number: 20230288258
    Abstract: Systems and methods for spectrometry are disclosed. In some embodiments, the system comprises a Fourier Transform Spectrometer (FTS) comprising a waveguide and a delay element. In some embodiments, the method comprises determining a power spectral density of an input optical signal via the FTS.
    Type: Application
    Filed: March 14, 2023
    Publication date: September 14, 2023
    Applicant: Obsidian Sensors, Inc.
    Inventors: John HONG, Bing WEN, Sean ANDREWS, Heesun SHIN, Edward CHAN, Tallis CHANG, Ming YING
  • Publication number: 20230279582
    Abstract: An apparatus and method is provided for coating a surface of a material with a film of porous coordination polymer. A first substrate having a first surface to be coated is positioned in a processing chamber such that the first surface is placed in a substantially opposing relationship to a second surface. In some embodiments, the second surface is provided by a wall of the processing chamber, and in other embodiments the second surface is provided by a second substrate to be coated. The first substrate is held such that a gap exists between the first and second surfaces, and the gap is filled with at least one reaction mixture comprising reagents sufficient to form the crystalline film on at least the first surface. A thin gap (e.g., having a thickness less than 2 mm) between the first and second surfaces is effective for producing a high quality film having a thickness less than 100 ?m.
    Type: Application
    Filed: April 1, 2023
    Publication date: September 7, 2023
    Applicant: MATRIX SENSORS, INC.
    Inventors: David K Britt, Paul R Wilkinson, Steven Yamamoto
  • Publication number: 20230277095
    Abstract: There is provided a glucose sensor system comprising: a transmitter (2) for containing a battery (212), the transmitter being for placement on top of patient skin; a transcutaneous connector (3) comprising at least one conductive path; and an implantable monolithic integrated circuit (I) for placement beneath the patient skin, wherein the implantable monolithic integrated circuit comprises a potentiostat and an electrochemical sensing element; wherein the potentiostat is electrically coupled to the transmitter (2) via the transcutaneous connector (3), and the electrochemical sensing element is configured to sense glucose concentration and generate an electrical signal representative of the glucose concentration, and wherein the potentiostat is electrically connected to the electrochemical sensing element.
    Type: Application
    Filed: January 5, 2023
    Publication date: September 7, 2023
    Applicant: Integrated Medical Sensors, Inc.
    Inventors: MUHAMMAD MUJEEB-U-RAHMAN, MEISAM HONARVAR NAZARI, MEHMET SENCAN
  • Patent number: 11747304
    Abstract: Disclose is a system and method for real-time measurement and feedback of metrology and metallurgical data during additive manufacturing (AM) part fabrication. This solution promises to provide higher performance, lower cost AM parts. A sensor is placed either in the rake/roller or following the rake/roller so that it has no impact on the process efficiency and can be used to provide real-time feedback and an archived digital map of the entire part volume. The solution provides non-contact sensing of AM layer's electrical conductivity in a high-temperature environment, metallurgical property verification, porosity imaging, local defect detection and sizing, local material temperature monitoring, and grain anisotropy imaging. Part geometry, the AM powder, and the laser/material interface are monitored in real-time. Dual mode sensing using magnetoquasistatic and optical sensors enhance results. Real-time nonlinear control of the AM fabrication process is performed based on the sensor data.
    Type: Grant
    Filed: January 2, 2023
    Date of Patent: September 5, 2023
    Assignee: JENTEK Sensors, Inc.
    Inventors: Neil J Goldfine, Todd M Dunford
  • Patent number: 11737976
    Abstract: The invention broadly comprises a chemical composition including a plurality of cholesteryl esters arranged to form a vesicle. In several embodiments, all of the plurality of cholesteryl esters have a same molecular length, which in some embodiments provides a vesicle having a generally smooth outer surface, while in other embodiments, a portion of the plurality of cholesteryl esters have different molecular lengths, which in some embodiments provides a vesicle having a generally irregular outer surface. In yet further embodiments, a shape of the vesicle is selected from the group consisting of spherical, oval, disc-like, tubular and polyhedral shapes, and in yet other embodiments, a wall of the vesicle is selected from the group consisting of a monolayer and a bilayer. In still further embodiments, the chemical composition further includes a polyethylene glycol coat of mixed polymer size.
    Type: Grant
    Filed: August 31, 2018
    Date of Patent: August 29, 2023
    Assignee: THERASYN SENSORS, INC.
    Inventor: Mary P. McCourt
  • Patent number: 11714066
    Abstract: A sensor device comprises at least one transducer and a sensing material disposed on the transducer. The sensing material adsorbs or absorbs an amount of analyte (e.g., a target gas) that depends on a temperature of the sensing material and a concentration of the analyte. At least one detector is arranged to measure responses of the transducer to sorption or desorption of the analyte in the sensing material while the sensing material is heated and/or cooled according to at least one temperature profile. The device also comprises a humidity sensor that is arranged to detect a humidity level of the environment or sample containing the analyte. A processor or controller is programmed to determine the quantity (e.g.
    Type: Grant
    Filed: September 9, 2021
    Date of Patent: August 1, 2023
    Assignee: MATRIX SENSORS, INC
    Inventors: David K Britt, Paul R Wilkinson, Steven Yamamoto
  • Publication number: 20230236067
    Abstract: Methods of sensor readout and calibration and circuits for performing the methods are disclosed. In some embodiments, the methods include driving an active sensor at a voltage. In some embodiments, the methods include use of a calibration sensor, and the circuits include the calibration sensor. In some embodiments, the methods include use of a calibration current source and circuits include the calibration current source. In some embodiments, a sensor circuit includes a Sigma-Delta ADC. In some embodiments, a column of sensors is readout using first and second readout circuits during a same row time.
    Type: Application
    Filed: January 13, 2023
    Publication date: July 27, 2023
    Applicant: Obsidian Sensors, Inc.
    Inventors: Edward CHAN, Bing WEN, John HONG, Tallis CHANG, Seung-Tak RYU
  • Patent number: 11685649
    Abstract: A method of manufacturing MEMS housings includes: providing glass spacers; providing a window plate; attaching the window plate to the glass spacers; aligning the glass spacers with a device glass plate having MEMS devices thereon; bonding the glass spacers to the device glass plate; and singulating the glass spacers, window plate, and device glass plate to produce the MEMS housings.
    Type: Grant
    Filed: March 20, 2019
    Date of Patent: June 27, 2023
    Assignee: Obsidian Sensors, Inc.
    Inventors: John Hong, Tallis Chang, Edward Chan, Bing Wen, Yaoling Pan, Kenji Nomura
  • Patent number: 11686660
    Abstract: A particle concentration analyzing system for testing particle concentrations in a fluid sample, such as engine emission particle concentration present in the exhaust of an engine. The particle concentration analyzing system includes a condensation particle counter having a saturation chamber, a condenser, and a laser optic particle counter. The analyzing system further includes a working fluid tank, a working fluid pump, and a sampling probe. The system provides a robust analysis system for a user to test vehicle emissions without being highly trained on the device, as the device is protected from misuse. A position sensitive sensor is used to ensure that the system is not damaged if the system is tipped over or placed in a position that would produce false results. Additional features include differential pressure sensors, a sealed and replaceable tamper resistant working fluid tank, a solvent recovery system, an anti-cheat device, and fluid purity sensors.
    Type: Grant
    Filed: June 6, 2019
    Date of Patent: June 27, 2023
    Assignee: SENSORS, INC.
    Inventors: David R. Booker, Douglas D. Booker, Simon P. Booker
  • Publication number: 20230160728
    Abstract: A measurement system, its assembly and use are disclose. The system may include an instrument for making sensor measurements. The instrument has a substantially cylindrical housing. The shape and size allow the instrument to easily fit in an average hand enabling handheld operation. The housing houses a board stack of electronic boards. These electronics drive an electrical signal in at least one drive channel and measure responses from at least two sensing channels. These responses are provided to a processor for analysis. The instrument has a sensor connector that enables simultaneous electrical and mechanical attachment of an end effector.
    Type: Application
    Filed: January 6, 2023
    Publication date: May 25, 2023
    Applicant: JENTEK Sensors, Inc.
    Inventors: Neil J Goldfine, Todd M Dunford, Scott A Denenberg, Kevin P Dixon, Yanko K Sheiretov, Saber Bahranifard, Stuart D Chaplan, Mark Windoloski
  • Publication number: 20230150658
    Abstract: The present invention provides an aircraft design which incorporates a modular design including the use of one or more multi-motor assemblies where the motors are in series within the multi-motor assembly. Still further, the multi-motor assemblies may be configured to include modular motor assemblies or modular sections. Ultimately, the present invention provides an aircraft with the ability to easily assemble or expand the multi-motor assemblies and, in doing so, modify the characteristics of the aircraft. The modularity also enhances the ability to maintain the aircraft by enabling motors or the units housing each motor to easily be replaced.
    Type: Application
    Filed: October 11, 2022
    Publication date: May 18, 2023
    Applicant: SpyDar Sensors, Inc.
    Inventor: Samuel Jacob Winkelstein
  • Publication number: 20230152278
    Abstract: Disclose is a system and method for real-time measurement and feedback of metrology and metallurgical data during additive manufacturing (AM) part fabrication. This solution promises to provide higher performance, lower cost AM parts. A sensor is placed either in the rake/roller or following the rake/roller so that it has no impact on the process efficiency and can be used to provide real-time feedback and an archived digital map of the entire part volume. The solution provides non-contact sensing of AM layer's electrical conductivity in a high-temperature environment, metallurgical property verification, porosity imaging, local defect detection and sizing, local material temperature monitoring, and grain anisotropy imaging. Part geometry, the AM powder, and the laser/material interface are monitored in real-time. Dual mode sensing using magnetoquasistatic and optical sensors enhance results. Real-time nonlinear control of the AM fabrication process is performed based on the sensor data.
    Type: Application
    Filed: January 2, 2023
    Publication date: May 18, 2023
    Applicant: JENTEK Sensors, Inc.
    Inventors: Neil J. Goldfine, Todd M. Dunford
  • Patent number: 11643751
    Abstract: An apparatus and method is provided for coating a surface of a material with a film of porous coordination polymer. A first substrate having a first surface to be coated is positioned in a processing chamber such that the first surface is placed in a substantially opposing relationship to a second surface. In some embodiments, the second surface is provided by a wall of the processing chamber, and in other embodiments the second surface is provided by a second substrate to be coated. The first substrate is held such that a gap exists between the first and second surfaces, and the gap is filled with at least one reaction mixture comprising reagents sufficient to form the crystalline film on at least the first surface. A thin gap (e.g., having a thickness less than 2 mm) between the first and second surfaces is effective for producing a high quality film having a thickness less than 100 ?m.
    Type: Grant
    Filed: March 10, 2021
    Date of Patent: May 9, 2023
    Assignee: MATRIX SENSORS, INC.
    Inventors: David K Britt, Paul R Wilkinson, Steven Yamamoto
  • Patent number: 11633364
    Abstract: The present invention is directed to a cargo-loaded cholesteryl ester nanoparticle with a hollow compartment (“cholestosome”) consisting essentially of at least one non-ionic cholesteryl ester and one or more encapsulated active molecules which cannot appreciably pass through an enterocyte membrane in the absence of said molecule being loaded into said cholestosome, the cholestosome having a neutral surface and having the ability to pass into enterocytes in the manner of orally absorbed nutrient lipids using cell pathways to reach the golgi apparatus. Pursuant to the present invention, the novel cargo loaded cholestosomes according to the present invention are capable of depositing active molecules within cells of a patient or subject and effecting therapy or diagnosis of the patient or subject.
    Type: Grant
    Filed: June 2, 2021
    Date of Patent: April 25, 2023
    Assignee: THERASYN SENSORS, INC.
    Inventors: Jerome J. Schentag, Mary P. McCourt, Lawrence Mielnicki, Julie Hughes
  • Patent number: 11624657
    Abstract: Disclosed herein are MEMS devices and systems and methods of manufacturing or operating the MEMS devices and systems for transmitting and detecting radiation. The devices and methods described herein are applicable to terahertz radiation. In some embodiments, the MEMS devices and systems are used in imaging applications. In some embodiments, a microelectromechanical system comprises a glass substrate configured to pass radiation from a first surface of the glass substrate through a second surface of the glass substrate, the glass substrate comprising TFT circuitry; a lid comprising a surface; spacers separating the lid and glass substrate; a cavity defined by the spacers, surface of the lid, and second surface of the glass substrate; a pixel in the cavity, positioned on the second surface of the glass substrate, electrically coupled to the TFT circuitry, and comprising an absorber to detect the radiation; and a reflector to direct the radiation to the absorbers and positioned on the lid.
    Type: Grant
    Filed: August 9, 2019
    Date of Patent: April 11, 2023
    Assignee: Obsidian Sensors, Inc.
    Inventors: John Hong, Bing Wen, Edward Chan, Tallis Chang, Sean Andrews
  • Publication number: 20230095662
    Abstract: Disclosed are method and apparatus for measuring material properties. Segmented field sensors have multiple sensing elements at different spatial geometries to capture field components having substantially different depths of penetration. These sensors are excited and measured on these different sensing elements to facilitate characterization of unknown material properties. This is illustrated in some embodiments using eddy current sensors to characterize materials that are frequency dispersive and/or do not produce a measurable phase shifts. Only a single scalar quantity may provide independent information from one or more of the sensing elements. Property estimation techniques, such as those using precomputed databases of sensor responses are used to estimate the unknown material properties.
    Type: Application
    Filed: March 1, 2022
    Publication date: March 30, 2023
    Applicant: JENTEK Sensors, Inc.
    Inventors: Neil J. Goldfine, Andrew P. Washabaugh, Todd M. Dunford, Zachary M. Thomas
  • Patent number: 11605240
    Abstract: Designs of a sensor module with fewer number of pins are described. According to one aspect of the designs, a sensor module operates on a predefined number of clocks in a clock signal in contrast of rising or falling edges of clocks or pulses thereof commonly relied upon in a prior art sensor module, thus reducing considerably the requirements on the clock signals needed to support the sensor module. More importantly, the pins of the sensor module are far fewer than those in a prior art system. Subsequently, the complexity of supporting circuits for the sensor module in the sensor module of the present invention can be simplified.
    Type: Grant
    Filed: November 18, 2021
    Date of Patent: March 14, 2023
    Assignee: CMOS Sensor, Inc.
    Inventors: Hui Wei, Weng Lyang Wang