Patents Examined by Amy He
  • Patent number: 11747321
    Abstract: Disclosed herein are an apparatus for electrically assessing and/or manipulating cells. One aspect is directed to electrically mapping cells on the surface of the semiconductor substrate via cross-electrode impedance measurements. Further according to some aspects, the electrode array allows for spatially addressable electrical stimulation and/or recording of electrical signals in real-time using the CMOS circuitry. Some of these aspects are directed to using an electrode array to perform cell patterning through electrochemical gas generation, and extracellular electrochemical mapping.
    Type: Grant
    Filed: July 29, 2022
    Date of Patent: September 5, 2023
    Assignee: President and Fellows of Harvard College
    Inventors: Donhee Ham, Jeffrey T. Abbott, Wenxuan Wu, Tianyang Ye, Han Sae Jung, Hongkun Park
  • Patent number: 11733278
    Abstract: In some embodiments, the conductivity measurement device includes a conductivity probe, a solid state switch device, and a DC measurement circuit. The conductivity probe includes a first and second measurement pin used to measure a conductivity of the liquid. The solid state switch device is coupled to the conductivity probe and is configured to connect and disconnect the first measurement pin and second measurement pin to a first DC reference voltage and a second DC reference voltage. The DC measurement circuit is configured to generate a measurement signal such that the measurement signal is maintained at a first DC reference voltage and the first DC reference voltage is applied to the solid state switch device from the DC measurement circuit. In this manner, an alternating current (AC) voltage is applied to the measurement pins utilizing DC reference voltages, which helps to avoid contamination of the liquid.
    Type: Grant
    Filed: January 6, 2021
    Date of Patent: August 22, 2023
    Assignee: JENARIAH, LLC
    Inventor: Philip Salkie
  • Patent number: 11731285
    Abstract: An appliance includes: at least one measurement electrode, for detecting at least one object in a detection zone, by detecting a signal with respect to a coupling capacitance between the object and said the at least one measurement electrode; at least one capacitive detection electronics, connected to the at least one measurement electrode, and an electric line, having at least one electric wire, in the detection zone; the appliance also including a signal conditioner, applying to at least a portion of the electric line, an alternating electrical potential (VG), called guard potential, identical to the detection potential at the detection frequency. The appliance can be a robot, in particular a robotized arm, equipped with an electric line providing a power supply to a component part of the robot.
    Type: Grant
    Filed: July 4, 2019
    Date of Patent: August 22, 2023
    Assignee: FOGALE SENSORS
    Inventors: Yacine Chakour, Didier Roziere, Alain Courteville
  • Patent number: 11703537
    Abstract: Disclosed are method and an apparatus for analysis of an interface state of a MIS-HEMT device.
    Type: Grant
    Filed: April 2, 2020
    Date of Patent: July 18, 2023
    Assignee: PEKING UNIVERSITY SHENZHEN GRADUATE SCHOOL
    Inventors: Xinnan Lin, Shuhao Xiong
  • Patent number: 11686753
    Abstract: A capacitance detection method and circuit are provided. The detection method includes: performing charging, base capacitance offsetting, and charge transferring successively on a capacitor to be detected in an i-th first offsetting process of the first offsetting processes, to generate a first output voltage, wherein i?N; performing discharging, base capacitance offsetting, and charge transferring on the capacitor to be detected successively in a j-th second offsetting process of the second offsetting processes, to generate a second output voltage, wherein j?M; and determining a capacitance variation of the capacitor to be detected before and after the capacitor to be detected is affected by an external electric field based on the first output voltages corresponding to N first offsetting processes and the second output voltages corresponding to M second offsetting processes in the detection period.
    Type: Grant
    Filed: September 2, 2020
    Date of Patent: June 27, 2023
    Assignee: SHENZHEN GOODIX TEOHNOLOGY CO., LTD.
    Inventor: Hong Jiang
  • Patent number: 11680922
    Abstract: A composite pane for separating an interior space from an external environment, includes an inner pane, an outer pane with an inner surface, and an intermediate layer that areally joins the inner surface of the outer pane to an outer surface of the inner pane, a capacitive sensor for detecting moisture having at least one capacitor that is connected to an electronic sensor unit, which is provided for detecting a change in capacitance of the capacitor, wherein the capacitor has at least two electrodes formed from a transparent, electrically conductive coating, which are capacitively coupled.
    Type: Grant
    Filed: November 7, 2017
    Date of Patent: June 20, 2023
    Assignee: SAINT-GOBAIN GLASS FRANCE
    Inventors: Christian Effertz, Klaus Schmalbuch, Patrick Weber, Hans-Georg Esser
  • Patent number: 11674989
    Abstract: Various embodiments provide for determining a capacitance (or capacitor value) of a circuit, determining a resistance-capacitance time constant (or RC time constant) of a circuit, or both. The circuit can comprise an integrated circuit (IC), such as a circuit implemented on die. An IC of some embodiments generates a frequency of a dock wave signal (e.g., an output signal) such that the clock wave signal encodes an effective capacitance of the IC, a RC time constant of the IC, or both. A component external to the IC, such as a controller, can receive the clock wave signal and determine the effective capacitance of the IC, the RC time constant of the IC, or both based on the received clock wave signal.
    Type: Grant
    Filed: October 9, 2020
    Date of Patent: June 13, 2023
    Assignee: Cadence Design Systems, Inc.
    Inventors: Mark A. Summers, Rajesh Babu Kunda
  • Patent number: 11668698
    Abstract: The present disclosure provides a three-dimensional micro-electrode that comprises an electrically conductive, elongate body with: a base that is electrically connectible to a recording system; a tip that is opposite the base and that is configured to establish electrical communication with an excitable cellular-network or a cell therein; and an elongate portion between the base and the tip. The elongate portion is covered with at least one layer of an electrical-insulator coating that extends from the base to proximal the tip. The present disclosure also provides a micro-electrode array comprising at least two three-dimensional micro-electrodes that are electrically connective to at least one recording system. The present disclosure also provides a method of making and using a three-dimensional micro-electrode and an array that comprises three-dimensional micro-electrodes.
    Type: Grant
    Filed: April 4, 2018
    Date of Patent: June 6, 2023
    Assignee: NEURAURA BIOTECH INC.
    Inventors: Pierre Jean Jacques Wijdenes, Colin Dalton
  • Patent number: 11635457
    Abstract: A time domain reflectometry measurement apparatus and method is provided. Measurement data of a time domain reflectometry measurement are analyzed with respect to previously acquired empirical measurement data of error-free or faulty devices with known failures. In this way, failures can be identified in the device under test without the need of opening the device.
    Type: Grant
    Filed: August 17, 2020
    Date of Patent: April 25, 2023
    Assignee: ROHDE & SCHWARZ GMBH & CO. KG
    Inventors: Julian Schmid, Reiner Hausdorf, Josef Breher
  • Patent number: 11619602
    Abstract: The present disclosure provides a three-dimensional hydrogel-graphene-based biosensor and a preparation method thereof, belonging to the technical field of biosensors. The present disclosure provides a three-dimensional hydrogel-graphene-based biosensor, including a substrate, an electrode layer, a graphene film, and a three-dimensional hydrogel material layer that are stacked in sequence; where the three-dimensional hydrogel material layer is formed of a hydrogel material having a three-dimensional network structure; the hydrogel material is obtained by polymerization of raw materials including an acrylamide monomer and a modified probe molecule; and the modified probe molecule is a probe molecule modified with an acrylamide group. The three-dimensional hydrogel-graphene-based biosensor has a desirable stability and a high sensitivity.
    Type: Grant
    Filed: August 1, 2022
    Date of Patent: April 4, 2023
    Assignee: HARBIN INSTITUTE OF TECHNOLOGY
    Inventors: Yunlu Pan, Zhuang Hao, Xuezeng Zhao
  • Patent number: 11599226
    Abstract: Systems and methods of printing sensor loops on a sensor mat for use in a steering wheel are disclosed herein. For example, the sensor mat may include a base substrate, one or more printed sensing loops, and an insulating material. The printed sensing loops are made with conductive ink that is disposed upon the base substrate or the insulating layer from a print head and adheres thereto. These sensor mats are versatile with respect to the type of base substrate and insulating materials that may be used, the shape of the sensing loops, and the area each loop may occupy. Shielding loop(s) may also be printed adjacent the sensing loop(s). This configuration allows shielding for the sensing loops as part of the sensing mat, which may reduce the thickness of the steering wheel rim and manufacturing and installation times.
    Type: Grant
    Filed: June 29, 2020
    Date of Patent: March 7, 2023
    Assignee: Joyson Safety Systems Acquisition LLC
    Inventors: Erick Staszak, Dwayne Van'tZelfde, Jason Lisseman
  • Patent number: 11585829
    Abstract: A physical quantity sensor includes a first element section in which first capacitances varying in accordance with a physical quantity have first saturation capacitance values at which the first capacitances are saturated by a first physical quantity, a second element section in which a second capacitances varying in accordance with the physical quantity have second saturation capacitance values at which the second capacitances are saturated by a second physical quantity smaller in absolute value than the first physical quantity, a multiplexer for outputting the first signals from the first element section and the second signals from the second element section, and a determination circuit that determines whether or not the level of the second signal input via the multiplexer reaches a threshold value which is a level of the second signal when the second physical quantity acts.
    Type: Grant
    Filed: October 29, 2020
    Date of Patent: February 21, 2023
    Assignee: SEIKO EPSON CORPORATION
    Inventor: Yoshinao Yanagisawa
  • Patent number: 11579109
    Abstract: A method of calculating a dielectric constant and a dielectric loss of a polymer material including the following steps is provided: providing a polymer having an optimized molecular geometry; analyzing a dipole moment autocorrelation function of the polymer having the optimized molecular geometry; fitting the dipole moment autocorrelation function of the polymer having the optimized molecular geometry via a relaxation function to obtain a corresponding fitting function; calculating a static permittivity of the polymer having the optimized molecular geometry; and obtaining a complex permittivity spectrum via the fitting function and the static permittivity, so as to calculate a corresponding dielectric constant and dielectric loss of the polymer having the optimized molecular geometry.
    Type: Grant
    Filed: November 16, 2021
    Date of Patent: February 14, 2023
    Assignee: NAN YA PLASTICS CORPORATION
    Inventors: Te-Chao Liao, Meng-Huai Han, Chi-Lin Chen
  • Patent number: 11569817
    Abstract: A system for generating an offset signal for a capacitive sensor includes a waveform generator configured to generate a waveform, an R-2R ladder circuit having a constant output resistance that is coupled to an output of the waveform generator and is configured to generate the offset signal based on the waveform, and an adjustable capacitor that is connected between an output of the R-2R ladder circuit and a reference voltage. The capacitive sensor includes one or more sensing electrodes coupled to the waveform generator through a capacitance and is configured to generate a sensed signal by sensing an object. The R-2R ladder circuit and the adjustable capacitor are configured to adjust amplitude and phase of the offset signal such that the amplitude and the phase of the offset signal respectively coincide with an amplitude and a phase of the sensed signal when the sensing electrodes do not sense the object.
    Type: Grant
    Filed: October 15, 2020
    Date of Patent: January 31, 2023
    Inventors: David Willis, Brent Quist
  • Patent number: 11556212
    Abstract: A processing system includes a level shifter, a drive circuit, and a capacitive sensing circuit. The level shifter is configured to generate a first level-shifted output corresponding to a graylevel value and a second level-shifted output corresponding to capacitive sensing control data. The drive circuit is configured to generate an output voltage based at least in part on the first level-shifted output. The capacitive sensing circuit is configured to receive a resulting signal from a sensor electrode and generate, based at least in part on the second level-shifted output, a capacitive sensing output corresponding to the resulting signal.
    Type: Grant
    Filed: February 8, 2021
    Date of Patent: January 17, 2023
    Assignee: Synaptics Incorporated
    Inventor: Shinobu Nohtomi
  • Patent number: 11554262
    Abstract: Cancer treatment using TTFields (Tumor Treating Fields) can be customized to each individual subject by obtaining cancer cells from the subject, determining an electrical characteristic (e.g., dielectrophoretic forces, cell membrane capacitance, etc.) of the cancer cells, determining a frequency for the TTFields based on the determined electrical characteristic, and treating the cancer by applying TTFields to the subject at the determined frequency. In addition, cancer treatment can be planned for each individual subject by obtaining cancer cells from the subject, determining an electrical characteristic of the cancer cells, predicting whether TTFields would be effective to treat the cancer based on the determined electrical characteristic, and treating the subject by applying TTFields if the prediction indicates that TTFields would be effective.
    Type: Grant
    Filed: February 25, 2020
    Date of Patent: January 17, 2023
    Assignee: Novocure GmbH
    Inventors: Moshe Giladi, Einav Zeevi, Cornelia Wenger, Zeev Bomzon
  • Patent number: 11534083
    Abstract: A guide apparatus in the form of two flexible strips marked with scales, arranged perpendicular and slidable with respect to each other is used for anatomical mapping and marking of buttocks, especially for the purpose of defining sites suitable for lateral injection of filler into the buttocks for the purpose of lifting the buttocks as a cosmetic objective.
    Type: Grant
    Filed: January 10, 2020
    Date of Patent: December 27, 2022
    Inventor: Yan Trokel
  • Patent number: 11536758
    Abstract: A system may include an array of sensor elements, the array of sensor elements each comprising a first type of passive reactive element, a second type of passive reactive element electrically coupled to the array of sensor elements, a driver configured to drive the array of sensor elements and the second type of passive reactive element, and control circuitry configured to control enabling and disabling of individual sensor elements of the array of sensor elements to ensure no more than one of the array of sensor elements is enabled at a time such that when one of the array of sensor elements is enabled, the one of the array of sensor elements and the second type of passive reactive element together operate as a resonant sensor.
    Type: Grant
    Filed: July 19, 2019
    Date of Patent: December 27, 2022
    Assignee: Cirrus Logic, Inc.
    Inventors: Jason L. Wardlaw, Michael A. Kost, Anthony S. Doy, Tejasvi Das, Siddharth Maru, Xin Zhao, Matthew Beardsworth, Bruce E. Duewer
  • Patent number: 11525704
    Abstract: A sensor device includes a first electrode and a first signal generation device configured to apply an electrical signal to the first electrode such that the first electrode emits a first electrical field. The sensor device further includes a second electrode located at a first distance from the first electrode and configured to pick up the first electrical field. A third electrode and a second signal generation device configured to apply an electrical signal to the third electrode such that the third electrode emits a second electrical field is included in the sensor device.
    Type: Grant
    Filed: June 26, 2020
    Date of Patent: December 13, 2022
    Assignee: Robert Bosch GmbH
    Inventors: Adam Bonemberg, Chris Fischer, Burkhard Iske, Ralf Becker
  • Patent number: 11515701
    Abstract: A coupling circuit (20) with switching function for coupling an insulation monitoring device (6, 6a, 6b) to an unearthed power supply system (2, 2a, 2b), consisting of a coupling module (22) or a plurality of identical coupling modules (22) connected in series, wherein the coupling module (22) has at least one switch unit (25), which comprises a coupling impedance (26), a switch (24), arranged in series to the coupling impedance (26), for mains disconnection and a control circuit (28) for controlling the switch (24), and also exactly one transformer (30) for voltage supply and for potential separation.
    Type: Grant
    Filed: May 2, 2019
    Date of Patent: November 29, 2022
    Assignee: BENDER GMBH & CO. KG
    Inventors: Andreas Herber, Gerd Joachim Klostermann