Patents Issued in May 9, 2023
  • Patent number: 11644490
    Abstract: A digital power metering system with serial peripheral interface (SPI) multimaster communications is provided. A digital power meter is provided that includes at least one sensor that senses analog electrical parameters on electricity transmission lines from an electrical power distribution system, at least one analog-to-digital converter that receives the analog electrical parameters from the at least one sensor and converts the analog electrical parameters to sampled data; at least one processing device that performs calculations to determine power usage based on the sampled data and control overall operation of the meter, and a Serial Peripheral Interface (SPI), wherein the at least one processing device includes a plurality of processing devices, the SPI allowing one of the plurality of processing devices to become a master and the other processing devices of the plurality of processing devices to become slaves.
    Type: Grant
    Filed: June 22, 2018
    Date of Patent: May 9, 2023
    Assignee: El Electronics LLC
    Inventors: Joseph Spanier, Hai Zhu
  • Patent number: 11644491
    Abstract: A signal adjustment device includes a frequency adjustment circuit, a filter circuit, and a power estimation circuit. The frequency adjustment circuit is configured to receive a two-tone signal from a signal generator and to generate a first signal according to the two-tone signal, wherein the signal generator generates the two-tone signal according to a first coefficient and a second coefficient. The filter circuit is configured to filter the first signal, in order to generate a second signal. The power estimation circuit is configured to detect a power of an intermodulation distortion from the third order signal component, which is associated with the two-tone signal, in the second signal, and to adjust at least one of the first coefficient and the second coefficient according to the power, in order to reduce the power.
    Type: Grant
    Filed: April 26, 2021
    Date of Patent: May 9, 2023
    Assignee: REALTEK SEMICONDUCTOR CORPORATION
    Inventors: Ming-Chung Huang, I-Hua Tseng
  • Patent number: 11644492
    Abstract: A method of monitoring a functional state of an electricity meter, includes generating at least one temperature signal from which an actual temperature value of the electricity meter can be derived; determining whether the actual temperature value and/or a gradient thereof exceeds at least one threshold value derived from at least one predefined temperature curve representing predefined temperature values of the electricity meter over time according to a modelled thermal behaviour of the electricity meter. Further, a computer program, a computer-readable data carrier having stored thereon a computer program, a data carrier signal carrying a computer program, and an electricity meter configured to carry out the computer program are described. Finally, an electricity metering system, in particular an Advanced Metering Infrastructure, includes at least one electricity meter and/or at least one administration device configured to carry out a method of monitoring a functional state of an electricity meter.
    Type: Grant
    Filed: September 6, 2019
    Date of Patent: May 9, 2023
    Assignee: Landis+Gyr AG
    Inventor: Ian Jackson Davis
  • Patent number: 11644493
    Abstract: A method for estimating resistances of a circuit having a plurality of resistances comprising a first resistance and a second resistance may include applying a first bias voltage across the circuit and measuring a first voltage at a common node between the first resistance and the second resistance in order to determine a mathematical relationship between the first resistance and the second resistance, applying a second bias voltage across the circuit and a third resistance in parallel with the circuit and measuring a second voltage at the common node between the first resistance and the second resistance in order to determine a mathematical relationship between the third resistance and at least one of the first resistance and the second resistance, and based on at least the measurement of the first voltage and the measurement of the second voltage, determining the first resistance and the second resistance as a function of the third resistance.
    Type: Grant
    Filed: February 10, 2022
    Date of Patent: May 9, 2023
    Assignee: Cirrus Logic, Inc.
    Inventors: Saurabh Singh, Chandra B. Prakash, Eric Kimball, Cory J. Peterson, Ryan Lobo
  • Patent number: 11644494
    Abstract: Circuitry for driving a load, the circuitry comprising: driver circuitry; load sensing circuitry; and a parameter estimation engine, wherein the circuitry is operable in: a driving mode of operation in which the driver circuitry supplies a drive signal to a load coupled to the circuitry; and a load sensing mode of operation, for estimating a characteristic of a load coupled to the circuitry based on a signal output by the load sensing circuitry in response to a stimulus signal supplied to the driver circuitry, and wherein the circuitry is operable to perform a calibration operation in which the parameter estimation engine generates a circuit parameter for use in the load sensing mode based, at least in part, on a signal generated by the circuitry in response to a calibration stimulus signal supplied to the driver circuitry.
    Type: Grant
    Filed: March 9, 2022
    Date of Patent: May 9, 2023
    Assignee: Cirrus Logic, Inc.
    Inventors: Chandra B. Prakash, Tejasvi Das, Siddharth Maru
  • Patent number: 11644495
    Abstract: A measurement method includes: measuring a reception intensity of radio waves transmitted from a radio wave transmitting apparatus at an installable position of a radio wave receiving apparatus operated by power of radio waves transmitted from the radio wave transmitting apparatus; and determining, on the basis of the reception intensity of radio waves, if the radio wave receiving apparatus can operate when installed at the installable position.
    Type: Grant
    Filed: October 18, 2018
    Date of Patent: May 9, 2023
    Assignee: KYOCERA Corporation
    Inventor: Kazuhiko Kobayashi
  • Patent number: 11644496
    Abstract: An antenna measurement system is configured to measure a radiation field pattern of an AUT fixed on a reference surface. The antenna measurement system includes an articulated robot, a measurement component, and a processor. The articulated robot is seated on a periphery of the reference surface, with a movable end capable of scanning a short-distance area defined by the reference surface. The measurement component is arranged on the movable end of the articulated robot, and a front surface of the measurement component is a specific geometric surface, which is used to face the antenna for radiation measurement. The processor is coupled to the movable end to control the movable end to drive the measurement component to move relative to the antenna along a predefined scanning path, and keep the specific geometric surface facing the antenna during the movement along the scanning path.
    Type: Grant
    Filed: May 4, 2021
    Date of Patent: May 9, 2023
    Assignee: National Taiwan University
    Inventors: Hsi Tseng Chou, Chih Wei Chiu
  • Patent number: 11644497
    Abstract: Aspects of this disclosure relate to detecting and recording information associated with electrical overstress (EOS) events, such as electrostatic discharge (ESD) events. For example, in one embodiment, an apparatus includes an electrical overstress protection device, a detection circuit configured to detect an occurrence of the EOS event, and a memory configured to store information indicative of the EOS event.
    Type: Grant
    Filed: November 23, 2021
    Date of Patent: May 9, 2023
    Assignee: Analog Devices International Unlimited Company
    Inventors: Alan J. O'Donnell, David Aherne, Javier Alejandro Salcedo, David J. Clarke, John A. Cleary, Patrick Martin McGuinness, Albert C. O'Grady
  • Patent number: 11644498
    Abstract: A partial discharge detection apparatus for detecting partial discharge in a power cable and recognizing an insulation deterioration state of the power cable. A low-speed AD converter converts an analog signal of an AC waveform flowing through a power cable into a digital signal. A high-speed AD converter converts an analog signal of a partial discharge current into a digital signal. The partial discharge is detected based on the maximum value or the sum of a current value obtained from the digital signal of the partial discharge current obtained by the conversion of the high-speed AD converter, for each phase of the AC waveform, which is obtained from the digital signal of the AC waveform flowing in the power cable. The digital signal is obtained by the conversion of the low-speed AD converter.
    Type: Grant
    Filed: August 22, 2019
    Date of Patent: May 9, 2023
    Assignee: HITACHI, LTD.
    Inventors: Kazuhisa Takami, Shoji Yoshida, Mitsuyasu Kido, Tatsuya Maruyama
  • Patent number: 11644499
    Abstract: A device, a system, and a method for testing a PCB are provided. The PCB includes a first electrical contact and is applied to a display panel. The device includes a test board, a display assembly, a circuit unit, an aligning portion, and a pressing portion. The PCB and the display assembly are positioned on the test board. One end of the circuit unit defines a second electrical contact, and the other end of the circuit unit defines a third electrical contact. The aligning portion is configured to align the first and the second electrical contacts. The third electrical contact is electrically communicated with the display assembly via an electrically conductive adhesive. The pressing portion is configured to press the circuit unit, so that the second electrical contact is electrically connected with the first electrical contact and the display assembly is electrically communicated with the PCB.
    Type: Grant
    Filed: March 1, 2018
    Date of Patent: May 9, 2023
    Assignees: HKC CORPORATION LIMITED, CHONGQING HKC OPTOELECTRONICS TECHNOLOGY CO., LTD.
    Inventor: Guang Hui Zhang
  • Patent number: 11644500
    Abstract: In one example, a first tubular member has a first diameter and is configured to attach to a printed circuit board. A second tubular member has a second diameter different from the first diameter and is configured to hold an environmental sensor for collecting data relating to an environment of the printed circuit board. The second tubular member is vertically adjustable relative to the first tubular member.
    Type: Grant
    Filed: September 21, 2021
    Date of Patent: May 9, 2023
    Assignee: CISCO TECHNOLOGY, INC.
    Inventors: Mohammed Ghouse, Shailesh Nayak, Damaruganath Pinjala, Rohit Dev Gupta, Mehmet Onder Cap
  • Patent number: 11644501
    Abstract: A reference via in a set of plated vias on a printed circuit board is located. A reference lead is applied to the reference via. A test via in the set of plated vias is located. A test lead is applied to the test via. An electrical conductance between the reference via and the test via is measured. A property of a core layer of the printed circuit board is identified based on the electrical conductance.
    Type: Grant
    Filed: September 21, 2020
    Date of Patent: May 9, 2023
    Assignee: International Business Machines Corporation
    Inventors: Tao Song, Zhongfeng Yang, XiYuan Yin, Xiao Hu, LiCen Mu, Mingman Li
  • Patent number: 11644502
    Abstract: A circuit and a method for reducing interference of power on/off to hardware test. The circuit includes: a power unit, a voltage processing unit, a PSU and a to-be-tested hardware. An input terminal of the voltage processing unit is connected to the power unit, an output terminal of the voltage processing unit is connected to an input terminal of the PSU, and an output terminal of the PSU is connected to the to-be-tested hardware; the power unit is configured to provide an operating voltage; the voltage processing unit is configured to eliminate electric sparks caused by instability of the operating voltage at an instant of power on/off; the PSU is configured to convert a stable operating voltage outputted from the voltage processing unit into a direct current voltage required for the to-be-tested hardware; and the to-be-tested hardware is configured to receive the direct current voltage outputted from the PSU.
    Type: Grant
    Filed: June 27, 2019
    Date of Patent: May 9, 2023
    Assignee: ZHENGZHOU YUNHAI INFORMATION TECHNOLOGY CO., LTD.
    Inventor: Zhihua Ge
  • Patent number: 11644503
    Abstract: This disclosure describes a novel method and apparatus for testing TSVs within a semiconductor device. According to embodiments illustrated and described in the disclosure, a TSV may be tested by stimulating and measuring a response from a first end of a TSV while the second end of the TSV held at ground potential. Multiple TSVs within the semiconductor device may be tested in parallel to reduce the TSV testing time according to the disclosure.
    Type: Grant
    Filed: June 23, 2022
    Date of Patent: May 9, 2023
    Assignee: Texas Instruments Incorporated
    Inventors: Lee D. Whetsel, Baher S. Haroun
  • Patent number: 11644504
    Abstract: In accordance with an embodiment, a system includes an oscillator equipped circuit having an oscillator control circuit configured to be coupled to an external oscillator and a processing unit comprising a clock controller. The clock controller includes an interface circuit configured to exchange handshake signals with the oscillator control circuit, a security circuit configured to receive the external oscillator clock signal and configured to select the external oscillator clock signal as the system clock, and a detection block configured to detect a failure in the external oscillator clock signal. Upon detection of the failure, a different clock signal is selected as the system clock and the interface circuit to interrupts a propagation of the external oscillator.
    Type: Grant
    Filed: February 14, 2020
    Date of Patent: May 9, 2023
    Assignee: STMicroelectronics S.r.l.
    Inventors: Mirko Dondini, Daniele Mangano, Salvatore Pisasale
  • Patent number: 11644505
    Abstract: In a measurement system, a signal probing circuit may provide probed signals by probing voltages and currents and/or incident and reflected waves at a port of a device under test (DUT). A multi-channel receiver structure may include receivers that receive two probed signals from the signal probing hardware circuit, each receiver having its own sample clock derived from a master clock and further having a respective digitizer for digitizing a corresponding one of the two probed signals. A synchronization block, external to the receivers and including a reference clock derived from the master clock, may enable the two probed signals to be phase coherently digitized across the receivers by synchronizing the respective sample clocks of the receivers while the reference clock is being shared with the receivers. A signal processing circuit may then process the phase coherently digitized probed signals.
    Type: Grant
    Filed: January 20, 2022
    Date of Patent: May 9, 2023
    Assignee: National Instruments Ireland Resources Limited
    Inventor: Marc Vanden Bossche
  • Patent number: 11644506
    Abstract: A fault detection method is used to determine whether a power switch coupled to a DC bus of a power conversion circuit is faulted. The method includes: detecting a bus voltage to provide a voltage signal and acquiring at least one detection value according to the voltage signal; providing control signals sequentially to turn off or turn on the power switch; determining that the power switch is a short-circuit fault if a first detection value is greater than or equal to a first threshold value when the power switch is turned off; determining that the power switch is an open-circuit fault if a second detection value is less than a second threshold value when the power switch is turned on; and providing an alarm signal or a disable signal when the power switch is the short-circuit fault or the open-circuit fault.
    Type: Grant
    Filed: March 1, 2021
    Date of Patent: May 9, 2023
    Assignee: DELTA ELECTRONICS, INC.
    Inventors: Shao-Kai Tseng, Yuan-Qi Hsu, Pai-En Cheng
  • Patent number: 11644507
    Abstract: Passive monitoring the integrity of current sensing devices and associated circuitry in GFCI and AFCI protective devices is provided. A protection circuit interrupter employs a capacitively coupled noise signal obtained by an arrangement of one or both of line side arms relative to a Rogowski coil. The noise signal is monitored while the line and load sides of a protective circuit interrupter are disconnected, and the connection of the line and load sides disabled if the noise signal fails to correlate sufficiently to a reference noise cycle. When the line and load sides are connected, the RMS value of the observed current signal is monitored such that the line and load sides are disconnected if the observed current signal fails to meet an RMS threshold. The observed current signal is compensated by subtracting the reference noise cycle prior to monitoring for the fault condition applicable to the protective device.
    Type: Grant
    Filed: July 20, 2022
    Date of Patent: May 9, 2023
    Assignee: Hubbell Incorporated
    Inventors: Gary Michael Miller, William Vernon Miller, III, Edward Shi Chen
  • Patent number: 11644508
    Abstract: Disclosed is a method and apparatus for measuring a battery state. The method includes determining an operational mode of a battery; measuring a battery state of the battery using an electrochemical model in response to the battery determined to be operating in a low rate mode, and measuring the battery state using a modified electrochemical model based on a characteristic of the battery, in response to the battery determined to be operating in a high rate mode.
    Type: Grant
    Filed: October 27, 2020
    Date of Patent: May 9, 2023
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Tae Won Song, Jinho Kim, Young Hun Sung
  • Patent number: 11644509
    Abstract: An estimation method for a battery system includes mapping an upper limit and a lower limit of the state of charge of the second-system battery to a state of charge interval of the battery system, to establish a mapping relationship between the upper limit and the lower limit of the state of charge of the second-system battery and the state of charge interval of the battery system. The method includes calculating the state of charge of the second-system battery and estimating a state of charge of the battery system according to the mapping relationship.
    Type: Grant
    Filed: April 8, 2021
    Date of Patent: May 9, 2023
    Assignee: NIO TECHNOLOGY (ANHUI) CO., LTD.
    Inventors: Wei Cai, Rui Hua, Shizhe Tzeng, Haoming Yan
  • Patent number: 11644510
    Abstract: A battery characterization system includes a drive-sense circuit (DSC), memory that stores operational instructions, and processing module(s) operably coupled to the DSC and the memory. Based on a reference signal, the DSC generates a charge signal, which includes an AC (alternating current) component, and provides the charge signal to a terminal of a battery via a single line and simultaneously to senses the charge signal via the single line to detect an electrical characteristic of the battery based on a response of the battery. The DSC generates a digital signal representative of the electrical characteristic of the battery. The processing module(s), based on the operational instructions, generate the reference signal to include a frequency sweep of the AC component of the charge signal (e.g.
    Type: Grant
    Filed: July 27, 2022
    Date of Patent: May 9, 2023
    Assignee: SIGMASENSE, LLC.
    Inventors: Patrick Troy Gray, Gerald Dale Morrison, Michael Frederick David Olley, Daniel Keith Van Ostrand, Richard Stuart Seger, Jr.
  • Patent number: 11644512
    Abstract: A battery monitoring device includes: an oscillator causing an AC signal to flow in the battery cell; a subtractor acquiring voltage fluctuation of the battery cell when the AC signal flows as a response signal; and a calculation unit calculating complex impedance. The calculation unit calculates the complex impedance based on a multiplication value X of the response signal and a first reference signal outputted in synchronization with the AC signal, and a multiplication value Y of the response signal and the second reference signal obtained by shifting the phase of the AC signal. The AC signal is a rectangular wave signal, the first reference signal is a rectangular wave signal outputted in synchronization with the AC signal, and the second reference signal is a rectangular wave signal, the phase of which is shifted so as not to be outputted overlapping with the first reference signal.
    Type: Grant
    Filed: July 6, 2020
    Date of Patent: May 9, 2023
    Assignee: DENSO CORPORATION
    Inventor: Tomomichi Mizoguchi
  • Patent number: 11644513
    Abstract: A Battery Management System (BMS) inspects a battery pack using AC impedance. A controller on the BMS drives a Pulse-Width Modulation (PWM) output signal to an on-board excitation regulator such as a synchronous buck converter that modulates a limited energy unit such as a capacitor with a swept frequency of a PWM input signal. The capacitor modulations are applied to a terminal of the battery pack as an AC excitation signal. Synchronous sampling of the battery pack provides responses to the AC excitation signal. An AC excitation signal current and a battery response voltage are processed and Fourier-transformed to generate a Nyquist plot of the excitation-response data. Curve shifts can indicate worn battery cells. The capacitor generating the AC excitation signal draws little energy from the battery pack so AC impedance inspection can occur during all modes: charging, discharging, and idle modes without an external power supply.
    Type: Grant
    Filed: January 7, 2022
    Date of Patent: May 9, 2023
    Assignee: Hong Kong Applied Science and Technology Research Institute Company Limited
    Inventors: Wenlong Ding, Meng Chen, Yaofeng Sun, Manxin Chen
  • Patent number: 11644514
    Abstract: A deterioration amount estimation device includes a calculation unit (CPU33) that calculates a deterioration amount of an energy storage device and an estimation unit (CPU33) that estimates a transient deterioration amount based on a deterioration amount calculated by the calculation unit and a continuous deterioration amount that does not decrease with time and continues. The transient deterioration amount is estimated, and the input/output of the energy storage device is limited to suppress an increase in the continuous deterioration amount.
    Type: Grant
    Filed: October 2, 2018
    Date of Patent: May 9, 2023
    Assignee: GS YUASA INTERNATIONAL LTD.
    Inventors: Kazuki Furukawa, Hiroki Matsui
  • Patent number: 11644515
    Abstract: A computer-implemented method for operating a motor vehicle, in particular an electrically drivable motor vehicle, depending on a predicted state of health of an electrical energy store, in particular a vehicle battery. The method includes: providing vehicle parameters which influence the state of health of the electrical energy store; predicting the vehicle parameters at a prediction point in time; ascertaining the predicted state of health depending on the predicted vehicle parameters with the aid of a data-based state of health model which is trained to output a state of health of the electrical energy store depending on the vehicle parameters; and signaling the predicted state of health.
    Type: Grant
    Filed: May 12, 2021
    Date of Patent: May 9, 2023
    Assignee: ROBERT BOSCH GMBH
    Inventors: Andras Gabor Kupcsik, Christian Simonis, Christoph Woll, Reinhardt Klein
  • Patent number: 11644516
    Abstract: The disclosure is directed to systems and methods by which the lifetime, e.g., remaining life or amount of life used, of variable use items, such as rechargeable batteries, battery relays, vehicles and power tools, can be determined that takes into account the conditions of the use of the item. The systems and methods involve an algorithm that can be described as accumulating points based on the real time utilization of the item, e.g., rechargeable battery, battery relay, vehicle, or power tool, and when an agreed-upon number of points have been accumulated, the item can be considered to be at end of life or end of warranty.
    Type: Grant
    Filed: November 2, 2021
    Date of Patent: May 9, 2023
    Assignee: Robert Bosch GmbH
    Inventor: Mark Kotik
  • Patent number: 11644517
    Abstract: An object of the present invention is to provide a magnetic sensor less subject to an environmental magnetic field. A magnetic sensor includes magnetic detection elements MR1 to MR4 positioned on a first plane P1 and a magnetic member 30A provided on a second plane P2. The magnetic member 30A includes first and second leg parts 41 and 42 and a first main body part 51 positioned between the first and second leg parts 41 and 42 so as to form a first space 61 between itself and the second plane P2. The magnetic detection elements MR1 to MR4 are covered with the first main body part 51. According to the present invention, magnetic field to be detected is collected to the first and second leg parts 41 and 42, and the magnetic detection elements MR1 to MR4 are covered with the first main body part 51, thereby allowing an environmental magnetic field acting as noise to bypass the magnetic detection elements MR1 to MR4 through the first main body part 51.
    Type: Grant
    Filed: January 5, 2022
    Date of Patent: May 9, 2023
    Assignee: TDK CORPORATION
    Inventor: Kei Tanabe
  • Patent number: 11644518
    Abstract: The present invention provides a method for compensation of periodic B0 modulations from a periodic motion of a cold head (212) of a main magnet (114) of a magnetic resonance (MR) imaging system (110), whereby main windings (200) of the main magnet (114) are cooled to superconductivity by the cold head (212), which exerts a repetitive motion, the method comprising the steps of measuring a periodic occurrence of spatial field components of the B-field based on a motion of the cold head (212) as a function of time, performing a sensor measurement of a periodic, auxiliary parameter of the MR imaging system (110), which is not the periodic occurrence of spatial field components, synchronizing the periodic occurrence of spatial field components of the B-field with the measured periodic, auxiliary parameter of the MR imaging system (110), and triggering based on the measured periodic sensor measurement of the MR imaging system (110) a periodic application of compensation signals to compensate the periodic occurrenc
    Type: Grant
    Filed: January 12, 2018
    Date of Patent: May 9, 2023
    Assignee: Koninklijke Philips N.V.
    Inventors: Cornelis Leonardus Gerardus Ham, Filips Van Liere
  • Patent number: 11644519
    Abstract: The present disclosure relates to systems and methods for shielding electromagnetic waves. The system may include an imaging device, a shielding layer assembly disposed on at least a first portion of the imaging device, and a shielding cover assembly disposed on at least a second portion of the imaging device. When the shielding cover assembly is coupled to the shielding layer assembly, the shielding cover assembly and the shielding layer assembly may be combined to form a shielding space that is shielded against electromagnetic waves from an outside of the shielding space.
    Type: Grant
    Filed: March 25, 2021
    Date of Patent: May 9, 2023
    Assignee: SHANGHAI UNITED IMAGING HEALTHCARE CO., LTD.
    Inventors: Bo Li, Xiangyu Ma
  • Patent number: 11644520
    Abstract: Described herein are systems, methods, and computer-readable medium for magnetic resonance (MR) based thermometry. In one aspect, in accordance with one embodiment, a method for magnetic resonance based thermometry includes: acquiring, by a variable flip-angle T1 mapping sequence, MR data in an area of interest of a subject that is heated by the application of focused ultrasound (FUS) to the brain of the subject, where the MR data includes T1 values over time, and where the acquisition of the MR data includes applying an accelerated three-dimensional ultra-short spiral acquisition sequence with a nonselective excitation pulse; and determining, based at least in part on a mathematical relationship established by T1 mapping thermometry, a temperature change in the area of interest over time, and where the temperature change is caused at least in part by a change in the applied FUS.
    Type: Grant
    Filed: January 8, 2021
    Date of Patent: May 9, 2023
    Assignee: University of Virginia Patent Foundation
    Inventors: Yekaterina K. Gilbo, Helen L. Sporkin, Samuel W. Fielden, John P. Mugler, III, Grady W. Miller, IV, Steven P. Allen, Craig H. Meyer
  • Patent number: 11644521
    Abstract: Circuitry comprising: a voltage monitoring path; a current monitoring path; a reference element of a predefined impedance; and processing circuitry, wherein in operation of the circuitry in a calibration mode of operation: the voltage monitoring path is operative to output a signal indicative of a voltage across the reference element in response to a reference signal applied to the reference element; the current monitoring path is operative to output a signal indicative of a current through the reference element in response to the reference signal; and the processing circuitry is operative to: receive the signal indicative of the voltage across the reference element and the signal indicative of the current through the reference element; generate an estimate of an impedance of the reference element; and determine a compensation parameter for an element of the circuitry for compensating for a difference between the estimate of the impedance and the predefined impedance of the reference element.
    Type: Grant
    Filed: March 9, 2022
    Date of Patent: May 9, 2023
    Assignee: Cirrus Logic, Inc.
    Inventors: Ryan A. Hellman, Viral Parikh, Siddharth Maru, Tejasvi Das
  • Patent number: 11644522
    Abstract: In 5G and 6G, beam alignment remains an arduous, time-consuming process. Procedures are disclosed herein for rapid and efficient beam alignment, by configuring a phased-array antenna to emit a “triangular beam”, which is a wide beam that varies in angle from a high power at angle-1 to a low power at angle-2, with a ramp-like intensity variation in the region between the two angles. Then a second signal is emitted, with the triangular distribution reversed (higher power at angle-2). A receiver can then measure the as-received amplitudes from the two triangular beams, calculate the ratio of signal reception from the two beams, and thereby determine the alignment angle. In another version, the transmitter transmits two non-directional pulses, and the receiver detects them using a triangular sensitivity distribution versus angle. By either method, the devices can align their beams using just two triangle beam pulses, saving substantial time, resources, and background generation.
    Type: Grant
    Filed: August 16, 2022
    Date of Patent: May 9, 2023
    Assignee: Ultralogic 6G, LLC
    Inventors: David E. Newman, R. Kemp Massengill
  • Patent number: 11644523
    Abstract: Embodiments of the disclosure are drawn to apparatuses, systems, and methods for radio direction finding with an iterative ambiguity resolution algorithm. An antenna array may receive an emitted signal. Two or more phase shifts in the received emitted signal may be determined between two or more pairs of antennas of the antenna array. A set of possible expected phase shifts may be generated from at least two of the measured phase shift. To determine the proper one of the set of expected phase shifts, a set of initial guesses for parameters of a fitting equation may be generated and then each may be optimized to determine optimized fitting parameters. From these optimized fitting parameters a direction of arrival of the emitted signal may be determined.
    Type: Grant
    Filed: March 29, 2021
    Date of Patent: May 9, 2023
    Assignee: INTEGRITY COMMUNICATIONS SOLUTIONS, INC.
    Inventors: Clark Phillip Mourning, Thomas Cloud, Michael Lenn Tipton, Stefan Josef Liller
  • Patent number: 11644524
    Abstract: An ultra-wideband (UWB) localization method, a UWB localization device, and a UWB localization system are provided. The UWB method includes: determining whether or not a plurality of UWB hardware measurement deviations are calibrated; determining, when the UWB hardware measurement deviations are calibrated, whether or not a plurality of anchor coordinates of anchors are automatically measured; obtaining, when the anchor coordinates of the anchors are automatically measured, a plurality of measurement distances between each of the anchors and a tag, respectively, and deducting the UWB hardware measurement deviations from the measurement distances, respectively; and calculating a tag coordinate of the tag according to the measurement distances from which the UWB hardware measurement deviations are deducted.
    Type: Grant
    Filed: March 8, 2021
    Date of Patent: May 9, 2023
    Assignee: PSJ INTERNATIONAL LTD.
    Inventors: Ruey-Beei Wu, Yu-Er Chen
  • Patent number: 11644525
    Abstract: A location server collects from access points at known locations in a venue, which is represented by grid locations defined by parameters accessible to the location server, (i) ultra wideband (UWB) location measurements for a UWB location technology based on UWB transmissions from mobile devices in the venue, and (ii) non-UWB location measurements for non-UWB location technologies based on non-UWB transmissions from the mobile devices. The location server associates the non-UWB location measurements for the non-UWB location technologies with the grid locations, using the UWB location measurements as reference measurements. The location server populates location calibration records for the grid locations of the venue with the non-UWB location measurements associated with the grid locations. The location server calibrates the non-UWB location technologies at the grid locations based on the non-UWB location measurements in the location calibration records associated with the grid locations.
    Type: Grant
    Filed: November 4, 2020
    Date of Patent: May 9, 2023
    Assignee: CISCO TECHNOLOGY, INC.
    Inventors: Matthew Aaron Silverman, Jerome Henry, Robert Edgar Barton, Sivadeep R. Kalavakuru
  • Patent number: 11644526
    Abstract: A system for localizing a transmitting wireless device within a known volume, the system including antennae deployed in respective locations at least some within the known volume, each of the antennae operative to receive and output a signal from the transmitting device; analog-to-digital converter/s; and a processor receiving digital sampled received signals and computing real time output parameter/s as function of: sampled received signals S, received from the transmitting wireless device at antenna i; and of sampled signals, received from the transmitting wireless device at antenna j and sampled, simultaneously with reception at antenna I and sampling of sampled received signals S, function being independent of power level at which transmitting device is transmitting, and to estimate transmitting wireless device's location within volume by comparing the parameter/s to reference output parameters respectively having known correspondence to known possible locations/s within volume, for at least two of the an
    Type: Grant
    Filed: January 13, 2020
    Date of Patent: May 9, 2023
    Assignee: SAVERONE 2014 LTD.
    Inventors: Yaakov Shoshan, Yossef Cohen, Amiram Gur Gerasi
  • Patent number: 11644527
    Abstract: Local terrain feature location data is obtained from a local sensor device at a user location without a prior-known global position. The local terrain feature location data characterizes relative distances and directions to a plurality of local terrain features nearest to the user location. Global terrain feature location data stored in at least one hardware memory device is accessed. The global terrain feature location data characterizes relative distances and directions between a plurality of distinctive terrain features located in a defined terrain region in terms of absolute global location coordinates. The local terrain feature location data is compared to the global terrain feature location data to develop multiple pattern matching hypotheses, wherein each pattern matching hypothesis characterizes a likelihood of a subset of the local terrain features matching a subset the global terrain features. Global location coordinates for the user location is then determined from the pattern matching hypotheses.
    Type: Grant
    Filed: March 4, 2019
    Date of Patent: May 9, 2023
    Assignee: The Charles Stark Draper Laboratories, Inc.
    Inventors: Patrick O'Shea, William W. Whitacre, Christopher C. Yu, Juha-Pekka J. Laine, Charles A. McPherson
  • Patent number: 11644528
    Abstract: An apparatus for generating at least one distance estimate to at least one sound source within a sound scene comprising the least one sound source, the apparatus configured to: receive at least two audio signals from a microphone array located within the sound scene; receive at least one further audio signal associated with the at least one sound source; determine at least one portion of the at least two audio signals from a microphone array corresponding to the at least one further audio signal associated with the at least one sound source; determine a distance estimate to the at least one sound source based on the at least one portion of the at least two audio signals from a microphone array corresponding to the at least one further audio signal associated with the at least one sound source.
    Type: Grant
    Filed: June 13, 2018
    Date of Patent: May 9, 2023
    Assignee: NOKIA TECHNOLOGIES OY
    Inventors: Antti Eronen, Arto Lehtiniemi, Tapani Pihlajakuja, Jussi Leppänen
  • Patent number: 11644529
    Abstract: Methods, systems, and devices for wireless communications are described. In some systems, radio signals may reach a receiving antenna at a user equipment by two or more paths, which can cause interference (e.g., destructive multipath interference, constructive multipath interference, etc.). To reduce the interference, the user equipment may perform interference suppression, shaping, or both based on choosing radar waveform patterns that are varied across chirps. In one aspect, the user equipment (e.g., a vehicle) may identify waveform patterns selected by nearby vehicles based on side channel or centralized signaling and may suppress or shape interference by selecting waveform parameters based on this information. In one aspect, the pattern of waveform parameters is chosen from a codebook of patterns. The selected pattern can be broadcasted to the other vehicles using a side-communication channel.
    Type: Grant
    Filed: March 14, 2019
    Date of Patent: May 9, 2023
    Assignee: QUALCOMM Incorporated
    Inventors: Kapil Gulati, Junyi Li, Sundar Subramanian, Jayakrishnan Unnikrishnan
  • Patent number: 11644530
    Abstract: A radio frequency (RF) circuit includes an input terminal configured to receive a reception signal from an antenna; an output terminal configured to output a digital output signal; a receive path including a mixer and an analog-to-digital converter (ADC), wherein the receive path is coupled to and between the input and output terminals, wherein the receive path includes an analog portion and a digital portion, and wherein the ADC generates a digital signal based on an analog signal received from the analog portion; a test signal generator configured to generate an analog test signal injected into the analog portion of the receive path; and a digital processor configured to receive a digital test signal from the digital portion, the digital test signal being derived from the analog test signal, analyze a frequency spectrum of the digital test signal, and determine a quality of the digital test signal.
    Type: Grant
    Filed: October 2, 2020
    Date of Patent: May 9, 2023
    Assignee: Infineon Technologies AG
    Inventors: Alexander Melzer, Francesco Lombardo
  • Patent number: 11644531
    Abstract: An ad hoc approach denoted as devoid clutter capture and filling (DeCCaF) that addresses the nonstationarity effects that arise when input radar waveform returns exhibiting dynamic spectra variations are processed to combat dynamic RFI is disclosed. Portions of the spectra of each input waveform return of a set of input radar waveform returns processed during the CPI may be filled with clutter information borrowed from other waveform returns of the set of waveform returns. DeCCaF may combined with an appropriate filter (e.g., a matched filter, a mismatched filter) to achieve results that are nearly indistinguishable from input radar waveform returns in which no spectral variation are present.
    Type: Grant
    Filed: September 21, 2020
    Date of Patent: May 9, 2023
    Assignee: University of Kansas
    Inventors: Jonathan William Owen, Gerald Brandon Ravenscroft, Shannon D. Blunt
  • Patent number: 11644532
    Abstract: Method and device for radar transmission and reception by dynamic change of polarization notably for the implementation of interleaved radar modes are provided.
    Type: Grant
    Filed: March 31, 2020
    Date of Patent: May 9, 2023
    Assignee: THALES
    Inventors: Nicolas Porez, Pascal Cornic, Patrick Garrec
  • Patent number: 11644533
    Abstract: Example embodiments present radar units capable of operating in multiple polarizations. An example radar unit may include a set of transmission antennas and a set of reception antennas. Particularly, the transmission antennas may each be configured to transmit radar signals that radiate in one or more of four potential polarizations. The four polarizations can correspond to horizontal linear, vertical linear and slanted polarizations at approximately positive forty-five degrees and negative forty-five degrees from the horizontal plane. As such, the reception antennas of the radar unit may each be configured to receive reflected radar signals that are radiating in one of the four potential polarizations. The radar unit may further include an amplifier configured to cause one or multiple transmission antennas to selectively transmit between two or more of the four polarization channels.
    Type: Grant
    Filed: November 18, 2020
    Date of Patent: May 9, 2023
    Assignee: Waymo LLC
    Inventors: Jamal Izadian, Philip Ma
  • Patent number: 11644534
    Abstract: For example, a radar data compressor may include an input to receive input digital raw data comprising digital samples of received radar signals at a plurality of receive (Rx) antennas; a raw data compressor configured to compress the input digital raw data into compressed digital data, for example, by wiping off from the input digital raw data one or more wiped-off signals, e.g., based on a wipe-off criterion applied to the input digital raw data; and a compressor output to provide compressed data including the compressed digital data, and signal parameter information defining the one or more wiped-off signals.
    Type: Grant
    Filed: December 26, 2019
    Date of Patent: May 9, 2023
    Assignee: INTEL CORPORATION
    Inventors: Lior Maor, Alon Cohen
  • Patent number: 11644535
    Abstract: A system for providing integrated detection and deterrence against an unmanned vehicle including but not limited to aerial technology unmanned systems using a detection element, a tracking element, an identification element and an interdiction or deterrent element. Elements contain sensors that observe real time quantifiable data regarding the object of interest to create an assessment of risk or threat to a protected area of interest. This assessment may be based e.g., on data mining of internal and external data sources. The deterrent element selects from a variable menu of possible deterrent actions. Though designed for autonomous action, a Human in the Loop may override the automated system solutions.
    Type: Grant
    Filed: May 31, 2022
    Date of Patent: May 9, 2023
    Assignee: XiDrone Systems, Inc.
    Inventors: Dwaine A. Parker, Damon E. Stern, Lawrence S. Pierce
  • Patent number: 11644536
    Abstract: A system simulates a moving target for a radar system under test. The system includes a Doppler simulation circuit (DSC), coupled to an input, to apply a frequency shift to RF pulses received on an RF signal to simulate speed. A signal attenuator coupled to the DSC is to simulate signal attenuation due to propagation loss of the RF pulses in atmosphere. A pulse detection circuit is to detect time of receipt of the RF pulses, including a first time of receipt of a falling edge of a first RF pulse. An I/O controller updates a value of the frequency shift for the DSC and of the signal attenuation for the signal attenuator during a time period between the first RF pulse and one of a second RF pulse or a second time at which the second RF pulse should have been received in case of a missing pulse.
    Type: Grant
    Filed: October 29, 2020
    Date of Patent: May 9, 2023
    Assignee: Eastern OptX, Inc.
    Inventors: Howard Salvesen, Edward J. MacMullen, Joseph Mazzochette, Jerome Lomurno
  • Patent number: 11644537
    Abstract: A LIDAR system is provided. In one example, the LIDAR system can include an emitter configured to emit a light signal through one or more transmit lenses positioned along a transmit path to provide transmit signals to a surrounding environment. The LIDAR system can include a receiver spaced apart from the emitter. The receiver configured to detect return signals corresponding to reflected transmit signals from the surrounding environment. The return signals can be received via one or more receive lenses positioned along a receive path. The LIDAR system can include an actuator coupled to the one or more transmit lenses. The actuator can be operable to impart a motion to the one or more transmit lenses to provide for steering of the transmit signals in the surrounding environment.
    Type: Grant
    Filed: June 11, 2020
    Date of Patent: May 9, 2023
    Assignee: UATC, LLC
    Inventors: Martin Millischer, Gaetan Pennecot
  • Patent number: 11644538
    Abstract: An optical distance measuring device and a method for operating an optical distance measuring device are disclosed. In an embodiment an optical distance measuring device includes a pixelated radiation source with at least two pixels, a radiation detector configured to detect electromagnetic radiation emitted by the radiation source and reflected in measuring regions and a control unit configured to operate the radiation source and to receive electrical signals from the radiation detector, wherein the pixelated radiation source is configured to illuminate different measuring regions with electromagnetic radiation with pairwise different properties.
    Type: Grant
    Filed: June 28, 2018
    Date of Patent: May 9, 2023
    Assignee: OSRAM OLED GmbH
    Inventors: Michael Schumann, Dominik Schulten, Dominik Scholz
  • Patent number: 11644539
    Abstract: Light signals are converted into first electric signals by a first group of light-receiving elements, and the light signals are additionally converted into second electrical signals by a second group of light-receiving elements. The second group has a lower degree of sensitivity for converting the photons into an electric current than the first group. The first electric signals are used to ascertain the distance to an object by means of a time-correlated photon counting process depending on a starting time for the emission of the light signals. Furthermore, the second electric signals are used to determine the distance depending on the starting time but using a second signal processing different from the process used for the first electric signals.
    Type: Grant
    Filed: November 20, 2018
    Date of Patent: May 9, 2023
    Assignee: Microvision, Inc.
    Inventors: Ralf Beuschel, Michael Kiehn, Michael Köhler
  • Patent number: 11644540
    Abstract: An optical scanning device includes: first and second mirrors; an optical waveguide layer disposed between the first and second mirrors; a pair of electrodes sandwiching the optical waveguide layer; and a driving circuit that applies a voltage to the pair of electrodes. The first mirror emits part of light propagating through the optical waveguide layer to the outside. The optical waveguide layer contains a liquid crystal material or an electrooptical material. The alignment direction of the liquid crystal material or the direction of a polarization axis of the electrooptical material is parallel or perpendicular to the direction in which the optical waveguide layer extends. The driving circuit applies the voltage to the pair of electrodes to change the refractive index of the liquid crystal material or the electrooptical material to thereby change the light emission direction.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: May 9, 2023
    Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
    Inventors: Nobuaki Nagao, Yoshikazu Yamaoka, Yasuhisa Inada, Akira Hashiya, Taku Hirasawa