Patents Examined by Steven L Yeninas
  • Patent number: 11460525
    Abstract: Various methods and systems are provided for a flexible, lightweight, and low-cost radio frequency (RF) trap for use in a magnetic resonance imaging (MRI) system. In one example, a radio frequency (RF) trap assembly for use in a magnetic resonance imaging (MRI) system is provided, comprising a twinax wire assembly having a plurality of looped portions, each ones of the plurality of looped portions tangentially in contact with a shielded cable, and at least one support structure for substantially maintaining the shape of the plurality of looped portions, the support structure surrounding a portion of the shielded cable, wherein the twinax wire assembly is tuned to a frequency suitable for increasing the impedance of the shielded cable.
    Type: Grant
    Filed: February 12, 2020
    Date of Patent: October 4, 2022
    Assignee: GE PRECISION HEALTHCARE LLC
    Inventors: Victor Taracila, Fraser John Laing Robb, Aleksey Zemskov, David Louis Seamon Anderson
  • Patent number: 11454689
    Abstract: A magnetic resonance imaging apparatus according to an embodiment includes sequence controlling circuitry and processing circuitry. The sequence controlling circuitry is configured to execute a first pulse sequence including application of a Magnetization Transfer (MT) pulse and to subsequently execute a second pulse sequence including application of an MT pulse after an action that causes a change in a physiological state of a patient. The processing circuitry is configured to generate a first Z-spectrum based on data obtained by executing the first pulse sequence, to generate a second Z-spectrum based on data obtained by executing the second pulse sequence, and to generate data by performing an analysis based on the first Z-spectrum and the second Z-spectrum.
    Type: Grant
    Filed: September 5, 2019
    Date of Patent: September 27, 2022
    Assignee: CANON MEDICAL SYSTEMS CORPORATION
    Inventor: Mitsue Miyazaki
  • Patent number: 11447352
    Abstract: Provided is a sensor control apparatus including a main board, a first sensor, a second sensor, and a third sensor, which are connected in series to the main board. The first sensor includes a diagnosis unit configured to perform a failure diagnosis of each of an LED, a phototransistor, and an LED controller. In a case where a failure is detected, the diagnosis unit electrically isolates the first sensor from the series connection, and supplies a power supply voltage to the second sensor.
    Type: Grant
    Filed: March 19, 2020
    Date of Patent: September 20, 2022
    Assignee: Canon Kabushiki Kaisha
    Inventor: Mitsuhiro Sugeta
  • Patent number: 11441925
    Abstract: A method for defining a measurement range, called the useful span, of the inductive position sensor with emission of a cosine and sine signal by at least one first receiver winding and at least one second receiver winding, respectively. The cosine signal emitted by the one or more second receiver windings is taken as reference signal between the two sine and cosine signals for an adjustment of at least one parameter of the sine signal depending on a corresponding parameter of the cosine signal, at least one of the dimension and positioning parameters of the one or more first receiver windings being configured to generate a sine signal having the at least one parameter of the sine signal adjusted with respect to the cosine signal.
    Type: Grant
    Filed: September 6, 2018
    Date of Patent: September 13, 2022
    Inventor: Alain Fontanet
  • Patent number: 11442098
    Abstract: Example automatic test equipment (ATE) includes a first test instrument to receive a waveform from a device under test, where the waveform is based on test signals sent from the ATE to the DUT; circuitry to generate digital pulses based on the waveform; and a second test instrument to receive the digital pulses over at least two digital pins and to process the digital pulses to test the DUT.
    Type: Grant
    Filed: June 20, 2019
    Date of Patent: September 13, 2022
    Assignee: TERADYNE, INC.
    Inventors: Brian Charles Wadell, Richard Pye
  • Patent number: 11439314
    Abstract: An image processing apparatus according to an embodiment includes processing circuitry. The processing circuitry generates an image by performing an analysis based on a Z-spectrum generated based on data obtained by executing a pulse sequence including application of a Magnetization Transfer (MT) pulse and causes a display to display the generated image by dividing the image into a plurality of segments.
    Type: Grant
    Filed: September 5, 2019
    Date of Patent: September 13, 2022
    Assignee: CANON MEDICAL SYSTEMS CORPORATION
    Inventor: Mitsue Miyazaki
  • Patent number: 11445274
    Abstract: Systems and methods for obtaining telemetry environmental readings from within an electromagnetic-absorbing material are disclosed herein. The system may include a self-contained power source powering a switch-mode amplifier to drive a multi-turn coil to be driven with a low-frequency carrier.
    Type: Grant
    Filed: June 14, 2018
    Date of Patent: September 13, 2022
    Assignee: GroGuru, Inc.
    Inventor: Jeffrey E. Campbell
  • Patent number: 11435394
    Abstract: A method for measuring electrical response of a DUT includes using a measurement instrument, generating a radio frequency (RF) test signal via the measurement instrument at one or more initial frequencies, propagating the RF test signal at the one or more initial frequencies to the DUT, measuring a response of the DUT at the one or more initial frequencies and aggregating the measured response of the DUT at the one or more initial frequencies as response measurement data.
    Type: Grant
    Filed: January 30, 2017
    Date of Patent: September 6, 2022
    Assignee: Anritsu Company
    Inventors: Karam Noujeim, Thomas Roberts, Matthew Thomas
  • Patent number: 11435205
    Abstract: An inductive position sensor for determining the position of a moving body along a linear or rotary path (F), including: a moving target (3) adapted to modify an electromagnetic field; a fixed circuit board (5) extending along a limited portion and including a primary coil (7) surrounding two secondary coils (8, 9) having substantially identical lengths (L) and having shapes of sine and cosine functions; a current generator (11) to create an inductive coupling modulated by the position of the target; a detector (13) of the linear or angular position of the target; and a system for balancing the coupling between the primary coil (7) and the secondary coils (8, 9) to compensate for the measurement offset induced by the proximity between the secondary coils (8, 9) and the end segments (7b) of the primary coil (7).
    Type: Grant
    Filed: September 11, 2019
    Date of Patent: September 6, 2022
    Assignee: ELECTRICFIL AUTOMOTIVE
    Inventors: Jean-Philippe Ferreira Da Cunha, Rainer Möller
  • Patent number: 11428843
    Abstract: The present invention discloses a device for performing temperature correction on an induction logging tool and deep stratum environmental simulation, including: a box body, configured to accommodate the induction logging tool and a deep stratum environmental simulation system; an air channel, configured to make heated air fill the box body; a circulating fan, configured to make the heated air enter the air channel; an electric heater, configured to heat air; a temperature controller, configured to control power of the electric heater; the deep stratum environmental simulation system, configured to simulate lithological and fluid situations in different stratum environments; a data collection system, configured to collect, store, process, and display a signal in real time; and a control unit, configured to control operation of the entire device.
    Type: Grant
    Filed: August 3, 2019
    Date of Patent: August 30, 2022
    Assignee: INSTITUTE OF GEOLOGY AND GEOPHYSICS CHINESE ACADEMY OF SCIENCES
    Inventors: Renzhong Pei, Zhongxing Wang, Qingyun Di, Wenxiu Zhang, Fei Tian, Tianxin Zhang
  • Patent number: 11428547
    Abstract: There is provided an inductive sensing circuit, comprising a signal generator, configured to generate a drive signal; one or more sensing arrangements, each of the one or more sensing arrangements comprising: two sets of one or more inductive sensing elements, configured in a half bridge arrangement, the two sets of one or more inductive sensing elements driven by the drive signal; a correction signal circuit, configured to generate a correction signal, wherein the correction signal is an adjustably scaled version of the drive signal; and a summing circuit, configured to sum an output signal of the two sets of one or more inductive sensing elements with the correction signal; and a demodulation circuit, configured to demodulate an output of the summing circuit of each of the one or more sensing arrangements.
    Type: Grant
    Filed: March 4, 2020
    Date of Patent: August 30, 2022
    Assignee: Waukesha Bearings LTD.
    Inventors: Nigel George Davies, Chiu Hon Leung
  • Patent number: 11415650
    Abstract: The disclosure relates to a gradient system comprising a first gradient coil unit, a second gradient coil unit and a flexible gradient amplifier unit, wherein the flexible gradient amplifier unit is configured to actuate the first gradient coil unit and the second gradient coil unit.
    Type: Grant
    Filed: August 14, 2020
    Date of Patent: August 16, 2022
    Assignee: Siemens Healthcare GmbH
    Inventor: Martin Hammes
  • Patent number: 11397197
    Abstract: A sensing device is for sensing an operating voltage of a remote device. A communications interface receives communications signals originating from the remote device over a communications bus. A data sampler takes data readings of a communications signal at a predetermined set of timing instants defined by the sensing device. A data metric (such as a duty cycle of high and low states) is obtained from the data readings and from this 5 an operating voltage of the remote device is obtained, based on a relationship between the voltage and the data metric. The invention is based on detecting timing changes which result from voltage changes. In particular, the slope of rising and falling edges of the communications signal are influenced by the voltage level, and this in turn influences the timing of high states (1s) and low states (0s).
    Type: Grant
    Filed: June 19, 2018
    Date of Patent: July 26, 2022
    Assignee: SIGNIFY HOLDING B.V.
    Inventor: Hong Chen
  • Patent number: 11385078
    Abstract: A rotation sensing apparatus includes a detected part including a first pattern portion with a plurality of first patterns and a second pattern portion with a plurality of second patterns; a first sensor disposed opposite to the first pattern portion; a second sensor disposed opposite to the second pattern portion; a third sensor disposed at an angle from the first sensor and disposed opposite to the first pattern portion; a fourth sensor disposed at an angle from the second sensor and disposed opposite to the second pattern portion; and a rotation information calculation circuit to calculate rotation information regarding rotation of a rotating body based on first, second, third, and fourth oscillation signals associated with outputs of the first, second, third, and fourth sensors and to compensate for nonlinearity of a differential signal generated based on the first, second, third, and fourth oscillation signals.
    Type: Grant
    Filed: August 6, 2019
    Date of Patent: July 12, 2022
    Assignee: Samsung Electro-Mechanics Co., Ltd.
    Inventors: Yong Woon Ji, Joo Yul Ko
  • Patent number: 11372064
    Abstract: The invention relates to a magnetic resonance receive coil including a resonator for use in a magnetic resonance imaging system. The radio frequency receive coil according to the invention comprises a first conducting element of the resonator having a conductive loop wherein the received signal is induced in that loop, configured to form a primary resonant circuit tunable to at least one first resonance frequency and a second conducting element of the resonator configured to form an electric circuit electrically insulated from and reactively coupled to the primary resonant circuit, the electric circuit being adapted to detune the primary resonant circuit to at least one second resonance frequency. The second conducting element of the resonator has a conductive loop with a pair of ends connected to a preamplifier.
    Type: Grant
    Filed: September 9, 2019
    Date of Patent: June 28, 2022
    Assignee: Koninklijke Philips N.V.
    Inventors: Christian Findeklee, Oliver Lips
  • Patent number: 11366186
    Abstract: Systems and methods are provided for producing hyperpolarized materials for use during a magnetic resonance imaging (MRI) or nuclear magnetic resonance (NMR) process. The system and methods include the use of microfluidic and/or microreactor methods in one or more of the stages of parahydrogen production, enriched substrate production, and spin order transfer from the parahydrogen to a substrate.
    Type: Grant
    Filed: August 9, 2017
    Date of Patent: June 21, 2022
    Assignee: Beth Israel Deaconess Medical Center, Inc.
    Inventors: David Alsop, Aaron Grant
  • Patent number: 11353496
    Abstract: A method is provided for testing discrete output signals of a device-under-test (DUT). The method includes receiving an electrical quantity at each conductive path of a plurality of conductive paths that are each coupled to respective discrete output signals of the DUT in one-to-one correspondence. The method further includes controlling application of the electrical quantity to each of the conductive path independent of application of the electrical quantity along the other conductive paths, so that a the electrical quantity is applied simultaneously to all of the conductive paths, the electrical quantity applied to each conductive path being toggled at a unique frequency having a unique period.
    Type: Grant
    Filed: May 8, 2019
    Date of Patent: June 7, 2022
    Assignee: Hamilton Sundstrand Corporation
    Inventors: Kevin C. Peterson, Michael A. Wilson
  • Patent number: 11345568
    Abstract: Provided is an apparatus configured to detect a car position by performing threshold processing on a voltage caused by an AC magnetic response through use of an identification plate in which a slit pattern is formed and a plurality of coils, the apparatus including a circuit configuration capable of switching between a normal operation for detecting the car position based on an on/off detection operation using the plurality of coils and a self-diagnosis operation capable of verifying the on/off detection operation irrespective of the presence or absence of the identification plate with a car in a stopped state by forcedly applying a magnetic field to the coils.
    Type: Grant
    Filed: March 15, 2016
    Date of Patent: May 31, 2022
    Assignee: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Jin Inoue, Akihide Shiratsuki, Keita Mochizuki, Masahiro Ishikawa
  • Patent number: 11333733
    Abstract: In a method and apparatus for recording a magnetic resonance (MR) data record using multiple reception coils, the data of the MR data record contain measurement signals of at least two image data records respectively from at least two slices. The MR data record is acquired in a sequence having an excitation phase, an evolution phase, readout of a first echo signal while a first read gradient is being applied, application of at least one shift gradient in a slice-selection direction, and readout of at least one further echo signal while a further read gradient is applied. The shift gradient is positioned so as to cause a shift of at least one further image data record generated from the further echo signal or signals relative to the first image data record generated from first echo signals.
    Type: Grant
    Filed: February 20, 2019
    Date of Patent: May 17, 2022
    Assignee: Siemens Healthcare GmbH
    Inventor: Mario Zeller
  • Patent number: 11327412
    Abstract: A topography measurement system includes a radiation source; a first grating; imaging optics; a movement mechanism; detection optics; a second grating; and a detector. The radiation source is configured to generate a radiation beam and includes a light emitting diode to produce to the radiation. The first grating is configured to pattern the radiation beam. The imaging optics is configured to form a first image of the first grating at a target location on a substrate. The movement mechanism is operable to move the substrate relative to the image of the first grating such that the target location moves relative to the substrate. The detection optics is configured to receive radiation from the target location of the substrate and form an image of the first image at the second grating. The detector is configured to receive radiation transmitted through the second grating and produce an output signal.
    Type: Grant
    Filed: November 30, 2016
    Date of Patent: May 10, 2022
    Assignee: ASML NETHERLANDS B.V.
    Inventors: Ronald Franciscus Herman Hugers, Martinus Cornelis Reijnen, Paulus Antonius Andreas Teunissen