Patents Examined by Roger G Hernandez-Prewitt
  • Patent number: 10295518
    Abstract: Systems and method for detecting a concentration of a gas in a gas stream are disclosed. A method includes receiving a gas stream including a carrier gas and a processing gas. Bridge voltages of a mass flow sensor are used to produce a processing-gas concentration signal and a gas-stream mass flow rate signal. The gas stream is controlled so a mass flow rate of the processing gas equals a processing-gas-setpoint signal. In some variations, the processing-gas-concentration signal is produced using an upstream temperature of the gas stream and a bridge-derived temperature. In other variations, the processing-gas-concentration signal is produced using a top voltage of the mass flow sensor and the gas-stream mass flow rate signal.
    Type: Grant
    Filed: December 14, 2016
    Date of Patent: May 21, 2019
    Assignee: Hitachi Metals, Ltd.
    Inventors: Patrick Albright, Ryan Johnson, Alexei V. Smirnov
  • Patent number: 10281308
    Abstract: A fluid flow detecting system and approach incorporating a collar configured to be clamped to a fluid conveyance mechanism, a temperature probe held within temperature sensing range of the fluid conveyance mechanism with the collar, an ambient temperature sensor, and a controller connected to the temperature probe and the ambient temperature sensor. The controller may incorporate a data analytics module to determine fluid flow starts, characteristics of fluid flows and fluid stops from temperatures received from the temperature probe and the ambient temperature sensor. The system may further incorporate a heater in contact with the fluid conveyance mechanism to increase speed and accuracy of determinations of fluid flow starts, characteristics of fluid flows and fluid stops by the data analytics module.
    Type: Grant
    Filed: June 15, 2016
    Date of Patent: May 7, 2019
    Assignee: Honeywell International Inc.
    Inventors: Philipp Roosli, John Tavares, Ravi M. Sagar, Brendan Donecker
  • Patent number: 10281360
    Abstract: A method and a system for the vibration analysis of an engine, including acquiring vibration signals relating to the engine and in order to form at least one spectrogram that represents an operating state of the engine, selecting at least one zone of interest in at least one spectrogram, comparing each zone of interest with a set of corresponding comparison zones belonging to annotated spectrograms recorded in a reference database, and determining a subset of comparison zones that have vibration behaviors similar to those of the zone of interest, and displaying the subset of comparison zones and annotations associated with the subset of comparison zones.
    Type: Grant
    Filed: May 20, 2014
    Date of Patent: May 7, 2019
    Assignee: Safran Aircraft Engines
    Inventor: Jerome Lacaille
  • Patent number: 10274470
    Abstract: A method and apparatus for field testing an NOx-sensor in a diesel engine exhaust system are disclosed. The apparatus is connectable to a truck having a lean burn diesel type engine, via an on-board diagnostic connector. A test cycle is performed on a running engine in at least two different states of operation, while NOx related values issued by the at least one NOx-sensor are measured over a predefined period of time. One state of operation is obtained by simultaneously opening the exhaust gas recirculation valve and controlling the back pressure valve for increasing backpressure. A dedicated algorithm is used to compare the measured values to a predefined model, and to provide a numerical summary and statistical evaluation of the sensor functioning.
    Type: Grant
    Filed: July 1, 2016
    Date of Patent: April 30, 2019
    Assignee: DAF Trucks N.V.
    Inventor: Arjen Daniël Hunter
  • Patent number: 10267914
    Abstract: An incident wave is emitted into a medium comprising diffusers that can reflect the wave. Signals representing a reflected wave reverberated by the medium from the incident wave are captured, said captured signals being the sum of a simple diffusion component and a multiple diffusion component. The captured signals are treated by separating the multiple diffusion component from the simple diffusion component.
    Type: Grant
    Filed: May 3, 2016
    Date of Patent: April 23, 2019
    Assignees: ELECTRICITE DE FRANCE, CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE—CNRS-
    Inventors: Camille Trottier, Arnaud Derode, Alexandre Aubry
  • Patent number: 10234340
    Abstract: A multilayer structure for a garment, optionally footwear, includes a flexible substrate film for accommodating electronics, a number of flexible sensor pads provided on the film utilizing printed electronics technology, optionally screen printing or ink jetting, at least one electronic circuit, preferably integrated circuit, further provided on the film for controlling capacitive measurements via the number of sensor pads for obtaining an indication of pressure subjected to the multilayer structure, a number of conductor traces further printed on the film for electrically connecting the at least one electronic circuit and the number of capacitive sensor pads, a power supply element for powering electricity-driven components including the at least one electronic circuit, and at least one plastic layer molded upon the film substantially embedding the number of sensor pads, conductor traces and the at least one electronic circuit therewithin. A related method of manufacture is presented.
    Type: Grant
    Filed: April 2, 2015
    Date of Patent: March 19, 2019
    Assignee: TACTOTEK OY
    Inventors: Kari Severinkangas, Mikko Heikkinen, Jarmo Saaski
  • Patent number: 10215675
    Abstract: The sensor unit of the material tester consists of a pressure-sensor unit that measures a vertical force applied to the test probe during movement of the test probe relative to the test specimen and a horizontal force sensor unit for measuring the horizontally directed friction force. The horizontal force sensor unit is made in the form of a flexible parallelogram consisting of two sensor-holding plates interconnected through flexible beams, wherein one end of the first beam is attached to the upper sensor-holding plate and the opposite end to the lower sensor-holding plate, while one end of the second beam is attached to the lower sensor-holding plate and the other to the upper one. The beams are installed with gaps relative to both plates. The quick-release test probe incorporates a soft-touch feature.
    Type: Grant
    Filed: September 5, 2016
    Date of Patent: February 26, 2019
    Inventors: Vishal Khosla, Nick Doe, Jun Xiao, Ming Chan, Gautam Char