Patents Assigned to ON! Systems
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Patent number: 10788385Abstract: Provided is a physical quantity measurement device in which a bonding temperature of a bonding layer is lowered to a temperature not affecting an operation of a semiconductor chip and an insulating property of the semiconductor chip and a base is secured. The physical quantity measurement device includes a base (diaphragm), a semiconductor chip (strain detection element) to measure a physical quantity on the basis of stress acting on the base, and a bonding layer to bond the semiconductor chip to the base. The bonding layer has a first bonding layer bonded to the semiconductor chip, a second bonding layer bonded to the base, and an insulating base material disposed between the first bonding layer and the second bonding layer. The first and second bonding layers and contain glass.Type: GrantFiled: April 13, 2017Date of Patent: September 29, 2020Assignee: Hitachi Automotive Systems, Ltd.Inventors: Takuya Aoyagi, Takashi Naitou, Tatsuya Miyake, Mizuki Shibata, Hiroshi Onuki, Daisuke Terada, Shigenobu Komatsu
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Patent number: 10787279Abstract: A test apparatus is provided for testing a sensorless check device of an actuator. The sensorless check device is arranged to be used by mechanically moving a check device pin from a resting position to an actuation position and then releasing the check device pin to allow it to return to a resting position urged by an elastic return mechanism. The test apparatus comprises: a piston for contact with an actuator surface associated with the check device pin; a piston spring for urging the piston toward the actuator surface, wherein the piston spring is softer than the elastic return mechanism of the check device; and an adjustment and testing mechanism.Type: GrantFiled: April 27, 2018Date of Patent: September 29, 2020Assignee: GOODRICH ACTUATION SYSTEMS SASInventors: Thomas Moulon, Quentin Ricard
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Patent number: 10788388Abstract: Provided is a pressure sensor that uses a sensor chip as a pressure measurement element and can suppress condensation around the sensor chip of water vapor permeating a protective member from a gas to be measured. The pressure sensor includes a pressure measurement chamber into which a gas to be measured is introduced; a sensor chip that faces the pressure measurement chamber; a sensor support that has a support surface supporting the sensor chip; and a protective member that covers the sensor chip. The pressure sensor also includes a heat insulation chamber that faces a back surface opposite to the support surface of the sensor support; and a gas passage that communicates the heat insulation chamber and the pressure measurement chamber.Type: GrantFiled: April 20, 2017Date of Patent: September 29, 2020Assignee: Hitachi Automotive Systems, Ltd.Inventor: Masahiko Soshino
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Patent number: 10789738Abstract: An apparatus and method are provided for computed tomography (CT) imaging to reduce artifacts due to objects outside the field of view (FOV) of a reconstructed image. The artifacts are suppressed by using an iterative reconstruction method to minimize a cost function that includes a de-emphasis operator. The de-emphasis operator operates in the data domain, and minimizes the contributions of data inconsistencies arising from attenuation due to objects outside the FOV. This can be achieved by penalizing images that manifest indicia of artifacts due to outside objects especially those outside objects have high-attenuation densities and minimizing components of the data inconsistency likely attributable to the outside object.Type: GrantFiled: November 2, 2018Date of Patent: September 29, 2020Assignees: THE UNIVERSITY OF CHICAGO, CANON MEDICAL SYSTEMS CORPORATIONInventors: Xiaochuan Pan, Zheng Zhang, Dan Xia, Yu-Bing Chang, Jingwu Yao, Joseph Manak
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Patent number: 10791503Abstract: Disclosed in the present invention are methods and apparatus for obtaining a system message, a terminal, and a base station. The method comprises: after a first basic system message of a current cell sent by a base station is received, determining whether a service system message needs to be obtained; when it is determined that the service system message needs to be obtained, sending, to the base station, a system request message for requesting the service system message; and receiving the service system message sent by the base station according to the system request message.Type: GrantFiled: March 31, 2017Date of Patent: September 29, 2020Assignee: CLOUDMINDS (SHENZHEN) ROBOTICS SYSTEMS CO., LTD.Inventors: William Xiao-qing Huang, Haitao Jiang, Zhenkai Wang
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Patent number: 10788399Abstract: Systems and methods for determining turbine engine system stability encompass measuring or otherwise determining values of performance parameters, storing a data set of such values in memory, generating a stability indicator, and displaying the stability indicator on an operator interface. The stability indicator is generated by a processor operating in data communication with the computer memory, utilizing customized software algorithms to remove high frequency components, apply an adaptive filter to adjust selected parameters according to a target value of a selected target parameter, and apply a stochastic filters to estimate true values of the selected parameters, based on the remaining variation.Type: GrantFiled: July 15, 2019Date of Patent: September 29, 2020Assignee: Aero Systems Engineering, Inc.Inventors: Dean Frederick Long, Kenneth William Simon, Grant August Radinzel
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Patent number: 10789093Abstract: A computing system includes an enterprise server providing an application, a mobile computing device having sensor capabilities registered with the enterprise server, and a client computing device operated by a user to access the application. The user is to request a capability of the application. The enterprise server is configured to compare the requested capability of the application to the registered sensor capabilities of the mobile computing device. If the requested capability of the application can be performed by the mobile computing device, then the enterprise server is configured to provide a notification to the mobile computing device requesting permission for the mobile computing device to provide access to the sensor capability corresponding to the requested capability of the application. The mobile computing device performs the requested capability of the application after permission is granted.Type: GrantFiled: February 5, 2019Date of Patent: September 29, 2020Assignee: CITRIX SYSTEMS, INC.Inventors: Modesto Tabares, Juan Rivera
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Patent number: 10787134Abstract: A grommet is provided with a small-diameter tubular portion that is fixated to an outer circumferential surface of a wire harness, a large-diameter tubular portion that is fixated to a through-hole of a fixed member, and an increasing-diameter tubular portion that connects the small-diameter tubular portion and the large-diameter tubular portion. The increasing-diameter tubular portion includes a small-diameter tubular portion-side end portion provided isolated from the small-diameter tubular portion on the outer circumference side of the small-diameter tubular portion, and a flexible connecting portion connecting an inner circumferential surface of the increasing-diameter tubular portion to the small-diameter tubular portion.Type: GrantFiled: March 2, 2017Date of Patent: September 29, 2020Assignee: SUMITOMO WIRING SYSTEMS, LTD.Inventors: Ryo Suenaga, Gousei Kobayashi
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Patent number: 10788972Abstract: Techniques for presenting historized process parameter values in a process plant include presenting, via a user interface of an operator application, indications of process control elements in a first display region within a layout of a display view. Each of the process control elements is associated with one or more process parameters. The operator application also presents a trend display view in a second display region within the layout of the display view. The trend display view includes sets of historized process parameter values for process parameters presented in the first display region. For example, the trend display view in the second display region is linked to the display view in the first display region. In this manner, the trend display view presents charts or other graphical depictions of historized process parameter values for process parameters included in the first display region.Type: GrantFiled: August 30, 2018Date of Patent: September 29, 2020Assignee: FISHER-ROSEMOUNT SYSTEMS, INC.Inventors: Julian K. Naidoo, Daniel R. Strinden, Cindy A. Scott, Mark J. Nixon, Camilo Fadul, Robert B. Havekost
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Patent number: 10785963Abstract: A method of growing shellfish is disclosed. The method comprises obtaining a support tray (I) with recesses (7) where at least some of the recesses (7) incorporate means adapted to create a deliberately formed alphanumeric, written or pictorial mark on the shellfish as it grows. Shellfish spat are attached to at least some of the recesses (7) and the tray (I) is placed in water so that the spat grow into substantially mature shellfish within the recesses (7). The spat each grow generally in the shape of their respective recess (7) so that the mark is created on the shellfish as it grows.Type: GrantFiled: December 29, 2017Date of Patent: September 29, 2020Assignee: Aqua Mould Systems NZ LimitedInventor: Shaun Gregory
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Patent number: 10788402Abstract: A method of testing a configuration of a field device is provided. The method includes moving a handheld field maintenance tool into proximity of the field device and generating a simulated process control signal configured to cause the field device to change state. The method also includes performing a digital check, with a remote system, to confirm that the field device is communicably coupled to a process control loop and obtaining a result, from an operator of the handheld field maintenance tool. The result is received by the handheld field maintenance tool through the user interface and includes an indication of a response of the field device to the simulated process control signal.Type: GrantFiled: October 25, 2016Date of Patent: September 29, 2020Assignee: Fisher-Rosemout Systems, Inc.Inventors: Nicholas T. Meyer, Alden C. Russell, III
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Patent number: 10786261Abstract: An embodiment includes a system comprising: an outer conduit; a shape memory polymer (SMP) foam; a metal backbone including: (a)(i) a first portion that extends from the SMP foam proximal end to the SMP foam distal end and which is generally covered by the SMP foam, and (a)(ii) a distal portion that extends distally from the SMP foam distal end and which is not covered by the SMP foam; wherein: (b)(i) SMP foam and the metal backbone are both included within the outer conduit adjacent to the outer conduit distal end; (b)(ii) the metal backbone distal portion transitions from a secondary shape that is uncoiled to a primary shape that is coiled; and (b)(iii) the metal backbone distal portion is in the metal backbone distal portion secondary shape and is located between the SMP foam distal end and the distal end of the outer conduit.Type: GrantFiled: September 2, 2016Date of Patent: September 29, 2020Assignee: The Texas A&M University SystemInventors: Duncan J. Maitland, Todd L. Landsman, Jennifer N. Rodriguez, Anthony J. Boyle, Alan C. Glowczwski, Mark A. Wierzbicki
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Patent number: 10789184Abstract: In the present invention, computational efficiency degradation is suppressed when diagnosing a shared storage area in a vehicle control device in which a plurality of computing units are employed. This vehicle control device suppresses computational efficiency degradation by changing an access destination in a storage device while diagnosing a shared storage area that the storage device has.Type: GrantFiled: October 26, 2016Date of Patent: September 29, 2020Assignee: Hitachi Automotive Systems, Ltd.Inventors: Tsunamichi Tsukidate, Yusuke Abe, Takeshi Fukuda, Tomohito Ebina, Fumio Narisawa
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Patent number: 10786388Abstract: An ophthalmological device for treating eye tissue with laser pulses comprises a projection optical unit for focused projection of the laser pulses, a scanner system for dynamically deflecting the laser pulses and a zoom system, which is arranged between the projection optical unit and the scanner system and which is configured to adjust the focused projection of the laser pulses in the projection direction in different zoom settings. The ophthalmological device moreover comprises a displacement device, which is configured to displace the scanner system depending on the zoom setting of the zoom system. What the displacement of the scanner system coupled to the zoom setting of the zoom system renders possible is the adaptation of the position of the scanner system in a dynamic and synchronized fashion to the setting of the zoom system and hence to the current position of the virtual entry pupil of the zoom system.Type: GrantFiled: February 19, 2019Date of Patent: September 29, 2020Assignee: Ziemer Ophthalmic Systems AGInventor: Christian Rathjen
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Patent number: 10786210Abstract: A method of adding sensing of moisture and other characteristics into a garment such as a diaper, incontinence garment, brief, or underwear is disclosed. The primary design intent is optimal moisture detection, low per unit cost, and wide-scale data analysis of groups of patients. The embodiments place various forms of electrodes within a garment, and measuring the electrical properties of the electrodes to determine if the garment has contacted moisture. The embodiments herein could be used for sensing incontinence, sensing perspiration, and detecting failure of protective garments, among other purposes. The target moisture is urine and feces; however, other sources of body moisture can also be sensed. A specialized mesh network achieves accuracy of the information obtained, as well as redundancy and timely updating of that information.Type: GrantFiled: May 22, 2020Date of Patent: September 29, 2020Assignee: BioLink Systems, LLCInventors: Ken Heyl, Roger King
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Patent number: 10788004Abstract: A fuel supply pump includes a pressurizing chamber, a high-pressure path, and a valve unit. The valve unit includes an outlet valve which is configured to open to allow fuel in the pressurizing chamber to flow to the high-pressure path when fuel pressure in the pressurizing chamber becomes higher than a first predetermined pressure. The valve unit also includes a pressure relief valve which is configured to open to allow fuel in the high-pressure path to return to the pressurizing chamber when fuel pressure in the high-pressure path becomes higher than a second predetermined pressure. The valve unit also includes a valve seat member in which a relief path and a plurality of outlet paths are formed, wherein a first end of the relief path opens on a relief valve seat for the pressure relief valve, and respective first ends of the plurality of outlet paths open on an outlet valve seat for the outlet valve.Type: GrantFiled: October 30, 2017Date of Patent: September 29, 2020Assignee: Hitachi Automotive Systems, Ltd.Inventor: Atsuji Saito
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Patent number: 10787911Abstract: A gas turbine engine airfoil includes an outer wall including a suction side, a pressure side, a leading edge, and a trailing edge, the outer wall defining an interior chamber of the airfoil. The airfoil further includes cooling structure provided in the interior chamber. The cooling structure defines an interior cooling cavity and includes a plurality of cooling fluid outlet holes, at least one of which is in communication with a pressure side cooling circuit and at least one of which is in communication with a suction side cooling circuit. At least one of the pressure and suction side cooling circuits includes: a plurality of rows of airfoils, wherein radially adjacent airfoils within a row define segments of cooling channels. Outlets of the segments in one row align aerodynamically with inlets of segments in an adjacent downstream row such that the cooling channels have a serpentine shape.Type: GrantFiled: June 11, 2018Date of Patent: September 29, 2020Assignees: SIEMENS ENERGY, INC., MIKRO SYSTEMS, INC.Inventors: Ching-Pang Lee, Benjamin Heneveld
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Patent number: D897152Type: GrantFiled: July 15, 2019Date of Patent: September 29, 2020Assignee: BEDFORD SYSTEMS, LLCInventors: Barry Wood, Michael Sack, Enrico Cafaro
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Patent number: D897225Type: GrantFiled: December 28, 2018Date of Patent: September 29, 2020Assignee: Topcon Positioning Systems, Inc.Inventors: Angus Chapman, Reilly Edwards
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Patent number: D897336Type: GrantFiled: February 8, 2019Date of Patent: September 29, 2020Assignee: Wayne Fueling Systems LLCInventors: John J. Morris, Scott R. Negley, III, Annika Birkler, Sam Moon, Randal S. Kretzler, Brian Tholen, Daniel Holmes, Artemus A. Shelton, Henry Fieglein, Paul Laiming, Lucas Wade