Patents by Inventor John Westwood

John Westwood has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10813685
    Abstract: A bipolar electrosurgical instrument includes a handle portion, a shaft extending from the handle portion, a pad electrode coupled to the distal end of the shaft, and a loop electrode configured to be selectively transitioned from a deployed configuration, wherein the loop electrode extends outwardly from a distal end of the shaft in a manner capable of receiving tissue, to a non-deployed configuration, wherein the loop electrode is disposed proximate to the distal end of the shaft, to treat tissue.
    Type: Grant
    Filed: September 1, 2015
    Date of Patent: October 27, 2020
    Assignee: COVIDIEN LP
    Inventors: Joe D. Sartor, John Westwood, Aaron D. Leyva
  • Patent number: 10749335
    Abstract: There is provided a method of operating a reconfigurable differential protection scheme for carrying out differential protection of an electrical power network, the electrical power network comprising terminals, each of the terminals configured to be in communication with each other within a communications network. The method includes controlling the differential protection scheme to deactivate the differential protection, and selecting a terminal to be configured out of or into the differential protection scheme. The method also includes communicating reconfiguration information among the terminals, the reconfiguration information including the selection of the terminal to be configured out of or into the differential protection scheme.
    Type: Grant
    Filed: April 11, 2017
    Date of Patent: August 18, 2020
    Assignee: General Electric Technology GmbH
    Inventors: John Westwood, Yanzhong Zhang
  • Publication number: 20190140440
    Abstract: There is provided a method of operating a reconfigurable differential protection scheme for carrying out differential protection of an electrical power network, the electrical power network comprising terminals, each of the terminals configured to be in communication with each other within a communications network. The method includes controlling the differential protection scheme to deactivate the differential protection, and selecting a terminal to be configured out of or into the differential protection scheme. The method also includes communicating reconfiguration information among the terminals, the reconfiguration information including the selection of the terminal to be configured out of or into the differential protection scheme.
    Type: Application
    Filed: April 11, 2017
    Publication date: May 9, 2019
    Inventors: John WESTWOOD, Yanzhong Zhang
  • Publication number: 20160089199
    Abstract: A bipolar electrosurgical instrument includes a handle portion, a shaft extending from the handle portion, a pad electrode coupled to the distal end of the shaft, and a loop electrode configured to be selectively transitioned from a deployed configuration, wherein the loop electrode extends outwardly from a distal end of the shaft in a manner capable of receiving tissue, to a non-deployed configuration, wherein the loop electrode is disposed proximate to the distal end of the shaft, to treat tissue.
    Type: Application
    Filed: September 1, 2015
    Publication date: March 31, 2016
    Inventors: JOE D. SARTOR, JOHN WESTWOOD, AARON D. LEYVA
  • Patent number: 8749925
    Abstract: Read elements and associated methods of fabrication are disclosed. During fabrication of the read element, and more particularly, the fabrication of the hard bias magnets, a non-magnetic sacrificial layer is deposited on top of the hard bias material. When a CMP process is subsequently performed, the sacrificial layer is polished instead of the hard bias material. The thicknesses of the hard bias magnets are not affected by the CMP process, but are rather defined by the deposition process of the hard bias material. As a result, the variations in the CMP process will not negatively affect the magnetic properties of the hard bias magnets so that they are able to provide substantially uniform effective magnetic fields to bias the free layer of the magnetoresistance (MR) sensor of the read element.
    Type: Grant
    Filed: December 27, 2007
    Date of Patent: June 10, 2014
    Assignee: HGST Netherlands, B.V.
    Inventors: Ying Hong, Ming Jiang, John Westwood
  • Publication number: 20090169732
    Abstract: Read elements and associated methods of fabrication are disclosed. During fabrication of the read element, and more particularly, the fabrication of the hard bias magnets, a non-magnetic sacrificial layer is deposited on top of the hard bias material. When a CMP process is subsequently performed, the sacrificial layer is polished instead of the hard bias material. The thicknesses of the hard bias magnets are not affected by the CMP process, but are rather defined by the deposition process of the hard bias material. As a result, the variations in the CMP process will not negatively affect the magnetic properties of the hard bias magnets so that they are able to provide substantially uniform effective magnetic fields to bias the free layer of the magnetoresistance (MR) sensor of the read element.
    Type: Application
    Filed: December 27, 2007
    Publication date: July 2, 2009
    Inventors: Ying Hong, Ming Jiang, John Westwood
  • Publication number: 20080155810
    Abstract: Methods for fabricating magnetic sensor heads using a CMP defined hard bias to fabricate a magnetic sensor head reader with a flat reader gap. The method comprises defining a read sensor of the magnetic sensor head. The method further comprises depositing an insulator layer on the read sensor. The method further comprises performing a chemical mechanical polishing (CMP) process down to a protective layer on the read sensor deposited while defining the read sensor to remove an overfill portion of the hard bias layer above the protective layer and to remove a sensor pattern masking layer above the protective layer.
    Type: Application
    Filed: December 27, 2006
    Publication date: July 3, 2008
    Inventors: Ying Hong, Ming Jiang, Mustafa M. Pinarbasi, John Westwood
  • Patent number: 5934158
    Abstract: A differential drive mechanism comprises a cage (1), which is rotatable about an axis (3) and represents the input, two coaxial output shafts (12, which are rotatable in respect of the cage (1) about the axis (3), a coupling (4) which is connected eccentrically through two output shafts (12) to transmit relative contra-rotational movement between them by connections which permit relative rotation of the coupling (4) and the output shafts (12). The eccentric connection of the coupling (4) on the ouput shafts (12) includes a respective eccentric hole (9) in the inner end (10) of each output shaft (12) in which the associated end (6) of the coupling (4) is received. The ends (6) of the coupling (4) have a part-spherical engagement surface. A slipper (8) affording a complementary part-spherical internal surface is received in each eccentric hole (9) and each engagement surface is in engagement which a respective complementary internal surface.
    Type: Grant
    Filed: April 11, 1997
    Date of Patent: August 10, 1999
    Assignees: Ricardo Consulting Engineers Limited, Axial Wave Drive BV
    Inventor: John Westwood Moore
  • Patent number: D334571
    Type: Grant
    Filed: January 11, 1991
    Date of Patent: April 6, 1993
    Assignee: Telecom Technologies Pty. Ltd.
    Inventor: John Westwood
  • Patent number: D334751
    Type: Grant
    Filed: January 11, 1991
    Date of Patent: April 13, 1993
    Assignee: Telecom Technologies Pty. Ltd.
    Inventor: John Westwood