Patents by Inventor Gregory D. Popp

Gregory D. Popp 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: 11288639
    Abstract: An metal fabrication resource performance monitoring method includes: acquiring data representative of a plurality of parameters sampled during metal fabrication operations of a plurality of metal fabrication resources, the parameters comprising arc on time and wire deposition quantity; via at least one computer processor, analyzing a first subset of the acquired data and a second subset of the acquired data for the plurality of metal fabrication resources; via the at least one computer processor, populating a user viewable page with graphical indicia representative of at least the arc on time and the wire deposition quantity, the user viewable page facilitating a visual comparison of the analysis of the first subset of the acquired data and the analysis of the second subset of the acquired data; and transmitting the user viewable dashboard page to a user viewable display.
    Type: Grant
    Filed: February 10, 2020
    Date of Patent: March 29, 2022
    Assignee: Illinois Tool Works Inc.
    Inventors: Nathan John Lamers, Nathan Gerald Leiteritz, Knut Norman Froland, Todd Earl Holverson, Gregory D. Popp, Caleb Robert Krisher, Michael Anthony Gill
  • Publication number: 20200175480
    Abstract: An metal fabrication resource performance monitoring method includes: acquiring data representative of a plurality of parameters sampled during metal fabrication operations of a plurality of metal fabrication resources, the parameters comprising arc on time and wire deposition quantity; via at least one computer processor, analyzing a first subset of the acquired data and a second subset of the acquired data for the plurality of metal fabrication resources; via the at least one computer processor, populating a user viewable page with graphical indicia representative of at least the arc on time and the wire deposition quantity, the user viewable page facilitating a visual comparison of the analysis of the first subset of the acquired data and the analysis of the second subset of the acquired data; and transmitting the user viewable dashboard page to a user viewable display.
    Type: Application
    Filed: February 10, 2020
    Publication date: June 4, 2020
    Inventors: Nathan John Lamers, Nathan Gerald Leiteritz, Knut Norman Froland, Todd Earl Holverson, Gregory D. Popp, Caleb Robert Krisher, Michael Anthony Gill
  • Patent number: 10558953
    Abstract: An metal fabrication resource performance monitoring method includes: acquiring data representative of arc on time and wire deposition quantity associated with metal fabrication operations of a plurality of metal fabrication resources; via at least one computer processor, analyzing a first subset of the acquired data and a second subset of the acquired data for the plurality of metal fabrication resources; via the at least one computer processor, populating a user viewable page with graphical indicia representative of at least the arc on time and the wire deposition quantity, the user viewable page facilitating a visual comparison of the analysis of the first subset of the acquired data and the analysis of the second subset of the acquired data; and transmitting the user viewable page to a user viewable display.
    Type: Grant
    Filed: July 31, 2017
    Date of Patent: February 11, 2020
    Assignee: Illinois Tool Works Inc.
    Inventors: Nathan John Lamers, Nathan Gerald Leiteritz, Knut Norman Froland, Todd Earl Holverson, Gregory D. Popp, Caleb Robert Krisher, Michael Anthony Gill, Ryan Lindeman, Adam Pliska, Jason Bonnell, Tret West
  • Patent number: 10558952
    Abstract: An metal fabrication resource performance monitoring method includes: acquiring data representative of a plurality of parameters sampled during metal fabrication operations of a plurality of metal fabrication resources, the parameters comprising arc on time and wire deposition quantity; via at least one computer processor, analyzing a first subset of the acquired data and a second subset of the acquired data for the plurality of metal fabrication resources; via the at least one computer processor, populating a user viewable page with graphical indicia representative of at least the arc on time and the wire deposition quantity, the user viewable page facilitating a visual comparison of the analysis of the first subset of the acquired data and the analysis of the second subset of the acquired data; and transmitting the user viewable dashboard page to a user viewable display.
    Type: Grant
    Filed: July 10, 2017
    Date of Patent: February 11, 2020
    Assignee: Illinois Tool Works Inc.
    Inventors: Nathan John Lamers, Nathan Gerald Leiteritz, Knut Norman Froland, Todd Earl Holverson, Gregory D. Popp, Caleb Robert Krisher, Michael Anthony Gill
  • Publication number: 20170330157
    Abstract: An metal fabrication resource performance monitoring method includes: acquiring data representative of arc on time and wire deposition quantity associated with metal fabrication operations of a plurality of metal fabrication resources; via at least one computer processor, analyzing a first subset of the acquired data and a second subset of the acquired data for the plurality of metal fabrication resources; via the at least one computer processor, populating a user viewable page with graphical indicia representative of at least the arc on time and the wire deposition quantity, the user viewable page facilitating a visual comparison of the analysis of the first subset of the acquired data and the analysis of the second subset of the acquired data; and transmitting the user viewable page to a user viewable display.
    Type: Application
    Filed: July 31, 2017
    Publication date: November 16, 2017
    Inventors: Nathan John Lamers, Nathan Gerald Leiteritz, Knut Norman Froland, Todd Earl Holverson, Gregory D. Popp, Caleb Robert Krisher, Michael Anthony Gill, Ryan Lindeman, Adam Pliska, Jason Bonnell, Tret West
  • Publication number: 20170308870
    Abstract: An metal fabrication resource performance monitoring method includes: acquiring data representative of a plurality of parameters sampled during metal fabrication operations of a plurality of metal fabrication resources, the parameters comprising arc on time and wire deposition quantity; via at least one computer processor, analyzing a first subset of the acquired data and a second subset of the acquired data for the plurality of metal fabrication resources; via the at least one computer processor, populating a user viewable page with graphical indicia representative of at least the arc on time and the wire deposition quantity, the user viewable page facilitating a visual comparison of the analysis of the first subset of the acquired data and the analysis of the second subset of the acquired data; and transmitting the user viewable dashboard page to a user viewable display.
    Type: Application
    Filed: July 10, 2017
    Publication date: October 26, 2017
    Inventors: Nathan John Lamers, Nathan Gerald Leiteritz, Knut Norman Froland, Todd Earl Holverson, Gregory D. Popp, Caleb Robert Krisher, Michael Anthony Gill
  • Publication number: 20040084443
    Abstract: A method and apparatus for inductively heating a work piece. An induction heating system is used to produce a plurality of magnetic fields, each magnetic field extending through a portion of the work piece to inductively heat the work piece. At least one of the plurality of magnetic fields is oriented in a direction opposite to at least one other of the plurality of magnetic fields. The induction heating system may comprise an induction heating support structure adapted to receive the core. The induction heating system may also comprise an induction heating power source, a power source controller, an induction heating cable, and/or a fluid cooling unit.
    Type: Application
    Filed: November 1, 2002
    Publication date: May 6, 2004
    Inventors: Mark A. Ulrich, Gregory D. Popp