Patents by Inventor Kelly Bernard EPP

Kelly Bernard EPP 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: 11404174
    Abstract: A system for generating magnetized plasma and sustaining plasma's magnetic field comprises a plasma generator for generating magnetized plasma and a flux conserver in which the generated magnetized plasma is injected and confined. A central conductor comprises an upper central conductor and a lower central conductor that are electrically connected forming a single integrated conductor. The upper central conductor and an outer electrode form an annular plasma propagating channel. The lower central conductor extends out of the plasma generator and into the flux conserver such that an end of the inner electrode is electrically connected to a wall of the flux conserver. A power system provides a formation current pulse and a sustainment current pulse to the central conductor to form the magnetized plasma, inject such plasma into the flux conserver and sustain plasma's magnetic field.
    Type: Grant
    Filed: February 28, 2018
    Date of Patent: August 2, 2022
    Assignee: General Fusion Inc.
    Inventors: Michel Georges Laberge, Kelly Bernard Epp, Blake Kenton Rablah, Meritt Wayne Reynolds, Alexander Douglas Mossman, Stephen James Howard
  • Patent number: 11399425
    Abstract: A method and system for stably generating and accelerating magnetized plasma comprises ionizing an injected gas in a plasma generator and generating a formation magnetic field to form a magnetized plasma with a closed poloidal field, generating a reverse poloidal field behind the magnetized plasma and having a same field direction as a back edge of the closed poloidal field and having an opposite field direction of the formation magnetic field, and generating a pushing toroidal field that pushes the reverse poloidal field against the closed poloidal field, thereby accelerating the magnetized plasma through a plasma accelerator downstream from the plasma generator. The reverse poloidal field serves to prevent the reconnection of the formation magnetic field and closed poloidal field after the magnetized plasma is formed, which would allow the pushing toroidal field to mix with the closed poloidal field and cause instability and reduced plasma confinement.
    Type: Grant
    Filed: May 28, 2020
    Date of Patent: July 26, 2022
    Assignee: General Fusion Inc.
    Inventors: Stephen James Howard, Douglas Harvey Richardson, Michel Georges Laberge, Meritt Wayne Reynolds, Aaron Matthew Froese, Kelly Bernard Epp, Martin Clifford Wight, Yakov Gofman
  • Publication number: 20220151054
    Abstract: A method and system for stably generating and accelerating magnetized plasma comprises ionizing an injected gas in plasma generator and generating a formation magnetic field to form a magnetized plasma with a closed poloidal field, generating a reverse poloidal field behind the magnetized plasma and having a same field direction as a back edge of the closed poloidal field and having an opposite field direction of the formation magnetic field, and generating a pushing toroidal field that pushes the reverse poloidal field against the closed poloidal field, thereby accelerating the magnetized plasma through a plasma accelerator downstream from the plasma generator. The reverse poloidal field serves to prevent the reconnection of the formation magnetic field and closed poloidal field after the magnetized plasma is formed, which would allow the pushing toroidal field to mix with the closed poloidal field and cause instability and reduced plasma confinement.
    Type: Application
    Filed: May 28, 2020
    Publication date: May 12, 2022
    Inventors: Stephen James Howard, Douglas Harvey Richardson, Michel Georges Laberge, Merritt Wayne Reynolds, Aaron Matthew Froese, Kelly Bernard Epp, Martin Clifford Wight, Yakov Gofman
  • Patent number: 11066327
    Abstract: Examples of a high voltage insulator are described. The high-voltage insulator is vacuum compatible and comprises a glass substrate having a face surface and a ceramic layer with uniform thickness coated on the face surface of 5 the glass substrate. The coated surface of the insulator is able to withstand high voltage pulses and exposure to charged particles radiation for a pre-determined time period. The ceramic coated glass insulator is made of a single piece of glass and can be made to large sizes.
    Type: Grant
    Filed: May 22, 2018
    Date of Patent: July 20, 2021
    Assignee: General Fusion Inc.
    Inventors: Kelly Bernard Epp, Michel Georges Laberge
  • Publication number: 20210217536
    Abstract: A system for generating magnetized plasma and sustaining plasma's magnetic field comprises a plasma generator for generating magnetized plasma and a flux conserver in which the generated magnetized plasma is injected and confined. A central conductor comprises an upper central conductor and a lower central conductor that are electrically connected forming a single integrated conductor. The upper central conductor and an outer electrode form an annular plasma propagating channel. The lower central conductor extends out of the plasma generator and into the flux conserver such that an end of the inner electrode is electrically connected to a wall of the flux conserver. A power system provides a formation current pulse and a sustainment current pulse to the central conductor to form the magnetized plasma, inject such plasma into the flux conserver and sustain plasma's magnetic field.
    Type: Application
    Filed: February 28, 2018
    Publication date: July 15, 2021
    Inventors: Michel Georges LABERGE, Kelly Bernard EPP, Blake Kenton RABLAH, Meritt Wayne REYNOLDS, Alexander Douglas MOSSMAN, Stephen James HOWARD
  • Publication number: 20200231492
    Abstract: Examples of a high voltage insulator are described. The high-voltage insulator is vacuum compatible and comprises a glass substrate having a face surface and a ceramic layer with uniform thickness coated on the face surface of 5 the glass substrate. The coated surface of the insulator is able to withstand high voltage pulses and exposure to charged particles radiation for a pre-determined time period. The ceramic coated glass insulator is made of a single piece of glass and can be made to large sizes.
    Type: Application
    Filed: May 22, 2018
    Publication date: July 23, 2020
    Inventors: Kelly Bernard EPP, Michel Georges LABERGE