Patents by Inventor Gedi Minster

Gedi Minster 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).

  • Publication number: 20250304284
    Abstract: Deployable structures are described, in particular linearly-deployable structures, such as masts or booms. The masts may be stowed for transport and then deployed at their destination in space or on earth. A deployment system includes a storage reel storing a stowed elongate band. A drive mechanism biases and guides the band helically out of the storage reel to form an elongated mast. Adjacent edges of the deployed band may secure together using openings and corresponding protrusions, such as rivets. A welding system may use a rotating welder to weld adjacent edges of the band as it deploys. The band may be formed of multiple band segments attached together by connectors such as doublers. Protrusions such as rivets or other fasteners may attach the connectors to opposing sides of the band segments. A cylindrical space habitat or other macrostructure may be formed using multiple deployable masts that connect large rings.
    Type: Application
    Filed: March 27, 2025
    Publication date: October 2, 2025
    Inventors: Gedi Minster, Kathryn Faye Bywaters, Vishnu Sanigepalli, Robert Kenneth Van Ness, JR., Brian Vogel, Hunter Williams
  • Publication number: 20250304283
    Abstract: Deployable structures are described, in particular linearly-deployable structures, such as masts or booms. The masts may be stowed for transport and then deployed at their destination in space or on earth. A deployment system includes a storage reel storing a stowed elongate band. A drive mechanism biases and guides the band helically out of the storage reel to form an elongated mast. Adjacent edges of the deployed band may secure together using openings and corresponding protrusions, such as rivets. A welding system may use a rotating welder to weld adjacent edges of the band as it deploys. The band may be formed of multiple band segments attached together by connectors such as doublers. Protrusions such as rivets or other fasteners may attach the connectors to opposing sides of the band segments. A cylindrical space habitat or other macrostructure may be formed using multiple deployable masts that connect large rings.
    Type: Application
    Filed: March 27, 2025
    Publication date: October 2, 2025
    Inventor: Gedi Minster
  • Publication number: 20250304285
    Abstract: Deployable structures are described, in particular linearly-deployable structures, such as masts or booms. The masts may be stowed for transport and then deployed at their destination in space or on earth. A deployment system includes a storage reel storing a stowed elongate band. A drive mechanism biases and guides the band helically out of the storage reel to form an elongated mast. Adjacent edges of the deployed band may secure together using openings and corresponding protrusions, such as rivets. A welding system may use a rotating welder to weld adjacent edges of the band as it deploys. The band may be formed of multiple band segments attached together by connectors such as doublers. Protrusions such as rivets or other fasteners may attach the connectors to opposing sides of the band segments. A cylindrical space habitat or other macrostructure may be formed using multiple deployable masts that connect large rings.
    Type: Application
    Filed: March 27, 2025
    Publication date: October 2, 2025
    Inventors: Robert Kenneth Van Ness, JR., Kathryn Faye Bywaters, Gedi Minster, Vishnu Sanigepalli, Brian Vogel, Hunter Williams, Kris Zacny
  • Publication number: 20250304291
    Abstract: Deployable structures are described, in particular linearly-deployable structures, such as masts or booms. The masts may be stowed for transport and then deployed at their destination in space or on earth. A deployment system includes a storage reel storing a stowed elongate band. A drive mechanism biases and guides the band helically out of the storage reel to form an elongated mast. Adjacent edges of the deployed band may secure together using openings and corresponding protrusions, such as rivets. A welding system may use a rotating welder to weld adjacent edges of the band as it deploys. The band may be formed of multiple band segments attached together by connectors such as doublers. Protrusions such as rivets or other fasteners may attach the connectors to opposing sides of the band segments. A cylindrical space habitat or other macrostructure may be formed using multiple deployable masts that connect large rings.
    Type: Application
    Filed: March 27, 2025
    Publication date: October 2, 2025
    Inventors: Vishnu Sanigepalli, Dean Bergman, Gedi Minster, Robert Kenneth Van Ness, JR., Brian Vogel, Hunter Williams, Kris Zacny
  • Publication number: 20220177166
    Abstract: To manage propellant in a spacecraft, the method of this disclosure includes storing propellant in a tank as a mixture of liquid and gas; transferring the propellant out of the tank; converting the mixture of liquid and gas propellant into a single phase, where the single phase is either liquid or gaseous; and supplying the single phase of the propellant to a thruster.
    Type: Application
    Filed: March 5, 2020
    Publication date: June 9, 2022
    Inventors: Mikhail Kokorich, Joel Sercel, Aaron Mitchell, Gedi Minster, Yuqi Wang, Lee Wilson, James Small
  • Publication number: 20200283174
    Abstract: To manage propellant in a spacecraft, the method of this disclosure includes storing propellant in a tank as a mixture of liquid and gas; transferring the propellant out of the tank; converting the mixture of liquid and gas propellant into a single phase, where the single phase is either liquid or gaseous; and supplying the single phase of the propellant to a thruster.
    Type: Application
    Filed: January 27, 2020
    Publication date: September 10, 2020
    Inventors: Mikhail Kokorich, Joel Sercel, Aaron Mitchell, Gedi Minster, Yuqi Wang, Lee Wilson, James Small