Patents by Inventor Michael L. Neubauer

Michael L. Neubauer 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: 11961692
    Abstract: An anode structure for a magnetron provides for low eddy currents and efficient water cooling. The anode structure may be made by machining a bimetal blank including an out layer of a first metal and an inner layer of a second metal and formed by explosion bonding. The second metal has a resistivity lower than first metal and a thermal conductivity higher than the first metal. The machining may result in the anode structure with vanes each having a center (tip) portion made of the second metal and the rest made of the first metal. The machined anode structure may be coated with the second metal.
    Type: Grant
    Filed: July 11, 2022
    Date of Patent: April 16, 2024
    Assignee: Muons, Inc.
    Inventors: Michael L. Neubauer, Alan J. Dudas, Stephen A. Kahn
  • Publication number: 20220351928
    Abstract: An anode structure for a magnetron provides for low eddy currents and efficient water cooling. The anode structure may be made by machining a bimetal blank including an out layer of a first metal and an inner layer of a second metal and formed by explosion bonding. The second metal has a resistivity lower than first metal and a thermal conductivity higher than the first metal. The machining may result in the anode structure with vanes each having a center (tip) portion made of the second metal and the rest made of the first metal. The machined anode structure may be coated with the second metal.
    Type: Application
    Filed: July 11, 2022
    Publication date: November 3, 2022
    Inventors: Michael L. Neubauer, Alan J. Dudas, Stephen A. Kahn
  • Patent number: 11393652
    Abstract: An anode structure for a magnetron provides for low eddy currents and efficient water cooling. The anode structure may be made by machining a bimetal blank including an out layer of a first metal and an inner layer of a second metal and formed by explosion bonding. The second metal has a resistivity lower than first metal and a thermal conductivity higher than the first metal. The machining may result in the anode structure with vanes each having a center (tip) portion made of the second metal and the rest made of the first metal. The machined anode structure may be coated with the second metal.
    Type: Grant
    Filed: January 24, 2020
    Date of Patent: July 19, 2022
    Assignee: Muons, Inc.
    Inventors: Michael L. Neubauer, Alan J. Dudas, Stephen A. Kahn
  • Publication number: 20200243294
    Abstract: An anode structure for a magnetron provides for low eddy currents and efficient water cooling. The anode structure may be made by machining a bimetal blank including an out layer of a first metal and an inner layer of a second metal and formed by explosion bonding. The second metal has a resistivity lower than first metal and a thermal conductivity higher than the first metal. The machining may result in the anode structure with vanes each having a center (tip) portion made of the second metal and the rest made of the first metal. The machined anode structure may be coated with the second metal.
    Type: Application
    Filed: January 24, 2020
    Publication date: July 30, 2020
    Inventors: Michael L. Neubauer, Alan J. Dudas, Stephen A. Kahn
  • Patent number: 10700639
    Abstract: A system and method of operating a magnetron power source can achieve a broad range of output power control by operating a magnetron with its cathode voltage lower than that needed for free running oscillations (e.g., below the Kapitsa critical voltage or equivalently below the Hartree voltage) A sufficiently strong injection-locking signal enables the output power to be coherently generated and to be controlled over a broad power range by small changes in the cathode voltage. In one embodiment, the present system and method is used for a practical, single, frequency-locked 2-magnetron system design.
    Type: Grant
    Filed: August 2, 2019
    Date of Patent: June 30, 2020
    Assignee: Muons, Inc.
    Inventors: Grigory M. Kazakevich, Michael L. Neubauer, Valeri A. Lebedev, Vyacheslav P. Yakovlev
  • Publication number: 20200044607
    Abstract: A system and method of operating a magnetron power source can achieve a broad range of output power control by operating a magnetron with its cathode voltage lower than that needed for free running oscillations (e.g., below the Kapitsa critical voltage or equivalently below the Hartree voltage) A sufficiently strong injection-locking signal enables the output power to be coherently generated and to be controlled over a broad power range by small changes in the cathode voltage. In one embodiment, the present system and method is used for a practical, single, frequency-locked 2-magnetron system design.
    Type: Application
    Filed: August 2, 2019
    Publication date: February 6, 2020
    Inventors: Grigory M. Kazakevich, Michael L. Neubauer, Valeri A. Lebedev, Vyacheslav P. Yakovlev
  • Patent number: 10374551
    Abstract: A system and method of operating a magnetron power source can achieve a broad range of output power control by operating a magnetron with its cathode voltage lower than that needed for free running oscillations (e.g., below the Kapitsa critical voltage or equivalently below the Hartree voltage) A sufficiently strong injection-locking signal enables the output power to be coherently generated and to be controlled over a broad power range by small changes in the cathode voltage. In one embodiment, the present system and method is used for a practical, single, frequency-locked 2-magnetron system design.
    Type: Grant
    Filed: February 12, 2017
    Date of Patent: August 6, 2019
    Assignee: Muons, Inc.
    Inventors: Grigory M. Kazakevich, Michael L. Neubauer, Valeri A. Lebedev, Vyacheslav P. Yakovlev
  • Publication number: 20170250651
    Abstract: A system and method of operating a magnetron power source can achieve a broad range of output power control by operating a magnetron with its cathode voltage lower than that needed for free running oscillations (e.g., below the Kapitsa critical voltage or equivalently below the Hartree voltage) A sufficiently strong injection-locking signal enables the output power to be coherently generated and to be controlled over a broad power range by small changes in the cathode voltage. In one embodiment, the present system and method is used for a practical, single, frequency-locked 2-magnetron system design.
    Type: Application
    Filed: February 12, 2017
    Publication date: August 31, 2017
    Applicant: Muons, Inc.
    Inventors: Grigory M. Kazakevich, Michael L. Neubauer, Valeri A. Lebedev, Vyacheslav P. Yakovlev
  • Patent number: 4296354
    Abstract: In a traveling wave tube (TWT) with a non-dispersive interaction circuit such as a helix, the length of the circuit in wavelengths, and hence the gain of the tube, varies with the frequency. The variations of gain over a very wide bandwidth can cause oscillation problems. The invention provides an inverse variation with frequency of the physical length over which the circuit interacts with the beam. This is done by resonant attenuators coupling to the interaction circuit over various lengths depending on their resonant frequency, the attenuation being enough to effectively remove the interaction circuit wave. The attenuators are preferably formed of resonant sections of slow-wave circuit deposited on longitudinal ceramic rods such as the helix support rods.
    Type: Grant
    Filed: November 28, 1979
    Date of Patent: October 20, 1981
    Assignee: Varian Associates, Inc.
    Inventor: Michael L. Neubauer