Patents by Inventor Gerald Magera

Gerald Magera 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: 8987982
    Abstract: A thermionic emission assembly includes a Wehnelt cap that has a cap beam aperture and a cavity within which a cathode is supported. Electrical energy applied to the cathode causes it to reach a sufficiently high temperature to emit a beam of electrons that propagate through the cap beam aperture. An anode having an anode beam aperture is positioned in spatial alignment with the cap beam aperture to receive the electrons. The anode accelerates the electrons and directs them through the anode beam aperture for incidence on a target specimen. A ceramic base forms a combined interface that electrically and thermally separates the Wehnelt cap and the anode. The thermal isolation of the Wehnelt cap from the anode allows the Wehnelt cap to increase in heat to rapidly reach a stable temperature as the cathode emits the beam of electrons.
    Type: Grant
    Filed: November 11, 2013
    Date of Patent: March 24, 2015
    Assignee: Applied Physics Technologies, Inc.
    Inventors: Gerald Magera, William Mackie, Larry Southall, Gary Cabe, Cory Fast
  • Publication number: 20140065918
    Abstract: A thermionic emission assembly includes a Wehnelt cap that has a cap beam aperture and a cavity within which a cathode is supported. Electrical energy applied to the cathode causes it to reach a sufficiently high temperature to emit a beam of electrons that propagate through the cap beam aperture. An anode having an anode beam aperture is positioned in spatial alignment with the cap beam aperture to receive the electrons. The anode accelerates the electrons and directs them through the anode beam aperture for incidence on a target specimen. A ceramic base forms a combined interface that electrically and thermally separates the Wehnelt cap and the anode. The thermal isolation of the Wehnelt cap from the anode allows the Wehnelt cap to increase in heat to rapidly reach a stable temperature as the cathode emits the beam of electrons.
    Type: Application
    Filed: November 11, 2013
    Publication date: March 6, 2014
    Applicant: Applied Physics Technologies, Inc.
    Inventors: Gerald Magera, William Mackie, Larry Southall, Gary Cabe, Cory Fast
  • Patent number: 8581481
    Abstract: A thermionic emission assembly includes a Wehnelt cap that has a cap beam aperture and a cavity within which a cathode is supported. Electrical energy applied to the cathode causes it to reach a sufficiently high temperature to emit a beam of electrons that propagate through the cap beam aperture. An anode having an anode beam aperture is positioned in spatial alignment with the cap beam aperture to receive the electrons. The anode accelerates the electrons and directs them through the anode beam aperture for incidence on a target specimen. A ceramic base forms a combined interface that electrically and thermally separates the Wehnelt cap and the anode. The interface thermally isolates the Wehnelt cap from the anode to allow the cathode to rapidly reach the sufficiently high temperature to emit the beam of electrons.
    Type: Grant
    Filed: February 25, 2011
    Date of Patent: November 12, 2013
    Assignee: Applied Physics Technologies, Inc.
    Inventors: Gerald Magera, William Mackie, Larry Southall, Gary Cabe, Cory Fast
  • Patent number: 7544523
    Abstract: A method of batch fabrication using established photolithographic techniques allowing nanoparticles or nanodevices to be fabricated and mounted into a macroscopic device in a repeatable, reliable manner suitable for large-scale mass production. Nanoparticles can be grown on macroscopic “modules” which can be easily manipulated and shaped to fit standard mounts in various devices.
    Type: Grant
    Filed: February 28, 2006
    Date of Patent: June 9, 2009
    Assignee: FEI Company
    Inventors: Gregory Schwind, Gerald Magera, Lawrence Scipioni
  • Publication number: 20070148991
    Abstract: A method of batch fabrication using established photolithographic techniques allowing nanoparticles or nanodevices to be fabricated and mounted into a macroscopic device in a repeatable, reliable manner suitable for large-scale mass production. Nanoparticles can be grown on macroscopic “modules” which can be easily manipulated and shaped to fit standard mounts in various devices.
    Type: Application
    Filed: February 28, 2006
    Publication date: June 28, 2007
    Applicant: FEI Company
    Inventors: Gregory Schwind, Gerald Magera, Lawrence Scipioni
  • Publication number: 20050001220
    Abstract: A low input power consumption, compact thermal field emitter is suitable for use in electron beam systems, particularly those systems that use an array of electron beams or a miniature electron beam system. The thermal field emitter design reduces heat loss by reducing heat transfer to the base. To achieve reduced loses the design incorporates the use of high electrical resistivity, low thermal conductivity materials for construction of the filament posts and the filaments. Such materials further reduce heat loss and reduce input current requirements. In one embodiment, the base includes counterbores that reduce the heat conduction path between the filament posts and the base, and moves the contact area further from the filament.
    Type: Application
    Filed: August 2, 2004
    Publication date: January 6, 2005
    Applicant: FEI Company
    Inventors: Gerald Magera, Gregory Schwind, James McGinn, David Jun