Patents by Inventor Ryan G. Quarfoth

Ryan G. Quarfoth 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: 10749265
    Abstract: A method and apparatus for converting electromagnetic surface waves from TE mode to TM mode or from TM mode to TE mode. The apparatus includes a dielectric surface having an anisotropic impedance tensor which is preferably obtained by a plurality of electrically conductive unit cells disposed on the dielectric surface and arranged in a two dimensional array of unit cells, a majority of the unit cells in said array being divided into at least two portions, with at least one gap separating the at least two portions from each other into two or more patches or plates, the array of unit cells having a surface wave input end and a surface wave output end, gaps in the unit cells disposed closest to the surface wave input end having a first orientation and gaps in said unit cells disposed closest to the surface wave output end having a second orientation different than said first orientation.
    Type: Grant
    Filed: July 19, 2016
    Date of Patent: August 18, 2020
    Assignee: HRL Laboratories, LLC
    Inventors: Ryan G. Quarfoth, Amit M. Patel
  • Publication number: 20200083605
    Abstract: A holographic antenna including a transmission line structure having a traveling wave mode along a length of the transmission line structure, and a plurality of reconfigurable radiating elements located along the length of the transmission line structure.
    Type: Application
    Filed: July 23, 2019
    Publication date: March 12, 2020
    Applicant: HRL Laboratories, LLC
    Inventors: Ryan G. Quarfoth, Carson R. White
  • Publication number: 20190334234
    Abstract: A holographic antenna has plurality of conductive elements arranged in a series of the conductive elements, the series of conductive elements being grouped a number of different groups of said conductive elements, each of conductive elements in each different group of conductive elements being connected via one or more tuning elements to a neighboring conductive element in each the different group of conductive elements, each different group of conductive elements comprising a holographic antenna element of said holographic antenna. A plurality of amplifiers wherein each one of the plurality of amplifiers is connected at one end of each one of the different groups of conductive elements; and a feed system coupling each of said amplifiers to a RF connection of the holographic antenna.
    Type: Application
    Filed: April 27, 2018
    Publication date: October 31, 2019
    Applicant: HRL Laboratories, LLC
    Inventors: Ryan G. Quarfoth, Keerti S. Kona, Daniel Gregoire
  • Patent number: 10451951
    Abstract: A photonic modulator includes a first electro-optical waveguide, the first electro-optical waveguide having a first electro-optical waveguide side and a second electro-optical waveguide side opposite the first electro-optical waveguide side, a second electro-optical waveguide, the second electro-optical waveguide having a third electro-optical waveguide side and a fourth electro-optical waveguide side opposite the third electro-optical waveguide side, a first driven radio frequency electrode coupled to the first electro-optical waveguide side, a second driven radio frequency electrode coupled to the third electro-optical waveguide side, and a floating electrode coupled to the second electro-optical waveguide side and coupled to the fourth electro-optical waveguide side. The second electro-optical waveguide side and the third electro-optical waveguide side face each other and are spaced apart from one another.
    Type: Grant
    Filed: August 3, 2018
    Date of Patent: October 22, 2019
    Assignee: HRL Laboratories, LLC
    Inventors: Daniel Yap, Ryan G. Quarfoth, Troy D. Rockwood
  • Publication number: 20190278150
    Abstract: An optical apparatus may comprise: an electrically reconfigurable optical layer comprising at least one phase-change material, wherein an optical property of the phase-change material is reconfigurable by an electric field; an optically transparent top electrode and a bottom electrode, the top and bottom electrodes configured to apply the electric field to the electrically reconfigurable optical layer, wherein the electrically reconfigurable optical layer is disposed between the optically transparent top electrode and the bottom electrode; and a colossal-K dielectric layer disposed between the electrically reconfigurable optical layer and the bottom electrode. The phase-change material of the electrically reconfigurable optical layer may comprise phase-change nickelate or tungsten oxide. The phase-change material of the electrically reconfigurable optical layer may have a perovskite structure.
    Type: Application
    Filed: March 7, 2019
    Publication date: September 12, 2019
    Inventors: Kyung-Ah Son, Jeong-Sun Moon, Ryan G. Quarfoth
  • Publication number: 20190245263
    Abstract: An interleaved array of electronically steerable antennas is capable of simultaneously operating and/or independently beam scanning at different frequencies from a single aperture. An antenna system may comprise a plurality of electronically steerable antennas configured to be operable at different frequencies, each of the antennas comprising a feed launching a surface wave and surface-wave waveguides connected to the feed. The surface-wave waveguides of the antennas operable at different frequencies may be interleaved with each other.
    Type: Application
    Filed: December 19, 2018
    Publication date: August 8, 2019
    Applicant: HRL Laboratories, LLC
    Inventor: Ryan G. QUARFOTH
  • Publication number: 20180371892
    Abstract: A system configured to provide thermal regulation and vibration isolation to one or more electronic components. The system includes a sensor chassis defining an interior chamber, an electronics housing in the interior chamber of the sensor chassis, a thermoelectric cooler coupled between the sensor chassis and the electronics housing, a thermal strap coupled to the sensor chassis, and at least one isolator coupled to the sensor chassis. The system may also include an insulating material, such as Aerogel, in the interior chamber of the sensor chassis and extending around the electronics housing.
    Type: Application
    Filed: June 25, 2018
    Publication date: December 27, 2018
    Inventors: David W. Shahan, Ryan T. Freeman, Deborah J. Kirby, Ryan G. Quarfoth, Geoffrey P. McKnight
  • Patent number: 9871293
    Abstract: A method and apparatus for electronically steering an antenna system is provided. A surface wave is propagated along each of a number of surface wave channels formed in each of a plurality of radiating elements to form a radiation pattern. Each surface wave channel in the number of surface wave channels formed in each radiating element in the plurality of radiating elements is coupled to a transmission line configured to carry a radio frequency signal using a surface wave feed in a plurality of surface wave feed associated with the plurality of radiating elements. A main lobe of the radiation pattern is electronically steered by controlling voltages applied to a plurality of switch elements connecting a plurality of impedance elements in each of the number of surface wave channels.
    Type: Grant
    Filed: April 9, 2015
    Date of Patent: January 16, 2018
    Assignee: THE BOEING COMPANY
    Inventors: Amit M. Patel, Ryan G. Quarfoth
  • Publication number: 20170025765
    Abstract: A method and apparatus for converting electromagnetic surface waves from TE mode to TM mode or from TM mode to TE mode. The apparatus includes a dielectric surface having an anisotropic impedance tensor which is preferably obtained by a plurality of electrically conductive unit cells disposed on the dielectric surface and arranged in a two dimensional array of unit cells, a majority of the unit cells in said array being divided into at least two portions, with at least one gap separating the at least two portions from each other into two or more patches or plates, the array of unit cells having a surface wave input end and a surface wave output end, gaps in the unit cells disposed closest to the surface wave input end having a first orientation and gaps in said unit cells disposed closest to the surface wave output end having a second orientation different than said first orientation.
    Type: Application
    Filed: July 19, 2016
    Publication date: January 26, 2017
    Applicant: HRL Laboratories, LLC
    Inventors: Ryan G. QUARFOTH, Amit M. PATEL
  • Publication number: 20150214615
    Abstract: A method and apparatus for electronically steering an antenna system is provided. A surface wave is propagated along each of a number of surface wave channels formed in each of a plurality of radiating elements to form a radiation pattern. Each surface wave channel in the number of surface wave channels formed in each radiating element in the plurality of radiating elements is coupled to a transmission line configured to carry a radio frequency signal using a surface wave feed in a plurality of surface wave feed associated with the plurality of radiating elements. A main lobe of the radiation pattern is electronically steered by controlling voltages applied to a plurality of switch elements connecting a plurality of impedance elements in each of the number of surface wave channels.
    Type: Application
    Filed: April 9, 2015
    Publication date: July 30, 2015
    Inventors: Amit M. Patel, Ryan G. Quarfoth