Patents by Inventor David G. Derrick

David G. Derrick 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: 10153545
    Abstract: The present disclosure is directed to a seeker system having an infrared (IR) sensor pedestal, an IR sensor disposed on the IR pedestal and a plurality of radio frequency (RF) antenna elements symmetrically disposed in a circumferential direction around the IR sensor pedestal. The seeker system further includes a plurality of RF waveguiding structures. In an embodiment, each of the RF waveguiding structures have first and second ends and are symmetrically disposed in a circumferential direction around the IR sensor pedestal such that in response to an RF signal incident on a first end of the waveguiding structure, the RF signal is provided to one of the plurality of RF antenna elements such that in response to an RF signal incident on the seeker system from any direction, each of the plurality of RF antenna elements receive the RF signal with a desired phase characteristic.
    Type: Grant
    Filed: March 30, 2016
    Date of Patent: December 11, 2018
    Assignee: Raytheon Company
    Inventors: Glafkos K. Stratis, Jerry D. Robichaux, Wayne L. Sunne, Jim R. Hicks, David G. Derrick, Alphonso A. Samuel
  • Patent number: 10141624
    Abstract: A heat sensing system and method for dynamic heat sensing may be implemented in a flight vehicle having a main antenna configured for sending and/or receipt of signals. The system includes an auxiliary antenna system that is arranged within a radome of the flight vehicle for detecting temperatures around the exterior surface of the radome. The auxiliary antenna is configured for receiving and measuring infrared or optical energy. Using the measured energy, the system is configured to determine whether the detected temperature exceeds a predetermined temperature and rotating the vehicle to equalize heat around the vehicle when the current temperature exceeds the predetermined temperature.
    Type: Grant
    Filed: June 8, 2016
    Date of Patent: November 27, 2018
    Assignee: RAYTHEON COMPANY
    Inventors: Glafkos K. Stratis, Anton Vanderwyst, Wayne L. Sunne, David G. Derrick
  • Patent number: 9972907
    Abstract: A sensor system and method of reducing plasma-induced communication inhibition for a main antenna includes using auxiliary antennas for detecting a density of plasma that affects operation of the main antenna, and re-orienting an electromagnetic field around the main antenna in response to the density detected to reduce effect of the plasma on the main antenna. The auxiliary antennas are also operable for data link communication and switchable such if the density of the plasma inhibits receipt or sending of signals by one of the auxiliary antennas, another one of the auxiliary antennas may be used for data link communication.
    Type: Grant
    Filed: March 11, 2016
    Date of Patent: May 15, 2018
    Assignee: Raytheon Company
    Inventors: Glafkos K. Stratis, Anton Vanderwyst, Wayne L. Sunne, David G. Derrick, James P. Edmiston, David G. Manzi, Howard C. Choe, Alphonso A. Samuel
  • Publication number: 20170358836
    Abstract: A heat sensing system and method for dynamic heat sensing may be implemented in a flight vehicle having a main antenna configured for sending and/or receipt of signals. The system includes an auxiliary antenna system that is arranged within a radome of the flight vehicle for detecting temperatures around the exterior surface of the radome. The auxiliary antenna is configured for receiving and measuring infrared or optical energy. Using the measured energy, the system is configured to determine whether the detected temperature exceeds a predetermined temperature and rotating the vehicle to equalize heat around the vehicle when the current temperature exceeds the predetermined temperature.
    Type: Application
    Filed: June 8, 2016
    Publication date: December 14, 2017
    Inventors: Glafkos K. Stratis, Anton Vanderwyst, Wayne L. Sunne, David G. Derrick
  • Publication number: 20170288303
    Abstract: The present disclosure is directed to a seeker system having an infrared (IR) sensor pedestal, an IR sensor disposed on the IR pedestal and a plurality of radio frequency (RF) antenna elements symmetrically disposed in a circumferential direction around the IR sensor pedestal. The seeker system further includes a plurality of RF waveguiding structures. In an embodiment, each of the RF waveguiding structures have first and second ends and are symmetrically disposed in a circumferential direction around the IR sensor pedestal such that in response to an RF signal incident on a first end of the waveguiding structure, the RF signal is provided to one of the plurality of RF antenna elements such that in response to an RF signal incident on the seeker system from any direction, each of the plurality of RF antenna elements receive the RF signal with a desired phase characteristic.
    Type: Application
    Filed: March 30, 2016
    Publication date: October 5, 2017
    Applicant: Raytheon Company
    Inventors: Glafkos K. Stratis, Jerry D. Robichaux, Wayne L. Sunne, Jim R. Hicks, David G. Derrick, Alphonso A. Samuel
  • Publication number: 20170264015
    Abstract: A sensor system and method of reducing plasma-induced communication inhibition for a main antenna includes using auxiliary antennas for detecting a density of plasma that affects operation of the main antenna, and re-orienting an electromagnetic field around the main antenna in response to the density detected to reduce effect of the plasma on the main antenna. The auxiliary antennas are also operable for data link communication and switchable such if the density of the plasma inhibits receipt or sending of signals by one of the auxiliary antennas, another one of the auxiliary antennas may be used for data link communication.
    Type: Application
    Filed: March 11, 2016
    Publication date: September 14, 2017
    Inventors: Glafkos K. Stratis, Anton Vanderwyst, Wayne L. Sunne, David G. Derrick, James P. Edmiston, David G. Manzi, Howard C. Choe, Alphonso A. Samuel