• DocumentCode
    2675198
  • Title

    Contributing Factors to Window Flashover Under Pulsed High Power Microwave Excitation at High Altitude

  • Author

    Edmiston, G. ; Neuber, A. ; Krile, J. ; McQuage, L. ; Krompholz, H. ; Dickens, J.

  • Author_Institution
    Depts. of Electr. & Comput. Eng. & Phys., Texas Tech Univ., Lubbock, TX
  • fYear
    2006
  • fDate
    14-18 May 2006
  • Firstpage
    389
  • Lastpage
    392
  • Abstract
    One of the major limiting factors for the transmission of high power microwave (HPM) radiation is the interface between dielectric-vacuum, or even more severely, between dielectric-air if HPM is to be radiated into the atmosphere. Surface flashover phenomena which occur at these transitions severely limit the power levels which can be transmitted. It is of major technical importance to predict surface flashover events for a given window geometry, material and power level. When considering an aircraft based high power microwave platform, the effects on flashover formation due to variances in the operational environment corresponding to altitudes from sea level to 50,000 feet (760 Torr to 90 Torr) are of primary interest. The test setup is carefully designed to study the influence of each atmospheric variable without the influence of high field enhancement or electron injecting metallic electrodes.
  • Keywords
    coatings; dielectric materials; flashover; polymers; UV absorbent coatings; high altitude; polyethylene; polytetrafluoroethylene; power density; pressure 760 torr to 90 torr; pulsed high power microwave excitation; surface flashover; Aerospace materials; Aircraft; Atmosphere; Dielectric materials; Electrons; Flashover; Geometry; Sea level; Sea surface; Testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power Modulator Symposium, 2006. Conference Record of the 2006 Twenty-Seventh International
  • Conference_Location
    Arlington, VA
  • Print_ISBN
    1-4244-0018-X
  • Electronic_ISBN
    1-4244-0019-8
  • Type

    conf

  • DOI
    10.1109/MODSYM.2006.365266
  • Filename
    4216218