• DocumentCode
    3396047
  • Title

    High power Ka-band and Q-band helix-traveling wave tubes for communications and radar applications

  • Author

    Chong, C.K. ; Davis, J.A. ; Forster, Jeff ; Le Borgne, R.H. ; Ramay, M.L. ; Stolz, R.J. ; Tamashiro, R.N. ; Zhai, X.

  • Author_Institution
    L-3 Commun. Electron Technol. Inc., Torrance, CA
  • fYear
    2005
  • fDate
    17-20 Oct. 2005
  • Firstpage
    1926
  • Abstract
    Latest capability in millimeter-wave helix-TWTs demonstrated at L-3 Communications Electron Technologies (L-3 ETI), Inc. (formally Boeing Electron Dynamic Devices, Inc. and originally Hughes Electron Dynamics Division) in CW output power and the overall efficiency of Ka-band and Q-band devices are presented. The 8921HP, L-3 ETI´s standard high power communications Ka-band TWT model, produces 250 W minimum CW output power and 47% overall efficiency with a two-stage collector over 27.5 GHz-31 GHz. The 8921HP-2, a variation of the 8921HP, generates 300 W output power over 28.3 to 30 GHz and 50% overall efficiency. Another Ka-band device, the 8922HP, developed for pulsed radar applications over 33.4 GHz-36 GHz, produces 230 W minimum output power over the bandwidth with 49 % minimum overall efficiency. This device was developed for pulsed operations, but has demonstrated CW power handling capability up to 270 W, In Q-band, the 8925HP, derived from the current production 120 W Q-band helix-TWT (8905HP), significantly extends the CW output power capability, demonstrating 230 W minimum over 43.5 GHz-45.5 GHz. The 8925HP is presently in the second phase of development to be production ready for 200 W output power
  • Keywords
    microwave tubes; millimetre wave tubes; radar applications; travelling wave tubes; 200 W; 230 W; 250 W; 270 W; 28.3 to 30 GHz; 300 W; 33.4 to 36 GHz; 43.5 to 45.5 GHz; L-3 Communications Electron Technologies; Q-band helix-traveling wave tubes; high power Ka-band TWT; high power communications; millimeter-wave helix-TWT; power handling capability; pulsed radar applications; two-stage collector; Circuit simulation; Communications technology; Electrons; Millimeter wave communication; Millimeter wave radar; Millimeter wave technology; Power generation; Production; Radar applications; Radio frequency;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Military Communications Conference, 2005. MILCOM 2005. IEEE
  • Conference_Location
    Atlantic City, NJ
  • Print_ISBN
    0-7803-9393-7
  • Type

    conf

  • DOI
    10.1109/MILCOM.2005.1605954
  • Filename
    1605954