• DocumentCode
    811010
  • Title

    V-band GaAs MMIC low-noise and power amplifiers

  • Author

    Hung, Hing-Loi A. ; Hegazi, Gamal M. ; Lee, Timothy T. ; Phelleps, Fred R. ; Singer, Jack L. ; Huang, Ho C.

  • Author_Institution
    COMSAT Lab., Clarksburg, MD, USA
  • Volume
    36
  • Issue
    12
  • fYear
    1988
  • Firstpage
    1966
  • Lastpage
    1975
  • Abstract
    GaAs MESFET amplifiers with on-chip DC-blocking and bias networks which were fabricated from both VPE and MBE materials, are reported. The low-noise designs resulted in a single-stage MMIC, low-noise amplifier achieving a 6.5-dB noise figure and a 4.1-dB gain at 59 GHz, as well as a cascaded six-stage amplifier exhibiting an 8-dB minimum noise figure and a 30-dB gain from 56.2 to 60 GHz. The single-stage power amplifier provides over 4.5 dB of gain from 57 to 60.5 GHz, with a maximum output power of 95 mW and a corresponding power-added efficiency at 11% at 58 GHz. Maximum power-added efficiency of 15.3% at 73 mW was also obtained. A cascaded four-stage amplifier demonstrated stable operation, achieving 17 dB of gain and 85 mW of output power. A two-stage balanced amplifier provided 136 mW of output power and 7.5 dB of linear gain from 56.6 to 61.5 GHz.<>
  • Keywords
    III-V semiconductors; MMIC; Schottky gate field effect transistors; field effect integrated circuits; gallium arsenide; microwave amplifiers; power amplifiers; 11 to 15.3 percent; 4.1 to 30 dB; 56 to 61.5 GHz; 6.5 to 8 dB; 73 to 136 mW; EHF; GaAs; III-V semiconductors; LNA; MBE materials; MESFET amplifiers; MM-wave type; MMIC; V-band; VPE materials; bias networks; cascaded six-stage amplifier; low-noise amplifier; low-noise designs; monolithic microwave IC; on-chip DC-blocking; power amplifiers; power-added efficiency; single-stage; two-stage balanced amplifier; Gain; Gallium arsenide; Low-noise amplifiers; MESFETs; MMICs; Network-on-a-chip; Noise figure; Operational amplifiers; Power amplifiers; Power generation;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/22.17441
  • Filename
    17441