• DocumentCode
    2025874
  • Title

    A novel linearizing technique using dual diode based linearizers for lightweight power amplifiers

  • Author

    Kashiwa, T. ; Ohnishi, Y. ; Yamamoto, K. ; Ohshima, H.

  • Author_Institution
    Furuno Electr. Co., Ltd., Hyogo, Japan
  • fYear
    2005
  • fDate
    3-4 Oct. 2005
  • Firstpage
    601
  • Lastpage
    604
  • Abstract
    A novel way to compensate the distortion of power amplifier (PA) modules is presented in this paper. A diode linearizer with an inductor is used to compensate the distortion of the PA using LDMOS FET and has a characteristic of a positive phase and a gain expansion. Two diode-based linearizers are employed to compensate the distortions. One linearizer compensates the distortion of the phase, mainly. The other compensates the ones of the gain and the phase. It is possible to compensate the distortion of the PA module using this linearizing technique even though the driver stage of the PA module has the distortion. This implies that the PA modules can operate with high efficiencies. In addition, it is possible to achieve lightweight PA modules. A modulated spectrum power of 8 dB and an EVM of 1.4 % can be improved using the proposed techniques in the PA module when a 16-QAM modulated signal is used at a 42 dBm output power and a 3 dB back-off condition.
  • Keywords
    MOSFET; diodes; linearisation techniques; power amplifiers; quadrature amplitude modulation; 16-QAM; LDMOS FET; dual diode based linearizers; gain expansion; inductor; lightweight power amplifiers; linearizing technique; modulated spectrum power; positive phase; Circuits; Diodes; Electrical resistance measurement; FETs; Inductors; Linearity; Phase distortion; Power amplifiers; Power generation; Resistors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Gallium Arsenide and Other Semiconductor Application Symposium, 2005. EGAAS 2005. European
  • Conference_Location
    Paris
  • Print_ISBN
    88-902012-0-7
  • Type

    conf

  • Filename
    1637291