• DocumentCode
    1491897
  • Title

    High-Efficiency Envelope-Tracking Transmitter With Optimized Class- {\\hbox {F}}^{-1} Amplifier and 2-bit Envelope Amplifier for 3G LTE Base Station

  • Author

    Kim, Joon Hyung ; Jo, Gweon Do ; Oh, Jung Hoon ; Kim, Young Hoon ; Lee, Kwang Chun ; Jung, Jae Ho ; Park, Chul Soon

  • Author_Institution
    Mobile RF Team, Electron. & Telecommun. Res. Inst. (ETRI), Daejeon, South Korea
  • Volume
    59
  • Issue
    6
  • fYear
    2011
  • fDate
    6/1/2011 12:00:00 AM
  • Firstpage
    1610
  • Lastpage
    1621
  • Abstract
    In this paper, a high-efficiency envelope-tracking (ET) transmitter incorporating a novel efficiency-boosting function is proposed and implemented. An inverse Class-F power amplifier is utilized and optimized using the proposed output loading condition, which enhances its efficiency at the high probability region. This matching network can be conveniently implemented by controlling the nonlinear capacitance of the power transistor. For an accurate analysis, the output waveforms are modeled in terms of the nonlinear capacitance, and the efficiency and output power are subsequently analyzed and successfully optimized. For a high-efficiency envelope amplifier (EA), we propose a new EA utilizing a 2-bit switching stage in place of a 1-bit switching stage. This proposed architecture effectively reduces the ripple current, improving the efficiency of the EA. To verify our analysis, we have fully implemented a 3.54-GHz high-efficiency ET transmitter including a digital processing block. The experimental results show that the ET transmitter using a commercial 60-W peak-envelope-power GaN device operates at a drain efficiency of 44% and power-added efficiency of 39.6% with a gain of 10.1 dB at an average output power of 40 dBm for a 10-MHz third-generation long-term evolution signal with 8.5-dB peak-to-average power ratio. Using a digital pre-distortion function, the adjacent channel leakage ratio is less than -47.5 dBc.
  • Keywords
    3G mobile communication; Long Term Evolution; gallium compounds; optimisation; power amplifiers; radio transmitters; 2-bit envelope amplifier; 2-bit switching stage; 3G LTE base station; GaN; GaN device; adjacent channel leakage ratio; digital predistortion function; digital processing block; efficiency-boosting function; envelope-tracking transmitter; frequency 10 MHz; frequency 3.54 GHz; inverse class-F power amplifier; long-term evolution signal; nonlinear capacitance; peak-to-average power ratio; power 60 W; power transistor; Capacitance; Harmonic analysis; Impedance; Power generation; Radio frequency; Switches; Transmitters; Envelope amplifier (EA); GaN; envelope tracking (ET); inverse class-F power amplifier (PA); nonlinear capacitance;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2011.2125984
  • Filename
    5746631