• DocumentCode
    3195403
  • Title

    High efficiency four-phase All PMOS charge pump without body effects

  • Author

    Li, Na ; Huang, Zhangcai ; Jiang, Minglu ; Inoue, Yasuaki

  • Author_Institution
    Grad. Sch. of Inf., Production & Syst., Waseda Univ., Kitakyushu
  • fYear
    2008
  • fDate
    25-27 May 2008
  • Firstpage
    1083
  • Lastpage
    1087
  • Abstract
    In this paper, a four-phase all PMOS charge pump based on the voltage doubler structure is proposed. The proposed charge pump is designed in 1.8 V 0.18 mum standard CMOS process with high voltage boosting efficiency and little output ripple. Moreover, it solves the voltage overstress problem which exists in the conventional charge pump and eliminates the body effect as well by means of adding two auxiliary substrate switching PMOS transistors. The simulation results show that the proposed charge pump circuits have an improvement about 93.2% compared with the original two-phase Dickson charge pump and an improvement about 28.2% compared with the negative four-phase Dickson charge pump when the supply voltage is 1.8 V. Moreover it can even work as long as the supply power voltage is larger than the threshold voltage, which makes it quite suitable to be utilized in low supply voltage applications.
  • Keywords
    CMOS integrated circuits; MOSFET; charge pump circuits; CMOS process; PMOS charge pump; high voltage boosting efficiency; low supply voltage application; size 0.18 mum; two auxiliary substrate switching PMOS transistors; two-phase Dickson charge pump; voltage 1.8 V; Charge pumps; Circuits; Clocks; Diodes; Low voltage; MOSFETs; Power supplies; Production systems; Threshold voltage; Topology;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Communications, Circuits and Systems, 2008. ICCCAS 2008. International Conference on
  • Conference_Location
    Fujian
  • Print_ISBN
    978-1-4244-2063-6
  • Electronic_ISBN
    978-1-4244-2064-3
  • Type

    conf

  • DOI
    10.1109/ICCCAS.2008.4657956
  • Filename
    4657956