• DocumentCode
    112021
  • Title

    In S\\itu Measurement of Charging Process in Electret-Based Comb-Drive Actuator and High-Voltage Charging

  • Author

    Shibata, Yasushi ; Sugiyama, Tatsuhiko ; Mimura, Hidenori ; Hashiguchi, Gen

  • Author_Institution
    Res. Inst. of Electron., Shizuoka Univ., Shizuoka, Japan
  • Volume
    24
  • Issue
    4
  • fYear
    2015
  • fDate
    Aug. 2015
  • Firstpage
    1052
  • Lastpage
    1060
  • Abstract
    We report in situ measurements of the charging process for an electret-based comb-drive actuator and an experiment on high-voltage charging. The ac current flowing between the comb-drive electrodes, which is proportional to the displacement, is monitored during the application of a dc bias voltage at an elevated temperature. As the charge voltage increases, it opposes the applied voltage, causing the current to decrease and become a minimum, which indicates the completion of the charging process. The proposed electret-based method allows voltage-controlled charging in silicon microelectromechanical systems (MEMSs) devices, which offers advantages for commercial MEMS device fabrication. This paper also discusses the importance of high-voltage charging for improving the efficiency of the actuator as an electrostatic vibration-energy harvesting device. A charging mechanism is proposed to explain the experimental results, and the stability of the movable comb-drive electrode against the pull-in effect is discussed. Using the proposed method, a large force factor is obtained, and charging to a voltage of up to 380 V is demonstrated.
  • Keywords
    drives; electrets; elemental semiconductors; energy harvesting; micromechanical devices; silicon; surface charging; voltage control; DC bias voltage; MEMS device fabrication; Si; comb-drive electrodes; electret-based comb-drive actuator; electrostatic vibration-energy harvesting device; high-voltage charging; silicon microelectromechanical systems; voltage-controlled charging; Actuators; Electrets; Electrodes; Force; Ions; Micromechanical devices; Silicon; BT procedure; BT procedure.; MEMS; electret; energy harvesting;
  • fLanguage
    English
  • Journal_Title
    Microelectromechanical Systems, Journal of
  • Publisher
    ieee
  • ISSN
    1057-7157
  • Type

    jour

  • DOI
    10.1109/JMEMS.2014.2379959
  • Filename
    7000517