• DocumentCode
    1334968
  • Title

    AlGaN/GaN MOS-HEMTs With Gate ZnO Dielectric Layer

  • Author

    Lee, Ching-Ting ; Chiou, Ya-Lan ; Lee, Chi-Sen

  • Author_Institution
    Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
  • Volume
    31
  • Issue
    11
  • fYear
    2010
  • Firstpage
    1220
  • Lastpage
    1223
  • Abstract
    The vapor cooling condensation system is used to grow ZnO insulator films of low carrier concentration and high resistivity as the gate dielectrics for AlGaN/GaN metal-oxide-semiconductor high-electron-mobility transistors (MOS-HEMTs). The saturation drain-source current and the maximum extrinsic transconductance are measured as 0.61 A/mm and 153 mS/mm, respectively. The gate leakage currents, determined with the forward gate bias of VGS = 3.5 V and the reverse gate bias of VGS = -12 V, applied are 1.21 × 10-4 A/mm and 7.16 × 10-6 A/mm, respectively. The unit gain cutoff frequency and maximum frequency of the oscillation are also measured as 7.2 and 11.5 GHz, respectively. The low-frequency noise obtained is well fitted with a 1/f function in the linear region. Hooge´s coefficient α is extracted as 9.74 × 10-5 when the MOS-HEMTs operate at 100 Hz and VGS = -4 V . The current recoveries of the gate and drain lags are determined to be 61% and 47% for the MOS-HEMTs, respectively.
  • Keywords
    MOSFET; aluminium compounds; dielectric materials; gallium compounds; high electron mobility transistors; wide band gap semiconductors; zinc compounds; AlGaN-GaN; MOS-HEMT; ZnO; frequency 100 Hz; frequency 11.5 GHz; frequency 7.2 GHz; gate dielectric layer; gate leakage currents; insulator films; maximum extrinsic transconductance; metal-oxide-semiconductor high-electron-mobility transistors; saturation drain-source current; vapor cooling condensation system; voltage -12 V; voltage -4 V; voltage 3.5 V; Aluminum gallium nitride; Current measurement; Gallium nitride; HEMTs; Logic gates; MODFETs; Zinc oxide; AlGaN/GaN metal-oxide-semiconductor HEMTs (MOS-HEMTs); high-frequency performance; low-frequency noise; vapor cooling condensation system; zinc oxide (ZnO) insulator films;
  • fLanguage
    English
  • Journal_Title
    Electron Device Letters, IEEE
  • Publisher
    ieee
  • ISSN
    0741-3106
  • Type

    jour

  • DOI
    10.1109/LED.2010.2066543
  • Filename
    5585700