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
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