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Microwave and Millimeter-Wave GaN HEMTs: Impact of Epitaxial Structure on Short-Channel Effects, Electron Trapping, and Reliability
被引:12
|作者:
Zanoni, Enrico
[1
]
De Santi, Carlo
[1
]
Gao, Zhan
[1
]
Buffolo, Matteo
[1
]
Fornasier, Mirko
[1
]
Saro, Marco
[1
]
De Pieri, Francesco
[1
]
Rampazzo, Fabiana
[1
]
Meneghesso, Gaudenzio
[1
]
Meneghini, Matteo
[1
]
Zagni, Nicolo
[2
]
Chini, Alessandro
[2
]
Verzellesi, Giovanni
[3
]
机构:
[1] Univ Padua, Dept Informat Engn, I-35122 Padua, Italy
[2] Univ Modena & Reggio Emilia, Dept Engn Enzo Ferrari, I-41121 Modena, Italy
[3] Univ Modena & Reggio Emilia, Dipartimento Sci & Metodi Ingn, I-42122 Reggio Emilia, Italy
基金:
欧盟地平线“2020”;
关键词:
Deep levels;
electron device failure physics;
gallium nitride high-electron-mobility transistors (GaN HEMT);
HEMT scaling;
microwave transistors;
millimeter wave;
reliability;
short-channel effects;
OF-THE-ART;
MOBILITY TRANSISTORS;
ALGAN/GAN HEMTS;
HOT-ELECTRON;
MIS-HEMTS;
R-ON;
OPERATION;
GHZ;
CARBON;
TRAPS;
D O I:
10.1109/TED.2023.3318564
中图分类号:
TM [电工技术];
TN [电子技术、通信技术];
学科分类号:
0808 ;
0809 ;
摘要:
Application of gallium nitride high-electron-mobility transistors (GaN HEMTs) to millimeter-wave power amplifiers requires gate length scaling below 150 nm: in order to control short-channel effects, the gate-to-channel distance must be decreased, and the device epitaxial structure has to be completely redesigned. A high 2-D electron gas (2DEG) carrier density can be preserved even with a very thin top barrier layer by substituting AlGaN with AlN, InAl(Ga)N, or ScAlN. Moreover, to prevent interaction of hot electrons with compensating impurities and defects in the doped GaN buffer, the latter has to be separated from the channel by a back barrier. Other device designs consist in adopting a graded channel (which controls the electric field) or to adopt nitrogen-polar (N-polar) GaN growth (which decreases the distance between gate and channel, thus attenuating short-channel effects). The aim of this article is to review the various options for controlling short-channel effects, improve off-state characteristics, and reduce drain-source leakage current. Advantages and potential drawbacks of each proposed solution are analyzed in terms of current collapse (CC), dispersion effects, and reliability.
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页码:1396 / 1407
页数:12
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