2022
DOI: 10.1186/s11671-022-03713-4
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High Performance Flip-Structure Enhancement-Mode HEMT with Face-to-Face Double Gates

Abstract: A novel double gates flip-structure enhancement-mode (E-mode) high electron mobility transistor with step field plate (DFF HEMT) is proposed. It features face-to-face double gates, including a top trench MIS gate with a step field plate and a bottom planar MIS gate, which is shorted together. In the on-state, the double gates not only can restore the 2DEG by the higher electric potential, but also can form the electron accumulation layers, and thus increase the saturation output current and reduce the on-resis… Show more

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Cited by 2 publications
(1 citation statement)
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“…Therefore, a fixed drain voltage was chosen as the detection condition within the saturation region. The breakdown voltage (BV) of the AlGaN/GaN HEMT is lower than its theoretical limit due to the premature breakdown at the gate edge caused by E-field crowding [ 32 ]. In addition, there is fault tolerance in the actual fabrication, modification, and application process, and it is not appropriate to choose the voltage at the two ends of the interval as the test condition.…”
Section: Resultsmentioning
confidence: 99%
“…Therefore, a fixed drain voltage was chosen as the detection condition within the saturation region. The breakdown voltage (BV) of the AlGaN/GaN HEMT is lower than its theoretical limit due to the premature breakdown at the gate edge caused by E-field crowding [ 32 ]. In addition, there is fault tolerance in the actual fabrication, modification, and application process, and it is not appropriate to choose the voltage at the two ends of the interval as the test condition.…”
Section: Resultsmentioning
confidence: 99%