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June 14, 2019IEEE Electron Device Letters144 citations

High Breakdown Voltage in RF AlN/GaN/AlN Quantum Well HEMTs

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AHAustin HickmanRCReet ChaudhuriSBSamuel James Bader

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Abstract

In evaluating GaN high-electron mobility transistors (HEMTs) for high-power applications, it is crucial to consider the device-level breakdown characteristics. This letter replaces the conventional AlGaN barrier and common AlGaN backbarrier with unstrained AlN, and it assesses the breakdown voltage of AlN/GaN/AlN quantum well HEMTs for gate-drain spacings in the range of 0.27-5.1 μm. The results are highlighted by a high breakdown voltage of 78 V for a gate-drain spacing of 390 nm, among the best reported for submicron-channel devices. In addition, small-signal RF measurements showed record performance for HEMTs on the AlN platform, with f t /f max = 161/70 GHz. The cut-off frequency and corresponding drain bias are benchmarked against the state-of-the-art GaN HEMTs using the Johnson figure of merit, with measured devices highlighted by a JFoM value of 2.2 THz · V. These results illustrate the potential for AlN/GaN/AlN quantum well HEMTs as a future platform for high-power RF transistors.

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Hickman et al. (2019) studied this question.

synapsesocial.com/papers/6a3434c6cce949c3f40e9ff3https://doi.org/10.1109/led.2019.2923085
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