DOE OSTI · 2278907
1 kV Self-Aligned Vertical GaN Superjunction Diode
Abstract
This work demonstrates vertical GaN superjunction (SJ) diodes fabricated via a novel self-aligned process. The SJ comprises n-GaN pillars wrapped by the charge-balanced p-type nickel oxide (NiO). After the NiO sputtering around GaN pillars, the self-aligned process exposes the top pillar surfaces without the need for additional lithography or a patterned NiO etching which is usually difficult. The GaN SJ diode shows a breakdown voltage (B V) of 1100 V, a specific on-resistance (R ON ) of 0.4 mΩ· cm2, and a SJ drift-region resistance ( R dr ) of 0.13 mΩ· cm2. Further, the device also exhibits good thermal stability with B V retained over 1 kV and R ON dropped to 0.3 mΩ· cm2 at 125°C. The trade-off between B V and R dr is superior to the 1D GaN limit. These results show the promise of vertical GaN SJ power devices. The self-aligned process is applicable for fabricating the heterogeneous SJ based on various wide- and ultra-wide bandgap semiconductors.
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Ma, Yunwei, Porter, Matthew, Qin, Yuan, Spencer, Joseph, Du, Zhonghao, Xiao, Ming, Wang, Yifan, Kravchenko, Ivan, Briggs, Dayrl P., Hensley, Dale K., Udrea, Florin, Tadjer, Marko, Wang, Han, Zhang, Yuhao. 2023-11-15. 1 kV Self-Aligned Vertical GaN Superjunction Diode. https://doi.org/10.1109/led.2023.3332855
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