Crystals (Apr 2023)

A Fast Recovery SiC TED MOS MOSFET with Schottky Barrier Diode (SBD)

  • Hongyu Cheng,
  • Wenmao Li,
  • Peiran Wang,
  • Jianguo Chen,
  • Qing Wang,
  • Hongyu Yu

DOI
https://doi.org/10.3390/cryst13040650
Journal volume & issue
Vol. 13, no. 4
p. 650

Abstract

Read online

Achieving low conduction loss and good channel mobility is crucial for SiC MOSFETs. However, basic planar SiC MOSFETs provide challenges due to their high density of interface traps and significant gate-to-drain capacitance. In order to enhance the reverse recovery property of the device, a Schottky barrier diode (SBD) was added to the source contact area, the top of the current spreading region, of a trench-etched double-diffused SiC MOS (TED MOS). Two types of SBD structures were optimized to improve the electrical properties using 3D simulation software, “TCAD Silvaco”. During reverse recovery simulation, the carriers of the device were withdrawn from the SBD, indicating that the new design was effective. It also showed that the recovery properties of the new design depended on temperature, carrier lifetime, and the work functions of metals. All the new designs were evaluated in various circumstances to determine the trend. Ultimately, in high-speed switching circuits, the SiC TED MOS with SBD structure efficiently boosted switching speed, while reducing switching loss.

Keywords