Abstract:Wide band gap (WBG) semiconductors such as SiC and GaN devices are expected to replace Si power devices in the next generation power modules for renewable energy and smart grid to enhance their energy conversion efficiency through a characteristic of high frequency switching. However, the temperature of the WBG power module may reach 250 C as operating, which is much higher than the melting temperatures of the conventional solder materials like Sn37Pb (187 C), Sn3.0Ag0.5Cu (217 C) and Sn0.7Cu (227 C). Therefor… Show more
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