Affiliation:
1. China Academy of Engineering Physics
2. University of Electronic Science and Technology of China
Abstract
Abstract
Silicon carbide (SiC) PiN diode has shown substantial promise as the freewheel diode for switch protection in a pulsed system. In this paper, we investigate the carrier lifetime (τHL) modulation on pulsed current capability of SiC PiN diodes. The carrier lifetime in 4H-SiC is modulated by the generation of the Z1/2 center through neutron irradiation. Surprisingly, we found that the pulsed current of SiC PiN diodes shows limited improvement when the carrier lifetime (τ) increases from 0.22 ms to 1.3 ms, while is significantly promoted as the carrier lifetime increases from 0.03 ms to 0.22 ms. This changing trend is obviously different from the on-state resistance, which monotonously decreases with the increased carrier lifetime. The simulation result proves that the heat generation (i.e. maximum temperature rise) inside the PiN diodes, especially in the drift layer, is remarkably aggravated in the pulse tests for τ < 0.1 ms, while is significantly suppressed as carrier lifetime rises to 0.2 ms and above. Therefore, the dependence of pulsed current on carrier lifetime is ascribed to the heat generation resulting from the carrier lifetime controlled conductivity modulation effect, which hence affects the temperature rise and therefore the failure of SiC PiN diodes under high pulsed current.
Publisher
Research Square Platform LLC
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