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Novel packaging and high-current pulse-switching of 1.0 cm2 SiC SGTOs

机译:1.0 cm 2 SiC SGTO的新型封装和大电流脉冲开关

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The U.S. Army Research Laboratory has been driving the advancement of high-voltage, high-current silicon carbide devices and packaging through collaborations with Cree, Inc. and Silicon Power Corp. This paper reports on 1.0 cm2 Super-GTOs fabricated by Cree, packaged by Silicon Power, and evaluated under pulse conditions at the Army Research Laboratory. These semiconductor switches were utilized to rapidly discharge capacitive energy into a resistive load. The Super-GTOs were packaged in parallel pairs using low-inductance thinPak lids for 2.0 cm2 total silicon carbide area with high-voltage blocking capability up to 9.0 kV. The two-chip arrays were switched at three different pulse widths, ranging from 45μs to 75μs (full-width at half-maximum), up to peak current capability. The maximum current switched was 11.7 kA, corresponding to 8.0 kA/cm2 over the mesa, with a 10–90% dI/dt of 1.5 kA/μs. Two arrays were also paralleled and switched to 18 kA with current sharing within 1%. Individually the arrays were also reliably switched up to 100 pulses. The results are encouraging for the device design and packaging techniques, and for the capability of paralleling many devices to reach higher pulse currents.
机译:美国陆军研究实验室通过与Cree,Inc.和Silicon Power Corp的合作,一直在推动高压,大电流的碳化硅器件和封装的发展。本文报道的1.0 cm 2 Super -GTO由Cree制造,由Silicon Power包装,并在陆军研究实验室的脉冲条件下进行了评估。这些半导体开关用于将电容能量快速释放到电阻负载中。 Super-GTO使用低电感的ThinPak盖子以成对的方式封装,其总碳化硅面积为2.0 cm 2 ,高压阻断能力高达9.0 kV。两芯片阵列以三种不同的脉冲宽度(从45μs到75μs(半峰全宽))切换,直至达到峰值电流能力。切换的最大电流为11.7 kA,相当于台面上的8.0 kA / cm 2 ,dI / dt的10-90%为1.5 kA /μs。两个阵列也并联,并切换到18 kA,电流共享在1%以内。单独地,阵列也可靠地切换到100个脉冲。结果对于器件设计和封装技术以及使许多器件并联以达到更高的脉冲电流的能力令人鼓舞。

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