工作稳定的高温SiC肖特基二极管,适用于空间应用

V. Banu, P. Godignon, X. Jordà, M. Vellvehí, J. Millán, P. Brosselard, D. López, J. Barbero
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引用次数: 6

摘要

这项工作展示了能够在- 170°C/280°C温度范围内工作的SiC肖特基二极管的长期稳定性,该二极管专门为BepiColombo太空任务开发。这次任务包括发射两颗环绕水星的卫星。经过6年的飞行,这些卫星将绕水星运行至少一年。当卫星绕水星运行时,将经历季节性日食。−170°C/280°C的循环次数范围为4000。二极管用作太阳能电池阵列的保护装置。针对这一应用,我们开发了5A/300V击穿电压碳化硅肖特基二极管。长期试验表明,该装置具有良好的电气、机械和热参数稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High temperature SiC Schottky diodes with stable operation for space application
This work presents the long-term stability of the SiC Schottky diodes able to operate in the temperature range −170°C/280°C, specially developed for the space mission BepiColombo. This mission consists in launching two satellites around the Mercury planet. After a travel of 6 years, the satellites will be orbiting around Mercury at least one year. When orbiting around Mercury, the satellites will experience seasonal eclipses. The numbers of cycles −170°C/280°C are in the range of 4,000. The diodes are used as protection devices for the solar cells arrays. To target this application, we have developed 5A/300V breakdown voltage Silicon Carbide Schottky diodes. Long-term tests demonstrated a very good stability of the electrical, mechanical and thermal parameters.
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