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Proton Damage in Linear and Digital Optocouplers

机译:线性和数字光耦合器中的质子损坏

摘要

Optocoupler failures occurred on the Topex-Poseidon spacecraft after about two years of operation. Later work in the laboratory showed that the failures were due to extreme sensitivity of LEDs within the optocouplers to displacement damage from protons. Although earlier work had been done on displacement damage in light-emitting diodes, none of the devices studied previously had been heavily damaged at the low radiation levels where the optocouplers failed in space. Subsequent work has shown that LED damage varies over an extremely wide range, depending on the particular manufacturing technology. This paper discusses proton degradation of linear and digital optocouplers. One obvious way to harden optocoupler technologies is to select LEDs that are more resistant to displacement damage. A direct comparison is made of degradation of a commercial linear optocoupler from one manufacturer with a modified version of the same device with a different LED technology. Other factors, including degradation of optical photoresponse and transistor -ain are also discussed, along with basic comparisons of digital and analog optocouplers. Linear optocouplers are designed with somewhat different requirements than digital optocouplers, which not only affects their radiation response but also the interpretation of radiation test data.
机译:在运行约两年后,Topex-Poseidon航天器发生了光耦合器故障。后来在实验室中的工作表明,这种故障是由于光耦合器内的LED对质子位移造成的极高灵敏度所致。尽管已经对发光二极管的位移损伤进行了较早的研究,但先前研究的器件在光耦合器在空间中失效的低辐射水平下都没有受到严重损伤。随后的工作表明,LED损坏的范围非常大,具体取决于特定的制造技术。本文讨论了线性和数字光耦合器的质子降解。加强光耦合器技术的一种显而易见的方法是选择对位移损坏具有更高抵抗力的LED。直接比较了一家制造商生产的商用线性光电耦合器与同一设备的修改版本和不同LED技术的性能下降情况。还讨论了其他因素,包括光学光响应和晶体管的退化,以及数字和模拟光耦合器的基本比较。线性光耦合器的设计要求与数字光耦合器有所不同,这不仅会影响其辐射响应,还会影响辐射测试数据的解释。

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    Rax B. G.; Johnston A. H.;

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  • 年度 2000
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