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Single Event Upsets and Hot Pixels in digital imagers

机译:数字成像仪中的单事件翻转和热像素

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摘要

From extensive study of digital imager defects, we found that permanent “Hot Pixels” are the main long term digital camera defects, and are caused by high energy cosmic ray particles. Clearly, as in other microelectronic integrated circuits, most of the particles do not induce permanent damage but instead, inject a short term charge that may cause a transient fault, known as a Single Event Upset (SEU). Unlike standard digital ICs, pixels in a digital imaging sensor can be monitored at almost any desirable frequency. Since an SEU manifests itself as one or more brighter pixels in an otherwise dark image, the rate of SEUs can be measured at a considerably higher accuracy by taking dark-field pictures at different exposure times and different frequencies. In this paper we describe an experimental approach to measuring the occurrence rate and resulting characteristics of SEUs. The SEU rate that we have observed for digital imagers, of about 4 SEUs for every 30 seconds, is considerably higher than was previously reported for ordinary ICs. For the same imager, permanent hot pixels have a rate of 1 every 12.6 days, while SEUs occur 145,000 times more often. Ordinary IC SEU rates have been reported to be about 100× of permanent fault rates. In addition, we found that some SEUs in digital imagers do not impact a single pixel, as do hot pixels, but can create a line of injected charges which appears as a bright line in the dark image.
机译:通过对数字成像仪缺陷的广泛研究,我们发现永久性的“热像素”是长期的主要数码相机缺陷,它们是由高能宇宙射线粒子引起的。显然,与其他微电子集成电路一样,大多数粒子不会引起永久性损坏,而是注入可能导致瞬态故障的短期电荷,称为单事件翻转(SEU)。与标准数字IC不同,数字成像传感器中的像素几乎可以以任何所需的频率进行监视。由于SEU在其他情况下较暗的图像中表现为一个或多个亮像素,因此可以通过在不同的曝光时间和频率下拍摄暗场图像,以相当高的精度测量SEU的速率。在本文中,我们描述了一种测量SEU发生率和所得特征的实验方法。我们观察到的数字成像仪的SEU速率约为每30秒4个SEU,大大高于以前报道的普通IC的速率。对于同一台成像仪,永久性热像素每12.6天的速率为1,而SEU的发生频率为145,000次。据报道,普通IC SEU率约为永久故障率的100倍。此外,我们发现,数字成像仪中的某些SEU不会像热像素那样影响单个像素,但是会产生注入电荷的线,在暗图像中显示为亮线。

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