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Mapping electrical crosstalk in pixelated sensor arrays

机译:映射像素化传感器阵列中的电串扰

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Electronic coupling effects such as Inter-Pixel Capacitance (IPC) affect the quantitative interpretation of image data from CMOS, hybrid visible and infrared imagers alike. Existing methods of characterizing IPC do not provide a map of the spatial variation of IPC over all pixels. We demonstrate a deterministic method that provides a direct quantitative map of the crosstalk across an imager. The approach requires only the ability to reset single pixels to an arbitrary voltage, different from the rest of the imager. No illumination source is required. Mapping IPC independently for each pixel is also made practical by the greater S/N ratio achievable for an electrical stimulus than for an optical stimulus, which is subject to both Poisson statistics and diffusion effects of photo-generated charge. The data we present illustrates a more complex picture of IPC in Teledyne HgCdTe and HyViSi focal plane arrays than is presently understood, including the presence of a newly discovered, long range IPC in the HyViSi FPA that extends tens of pixels in distance, likely stemming from extended field effects in the fully depleted substrate. The sensitivity of the measurement approach has been shown to be good enough to distinguish spatial structure in IPC of the order of 0.1%.
机译:像素间电容(IPC)等电子耦合效应会影响CMOS,可见光和红外混合成像仪等图像数据的定量解释。表征IPC的现有方法无法提供IPC在所有像素上的空间变化图。我们演示了一种确定性方法,该方法可提供跨成像器的串扰的直接定量图。该方法仅需要将单个像素重置为任意电压的能力,这不同于成像器的其余部分。不需要照明源。通过电刺激比光刺激获得更大的信噪比,也可以使每个像素独立地映射IPC成为现实,这既受泊松统计,又受光生电荷的扩散影响。我们提供的数据说明了Teledyne HgCdTe和HyViSi焦平面阵列中IPC的情况比目前所理解的更为复杂,包括HyViSi FPA中新发现的,远距离IPC的存在,该IPC延伸了数十个像素的距离,这可能是由于在完全耗尽的衬底中产生扩展的场效应。已经证明,测量方法的灵敏度足以区分IPC中0.1%左右的空间结构。

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