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Evaluation and Mitigation of Crosstalk Effects in Silicon Bolometers Arrays

机译:硅钻头阵列中串扰效应的评价与减轻

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Resistive infrared detectors arrays (bolometers) may show interferences between devices. Such interferences called crosstalk, or more specifically sneak path, reduce the signal quality, causing reading errors. This work proposes an interesting alternative solution to avoid sneak paths in bolometers arrays. The idea is to use simple diodes in series with the detectors, so all possible sneak paths are grounded and the detectors are only trigged when the diodes were conducting. Test were conducted in purely resistor arrays and diode-resistor arrays. The target resistance of one element was set to $105 mathrm{k}Omega$. For both isolated devices and matrix devices elements, the target resistance was achieved, indicating that the sneak path effect has been avoided. So, this solution, in addition to improving the signal quality, is also a simpler construction when compared with transistors switches solution, requiring less metal levels, since no tracks are required to activate the transistor.
机译:电阻红外探测器阵列(钻孔符)可能会显示设备之间的干扰。这种干扰称为串扰,或更具体地潜行路径,降低信号质量,导致读取误差。这项工作提出了一种有趣的替代解决方案,以避免钻孔仪阵列中的潜行路径。该想法是与探测器串联使用简单的二极管,因此所有可能的潜行路径接地,并且当二极管导通时才会突出检测器。在纯电阻阵列和二极管电阻器阵列中进行测试。一个元素的目标电阻设定为 $ 105 mathrm {k} omega $ 。对于隔离设备和矩阵器件元件,实现了目标电阻,表明已经避免了潜行路径效应。因此,除了提高信号质量之外,该解决方案还具有更简单的结构,而与晶体管开关解决方案相比,需要较少的金属水平,因为不需要轨道来激活晶体管。

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