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Optimal Filter Design Considering Charge Transfer Characteristics for CCD Readout

机译:考虑CCD读数的电荷传输特性的最佳滤波器设计

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This article provides a design methodology to calculate an optimal filter for noise reduction in the readout of charge-coupled devices (CCDs) taking into account the charge transfer and feed-through due to capacitive coupling in the CCD. A detailed analysis of the dynamics in the video signal and charge transfer is presented. This includes the circuital modeling of the output stage of the CCD and the dynamics of the electronics in the video chain before the AD converter. The model is used to compute an optimal filter that minimizes the variance of the pixel noise and uses the samples of the charge transfer, before the charge is fully settled. This allows to shorten the pixel-time resulting in fastest readouts. The paper shows novel results of this processing in particular for Skipper CCD which uses a floating sense node to measure the charge packet.
机译:本文提供了一种设计方法,用于计算充电耦合器件(CCD)读出的最佳滤波器的最佳滤波器,以考虑CCD中的电容耦合,考虑到电荷转移和馈电。提出了对视频信号和电荷传输中动态的详细分析。这包括CCD的输出级的电路建模以及AD转换器之前视频链中的电子设备的动态。该模型用于计算最佳滤波器,最小化像素噪声的变化,并在充电完全沉降之前使用电荷传输的样本。这允许缩短导致最快读出的像素时间。本文显示了该处理的新颖结果,特别是对于使用浮动感测节点来测量电荷分组的船长CCD。

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