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A background comparator calibration technique for flash analog-to-digital converters

机译:闪存模数转换器的背景比较器校准技术

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This paper presents a background calibration technique for trimming the input-referred offsets of the comparators in a flash analog-to-digital converter (ADC) without interrupting the ADC's normal operation. For a random-chopping comparator, the polarity of its offset is detected by observing the code density of its comparison results. Binary feedback is then used to digitally adjust the comparator's offset so that the offset is minimized. All calibration procedures are performed in the digital domain. The calibration performance is characterized by the converging speed of the feedback loop and the offset fluctuation due to the disturbance of the ADC's input. These two performance indexes of a background-calibrated comparator (BCC) are determined by three parameters: the probabilistic distribution of the ADC's input, the BCC's offset quantized step size, and the threshold of an internal bilateral peak detector. The offset fluctuation of a BCC can be drastically reduced by employing a windowing mechanism. The use of windowed BCCs in a flash ADC can introduce nonmonotonic-threshold (NMT) effects which include an increase in calibration settling time and an increase in σ(VOS). The use of uncorrelated random chopping for neighboring BCCs can ensure the validity of offset detection and mitigate the NMT effects.
机译:本文提出了一种背景校准技术,用于在不中断ADC正常工作的情况下修整Flash模数转换器(ADC)中比较器的输入参考失调。对于随机斩波比较器,通过观察比较结果的代码密度来检测其偏移的极性。然后使用二进制反馈来数字调整比较器的失调,以使失调最小。所有校准程序均在数字域中执行。校准性能的特征在于反馈环路的收敛速度以及由于ADC输入的干扰引起的失调波动。后台校准比较器(BCC)的这两个性能指标由三个参数确定:ADC输入的概率分布,BCC的偏移量化步长以及内部双向峰值检测器的阈值。 BCC的偏移波动可以通过采用加窗机制来大大减少。在闪存ADC中使用窗口式BCC可能会引入非单调阈值(NMT)效应,其中包括校准建立时间的增加和σ(VOS)的增加。对相邻的BCC使用不相关的随机斩波可以确保偏移检测的有效性并减轻NMT效应。

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