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New swapping technique for background calibration of capacitor mismatch and amplifier finite DC-gain in pipeline ADCs

机译:用于流水线ADC中电容器失配和放大器有限DC增益的背景校准的新交换技术

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A novel swapping technique for stage non-linear error calibration in Pipeline ADCs (analogue-to-digital converters) is presented in this paper. The proposed algorithm obtains an estimation of the mismatch between sampling capacitors in the MDAC (multiplying digital-to-analogue converter) inside each stage, without the necessity of interrupting the ADC operation, and therefore, suitable for background calibration applications. The technique also shows its applicability for the amplifier finite DC-gain error, providing a low-cost solution for full calibration of the main static errors in the Pipeline topology with less convergence time, memory resources and simpler calibration hardware than other existing calibration methods. In addition, this work overcomes practical limitations of previous adaptive approaches based on capacitor swapping by introducing a novel modulation scheme. This new scheme minimizes the impact on the analogue part and employs a very simple digital modulation logic.
机译:本文提出了一种新颖的交换技术,用于管道ADC(模拟到数字转换器)中的阶段非线性误差校准。所提出的算法获得了每个级内MDAC(乘法数模转换器)中的采样电容器之间的失配的估计,而无需中断ADC操作,因此适合于背景校准应用。该技术还显示了其对放大器有限的直流增益误差的适用性,与其他现有的校准方法相比,该方法提供了一种低成本解决方案,可对管道拓扑中的主要静态误差进行全面校准,并且收敛时间,存储资源和校准硬件更短。此外,这项工作通过引入新颖的调制方案,克服了以前基于电容器交换的自适应方法的实际局限性。这种新方案最大程度地减少了对模拟部分的影响,并采用了非常简单的数字调制逻辑。

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