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A digital-mixing-based method for timing skew estimation in time-interleaved ADCs

机译:基于数字混合的时间交错ADC中的时序偏斜估计方法

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摘要

Time-interleaving has been a popular choice for multi-GHz analog-to-digital converters (ADCs). Unfortunately, inherent defects such as offset, gain, timing-skew mismatches among sub-ADCs degrade overall performance seriously. At present, the method for eliminating offset and gain mismatch is fairly straightforward, however, calibration for timing-skew is still in a state of exploration. An efficient digital-mixing-based method to estimate timing skew in time-interleaved analog-to-digital converters (TI-ADCs) is proposed and verified. The timing skew can be estimated by digital-mixing and inverse sine function processing. The proposed method can greatly alleviate the effects of phase ambiguity. It is also insensitive to offset mismatch. A four-channel TI-ADC behavioral system of 10-bits 2 GS/s has been simulated to verify the performance of the method. Simulation results demonstrate that the method greatly improves the TI-ADC's performance and is effective up to the severe timing skew mismatch.
机译:时间交织已成为多GHz模数转换器(ADC)的流行选择。不幸的是,子ADC之间的固有缺陷(例如失调,增益,时序偏斜失配)严重降低了整体性能。目前,消除失调和增益失配的方法相当简单,但是,对时序偏斜的校准仍处于探索状态。提出并验证了一种有效的基于数字混合的方法,用于估计时间交错的模数转换器(TI-ADC)中的时序偏斜。可以通过数字混合和反正弦函数处理来估计时序偏斜。所提出的方法可以大大减轻相位模糊的影响。它也对失调失配不敏感。已对10位2 GS / s的四通道TI-ADC行为系统进行了仿真,以验证该方法的性能。仿真结果表明,该方法极大地改善了TI-ADC的性能,并有效解决了严重的时序偏斜失配问题。

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