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A High-Precision Time Skew Estimation and Correction Technique for Time-Interleaved ADCs

机译:时间交错ADC的高精度时滞估计和校正技术

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This paper presents an all-digital background calibration technique for the time skew mismatch in time-interleaved ADCs ( TIADCs). The technique jointly estimates all of the time skew values by processing the outputs of a bank of correlators. A low-complexity sampling sequence intervention technique, suitable for successive approximation register (SAR) ADC architectures, is proposed to overcome the limitations associated with blind estimation. A two-stage digital correction mechanism based on the Taylor series is proposed to satisfy the target high-precision correction. A quantitative study is performed regarding the requirements imposed on the digital correction circuit in order to satisfy the target performance and yield, and a corresponding filter design method is proposed, which is tailored to meet these requirements. Mitchell's logarithmic multiplier is adopted for the implementation of the principal multipliers in both the estimation and correction mechanisms, leading to a 25% area and power reduction in the estimation circuit. The proposed calibration is synthesized using a TSMC 28-nm HPL process targeting a 2.4-GHz sampling frequency for an eight-sub-ADC system. The calibration block occupies 0.03 mm(2) and consumes 11 mW. The algorithm maintains the SNDR above 65 dB for a sinusoidal input within the target bandwidth.
机译:本文介绍了一种全数字背景校准技术,用于时间交错ADC(TIADC)中的时间偏斜不匹配。该技术通过处理一组相关器的输出来联合估计所有时间偏斜值。为了克服与盲估计相关的局限性,提出了一种适用于逐次逼近寄存器(SAR)ADC体系结构的低复杂度采样序列干预技术。提出了一种基于泰勒级数的两级数字校正机制,以满足目标高精度校正的需要。为了满足目标性能和良率,对数字校正电路的要求进行了定量研究,并提出了相应的滤波器设计方法,以满足这些要求。在估计和校正机制中,采用Mitchell的对数乘法器来实现主乘法器,从而使估计电路的面积减小了25%,功耗降低了。拟议的校准使用针对8个子ADC系统的2.4 GHz采样频率的台积电28纳米HPL工艺合成。校准块占0.03 mm(2),消耗11 mW。对于目标带宽内的正弦输入,该算法将SNDR保持在65 dB以上。

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