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High speed time-interleaved ADC gain offset and skew mitigation

机译:高速时间交错ADC增益偏移和偏斜缓解

摘要

Methods and apparatuses are described for timing skew mitigation in time-interleaved ADCs (TI-ADCs) that may be performed for any receive signal without any special signals during blind initialization, which may be followed by background calibration. The same gain/skew calibration metrics may be applied to baud sampled and oversampled systems, including wideband receivers and regardless of any modulation, by applying a timing or frequency offset to non-stationary sampled signals during initial training. Skew mitigation is low latency, low power, low area, noise tolerant and scalable. Digital estimation may be implemented with accumulators and multipliers while analog calibration may be implemented with adjustable delays. DC and gain offsets may be calibrated before skew calibration. The slope of the correlation function between adjacent samples may be used to move a timing skew estimate stochastically at a low adaptive rate until the skew algorithm converges.
机译:描述了用于时间交错ADC(TI-ADC)中的时序偏斜减轻的方法和装置,该时间交错ADC可以在盲初始化期间针对任何接收信号执行而没有任何特殊信号,其后可以进行背景校准。通过在初始训练期间对非平稳采样信号施加定时或频率偏移,可以将相同的增益/偏斜校准度量应用于波特率采样和过采样的系统(包括宽带接收器),而与任何调制无关,而无需进行任何调制。偏斜缓解是低延迟,低功耗,小面积,耐噪声和可扩展的。数字估计可以用累加器和乘法器来实现,而模拟校准可以用可调节的延迟来实现。可以在偏斜校准之前对DC和增益偏移进行校准。相邻样本之间的相关函数的斜率可用于以低自适应速率随机移动时序偏斜估计,直到偏斜算法收敛为止。

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