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All-Digital Bandwidth Mismatch Calibration of TI-ADCs Based on Optimally Induced Minimization

机译:基于最佳诱导的最小化的TI-ADCS的全数字带宽不匹配

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摘要

The problem of parameter mismatch in time-interleaved-analog-to-digital converters (TI-ADCs) has become a significant concern to guarantee output linearity. Several solutions have been presented for offset, gain, time skew, and bandwidth mismatches, but they can rely on hardware expensive methods. This article proposes an all-digital calibration algorithm for the TI-ADC bandwidth mismatch, which is capable of detecting the optimal correction coefficients for the derivative-based digital filters. The analyzed convergence logic further relaxes the hardware requirements. Moreover, numerical simulations and experimental results validate the calibration efficiency. A commercial 12-bit 3.6-GS/s two-channel TI-ADC was used to verify the proposed calibration algorithm under real conditions.
机译:时间交织模数转换器(TI-ADC)中的参数不匹配问题已成为保证输出线性度的重要令人担忧。已经介绍了几种解决方案用于偏移,增益,时间偏斜和带宽不匹配,但它们可以依赖于硬件昂贵的方法。本文提出了一种用于TI-ADC带宽不匹配的全数字校准算法,其能够检测基于衍生的数字滤波器的最佳校正系数。分析的收敛逻辑进一步放松了硬件要求。此外,数值模拟和实验结果验证了校准效率。使用商业12位3.6-GS / S双通道TI-ADC来验证在真实条件下的提出校准算法。

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