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Efficient Spectral Testing With Clipped and Noncoherently Sampled Data

机译:裁剪和非相干采样数据的高效频谱测试

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摘要

In built-in self-test (BIST) environment, clipping is hard to avoid if one wants to obtain full range performance of an analog-to-digital converter (ADC). This could be due to several factors such as circuit component mismatch, noise, clock jitter, and so on. Furthermore, coherency is a challenging task to implement in BIST as its accuracy requirement on frequency of input signal is extremely high. This paper proposes a new spectral testing method with the efficiency and accuracy similar to the straightforward fast Fourier transform, but it can simultaneously handle amplitude clipping and noncoherent sampling. By replacing a noncoherent and clipped fundamental with a coherent and unclipped fundamental, correct spectral specifications can be obtained. Simulation results show accurate spectral parameters of four ADCs with different resolutions. The proposed method is validated using measurement result of a commercial 16-bit ADC. The algorithm error is quantitatively bounded using theoretical analysis and also justified with simulation result.
机译:在内置自测(BIST)环境中,如果要获得模数转换器(ADC)的全部性能,就很难避免削波。这可能是由于多种因素引起的,例如电路组件不匹配,噪声,时钟抖动等。此外,由于对输入信号频率的精度要求非常高,因此在BIST中实现一致性是一项艰巨的任务。本文提出了一种新的频谱测试方法,其效率和准确性与简单的快速傅立叶变换相似,但可以同时处理幅度削波和非相干采样。通过将非相干且削波的基波替换为相干且未削波的基波,可以获得正确的光谱规格。仿真结果显示了具有不同分辨率的四个ADC的准确频谱参数。使用商用16位ADC的测量结果验证了该方法的有效性。利用理论分析对算法误差进行定量界定,并通过仿真结果进行验证。

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