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New strategies in removing non-coherency from signals with large distortion to noise ratios

机译:消除失真和噪声比大的信号中非相干性的新策略

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Signal spectral analysis is a dominating way of characterizing the dynamic performance of analog signals. To perform accurate spectral testing, the IEEE Standard 1241, 1658 and 1057 suggest coherent sampling. Obtaining coherent sampling, especially when signals have large distortion to noise ratios, has been a challenge for many years. With the growing need for Built-In-Self-Test (BIST) circuits for lower test cost, achieving coherent sampling is becoming more and more challenging. For signal analysis, the signals under test don't usually have sufficient purity. On-chip oscillators, such as Wien Bridge oscillators and Ring oscillator don't possess high signal purity. For high speed, low resolution DACs, the output signal purity is also low. In that case, not only fundamental bin will have spectral leakage, harmonic bins will also have spectral leakages, which makes non-coherency harder to remove.
机译:信号频谱分析是表征模拟信号动态性能的主要方式。为了执行准确的频谱测试,IEEE标准1241、1658和1057建议采用相干采样。多年来,获得相干采样(尤其是在信号具有较大的失真噪声比时)一直是一个挑战。为了降低测试成本,越来越需要内置自测(BIST)电路,实现连贯采样变得越来越具有挑战性。对于信号分析,被测信号通常没有足够的纯度。片上振荡器,例如维恩桥振荡器和环形振荡器,不具有很高的信号纯度。对于高速,低分辨率DAC,输出信号纯度也很低。在这种情况下,不仅基波箱将发生频谱泄漏,谐波箱也会发生频谱泄漏,这使得非相干性更难消除。

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