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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Parallel-path digital-to-analog converters for Nyquist signal generation
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Parallel-path digital-to-analog converters for Nyquist signal generation

机译:用于奈奎斯特信号生成的并行路径数模转换器

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摘要

Nyquist-rate digital-to-analog converters (DACs) can generate frequencies up to half the sampling frequency. It is, however, impractical to generate such high frequencies. Due to its nature, the converter will not only generate the desired signal itself but also, often undesired, image frequencies. For frequencies near the Nyquist frequency, an image with almost exactly the same amplitude appears very close to the signal. An extremely steep filter is required. Therefore, real-life systems do provide oversampling to locate the Nyquist image further away from the wanted signal. In practice, the signal frequency has to be reduced if the maximum sampling rate is reached. We propose a technique that conversely removes this Nyquist image so that only further away Nyquist images with lower amplitudes have to be filtered off. The proposed technique is applied to the design of a dual 6-bit binary current-steering DAC running at 250 MS/s.
机译:奈奎斯特速率数模转换器(DAC)可以产生高达采样频率一半的频率。然而,产生这样的高频是不切实际的。由于其性质,转换器不仅会自身产生所需的信号,而且还会产生通常不希望的镜像频率。对于接近奈奎斯特频率的频率,幅值几乎完全相同的图像看起来非常接近信号。需要一个非常陡峭的过滤器。因此,现实生活中的系统确实提供了过采样功能,可以将奈奎斯特图像定位在离所需信号较远的位置。实际上,如果达到最大采样率,则必须降低信号频率。我们提出了一种技术,该技术反过来会删除此奈奎斯特图像,从而仅需滤除幅度较小的奈奎斯特图像。所提出的技术被应用于以250 MS / s的速度运行的双6位二进制电流控制DAC的设计。

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