A new approach to the design of low-sensitivity high-resolution bandpass /spl Sigma/-/spl Delta/ A/D converters

N. A. Fraser, B. Nowrouzian
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引用次数: 5

Abstract

It is well known that /spl Sigma/-/spl Delta/ A/D converters having complementary signal and noise transfer functions exhibit high signal-to-quantization-noise ratios (SQNRs) and high dynamic ranges (DRs), but that they tend to be overly sensitive to capacitor mismatches (potentially leading to unstable converter operation) in a corresponding switched-capacitor (SC) hardware implementation. Recently, a new class of /spl Sigma/-/spl Delta/ A/D converters was developed based on magnitude-squared or magnitude complementary signal and noise transfer functions to decrease the sensitivity to capacitor mismatches at the expense of slightly lower SQNRs and DRs. This paper is concerned with the development of a novel approach to the design of /spl Sigma/-/spl Delta/ A/D converters. This approach combines the transfer function complementarity (in the overall frequency band) with signal and noise transfer function magnitude complementarity (in the signal passband) to obtain a single /spl Sigma/-/spl Delta/ A/D converter with a cascade-of-resonators configuration. Consequently, the resulting A/D converters achieve not only high-stability (arising from magnitude complementarity), but also high DR and SQNR (arising from transfer function complementarity) in the SC hardware implementation. A practical application example is given to illustrate the results.
一种设计低灵敏度高分辨率带通/spl Sigma/-/spl Delta/ A/D转换器的新方法
众所周知,具有互补信号和噪声传递函数的/spl Sigma/-/spl Delta/ A/D转换器表现出高信噪比(sqnr)和高动态范围(DRs),但在相应的开关电容(SC)硬件实现中,它们往往对电容失配过于敏感(可能导致转换器工作不稳定)。最近,基于幅度平方或幅度互补的信号和噪声传递函数开发了一类新的/spl Sigma/-/spl Delta/ a/ D转换器,以降低对电容器不匹配的灵敏度为代价,略微降低了SQNRs和dr。本文讨论了一种设计/spl Sigma/-/spl Delta/ a/ D转换器的新方法。这种方法将传递函数的互补性(在整个频带中)与信号和噪声传递函数的幅度互补性(在信号通带中)结合起来,从而获得具有级联谐振器配置的单/spl Sigma/-/spl Delta/ a/ D转换器。因此,由此产生的A/D转换器在SC硬件实现中不仅实现了高稳定性(由于幅度互补性),而且实现了高DR和SQNR(由于传递函数互补性)。最后给出了一个实际应用实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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