A novel highly stable multiple-feedback oversampled lowpass /spl Sigma/-/spl Delta/ A/D converter configuration

N. A. Fraser, B. Nowrouzian
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引用次数: 0

Abstract

The existing multiple-feedback /spl Sigma/-/spl Delta/ A/D converters usually feature, (a) complementary signal and noise transfer functions, and/or (b) unit-circle noise transfer function zeros. However, in corresponding switched-capacitor (SC) hardware implementations, such A/D converters may become prone to instability as a result of capacitor mismatches. This paper is concerned with the development of a novel multiple-feedback lowpass /spl Sigma/-/spl Delta/ A/D converter having, instead, magnitude-squared or magnitude complementary signal and noise transfer functions. The proposed A/D converter offers increased stability performance in the presence of capacitor mismatches in the SC hardware implementation. In addition, by ensuring that the noise transfer function zeros are located at DC, the SC hardware implementation embodies a significant improvement in both capacitance spread and total capacitance.
一种新型的高稳定多反馈过采样低通/spl Sigma/-/spl Delta/ A/D转换器配置
现有的多反馈/spl Sigma/-/spl Delta/ A/D转换器通常具有(A)互补的信号和噪声传递函数,和/或(b)单位圆噪声传递函数为零。然而,在相应的开关电容(SC)硬件实现中,由于电容不匹配,这种A/D转换器容易变得不稳定。本文研究了一种新型的多反馈低通/spl Sigma/-/spl Delta/ a/ D转换器,它具有幅度平方或幅度互补的信号和噪声传递函数。提出的A/D转换器在SC硬件实现中存在电容器不匹配的情况下提供了更高的稳定性。此外,通过确保噪声传递函数零点位于直流,SC硬件实现在电容扩展和总电容方面都有显着改善。
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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