Exact formulation of the signal to noise ratio in continuous-time noise shaping A/D converters

A.I. Hussein, N. M. Ibrahim, W. Kuhn
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Abstract

Interest in multi-mode wireless system and software-defined radio has led to a need for high-speed high-resolution bandpass analog to digital (A/D) converters to digitalize signals near to the front end of a radio receiver. Such high-frequency applications require that the modulator be clocked at a high frequency, which in turn, requires the modulators' loop filters to be built as continuous-time circuits (e.g. using LC resonators) rather than discrete-time circuits (e.g. switched capacitors). All the previous analysis of continuous-time bandpass /spl Sigma//spl Delta/ modulators considered the assumption of having filter with an infinite quality factor (Q). This assumption is impractical especially with on-chip filters which leads to an approximate noise transfer function (an infinitely deep notch in the quantization noise) and approximate signal to noise ratio (SNR). In this paper, a more accurate z-domain loop transfer function is derived. This loop transfer function is used in finding the noise transfer function. The effect of the resonator Q in the depth of the notch on the noise transfer function is analyzed. Derivation of a mathematical expression for SNR, using the exact formula of the loop transfer function, is provided. Also, the dependence of the modulator's SNR on the resonator Q is presented.
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连续时间噪声整形A/D转换器信噪比的精确公式
对多模式无线系统和软件定义无线电的兴趣导致了对高速高分辨率带通模拟数字(a /D)转换器的需求,以便在无线电接收器前端附近对信号进行数字化。这种高频应用要求调制器以高频率进行时钟,这反过来又要求调制器的环路滤波器被构建为连续时间电路(例如使用LC谐振器)而不是离散时间电路(例如开关电容器)。之前对连续时间带通/spl Sigma//spl Delta/调制器的所有分析都考虑了具有无限质量因子(Q)的滤波器的假设。这个假设是不切实际的,特别是对于片上滤波器,它会导致近似的噪声传递函数(量化噪声中的无限深陷波)和近似的信噪比(SNR)。本文导出了一个更精确的z域环传递函数。该循环传递函数用于求噪声传递函数。分析了陷波深度的谐振腔Q对噪声传递函数的影响。利用环路传递函数的精确公式推导了信噪比的数学表达式。同时给出了调制器的信噪比与谐振器Q的关系。
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