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Design-Oriented Estimation of Thermal Noise in Switched-Capacitor Circuits

机译:面向设计的开关电容电路热噪声估计

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摘要

Thermal noise represents a major limitation on the performance of most electronic circuits. It is particularly important in switched circuits, such as the switched-capacitor (SC) filters widely used in mixed-mode CMOS integrated circuits. In these circuits, switching introduces a boost in the power spectral density of the thermal noise due to aliasing. Unfortunately, even though the theory of noise in SC circuits is discussed in the literature, it is very intricate. The numerical calculation of noise in switched circuits is very tedious, and requires highly sophisticated and not widely available software. The purpose of this paper is twofold. It provides a tutorial description of the physical phenomena taking place in an SC circuit while it processes noise (Sections II-III). It also proposes some specialized but highly efficient algorithms for estimating the resulting sampled noise in SC circuits, which need only simple calculations (Sections IV-VI). A practical design procedure, which follows directly from the estimate, is also described. The accuracy of the proposed estimation algorithms is verified by simulation using SpectreRF. As an example, it is applied to the estimation of the total thermal noise in a second-order low-distortion delta-sigma converter.
机译:热噪声是大多数电子电路性能的主要限制。这在开关电路中尤其重要,例如在混合模式CMOS集成电路中广泛使用的开关电容器(SC)滤波器。在这些电路中,由于混叠,开关会增加热噪声的功率谱密度。不幸的是,即使文献中已经讨论了SC电路中的噪声理论,但它却非常复杂。开关电路中噪声的数值计算非常繁琐,并且需要高度复杂且无法广泛使用的软件。本文的目的是双重的。它提供了有关处理噪声时SC电路中发生的物理现象的教程描述(第II-III节)。它还提出了一些专门但高效的算法,用于估计SC电路中产生的采样噪声,这些算法仅需要简单的计算(第IV-VI节)。还描述了直接根据估算得出的实际设计过程。通过使用SpectreRF进行仿真,验证了所提出估计算法的准确性。例如,它被用于估算二阶低失真Δ-Σ转换器中的总热噪声。

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