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Analysis and optimization of noise in continuous-time OTA-C filters

机译:连续时间OTA-C滤波器中的噪声分析和优化

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A general procedure is presented for noise analysis and optimization in continuous-time operational transconductance amplifier (OTA)-C filters of arbitrary order and topology. Based on a matrix description of a general OTA-C filter structure, universal expressions are derived that permit computing the filter noise and optimizing the noise performance in any OTA-C filter. The results are not only useful for classical (discrete or integrated) OTA-C designs at medium to high frequencies but also in modern radio-frequency integrated circuits (RFICs) by carefully replacing transistors or electronic subcircuits by OTA (macro) models. The formulas are easy to implement and are readily included in computer-aided analysis and optimization algorithms. The accuracy of the proposed algebraic method is confirmed by a comparison with SPICE-simulation results. Two application examples are given: Finding the minimum-noise a multiple-loop-feedback filter configuration to implement fifth-order Butterworth and Bessel transfer functions, and determining the optimal biquad sequencing and gain distribution in a cascade realization of an eighth-order Butterworth filter.
机译:提出了用于任意阶次和拓扑的连续时间运算跨导放大器(OTA)-C滤波器中噪声分析和优化的通用程序。基于对一般OTA-C滤波器结构的矩阵描述,可以导出通用表达式,从而可以计算滤波器噪声并优化任何OTA-C滤波器的噪声性能。通过用OTA(宏)模型仔细替换晶体管或电子子电路,结果不仅对中高频的经典(离散或集成)OTA-C设计有用,而且在现代射频集成电路(RFIC)中也有用。这些公式易于实现,并且容易包含在计算机辅助分析和优化算法中。通过与SPICE仿真结果进行比较,可以证明所提出的代数方法的准确性。给出了两个应用示例:找到最小噪声的多环反馈滤波器配置以实现五阶Butterworth和Bessel传递函数,并在级联实现八阶Butterworth滤波器的过程中确定最佳的二阶定序和增益分配。

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