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Current-mode operational transconductance amplifier-capacitor biquad filter structures based on Tarmy-Ghausi Active-RC filter and second-order digital all-pass filters

机译:基于Tarmy-Ghausi Active-RC滤波器和二阶数字全通滤波器的电流模式运算跨导放大器-电容器双二阶滤波器结构

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The Tarmy-Ghausi (TG) active resistor-capacitor (RC) filters using op-amps and its modification by Moschytz are well known to active RC filter designers. These use first-order all-pass networks in a negative feedback loop. New current-mode universal operational transconductance amplifier-capacitor (OTA-C) biquad filters based on the TG active RC filter are considered here. These are based on a recently proposed OTA-C based first-order all-pass network. Three different feedback arrangements are investigated in the proposed filter structure so as to reduce the pole-Q sensitivity. The proposed biquad filters are shown to implement all different types of filters like low-pass, high-pass, band-pass, symmetric notch, all-pass, low-pass notch and high-pass notch. The synthesis of the general biquad is carried out in a novel way by invoking the analogy with direct-form digital filter structures. The special case of all-pass filter realisation derived from the proposed universal filter needs additional hardware for realising the feed-forward coefficients. Hence alternative OTA-C based all-pass filter implementations based on Mitra-Hirano and Gray-Markel second-order digital filter structures are derived in which the coefficients that are used to realise the denominator are shared in the realisation of numerator also. All the proposed circuits are compared with the other structures available in the literature. The simulation results of the proposed circuits are also presented.
机译:使用运算放大器的Tarmy-Ghausi(TG)有源电阻-电容(RC)滤波器及其由Moschytz进行的修改是有源RC滤波器设计人员众所周知的。它们在负反馈回路中使用一阶全通网络。本文考虑了基于TG有源RC滤波器的新型电流模式通用运算跨导放大器-电容器(OTA-C)双二阶滤波器。这些基于最近提出的基于OTA-C的一阶全通网络。在所提出的滤波器结构中研究了三种不同的反馈布置,以降低pole-Q灵敏度。所示拟议的双二阶滤波器实现了所有不同类型的滤波器,例如低通,高通,带通,对称陷波,全通,低通陷波和高通陷波。通过使用直接形式的数字滤波器结构进行类比,以一种新颖的方式进行了一般二元方程的合成。从所提出的通用滤波器得到的全通滤波器实现的特殊情况需要额外的硬件来实现前馈系数。因此,推导了基于Mitra-Hirano和Gray-Markel二阶数字滤波器结构的基于OTA-C的全通滤波器实现方式,其中用于实现分母的系数也在分子的实现中共享。将所有建议的电路与文献中提供的其他结构进行了比较。还给出了拟议电路的仿真结果。

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