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A novel low power MOSFET-C band pass filter for low frequency applications with subthreshold models based on polynomial regression

机译:一种新型低功耗MOSFET-C带通滤波器,用于基于多项式回归的亚阈值模型的低频应用

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摘要

A novel current mode MOSFET-C filter is presented for a wide range of low frequency applications ranging from biomedical signal sensing up to speech processing region. Presented filter consumes only 2.3 mu W with symmetrical supply voltages as low as +/- 0.5 V. The filter structure can be easily adjusted by means of changing external capacitor values. Furthermore, proposed filter is given with a novel design methodology based on polynomial regressive small signal models. In this way, promising interaction between design parameters such as V-GS, V-DS, channel width (W), channel length (L) and filter specifications such as f(0), Q and power is provided. Simulation results with 0.18 mu m TSMC CMOS technology are given, furthermore proposed filter is tested to process a real fetal PCG signal at 355.4 Hz. It is shown that proposed filter attains a promising performance in comparison with the previously presented counterparts for low frequency applications.
机译:一种新型电流模式MOSFET-C滤波器用于广泛的低频应用范围从生物医学信号感测到语音处理区域。 呈现的过滤器仅消耗2.3μW,电源电压低至+/- 0.5 V.滤波器结构可以通过改变外部电容值来容易地调整。 此外,基于多项式回归小信号模型的新型设计方法给出了所提出的滤波器。 以这种方式,提供了设计参数之间的有希望的相互作用,例如V-GS,V-DS,信道宽度(W),通道长度(L)和滤波器规范,例如F(0),Q和功率。 给出了0.18 mu M TSMC CMOS技术的仿真结果,此外,测试过滤器以在355.4 Hz下处理真正的胎儿PCG信号。 结果表明,与先前所呈现的低频应用的对应物相比,所提出的过滤器达到了有希望的性能。

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