An 8Hz, 0.1µW, 110+ dBs Sinh CMOS Bessel filter for ECG signals

E. Kardoulaki, K. Glaros, A. Katsiamis, E. Drakakis
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引用次数: 15

Abstract

Hyperbolic sine (Sinh) CMOS filters are of inherent class-AB nature and offer high dynamic range at half the total capacitance value when compared against their pseudodifferential class-AB log-domain counterparts. This characteristic renders their theoretical and practical study valuable. Only a very limited number of CMOS Sinh filter topologies have been reported in the literature to date mostly due to the considerably increased mathematical complexity associated with their design. This paper presents the transistorlevel synthesis and investigates in detail the performance of a 3rd-order Sinh CMOS 8Hz low-pass filter of Bessel approximation suitable for ECG processing. The filter is based on recent progress made and has been designed in the commercially available 0.35µm AMS process. Its static power consumption amounts to 0.1µW while its dynamic range exceeds 110dBs. The new filter exhibits a flat group delay of less than 1% error up to 6Hz and good variability performance verified by means of Monte Carlo simulations. The suitability of the filter as part of an ECG front-end is confirmed by the processing of artificially generated ECG signals contaminated by various simulated noise sources and fed as signal inputs into the Cadence Design Framework.
8Hz, 0.1µW, 110+ db Sinh CMOS贝塞尔滤波器用于心电信号
双曲正弦(Sinh) CMOS滤波器具有固有的ab类性质,与伪微分ab类对数域滤波器相比,在总电容值的一半下提供高动态范围。这一特点使得对其进行理论和实践研究具有一定的价值。迄今为止,文献中只报道了非常有限数量的CMOS Sinh滤波器拓扑,主要是由于与其设计相关的数学复杂性大大增加。本文介绍了晶体管级合成,并详细研究了一种适用于心电信号处理的贝塞尔近似三阶Sinh CMOS 8Hz低通滤波器的性能。该滤波器是基于最近取得的进展,并已在市售的0.35µm AMS工艺中设计。静态功耗仅为0.1µW,动态范围超过110db。该滤波器在6Hz范围内具有小于1%误差的平坦群延迟,并通过蒙特卡罗仿真验证了其良好的可变性。通过处理受各种模拟噪声源污染的人工产生的心电信号,并将其作为信号输入馈送到节奏设计框架,证实了该滤波器作为心电前端一部分的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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