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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A Nanopower Bandpass Filter for Detection of an Acoustic Signal in a Wearable Breathing Detector
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A Nanopower Bandpass Filter for Detection of an Acoustic Signal in a Wearable Breathing Detector

机译:一种可穿戴式呼吸检测器中用于检测声信号的纳功率带通滤波器

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This paper presents a nanopower programmable bandpass filter suitable to process biomedical signals. The filter proves to be very robust to mismatch and process variations even when it has been implemented using MOS transistors biased in the weak inversion region. The paper analyses design issues associated to matching and process variations for the chosen filter topology and constituent transconductor block. The design equations justify the choice of both when the main constraints are robustness and power. The sixth order, bandpass filter prototype consumes 70 nW of power, with a dynamic range greater than 47 dB and operates at 1-V power supply. The filter was designed as part of a wearable breathing detector but its wide programmability range makes it suitable for many other biomedical sensor interfaces that require steep low frequency rejection band as well as ultralow power and low voltage operation.
机译:本文提出了一种适用于处理生物医学信号的纳米功率可编程带通滤波器。即使使用偏置在弱反相区域中的MOS晶体管实现该滤波器,它也非常适合失配和工艺变化。本文分析了与所选滤波器拓扑和组成跨导块的匹配和工艺变化相关的设计问题。当主要约束条件是鲁棒性和功率时,设计方程式证明了两者的选择都是正确的。六阶带通滤波器原型消耗70 nW的功率,动态范围大于47 dB,并以1V电源供电。该过滤器被设计为可穿戴式呼吸检测器的一部分,但是它的可编程范围很广,使其适用于许多其他生物医学传感器接口,这些接口需要陡峭的低频抑制频带以及超低功率和低压运行。

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