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A 0.5 μA/Channel front-end for implantable and external ambulatory ECG recorders

机译:每通道0.5μA前端,用于植入式和外部动态ECG记录器

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摘要

There is an increasing demand for low power, low voltage, and small size analog readout bio-potential systems. This paper presents an analog front-end for measuring the intra-cardiac signals in implantable and also external ambulatory ECG cardiac recording applications. The analog front-end benefits from voltage to frequency conversion without conventional analog to digital conversion and thereby achieves a very low power consumption. The frequency averaging digital reconstruction makes an intrinsic low pass filter of which the cut-off frequency changes with the averaging interval and eliminates the need for an analog filter in this system. Furthermore, this feature enables the development of a general purpose analog readout bio-potential measurement system with programmable bandwidth. The proposed IC is fabricated in a 0.18 mu m CMOS process and occupies 0.396 mm(2). It can measure intra-cardiac bio-potentials with 9.2-bit resolution while consuming just 0.5 mu A per channel from a 1 V supply. The input referred noise of the intra-cardiac signal readout channel is 2 mu V-rms.
机译:对低功率,低电压和小尺寸模拟读出生物电势系统的需求不断增长。本文提出了一种模拟前端,用于测量可植入以及外部动态ECG心脏记录应用中的心脏内信号。模拟前端受益于电压到频率的转换,而无需常规的模拟到数字的转换,从而实现了非常低的功耗。频率平均数字重建构成了一个固有的低通滤波器,其截止频率随平均间隔而变化,并且在该系统中不再需要模拟滤波器。此外,该功能使开发具有可编程带宽的通用模拟读出生物电势测量系统成为可能。拟议的IC采用0.18微米CMOS工艺制造,占地0.396毫米(2)。它可以测量9.2位分辨率的心脏内生物电势,而从1 V电源中每个通道仅消耗0.5μA电流。心脏内信号读取通道的输入参考噪声为2μV-rms。

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