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A CMOS Analog Front-End for Implantable Pulmonary Artery Pressure Monitoring System

机译:用于植入式肺动脉压力监测系统的CMOS模拟前端

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This paper presents an energy-efficient analog frontend circuit to monitor the pulmonary artery pressure (PAP) with piezoresistive pressure sensors. A low-power capacitively-coupled instrumentation amplifier (CCIA) is developed in order to boost the amplitude of the bridge sensor to the input range of the analog-to-digital converter (ADC). The 1/f noise and input-referred offset of the amplifier are eliminated by the chopping technique. Simulation results show that this CCIA with chopping technique achieves an input-referred noise density of 38.7 nV/√Hz and an input-referred offset voltage of 4 μV with a current consumption of 4.28 μA at 1.8 V voltage supply. This gives a noise-efficiency factor (NEF) of 3.1. Dual supply voltages are used to decrease the power consumption of the bridge sensor. The pressure range is selected to be between 0 and 125 mmHg and the bandwidth of the interface is set from DC to 400 Hz with an RC low pass filter (LPF). This low-noise, low-offset analog front-end circuit achieves an accuracy of 0.125 mmHg.
机译:本文提出了一种节能的模拟前端电路,可通过压阻式压力传感器监测肺动脉压(PAP)。为了将电桥传感器的幅度提高到模数转换器(ADC)的输入范围,开发了一种低功率电容耦合仪表放大器(CCIA)。斩波技术可消除放大器的1 / f噪声和输入参考失调。仿真结果表明,这种采用斩波技术的CCIA在1.8 V供电电压下实现了38.7 nV /√Hz的输入参考噪声密度和4μV的输入参考偏置电压,其电流消耗为4.28μA。这样得出的噪声效率因子(NEF)为3.1。双电源电压用于降低桥式传感器的功耗。压力范围选择在0至125 mmHg之间,并且接口的带宽通过RC低通滤波器(LPF)从DC设置为400 Hz。该低噪声,低失调模拟前端电路可实现0.125 mmHg的精度。

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