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首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >A 0.9-V Analog-to-Digital Acquisition Channel for an IoT Water Management Sensor Node
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A 0.9-V Analog-to-Digital Acquisition Channel for an IoT Water Management Sensor Node

机译:物联网水管理传感器节点的0.9V模数采集通道

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This brief presents an analog front-end (AFE) specially developed for a water conductivity measurement system for water network management applications. Water conductivity is one of the best ways to detect a problem with the water in the network. In order to trigger an alarm it is only required to detect a 10% variation, which allows to simplify the system design. The proposed sensor uses four platinum micro-machined electrodes, where a 6 kHz signal is applied to the outer electrodes and a voltage signal is read in the inner ones. A programmable switched-capacitor (SC) bandpass filter is included in the analog-to-digital (A/D) channel to attenuate the interference from the 50 Hz power network, that shares the same environment with the water network, and to allow using a square wave signal to drive the sensor, thus simplifying the overall system. The resulting sine wave is digitized using a passive continuous-time (CT) 2nd order Delta Sigma modulator. The output bitstream is decimated, using a sinc filter, and the RMS value of the voltage is calculated. The A/D acquisition channel was implemented in a 130 nm CMOS technology, using a supply voltage of 0.9 V and a clock frequency of 1 MHz (SC amplifier and SC bandpass filter) and 4 MHz (Delta Sigma modulator). Measurement results show a SNDR of 44.4 dB for an input signal of 6 kHz and an amplitude of -41 dBV. The channel dissipates 386 mu W and occupies an area of 0.27 mm(2).
机译:本简介介绍了专门为水管网管理应用中的电导率测量系统开发的模拟前端(AFE)。导水率是检测网络中水问题的最佳方法之一。为了触发警报,只需要检测10%的变化,就可以简化系统设计。提出的传感器使用四个铂微机械加工电极,其中6 kHz信号施加到外部电极,内部电极读取电压信号。模数(A / D)通道中包含一个可编程开关电容器(SC)带通滤波器,以衰减与水网络共享相同环境的50 Hz电力网络的干扰,并允许使用方波信号来驱动传感器,从而简化了整个系统。使用无源连续时间(CT)二阶Delta Sigma调制器将产生的正弦波数字化。使用Sinc滤波器抽取输出比特流,并计算电压的RMS值。 A / D采集通道采用130 nm CMOS技术实现,使用0.9 V的电源电压,1 MHz的时钟频率(SC放大器和SC带通滤波器)和4 MHz(ΔSigma调制器)。测量结果表明,对于6 kHz的输入信号和-41 dBV的幅度,SNDR为44.4 dB。该通道耗散386μW,占用的面积为0.27 mm(2)。

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