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A low power analog front-end (AFE) circuit dedicated for driving bio-electrochemical sensors and peripheral devices

机译:低功耗模拟前端(AFE)电路,专用于驱动生物电化学传感器和外围设备

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This work describes a biomedical signal acquisition system using wireless power circuit for bio-electrochemical signal acquisition. The proposed system contains a near-field wireless powering circuit based on 13.56MHz at ISM (industrial, scientific, and medical) band, a low power analog front-end (AFE) circuit dedicated for driving bio-electrochemical sensors, and peripheral devices. The AFE integrated circuit with wireless powering is designed using a 0.18µm 1P6M CMOS process with a core area of 1.383×1.103 mm2. The AFE achieves a common-mode rejection ratio of 140dB at 10Hz and power consumption of 11.33µW. The carrier frequency for wireless power transmission is 13.56MHz. The simulation result shows that the wireless power could provide 1mA output current at 1.8V dc output voltage. The peripheral device includes a microcontroller unit (MCU) and a radio frequency (RF) transceiver that could process and transmit the acquired bio -electrochemical signal to computer for data display or storage. The main objective of this proposed system is to make bio-electrochemical signal acquisition quickly and conveniently.
机译:这项工作描述了一种使用无线电力电路进行生物电化学信号采集的生物医学信号采集系统。拟议的系统包含一个基于ISM(工业,科学和医学)频段的13.56MHz的近场无线供电电路,一个专用于驱动生物电化学传感器的低功率模拟前端(AFE)电路以及外围设备。具有无线供电功能的AFE集成电路采用0.18µm 1P6M CMOS工艺设计,其核心面积为1.383×1.103 mm 2 。 AFE在10Hz时实现140dB的共模抑制比,功耗为11.33µW。无线功率传输的载波频率为13.56MHz。仿真结果表明,无线电源可以在1.8V dc输出电压下提供1mA输出电流。该外围设备包括微控制器单元(MCU)和射频(RF)收发器,它们可以处理并将获取的生物电化学信号传输到计算机以进行数据显示或存储。该提出的系统的主要目的是使生物电化学信号采集快速方便。

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