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JSSC 2010第1期RF & Wireless0.18 μmBiosignal

A 5.2 mW Self-Configured Wearable Body Sensor Network Controller and a 12 /22W Wirelessly Powered Sensor for a Continuous Health Monitoring System Jerald Y oo, Student Member , IEEE, Long Y an, Student Member , IEEE, Seulki Lee , Student Member , IEEE

提出一种自配置可穿戴体域网控制器和高效无线供电传感器,用于连续健康监测。
52 mW, 12 μW, 54.9% efficiency, 1.8 V
可穿戴传感器无线供电自适应整流器健康监测自配置网络
自适应阈值整流器(ATR)实现54.9%效率
干式P-FCB电极实现长期无刺激监测
自配置网络控制器自动定位传感器位置
Abstract
A self-configured body sensor network controller and a high efficiency wirelessly powered sensor are presented for a wearable, continuous health monitoring system. The sensor chip harvests its power from the surrounding health monitoring band using an Adaptive Threshold Rectifier (ATR) with 54.9% efficiency, and it consumes 12 W to implement an electro- cardiogram (ECG) analog front-end and an ADC. The ATR is implemented with a standard CMOS process for low cost. The adhesive bandage type sensor patch is composed of the sensor chip, a Planar-Fashionable Circuit Board (P-FCB) inductor, and a pair of dry P-FCB electrodes. The dry P-FCB electrodes enable long term monitoring without skin irritation. The network controller automatically locates the sensor position, configures the sensor type (self-configuration), wirelessly provides power to the configured sensors, and transacts data with only the selected sensors while dissipating 5.2 mW at a single 1.8 V supply. Both the sensor and the health monitoring band are implemented using P-FCB for enhanced wearability and for lower production cost. The sensor chip and the network controller chip occupy 4.8 mm /50 and 15.0 mm /50, respectively, including pads, in standard 0.18 m 1P6M CMOS technology.