He Diwei, Morgan Stephen P, Trachanis Dimitrios, van Hese Jan, Drogoudis Dimitris, Fummi Franco, Stefanni Francesco, Guarnieri Valerio, Hayes-Gill Barrie R
Electrical System and Optics Research Division, Faculty of Engineering, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
Keysight Technologies Belgium NV, Kortrijksesteenweg 1093 B, 9051 Sint Denijs Westrem, Belgium.
Sensors (Basel). 2015 Jul 14;15(7):17076-88. doi: 10.3390/s150717076.
Pulse oximetry is a noninvasive and continuous method for monitoring the blood oxygen saturation level. This paper presents the design and testing of a single-chip pulse oximeter fabricated in a 0.35 µm CMOS process. The chip includes photodiode, transimpedance amplifier, analogue band-pass filters, analogue-to-digital converters, digital signal processor and LED timing control. The experimentally measured AC and DC characteristics of individual circuits including the DC output voltage of the transimpedance amplifier, transimpedance gain of the transimpedance amplifier, and the central frequency and bandwidth of the analogue band-pass filters, show a good match (within 1%) with the circuit simulations. With modulated light source and integrated lock-in detection the sensor effectively suppresses the interference from ambient light and 1/f noise. In a breath hold and release experiment the single chip sensor demonstrates consistent and comparable performance to commercial pulse oximetry devices with a mean of 1.2% difference. The single-chip sensor enables a compact and robust design solution that offers a route towards wearable devices for health monitoring.
脉搏血氧饱和度仪是一种用于监测血氧饱和度水平的无创连续方法。本文介绍了一款采用0.35μm CMOS工艺制造的单芯片脉搏血氧饱和度仪的设计与测试。该芯片包括光电二极管、跨阻放大器、模拟带通滤波器、模数转换器、数字信号处理器和LED定时控制。对各个电路的交流和直流特性进行实验测量,包括跨阻放大器的直流输出电压、跨阻放大器的跨阻增益以及模拟带通滤波器的中心频率和带宽,结果表明与电路仿真结果具有良好的匹配度(在1%以内)。通过调制光源和集成锁相检测,该传感器有效地抑制了环境光和1/f噪声的干扰。在屏气和呼气实验中,单芯片传感器表现出与商用脉搏血氧饱和度仪一致且可比的性能,平均差异为1.2%。该单芯片传感器实现了紧凑且坚固的设计方案,为健康监测可穿戴设备提供了一条途径。