集成光学CMOS心率传感器的设计与仿真

D. He, C. Liu, D. Trachanis, J. Hese, D. Drogoudis, F. Fummi, F. Stefanni, V. Guamieri, S. Morgan, B. Hayes-Gill
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引用次数: 2

摘要

采用奥地利微系统公司0.35μm CMOS工艺设计并制作了一种处理光容积脉搏波信号的光学CMOS心率传感器。传感器由光电二极管、跨阻放大器、模拟带通滤波器、模数转换器、数字信号处理器和用于调制外部发光二极管的时序电路组成。通过混合信号仿真验证了系统设计的正确性。通过调制的绿色光源和集成的锁定检测,传感器在反射模式下工作时能够提取干净的光体积脉搏信号。将其心率输出与商用设备进行了比较,两者表现出良好的一致性。芯片级集成使设计占地面积小,适合动态监测应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and simulation of an integrated optical CMOS heart rate sensor
An optical CMOS heart rate sensor that processes the photoplethysmographic signal was designed and fabricated in Austriamicrosystems 0.35μm CMOS process. The sensor consists of photodiode, transimpedance amplifier, analogue bandpass filters, analogue-to-digital converters, digital signal processor, and a timing circuit that is used to modulate the external light-emitting diodes. The mixed-signal simulation has been carried out to validate the system design. With modulated green light source and integrated lock-in detection the sensor is capable of extracting clean photoplethysmographic signal when it is operated in reflectance mode. The heart rate output was compared with commercial devices and they show a good agreement. The chip-level integration enables a small foot print of the design and makes it suitable for the applications of ambulatory monitoring.
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