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An integrated CMOS optical sensing chip for multiple bio-signal detections

机译:集成的CMOS光学传感芯片,可进行多种生物信号检测

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摘要

An integrated optical sensing chip for multiple bio-signal detections (MBSD) including peripheral capillary oxygen saturation (SpO2), pulse rate (PR), and fingerprint (TP) is proposed and prototyped in standard 0.18um CMOS technology. A MBSD CMOS optical sensing chip with a 128×64 dual-mode CMOS image sensor (CIS) array is implemented to achieve the multi-domain (temporal and spatial) signal detection using a single sensing array and shared LED source. In oximeter (OXI) mode (temporal-domain), the proposed sensing chip reports the continuous photoplethysmogram (PPG) signal for SpO2 calculation with a measured photo-sensitivity of 7.271nA/Lux, an achieved error of ±0.81% for R* ratio, a resulting error of ±1.01% for SpO2, and a total power of 99μW (without LEDs). In optical fingerprint (OFP) mode (spatial-domain), the fingerprint pattern is successful demonstrated by captured images with a measured sensitivity of 1.983V/Lux*s and a low FPN of 0.098% at 30fps. *R = (AC of Red / DC of Red) / (AC of IR / DC of IR).
机译:提出了一种集成的光学传感芯片,用于多种生物信号检测(MBSD),包括外围毛细管血氧饱和度(SpO2),脉搏率(PR)和指纹(TP),并采用标准的0.18um CMOS技术进行原型制作。实现了具有128×64双模CMOS图像传感器(CIS)阵列的MBSD CMOS光学传感芯片,以使用单个传感阵列和共享的LED源实现多域(时间和空间)信号检测。在血氧仪(OXI)模式(时域)下,拟议的传感芯片报告用于SpO2计算的连续光体积描记图(PPG)信号,测得的光敏度为7.271nA / Lux,R *比率的误差为±0.81% ,SpO2的误差为±1.01%,总功率为99μW(不带LED)。在光学指纹(OFP)模式(空间域)中,通过捕获的图像成功展示了指纹图案,该图像在30fps时测得的灵敏度为1.983V / Lux * s,FPN为0.098%。 * R =(红色AC /红色DC)/(IR AC / IR DC)。

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