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A 785nW Multimodal (V/I/R) Sensor Interface IC for Ozone Pollutant Sensing and Correlated Cardiovascular Disease Monitoring

机译:一款785nW多模式(V / I / R)传感器接口IC,用于臭氧污染物感测和相关的心血管疾病监测

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This paper presents a 785nW multimodal sensor interface IC enabling ozone pollutant sensing and correlated cardiovascular disease (CVD) monitoring based on electrocardiography (ECG) and photoplethysmography (PPG). The interface IC consists of a 165nW voltage-mode ECG channel, a 532nW current-mode PPG channel, a 75.6nW resistive ozone channel, and 12.6nW peripheral circuits, all at 0.6V. A 4MΩ-gain regulated cascode transimpedance amplifier (RGC-TIA) with a hybrid DC offset current cancellation (DCOC) loop reduces the PPG readout power by 37×, compared to state-of-the-art PPG sensor interfaces. Fabricated in 65nm CMOS, the proposed IC is tested with a custom digital readout IC. The full system power consumption with an LED is 11.5μW, which is 54× less than prior ozone/CVD joint-monitoring sensor interface systems.
机译:本文介绍了一种785nW多模态传感器接口IC,它能够基于心电图(ECG)和光体积描记法(PPG)进行臭氧污染物感测和相关的心血管疾病(CVD)监测。接口IC由165nW电压模式ECG通道,532nW电流模式PPG通道,75.6nW电阻性臭氧通道和12.6nW外围电路组成,所有这些器件的电压均为0.6V。与最新的PPG传感器接口相比,具有混合DC失调电流消除(DCOC)环路的4MΩ增益调节共源共栅跨阻放大器(RGC-TIA)将PPG的读出功率降低了37倍。拟议中的IC采用65nm CMOS制造,并通过定制数字读出IC进行了测试。 LED的整个系统功耗为11.5μW,比以前的臭氧/ CVD联合监测传感器接口系统低54倍。

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