IEEE Trans Biomed Circuits Syst. 2024 Jun;18(3):564-579. doi: 10.1109/TBCAS.2024.3360140. Epub 2024 May 28.
This paper presents a tri-modal self-adaptive photoplethysmography (PPG) sensor interface IC for concurrently monitoring heart rate, SpO, and pulse transit time, which is a critical intermediate parameter to derive blood pressure. By implementing a highly-reconfigurable analog front-end (AFE) architecture, flexible signal chain timing control, and flexible dual-LED drivers, this sensor interface provides wide operating space to support various PPG-sensing use cases. A heart-beat-locked-loop (HBLL) scheme is further extended to achieve time-multiplexed dual-input pulse transit time extraction based on two PPG sensors placed at fingertip and chest. A self-adaptive calibration scheme is proposed to automatically match the chip's operating point with the current use case, guaranteeing a sufficient signal-to-noise ratio for the user while consuming minimum system power. This paper proposes a DC offset cancellation (DCOC) approach comprised by a logarithmic transimpedance amplifier and an 8-bit SAR ADC, achieving a measured 38 nA residue error and 8.84 μA maximum input current. Fabricated in a 65nm CMOS process, the proposed tri-modal PPG sensor interface consumes 2.3-5.7 μW AFE power and 1.52 mm die area with 102dB (SpO mode), 110-116 dB (HR & PTT mode) dynamic range. A SpO test case and a HR & PTT test case are both demonstrated in the paper, achieving 18.9 μW and 43.7 μW system power, respectively.
本文提出了一种三模态自适应光电容积脉搏波(PPG)传感器接口 IC,用于同时监测心率、SpO2 和脉搏传输时间,这是衍生血压的关键中间参数。通过实现高度可重构的模拟前端(AFE)架构、灵活的信号链定时控制和灵活的双 LED 驱动器,该传感器接口为各种 PPG 传感用例提供了广泛的工作空间。进一步扩展了心跳锁定环(HBLL)方案,以实现基于放置在指尖和胸部的两个 PPG 传感器的时分复用双输入脉搏传输时间提取。提出了一种自适应校准方案,可自动将芯片的工作点与当前用例匹配,在为用户提供足够信噪比的同时消耗最小的系统功率。本文提出了一种由对数跨导放大器和 8 位 SAR ADC 组成的直流失调消除(DCOC)方法,实现了 38nA 的测量残余误差和 8.84μA 的最大输入电流。该三模态 PPG 传感器接口采用 65nm CMOS 工艺制造,AFE 功率消耗为 2.3-5.7μW,1.52mm 芯片面积,动态范围为 102dB(SpO2 模式)、110-116dB(HR 和 PTT 模式)。本文演示了 SpO2 测试案例和 HR & PTT 测试案例,分别实现了 18.9μW 和 43.7μW 的系统功率。