Lee Shuenn-Yuh, Lee Hao-Yun, Kung Chia-Ho, Su Po-Han, Chen Ju-Yi
IEEE Trans Biomed Circuits Syst. 2022 Oct;16(5):742-751. doi: 10.1109/TBCAS.2022.3201328. Epub 2022 Nov 30.
This work presents a third-order high-pass sigma-delta modulator (HPSDM) for biomedical signal acquisition. The operational amplifier (op-amp) sharing and noise-coupling techniques are adopted to reduce the required quantity of op-amps and add a noise-shaping order, which can achieve low power consumption and high resolution. A novel switched-capacitor architecture is proposed to suppress the increasing in-band noise and alleviate the circuit sensitivity to capacitor mismatch in the high-pass integrator. The proposed HPSDM was fabricated in a 0.18-μm standard CMOS process. Measurement results reveal that the proposed HPSDM has a signal-to-noise and distortion ratio (SNDR) of 75.26/74 dB in 200 Hz bandwidth and consumes 1.52/0.8 μW under 1.2/1 V supply voltage, which can achieve a peak Schreier Figure-of-Merit of 156.45/157.98 dB and a peak Walden FoM of 0.802/0.488 pJ/conv.
本文提出了一种用于生物医学信号采集的三阶高通sigma-delta调制器(HPSDM)。采用运算放大器(op-amp)共享和噪声耦合技术来减少所需的运算放大器数量并增加一个噪声整形阶数,从而可实现低功耗和高分辨率。提出了一种新颖的开关电容架构,以抑制高通积分器中增加的带内噪声并减轻电路对电容失配的敏感度。所提出的HPSDM采用0.18-μm标准CMOS工艺制造。测量结果表明,所提出的HPSDM在200 Hz带宽内的信噪比和失真比(SNDR)为75.26/74 dB,在1.2/1 V电源电压下功耗为1.52/0.8 μW,可实现156.45/157.98 dB的峰值施赖尔优值和0.802/0.488 pJ/conv的峰值沃尔登优值。