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用于慢性伤口护理的基于时间分辨率缩放技术和模拟波形发生器的无线多模态传感片上系统,采用 0.18μm CMOS 工艺制造。

Wireless Multimodality Sensing System-on-a-Chip With Time-Based Resolution Scaling Technique and Analog Waveform Generator in 0.18 μm CMOS for Chronic Wound Care.

出版信息

IEEE Trans Biomed Circuits Syst. 2021 Dec;15(6):1268-1282. doi: 10.1109/TBCAS.2021.3126810. Epub 2022 Feb 17.

DOI:10.1109/TBCAS.2021.3126810
PMID:34752402
Abstract

Multimodal sensing can provide a comprehensive and accurate diagnosis of biological information. This paper presents a fully integrated wireless multimodal sensing chip with voltammetric electrochemical sensing at a scanning rate range of 0.08-400 V/s, temperature monitoring, and bi-phasic electrical stimulation for wound healing progress monitoring. The time-based readout circuitry can achieve a 1-20X scalable resolution through dynamic threshold voltage adjustment. A low-noise analog waveform generator is designed using current reducer techniques to eliminate the large passive components. The chip is fabricated via a 0.18 μm CMOS process. The design achieves R linearity of 0.995 over a wide current detection range (2 pA-12 μA) while consuming 49 μW at 1.2 V supply. The temperature sensing circuit achieves a 43 mK resolution from 20 to 80 degrees. The current stimulator provides an output current ranging from 8 μA to 1 mA in an impedance range of up to 3 kΩ. A wakeup receiver with data correlators is used to control the operation modes. The sensing data are wirelessly transmitted to the external readers. The proposed sensing IC is verified for measuring critical biomarkers, including C-reactive protein, uric acid, and temperature.

摘要

多模态传感可以提供对生物信息的全面而准确的诊断。本文提出了一种完全集成的无线多模态传感芯片,具有在 0.08-400 V/s 的扫描速率范围内进行伏安电化学传感、温度监测以及双相电刺激的功能,用于监测伤口愈合进展。基于时间的读取电路可以通过动态阈值电压调整实现 1-20X 的可缩放分辨率。采用电流减小技术设计了低噪声模拟波形发生器,以消除大的无源元件。该芯片采用 0.18 μm CMOS 工艺制造。该设计在 1.2 V 电源下实现了 0.995 的 R 线性度,在 2 pA-12 μA 的宽电流检测范围内消耗 49 μW。温度感测电路在 20 到 80 度的范围内实现了 43 mK 的分辨率。电流刺激器提供 8 μA 至 1 mA 的输出电流,在高达 3 kΩ 的阻抗范围内。采用带有数据相关器的唤醒接收器来控制操作模式。传感数据被无线传输到外部读取器。所提出的传感 IC 经过验证可用于测量关键生物标志物,包括 C 反应蛋白、尿酸和温度。

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