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一种用于生命科学应用的高动态范围双8×16电容式传感器阵列。

A High Dynamic Range Dual 8×16 Capacitive Sensor Array for Life Science Applications.

作者信息

Tabrizi Hamed Osouli, Forouhi Saghi, Ghafar-Zadeh Ebrahim

出版信息

IEEE Trans Biomed Circuits Syst. 2022 Dec;16(6):1191-1203. doi: 10.1109/TBCAS.2022.3230668. Epub 2023 Feb 14.

Abstract

This paper presents a fully integrated complementary metal-oxide-semiconductor (CMOS) capacitive sensor array for life science applications. This sensing device consists of an array of 16 × 16 interdigitated electrodes (IDEs) integrated with a charge-based readout and multiplexing circuitries on the same chip. This chip was implemented in 0.35 μm AMS CMOS process. This sensing device has a wide input capacitance range (ICR) of about 100 fF and a resolution of 150 aF, and the capability of temporal, spatial, and dielectric sensing. It makes it possible to develop a low-cost, multimodal, calibration-free sensing platform for life science applications. Here, we demonstrate and discuss the functionality and applicability of the proposed sensing device by introducing various chemical solvents including ethanol, methanol, and pure water. The simulation and experimental results achieved in this work have taken us one step closer to a fully automated calibration-free multimodal capacitive sensing platform for high-throughput drug development and other purposes.

摘要

本文介绍了一种用于生命科学应用的完全集成互补金属氧化物半导体(CMOS)电容式传感器阵列。该传感装置由一个16×16叉指式电极(IDE)阵列组成,与基于电荷的读出和多路复用电路集成在同一芯片上。该芯片采用0.35μm AMS CMOS工艺实现。该传感装置具有约100 fF的宽输入电容范围(ICR)和150 aF的分辨率,以及时间、空间和介电传感能力。这使得开发用于生命科学应用的低成本、多模态、免校准传感平台成为可能。在这里,我们通过引入包括乙醇、甲醇和纯水在内的各种化学溶剂,展示并讨论了所提出传感装置的功能和适用性。这项工作中取得的模拟和实验结果使我们朝着用于高通量药物开发和其他目的的完全自动化免校准多模态电容式传感平台又迈进了一步。

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