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A CMOS-based integrated-system architecture for a static cantilever array

机译:静态悬臂阵列的基于CMOS的集成系统架构

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摘要

A monolithic, integrated sensor system architecture is presented that features microcantilevers operated in the deflection mode as transducer elements for detecting (bio)chemical compounds. The cantilevers have been coated with polymer layers to detect volatile organic compounds, such as ethanol. The analyte-sorption-induced surface-stress changes of the cantilevers have been detected by piezoresistive Wheatstone bridge configurations embedded in the cantilevers. The integrated readout circuitry includes a chopper-stabilized amplifier, which performs a low-noise, low-offset amplification of the μV-range sensor signal. Additional low-pass filtering and a programmable offset compensation stage on the chip provide a good signal-to-noise ratio. A sigma-delta analog-to-digital converter (ΣΔ-ADC) delivers the measured data to the outside world via a digital serial interface. The monolithic integration reduces the sensitivity to external interference and enables autonomous device operation. The focus of the paper is on the system design and integration, which can also be applied to other types of cantilevers or cantilevers featuring different geometries.
机译:提出了一种整体的,集成的传感器系统架构,该架构具有以偏转模式操作的微悬臂作为检测(生物)化学化合物的换能器元件。悬臂已涂有聚合物层,以检测挥发性有机化合物,例如乙醇。悬臂中嵌入的压阻惠斯通电桥结构已检测出悬臂的分析物吸附引起的表面应力变化。集成的读出电路包括一个斩波稳定放大器,该放大器对μV范围的传感器信号进行低噪声,低偏移放大。芯片上的附加低通滤波和可编程失调补偿级可提供良好的信噪比。 Σ-Δ模数转换器(ΣΔ-ADC)通过数字串行接口将测量数据传送到外界。单片集成降低了对外部干扰的敏感度,并使设备能够自主运行。本文的重点是系统设计和集成,它也可以应用于其他类型的悬臂或具有不同几何形状的悬臂。

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