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A VCII-Based Stray Insensitive Analog Interface for Differential Capacitance Sensors

机译:用于差分电容传感器的基于VCII的杂散不灵敏模拟接口

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摘要

In this paper, a novel approach to implement a stray insensitive CMOS interface for differential capacitive sensors is presented. The proposed circuit employs, for the first time, second-generation voltage conveyors (VCIIs) and produces an output voltage proportional to differential capacitor changes. Using VCIIs as active devices inherently allows the circuit to process the signal in the current domain, and hence, to benefit from its intrinsic advantages, such as high speed and simple implementation, while still being able to natively interface with voltage mode signal processing stages at necessity. The insensitiveness to the effects of parasitic capacitances is achieved through a simple feedback loop. In addition, the proposed circuit shows a very simple and switch-free structure (which can be used for both linear and hyperbolic sensors), improving its accuracy. The readout circuit was designed in a standard 0.35 μm CMOS technology under a supply voltage of ±1.65 V. Before the integrated circuit fabrication, to produce tangible proof of the effectiveness of the proposed architecture, a discrete version of the circuit was also prototyped using AD844 and LF411 to implement a discrete VCII. The achieved measurement results are in good agreement with theory and simulations, showing a constant sensitivity up to 412 mV/pF, a maximum linearity error of 1.9%FS, and acknowledging a good behavior with low baseline capacitive sensors (10 pF in the proposed measurements). A final table is also given to summarize the key specs of the proposed work comparing them to the available literature.
机译:本文提出了一种新颖的方法,用于为差分电容传感器实现杂散不敏感的CMOS接口。拟议中的电路首次采用第二代电压传送器(VCII),并产生与差分电容器变化成比例的输出电压。将VCII用作有源器件会固有地使电路在电流域中处理信号,因此可以受益于其固有的优势,例如高速和简单的实现,同时仍然能够与电压模式信号处理级进行本地交互必要性。通过简单的反馈环路即可实现对寄生电容影响的不敏感性。另外,所提出的电路显示了非常简单且无开关的结构(可用于线性和双曲线传感器),从而提高了其精度。读出电路采用标准的0.35μmCMOS技术设计,供电电压为±1.65V。在集成电路制造之前,为提供所提议架构有效性的切实证据,该电路的分立版本也使用AD844进行了原型设计。和LF411来实现分立的VCII。所获得的测量结果与理论和仿真结果非常吻合,显示出高达412 mV / pF的恒定灵敏度,1.9%FS的最大线性误差,并且在低基线电容式传感器(建议的测量中为10 pF)下获得了良好的性能。 )。还提供了一张最终表,以总结拟议工作的主要规格并将其与现有文献进行比较。

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