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Design of a capacitive-sensor signal processing system with high accuracy and short conversion time

机译:高精度,短转换时间的电容传感器信号处理系统设计

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This paper presents the design of a capacitive-sensor signal processing system, which is capable of converting the capacitance change into digital signal output with high accuracy and short conversion time. The system consists the current conveyors, analog switches, current source, A/D converter and 32-bit advanced RISC machine (ARM). The digital readout ranges from 0000 to FFFF corresponding to the capacitance change ranging from 0 to 2 pF. Due to the functions of proposed system, the gain of digital readout versus sensor-capacitance change can be calibrated automatically. The effects of offset voltage and parasitic capacitance can be eliminated. Therefore, the relation of digital readout versus sensor-capacitance change exhibits high accuracy. The conversion time and maximum nonlinearity are less than 100 mu s and 24 ppm, respectively. (c) 2004 Elsevier B.V. All rights reserved.
机译:本文提出了一种电容传感器信号处理系统的设计,该系统能够以高精度和短转换时间将电容变化转换为数字信号输出。该系统包括电流传送器,模拟开关,电流源,A / D转换器和32位高级RISC机器(ARM)。数字读数的范围为0000至FFFF,对应的电容变化范围为0至2 pF。由于所建议系统的功能,数字读数的增益与传感器电容的变化可以自动校准。可以消除失调电压和寄生电容的影响。因此,数字读出与传感器电容变化之间的关系显示出很高的精度。转换时间和最大非线性分别小于100μs和24 ppm。 (c)2004 Elsevier B.V.保留所有权利。

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