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Improved Circuits with Capacitive Feedback for Readout Resistive Sensor Arrays

机译:改进的带有电容反馈的电路,用于读出电阻传感器阵列

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One of the most suitable ways of distributing a resistive sensor array for reading is an array with M rows and N columns. This allows reduced wiring and a certain degree of parallelism in the implementation, although it also introduces crosstalk effects. Several types of circuits can carry out the analogue-digital conversion of this type of sensors. This article focuses on the use of operational amplifiers with capacitive feedback and FPGAs for this task. Specifically, modifications of a previously reported circuit are proposed to reduce the errors due to the non-idealities of the amplifiers and the I/O drivers of the FPGA. Moreover, calibration algorithms are derived from the analysis of the proposed circuitry to reduce the crosstalk error and improve the accuracy. Finally, the performances of the proposals is evaluated experimentally on an array of resistors and for different ranges.
机译:分配用于读取的电阻式传感器阵列的最合适方式之一是具有M行N列的阵列。尽管这也会引入串扰效应,但这样做可以减少布线并在实现中实现一定程度的并行性。几种类型的电路可以执行此类传感器的模数转换。本文重点介绍具有电容性反馈的运算放大器和FPGA的使用。具体而言,提出了对先前报道的电路的修改,以减少由于放大器和FPGA的I / O驱动器的非理想性引起的误差。此外,从提出的电路的分析中得出了校准算法,以减少串扰误差并提高精度。最后,在一系列电阻器上针对不同范围通过实验评估了建议的性能。

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