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Analysis of a Novel Circuit Arrangement to Suppress Crosstalk in 2-D Resistive Sensor Arrays

机译:一种抑制二维电阻传感器阵列串扰的新型电路布置的分析

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摘要

The multiplexed resistive arrays simplify the data collection with reduced connections and circuit complexity. However, the effect of crosstalk in these cases becomes inevitable. The crosstalk is caused due to the leakage currents in the multiplexer channels as well as the parasitic paths among the non-selected elements in the array. This paper analyses a circuit arrangement capable of suppressing crosstalk in 2D resistive sensor arrays. The proposed circuit employs transistors and diodes to modify simple voltage feedback commonly used for crosstalk reduction. The paper includes simulation results, approximate mathematical model for the "element under measurement" and other practical aspects of the circuit arrangement, such as the array size or the bias resistance. Finally, the circuit is compared (based on the simulation results) with two known circuit arrangement from the literature. The suggested circuit is clearly capable of eliminating crosstalk better than previously known methods. The analysis also reveals that the circuit is sensitive to temperature variations and must be modeled with temperature calibration factors for better model accuracy.
机译:多路复用电阻阵列简化了具有减少的连接和电路复杂度的数据收集。然而,在这些情况下串扰的影响变得不可避免。由于多路复用器通道中的泄漏电流以及阵列中的未选择元素之间的寄生路径而导致串扰。本文分析了能够抑制2D电阻传感器阵列中串扰的电路装置。所提出的电路采用晶体管和二极管来修改通常用于减少串扰的简单电压反馈。本文包括仿真结果,近似数学模型的“测量元件”和电路装置的其他实际方面,例如阵列尺寸或偏置电阻。最后,将电路进行比较(基于模拟结果),具有来自文献的两个已知电路装置。建议的电路显然能够比以前已知的方法更好地消除串扰。分析还揭示了电路对温度变化敏感,必须用温度校准因子进行建模,以便更好的模型精度。

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