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Humidity-Induced Charge Leakage and Field Attenuation in Electric Field Microsensors

机译:电场微传感器中的湿度感应电荷泄漏和场衰减

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摘要

The steady-state zero output of static electric field measuring systems often fluctuates, which is caused mainly by the finite leakage resistance of the water film on the surface of the electric field microsensor package. The water adsorption has been calculated using the Boltzmann distribution equation at various relative humidities for borosilicate glass and polytetrafluoroethylene surfaces. At various humidities, water film thickness has been calculated, and the induced charge leakage and field attenuation have been theoretically investigated. Experiments have been performed with microsensors to verify the theoretical predictions and the results are in good agreement.
机译:静态电场测量系统的稳态零输出经常波动,这主要是由电场微传感器封装表面上水膜的有限泄漏电阻引起的。对于硼硅酸盐玻璃和聚四氟乙烯表面,已使用Boltzmann分布方程在各种相对湿度下计算了吸水率。在各种湿度下,都已计算出水膜厚度,并从理论上研究了感应电荷泄漏和场衰减。用微传感器进行了实验,以验证理论预测,并且结果吻合良好。

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