显著改进的耦合电容依赖性白钨矿晶体介电测量的灵敏度和精度

Sudhansu Sekhar Hota, Debasish Panda, Ram Naresh Prasad Choudhary
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引用次数: 5

摘要

热敏电阻表现出线性电行为的能力对于最小化电路设计复杂性至关重要。为了制造高性能电子陶瓷,相位形成调制是至关重要的。利用固相反应技术,制备了基于BaWO4陶瓷的新型线性高温热敏电阻,获得了内部导电网络和线性电特性。在573 ~ 773 K温度范围内,陶瓷表现出负温度系数(NTC)热敏电阻特性。它们具有优异的线性电阻-温度(R-T)组合。线性电学行为背后的过程已经用一个并联的导电模型结合全面的阻抗和介电研究进行了分析。这种策略可以更普遍地应用于制造具有大温度范围的线性高温热敏电阻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity and Accuracy of Dielectric Measurements of Significantly Improved Coupled Capacitive-Dependent scheelite crystal
The ability of thermistor to exhibit linear electrical behaviours is crucial for minimising circuit design complexity. To create high performance electronic ceramics, phase formation modulation is crucial. By using a solid-state reaction technique, novel linear high-temperature thermistors based on BaWO4 ceramics were created, resulting in an internal conducting network and linear electrical characteristics. In the temperature range of 573 K to 773 K, the ceramics showed negative temperature coefficient (NTC) thermistor properties. They had an excellent linear resistance-temperature (R-T) combination. The process behind linear electrical behaviours has been analysed using a parallel conductive model in combination with a comprehensive impedance and dielectric study. This strategy might be applied more generally to create linear high-temperature thermistors with a large temperature range.
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