Measurement of the dielectric properties of materials by using time domain reflectometry

R. Nozaki, T. Bose
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引用次数: 6

Abstract

The authors present some TDR (time-domain-reflectometry) applications for complex permittivity measurements for strong polar liquid in the frequency range of 1 to 35 GHz, liquid crystal from 100 kHz to 1 GHz, and ionic microemulsion at frequencies between 30 MHz and 20 GHz. In each case, the necessary TDR techniques for optimal condition are given. The new TDR system (HP54120A+HP54121A) used has excellent stability compared with the earlier TDR system (HP181). It was found that, for methanol, the TDR system implemented can obtain information about the complex permittivity in the frequency range up to 25 GHz with sufficient accuracy and can possibly go up to 35 GHz using a bilinear correction. In the case of the liquid crystal, it is shown that the method is powerful not only in the microwave range but also in the radio frequency range. From the measurement of the ionic microemulsion system, it is clear that the TDR technique is applicable to the measurement of the complex permittivity of a sample with high DC conductivity.<>
用时域反射法测量材料的介电特性
本文介绍了时域反射法在1 ~ 35 GHz频率范围内的强极性液体、100 kHz ~ 1 GHz频率范围内的液晶以及30 MHz ~ 20 GHz频率范围内的离子微乳液的复介电常数测量中的一些应用。在每种情况下,给出了最优条件下所需的TDR技术。采用的新型TDR系统(HP54120A+HP54121A)与早期TDR系统(HP181)相比具有优异的稳定性。结果发现,对于甲醇,所实现的TDR系统可以以足够的精度获得高达25 GHz频率范围内的复介电常数信息,并且可以使用双线性校正达到35 GHz。以液晶为例,表明该方法不仅在微波范围内,而且在射频范围内都是强大的。通过对离子微乳液体系的测量,可以清楚地看出TDR技术适用于测量具有高直流电导率的样品的复介电常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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