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Broadband complex permittivity measurements by time-domain spectroscopy

机译:时域光谱法测量宽带复介电常数

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The complex permittivity measurements of some materials, taken by using the time-domain reflectometry (TDR) method, are presented. As an example of the wide frequency measurement capability, both at the radio and microwave frequencies, the complex permittivity measurement of a liquid crystal is presented in the frequency range between 100 kHz and 1 GHz. The measurement of an ionic water-in-oil microemulsion system is given to describe the case of a conductive sample. From the measurement of this system, it is clear that the TDR technique can be used to measure the complex permittivity of a sample with high DC conductivity. Even if the sample has a small dielectric absorption hidden behind the high DC conductivity, the method should be able to distinguish between the two. Complex permittivity measurements of strongly polar liquids are presented to show the highest frequency attainable by the TDR system. The result indicates that the complex permittivity can be measured up to 25 GHz with sufficient accuracy if the cutoff frequency of the TDR system is higher than 25 GHz. This high-frequency limit is due to the limitation of the system given by the performance of the sampling system.
机译:介绍了使用时域反射法(TDR)进行的某些材料的复介电常数测量。作为在无线电和微波频率下的宽频率测量能力的一个示例,液晶的复介电常数测量在100 kHz到1 GHz的频率范围内进行。给出了油性离子水微乳液系统的测量值,以描述导电样品的情况。从该系统的测量结果可以明显看出,TDR技术可用于测量具有高直流电导率的样品的复介电常数。即使样品在高直流电导率下隐藏了较小的介电吸收,该方法也应能够区分两者。提出了强极性液体的复介电常数测量结果,以显示TDR系统可获得的最高频率。结果表明,如果TDR系统的截止频率高于25 GHz,则可以在高达25 GHz的频率下以足够的精度测量复数介电常数。该高频限制是由于采样系统的性能给系统带来的限制。

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