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Using Metamaterial Complementary Split-Ring Resonators for Measuring Dielectric Constants and Loss Tangents at 22 GHz

机译:使用超材料互补开环谐振器在22 GHz下测量介电常数和损耗角正切

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This paper presents a method using a metamaterial complementary split-ring resonator (CSRR) to measure the dielectric constant (Dk) and loss tangent (Df) of materials at a frequency of 22 GHz. The method involves calculating the permittivity of an unknown material based on the oscillation frequency changes of a CSRR, which is caused by the material under test. This method with a CSSR sensor uses only the resonance frequency and the S21 magnitude response at the resonance frequency to calculate Dk and Df. The measurement accuracy was assessed by comparing the results with the declared values specified in the datasheets of material manufacturers. The results show good agreement with the declared values in the datasheets. Thus, with this method, the dielectric properties of materials at high frequencies of millimeter waves (mm-waves) can be characterized and a non-destructive sensor can be built.
机译:本文提出了一种使用超材料互补开口环谐振器(CSRR)来测量22 GHz频率下材料的介电常数(Dk)和损耗角正切(Df)的方法。该方法包括根据由被测材料引起的CSRR的振荡频率变化来计算未知材料的介电常数。 CSSR传感器的这种方法仅使用共振频率和S 21 共振频率下的幅度响应,以计算Dk和Df。通过将结果与材料制造商数据表中指定的声明值进行比较,可以评估测量精度。结果表明与数据表中的声明值良好吻合。因此,利用该方法,可以表征材料在毫米波(mm波)的高频下的介电特性,并且可以构建无损传感器。

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