A High-Temperature Capable Planar-type Coaxial Probe for Complex Permittivity Measurements Up to 40 GHz

Nam-Gon Kim, Jeonghoon Yoon, Dongki Kim, Jeiwon Cho, C. Cheon, Y. Kwon
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引用次数: 4

Abstract

A planar-type probe applicable to a wide temperature and frequency range has been developed. The probe employs a low CTE (coefficient of thermal expansion) dielectric material to minimize the effect of thermal expansion for high temperature measurement. Additionally, the coaxial aperture dimensions have been optimized through sensitivity analysis to minimize the uncertainty of the extracted complex permittivity due to variations of the measured S-parameters. Also, the error correction method was used at extreme temperatures to compensate for the effects of the excessive thermal expansion. For validation, distilled water was measured from 0degC to 100degC in the frequency range of 0.5~40 GHz. The measured complex permittivity shows good agreement with the reference data up to 75degC without the error correction and up to the boiling point (92degC) with the error correction. To our knowledge, this is the first demonstration of low-cost planar-type probes capable of high temperature operation.
用于复杂介电常数测量高达40 GHz的耐高温平面型同轴探头
研制了一种适用于宽温度和宽频率范围的平面型探头。探头采用低CTE(热膨胀系数)介电材料,以尽量减少热膨胀对高温测量的影响。此外,通过灵敏度分析优化了同轴孔径尺寸,以最大限度地减少由于测量s参数变化而提取的复介电常数的不确定性。此外,在极端温度下采用误差修正方法来补偿过度热膨胀的影响。为了验证,在0.5~40 GHz频率范围内,从0℃到100℃测量蒸馏水。测量的复介电常数与参考数据吻合较好,不进行误差校正时达到75℃,误差校正后达到沸点(92℃)。据我们所知,这是能够高温操作的低成本平面型探针的首次演示。
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