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首页> 外文期刊>Applied Physics Letters >Broadband complex permittivity and conductivity measurements in the millimeter-wave bands over variable temperatures using a balanced-type circular disk resonator
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Broadband complex permittivity and conductivity measurements in the millimeter-wave bands over variable temperatures using a balanced-type circular disk resonator

机译:使用平衡型圆盘谐振器的可变温度的毫米波带中的宽带复杂介电常数和电导率测量

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摘要

A broadband measurement system is developed to address the issue of temperature dependence of the complex permittivity and conductivity of low-loss substrates in the millimeter-wave bands for fifth/sixth generation wireless communication applications. The developed system can provide broadband material measurements from less than 20 GHz to over 100 GHz over variable temperatures by utilizing higher order mode resonances of a balanced-type circular disk resonator (BCDR). The broadband measurement capability of the developed system is attributed to the mode-selective behavior of the BCDR over a wideband. To demonstrate the developed system, we measure the complex permittivity of the following three substrate materials over variable temperatures from 25 °C to 100 °C: cydo-olefin polymer (COP), ceramic-filled polytetrafiuoroethylene composites, and fused silica. Furthermore, the temperature dependence of the conductivity of the surface-mounted metal is characterized for the COP substrate. The measurements indicate that the loss tangents and conductivities of the substrates increase and decrease, respectively, with the temperature and frequency in the millimeter-wave bands. The full-wave simulations using the measured complex permittivity and conductivity of the COP substrate reveal that the propagation loss of the microstrip line using the COP substrate increases with the temperature and frequency and that the increase in the loss is primarily attributed to the decrease in the conductivity.
机译:开发了一种宽带测量系统,以解决第五/第六代无线通信应用的毫米波带中的毫米波带中的复介电常数和电导率的复杂介电常数和导电性的问题。通过利用平衡型圆盘谐振器(BCDR)的更高阶模式谐振,开发系统可以在可变温度范围内从小于20GHz到超过100GHz的宽带材料测量。发达系统的宽带测量能力归因于BCDR在宽带上的模式选择性行为。为了证明发达的系统,我们测量以下三个基材材料的复杂介质,通过25℃至100℃:含胞蛋白酶聚合物(COP),陶瓷填充的聚四氟乙烯复合材料和熔融二氧化硅。此外,表面安装金属的导电性的温度依赖性的特征在于COP基板。测量结果表明,基板的损耗切线和电导率分别在毫米波带中的温度和频率分别增加和减小。使用测量的COP基板的复杂介电常数和电导率的全波模拟表明,使用COP基板的微带线的传播损耗随温度和频率而增加,并且损耗的增加主要归因于降低电导率。

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  • 来源
    《Applied Physics Letters 》 |2021年第9期| 092902.1-092902.6| 共6页
  • 作者

    Y. Kato; M. Horibe;

  • 作者单位

    Research Institute for Physical Measurement National Institute of Advanced Industrial Science and Technology Tsukuba Japan;

    Research Institute for Physical Measurement National Institute of Advanced Industrial Science and Technology Tsukuba Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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