可溶聚苯醚复合材料在毫米波区传输损耗的评价

Shoya Sekiguchi, K. Oki, Shoko Mishima, Yuya Fukata, Kaho Shibasaki, N. Ishikawa, T. Ogata
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引用次数: 0

摘要

第五代(5G)及以后的无线网络需要高频信号来实现高速、高容量和低延迟的通信。这些高频信号经历了广泛的传输损耗。此外,太赫兹频段正在考虑用于第6代(6G)网络。因此,在天线元件和高频电路板的设计中必须考虑传输损耗。为了降低传输损耗,我们开发了一种低介电常数(Dk)和低耗散因子(Df)的材料。我们使用了聚苯醚(PPE),因为它的Dk和Df都很低。我们对PPE的结构进行了修饰,得到了可溶于普通有机溶剂的PPE。采用制备好的可溶性PPE制备复合材料。制备的可溶聚苯乙烯基复合材料(SPCM)在10 GHz下的Dk和Df分别为3.1和0.0013。我们在SPCM上制作了微带线,并测量了其传输损耗。在95 GHz时,传输损耗为14.2 dB/100 mm。这一结果可归因于SPCM优异的介电性能和表面粗糙度小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Transmission Loss of Soluble Polyphenylene Ether Composite Material in a Millimeter-Wave Region
Fifth generation (5G) and beyond wireless networks require high-frequency signals for high-speed, high-capacity, and low-latency communication. These high-frequency signals undergo extensive transmission losses. Furthermore, the terahertz band is being considered for 6th-generation (6G) networks. Therefore, transmission loss must be considered in the design of antenna components and high-frequency circuit boards. To reduce the transmission loss, we developed a material with alow dielectric constant (Dk) and low dissipation factor (Df). We used polyphenylene ether (PPE) owing to its low Dk and Df. We modified the structure of PPE to obtain soluble PPE that dissolves in common organic solvents. The composite material was prepared using the as-prepared soluble PPE. The as-prepared soluble-PPE-based composite material (SPCM) exhibited excellent Dk and Df of 3.1 and 0.0013, respectively, at 10 GHz. We fabricated a microstrip line on the SPCM and measured its transmission losses. At 95 GHz, the transmission loss was 14.2 dB/100 mm. This result can be attributed to the excellent dielectric properties and small surface roughness offered by the excellent hydrophobicity of the SPCM.
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