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Zirconia-Based Ultra-Thin Compact Flexible CPW-Fed Slot Antenna for IoT

机译:用于物联网的基于氧化锆的超薄紧凑型CPW馈电缝隙天线

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摘要

An ultra-thin compact flexible CPW-fed slot monopole antenna suitable for the Internet of Things (IoT) applications was achieved as a result of exploring the use of Zirconia-based ENrG’s Thin E-Strate® for the antenna’s design. The electromagnetic characterization of the novel material at the frequency range of interest was analyzed. A comparison was made concerning the required dimensions and the simulation results regarding impedance matching and radiation properties, for three different dielectric substrates: Novel flexible ceramic (ENrG’s Thin E-Strate), rigid Arlon 25N, and flexible Polypropylene (PP). Two different metallization techniques—electrotextile-based and inkjet printing—were used in the fabrication of prototypes based on ENrG’s Thin E-Strate. Return losses measured results for the fabricated prototypes with both procedures was compared, as well as with simulation. The best prototype on the ENrG’s Thin E-Strate was compared with one on Arlon 25N, in terms of radiation properties in an anechoic chamber, and conclusions were drawn.
机译:通过探索将基于氧化锆的ENrG的Thin E-Strate ®用于以下领域的结果,实现了适用于物联网(IoT)应用的超薄紧凑型CPW馈电缝隙单极天线。天线的设计。分析了新型材料在感兴趣的频率范围内的电磁特性。针对三种不同的介电基板,对所需尺寸进行了比较,并针对阻抗匹配和辐射特性进行了仿真结果比较:新型挠性陶瓷(ENrG的Thin E-Strate),刚性Arlon 25N和挠性聚丙烯(PP)。在基于ENrG的Thin E-Strate的原型制造中,使用了两种不同的金属化技术(基于电子织物的印刷和喷墨印刷)。比较了两种程序对人造样品的回波损耗测量结果以及仿真结果。就消声室中的辐射特性而言,将ENrG的Thin E-Strate上的最佳原型与Arlon 25N上的原型进行了比较,并得出了结论。

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