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Optically Transparent Frequency Selective Surfaces on Flexible Thin Plastic Substrates

机译:柔性薄塑料基板上的光学透明频率选择表面

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摘要

A novel 2D simple low cost frequency selective surface was screen printed on thin (0.21 mm), flexible transparent plastic substrate (relative permittivity 3.2). It was designed, fabricated and tested in the frequency range 10-20 GHz. The plane wave transmission and reflection coefficients agreed with numerical modelling. The effective permittivity and thickness of the backing sheet has a significant effect on the frequency characteristics. The stop band frequency reduced from 15GHz (no backing) to 12.5GHz with polycarbonate. The plastic substrate thickness beyond 1.8mm has minimal effect on the resonant frequency. While the inner element spacing controls the stop-band frequency, the substrate thickness controls the bandwidth. The screen printing technique provided a simple, low cost FSS fabrication method to produce flexible, conformal, optically transparent and bio-degradable FSS structures which can find their use in electromagnetic shielding and filtering applications in radomes, reflector antennas, beam splitters and polarizers.
机译:将新颖的二维简单低成本频率选择表面丝网印刷在薄(0.21 mm),柔性透明塑料基板(相对介电常数3.2)上。它是在10-20 GHz频率范围内设计,制造和测试的。平面波的透射和反射系数与数值模拟一致。背板的有效介电常数和厚度对频率特性有重要影响。聚碳酸酯将阻带频率从15GHz(无背衬)降低到12.5GHz。超过1.8mm的塑料基板厚度对谐振频率的影响最小。内部元件间距控制阻带频率,而基板厚度则控制带宽。丝网印刷技术提供了一种简单,低成本的FSS制造方法,以生产灵活,共形,光学透明和可生物降解的FSS结构,这些结构可用于天线罩,反射器天线,分束器和偏振器的电磁屏蔽和滤波应用中。

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