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Ultra-foldable/stretchable wideband RF interconnects using laser ablation of metal film on a flexible substrate

机译:使用激光烧蚀柔性基板上的金属膜,可超折叠/拉伸宽带射频互连

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In this paper we demonstrate the feasibility of mechanically flexible and stretchable coplanar waveguide (CPW) transmission lines at millimeter-wave frequencies. Our approach is based on meander horseshoe-shaped CPW line on 125 ??m-thick Polyethylene Naphthalate (PEN) dielectric substrate. The desired meander shape pattern of the conductor is structured using a nanosecond pulsed laser source operating at 351 nm wavelength by the precise patterning of a 1 ??m-thick conductive film deposited on a plastic foil. The cutout is realized by following the outer meander shape path of the structure providing an ultra-flexible/stretchable interconnect line. An experimental attenuation below 0.12 dB??mm???1 for a 13 mm length of signal conductor has been obtained at 40 GHz. When submitted to bending on a semi-cylinder of known radius, the measured transmission coefficient show small variations less than 0.05 dB even for bending radius in the centimeter range.
机译:在本文中,我们演示了在毫米波频率下机械柔性且可拉伸的共面波导(CPW)传输线的可行性。我们的方法是基于125微米厚的聚萘二甲酸乙二醇酯(PEN)电介质基板上的曲折马蹄形CPW线。导体的所需曲折形状图案是通过在351 nm波长下工作的纳秒脉冲激光源,通过对塑料箔上沉积的1 ?? m厚的导电膜进行精确的构图来构造的。通过遵循结构的外曲折形状路径来实现切口,该路径提供了超柔韧性/可拉伸的互连线。对于40GHz的13mm长度的信号导体,已经获得了低于0.12dB·mm-1·mm-1的实验衰减。在已知半径的半圆柱体上弯曲时,即使在厘米范围内弯曲半径,测得的传输系数也显示出小于0.05 dB的微小变化。

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