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Production of Meshed Microstrip Antennas with Laser Pattering

机译:用激光图案化生产网状微带天线

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A picosecond laser system emitting laser radiation with 515 nm. at 7 ps pulse duration was used in combination with a galvanometric scanner to produce optically transparent antennas. The antenna substrate material was 200 mu m thick fused silica glass which was radio frequency (RF) sputtered with a 1 mu m thick Cu coating. The antenna structure was generated by laser ablation of the Cu coating. The goal of the investigation was to find laser parameters which remove the Cu coating at maximum optical transparency of the ablated area and to identify the relationship between laser parameters, designed antenna layout and generated antenna geometry. The findings suggest that the patterning process should be realized at low fluencies in the range of Cu's ablation threshold in combination with multiple irradiation cycles in order to remove the Cu coating without affecting the glass surface. Increasing the fluence or irradiation cycles increased the ablated area which decreased the width of the generated antenna traces. At the optimized laser parameters, a linear relationship between the designed layout trace width and generated trace width was found. The relationship enabled the production of antenna geometries with high precision which operated at the designed frequency.
机译:发射515nm的激光辐射的皮秒激光系统。在7 PS脉冲持续时间与电流扫描仪结合使用以产生光学透明天线。天线基底材料是200μm厚的熔融二氧化硅玻璃,其用1μm厚的Cu涂层溅射的射频(RF)。通过激光消融Cu涂层产生天线结构。调查的目标是找到在烧蚀区域的最大光学透明度下去除Cu涂层的激光参数,并识别激光参数之间的关系,设计的天线布局和产生的天线几何形状。结果表明,在Cu的消融阈值范围内应与多个照射循环结合的低流量来实现图案化过程,以便在不影响玻璃表面的情况下除去Cu涂层。增加流量或照射循环增加了消融区域,这减少了产生的天线迹线的宽度。在优化的激光参数下,找到了设计的布局跟踪宽度和生成的迹线宽度之间的线性关系。该关系使得具有高精度的天线几何形状,其在设计的频率下操作。

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