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Monolithic metal-coated plastic components for mm-wave applications

机译:用于毫米波应用的整体式金属涂层塑料组件

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A stereolithography-based manufacturing process for monolithic high aspect ratio components for mm-wave and sub-mm-wave applications is demonstrated. A 25 mm long straight waveguide and a diagonal horn antenna, both for the WR-3.4 band (220-330 GHz), are manufactured and characterized. The waveguide is found to exhibit transmission losses close to the theoretical minimum for Cu, and the performance of the diagonal antenna in terms of cross-polarization and directivity matches closely a metallic split-block reference antenna. These results confirm the high surface quality and mechanical accuracy of the employed 3D printing and plating techniques and thus validate the process for rapid manufacturing of monolithic components up to 330 GHz.
机译:演示了用于毫米波和亚毫米波应用的整体式高纵横比组件的基于立体光刻的制造工艺。制造并表征了用于WR-3.4频段(220-330 GHz)的25毫米长的直波导和对角喇叭天线。发现该波导表现出接近于Cu的理论最小值的传输损耗,并且在交叉极化和方向性方面,对角天线的性能与金属分割块参考天线非常匹配。这些结果证实了所采用的3D打印和电镀技术的高表面质量和机械精度,从而验证了可快速制造高达330 GHz的整体组件的工艺。

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