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Integration of multimode waveguides and micromirror couplers in printed circuit boards using laser ablation

机译:使用激光烧蚀将多模波导和微镜耦合器集成到印刷电路板中

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Integration of optical interconnections on a Printed Circuit Board (PCB) is very challenging, as it should remain compatible with existing PCB manufacturing technology based on laminated FR4-substrates and making use of solder-reflow and well-known placement and assembly techniques. In this paper we will describe different technologies being used for integration of such optical interconnections in PCB's. As we will demonstrate, the use of laser ablation, already used in PCB manufacturing for microvia's, is a suitable technique for the fabrication of multimode waveguides and micromirrors to provide optical coupling. Laser ablation is a very flexible technology that is particularly well suited for structuring of polymers because of their excellent UV-absorption properties and highly non-thermal ablation behavior. One of the most critical problems on the integration of optical interconnections in PCB's is coupling the light in and out of the optical plane. Because in our set-up the excimer laser beam can be tilted, the 45° micromirrors can be easily fabricated using laser ablation. The focus is on ablation of waveguides using a frequency tripled Nd-YAG laser and on ablation of 45° facets using a KrF excimer laser. It is shown that these structures can be defined in one single processing step, resulting in a very accurate alignment.
机译:将光互连集成到印刷电路板(PCB)上非常具有挑战性,因为它应与基于层压FR4基板的现有PCB制造技术保持兼容,并利用焊料回流和众所周知的放置和组装技术。在本文中,我们将描述用于在PCB中集成这种光学互连的不同技术。正如我们将演示的那样,已经在PCB的微孔制造中使用的激光烧蚀技术是一种适合用于制造多模波导和微镜以提供光耦合的技术。激光烧蚀是一种非常灵活的技术,由于其出色的紫外线吸收特性和高度非热的烧蚀性能,因此特别适合于聚合物的结构化。 PCB中的光学互连集成中最关键的问题之一是将光耦合进出光学平面。因为在我们的设置中,准分子激光束可以倾斜,所以可以使用激光烧蚀轻松制造45°微镜。重点是使用三倍频Nd-YAG激光烧蚀波导,以及使用KrF准分子激光烧蚀45°小平面。结果表明,可以在一个处理步骤中定义这些结构,从而实现非常精确的对齐。

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