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Vision system-based inspection and alignment of laminated polymer films for 3D-Integration of microsystems

机译:基于视觉系统的基于系统的检查和对准微系统3D整合的层压聚合物膜

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The SMARTLAM project proposes a new paradigm of modular, flexible, scalable 3D-Integration (3D-I) scenarios for 3D manufacturing of microsystems out of laminated polymer films. During the integration of discrete parts and laminated polymer sheets, a fast and precise vision system is needed to inspect the top layer of functional elements and align laminated films. A pattern matching vision approach is implemented in this project to assure production quality and detect faults between production processes and/or at the end. The system’s key hardware components are a high-resolution line camera system and an X/Y/Z-axis system for positioning setup. The software architecture of the inspection module builds on a plugin like structure, based on software design pattern criterion, in order to facilitate fast adaptation of algorithms for new updates of manufacturing requirements. The results demonstrate the high ability of the developed vision system to accurately detect features and defects of the laminated polymer films for layers alignments and assurance of in-process and final quality.
机译:Smartlam项目提出了一种新的模块化,灵活,可扩展的3D集成(3D-I)场景的范式,用于3D制造层压聚合物膜的微系统。在分成离散部件和层压聚合物片的整合过程中,需要快速且精确的视觉系统来检查功能元件的顶层并对准层压膜。在该项目中实施了一种模式匹配视觉方法,以确保生产质量,并检测生产过程和/或结尾之间的故障。系统的关键硬件组件是高分辨率线路摄像机系统和用于定位设置的X / Y / Z轴系统。基于软件设计模式标准,检查模块的软件架构构建了类似的插件结构,以便于快速调整算法以了解新的制造要求的新更新。结果表明,发达的视觉系统的高能力,以准确地检测层压聚合物膜的特征和缺陷,用于层叠的层对准和保证的过程和最终质量。

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