首页> 外文会议>Optomechatronic Sensors and Instrumentation III; Proceedings of SPIE-The International Society for Optical Engineering; vol.6716 >Accurate and robust optical 3D position control in microassembly using fluorescent fiducial marks
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Accurate and robust optical 3D position control in microassembly using fluorescent fiducial marks

机译:使用荧光基准标记在微型装配中进行精确且强大的光学3D位置控制

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摘要

The main aim of this work is to allow the automated but nevertheless flexible sensor guided micro assembly with a new 3D vision sensor. The practical application of the sensor guided assembly of micro systems is realised with a special micro assembly system, which contains a parallel robot, an innovative 3D vision sensor, micro grippers and workpiece fixtures. The 3D vision sensor, which is arranged directly above the assembly place and moved synchronized to the micro gripper, makes the uninterrupted observation of the workpiece and the determination of its position possible, in this way allowing the sensor guided assembly of micro systems and a detailed analysis of the principles in the micro assembly process. The basic principle of this photogrammetric measurement concept is given through the fiducial marks. The circular fiducial marks will be realised within the photolithographic production of the components. Using these fiducial marks it is possible to measure the relative position of the components during assembly without reference to their exterior shape.
机译:这项工作的主要目的是允许带有新的3D视觉传感器的自动化但灵活的传感器引导的微型装配。微型系统的传感器导向组件的实际应用是通过一个特殊的微型组件系统实现的,该系统包括一个并行机器人,一个创新的3D视觉传感器,微型夹具和工件夹具。 3D视觉传感器直接安装在装配位置的上方,并与微型夹具同步移动,从而可以无间断地观察工件并确定其位置,从而可以实现传感器引导的微型系统的装配和详细的操作。微观组装过程中的原理分析。摄影测量概念的基本原理通过基准标记给出。圆形基准标记将在组件的光刻生产中实现。使用这些基准标记可以在组装过程中测量组件的相对位置,而无需参考组件的外部形状。

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