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Study on real-time correction method of die declination angles in LED sorting system

机译:LED分拣系统中模具偏角的实时校正方法研究

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All dies are required to keep consistent angles in LED chip sorting. Usually, rectification orient real-time vision is used for this but it may decrease production efficiency greatly, because one correction may need several adjustments. Considering that all dies to be sorted are adhesive to wafer tape, each is rotated, locations of all other dies change. It is a problem for following positioning and sorting. To solve this problem, an on-line angle correction method basing on translation compensation is put forward. In this way, angle deviations of dies are transformed as translations of recycling bins. Each die declination can be corrected without any rotations. It does little impact on sorting efficiency because the translation of recycling bins acts concurrently with the die ejection and transporting, etc. Techniques on figuring out displacement compensations are discussed in detail. In addition, SPN model of declination angle correction is built to analyze its influence to production rate. With theoretical analysis and experimental results, it is revealed that sort efficiency may decrease by only 3% for angle correction. Such effect is perfectly acceptable.
机译:在LED芯片分类中,所有管芯都必须保持一致的角度。通常,为此使用矫正定向实时视觉,但是由于一次矫正可能需要进行多次调整,因此它可能会大大降低生产效率。考虑到所有待分类的管芯都粘附在晶圆胶带上,每个管芯都会旋转,其他所有管芯的位置也会发生变化。跟随定位和排序是一个问题。针对这一问题,提出了一种基于平移补偿的在线角度校正方法。以此方式,模具的角度偏差被转换为回收箱的平移。无需旋转即可校正每个模具的偏角。它对分选效率的影响很小,因为回收箱的平移与模具的顶出和运输等同时进行。详细讨论了计算位移补偿的技术。此外,建立了偏角校正的SPN模型,以分析其对生产率的影响。理论分析和实验结果表明,角度校正的分类效率可能仅降低3%。这样的效果是完全可以接受的。

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