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High throughput R2R printing, testing and assembly processing of flexible RGB LED displays

机译:柔性RGB LED显示屏的高通量R2R打印,测试和组装处理

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This paper introduces high throughput processing of hybrid flexible RGB LED displays. Processing consists of conductive tracks printing on PET substrate, verification of printed substrate quality by specific characterization equipment and assembly of individually addressable RGB LEDs on substrate using adhesive bonding process. High throughput in manufacturing of flexible displays is achieved utilizing roll-to-roll processes in all steps of the manufacturing process. Utilization of seamless printing tool doubled printing process throughput compared to traditional printing process requiring two printing tools and steps. Implemented roll-to-roll automated electrical test equipment enabled high throughput testing and verification of printed substrate web functionality. Testing was a very important step to verify that printed wiring on the web fulfilled quality requirements for the assembly process. Required SMD components electrically bonded on substrate with R2R assembly machine by utilizing Isotropic Conductive Adhesive (ICA). In addition, Non-Conductive Adhesive (NCA) utilized to provide mechanical support of component, when flexible system bended to smaller than 20 mm radius. Dispensing process noticed to be the most time consuming process in flexible LED display manufacturing, when numerous adhesive dots applied on the substrate. In order to increase throughput in manufacturing, decrease of time used in dispensing process needed. Throughput increase by a factor of ten was possible to achieve by utilizing high speed dispensing process. Increase of more dispenser units in the dispensing process furthermore increase achievable throughput in the manufacturing process. Two meter long flexible display system demonstrator was designed, manufactured and tested based on processed flexible display element.
机译:本文介绍了混合柔性RGB LED显示器的高吞吐量处理。加工包括在PET基板上印刷导电迹线,通过特定的表征设备对印刷基板的质量进行验证,以及使用粘合工艺将可单独寻址的RGB LED组装在基板上。通过在制造过程的所有步骤中使用卷对卷过程来实现柔性显示器制造中的高吞吐量。与需要两个打印工具和两个步骤的传统打印过程相比,无缝打印工具的使用使打印过程的吞吐量增加了一倍。实施的卷对卷自动化电气测试设备可实现高通量测试和印刷基板卷筒纸功能的验证。测试是验证网络上印刷线路是否符合组装过程质量要求的非常重要的一步。通过使用各向同性导电胶(ICA),使用R2R组装机将所需的SMD组件电连接到基板上。另外,当柔性系统弯曲到小于20 mm的半径时,非导电粘合剂(NCA)用于提供组件的机械支撑。在柔性LED显示器制造中,当在基板上施加大量粘合点时,分配过程是最耗时的过程。为了增加制造中的产量,需要减少分配过程中所用的时间。通过使用高速点胶工艺,可以将吞吐量提高十倍。在分配过程中增加更多的分配器单元进一步增加了在制造过程中可达到的产量。基于经过处理的柔性显示元件,设计,制造和测试了两米长的柔性显示系统演示器。

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