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TIR Systems Limited, 7700 Riverfront Gate, Burnaby, British Columbia, Canada V5J 5M4

机译:TIR Systems Limited,7700 Riverfront Gate,Burnaby,不列颠哥伦比亚省,加拿大V5J 5M4

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OLED technology may be excellently suitable for lighting applications by combining high efficiency, cost effective manufacturing and the use of low cost materials. Certain issues remain to be solved so far, including OLED brightness, color, lifetime, large area uniformity & encapsulation. Another aspect, that might be capable in addressing some of the mentioned issues, is OLED lighting electrical driving. We report on the design of a driving platform for OLED lighting test panels or substrates. It is intended for being a test environment for lighting substrates as well as demonstration/presentation environment. It is based on a 128-channel passive-matrix driver/controller ASIC OC2. Its key component is an MSP430-compatible 16-bit micro-controller core including embedded Flash memory (program), EEPROM (parameter), and RAM (data memory). A significant feature of the device is an electronic approach for improving the lifetime/uniformity behavior of connected OLED. The embedded micro-controller is the key to the high versatility of OC2, since by firmware modification it can be adapted to various applications and conditions. Here its application for an OLED lighting driving platform is presented. Major features of this platform are PC-control mode (via USB interface), stand-alone mode (no external control necessary, just power supply), on-board OLED panel parameter storage, flat geometry of OLED lighting panel carrier (board), AC and DC driving regimes, adjustable reverse voltage, dedicated user SW (PC/Windows-based), sub-tile patterning and single subtile control, combination of multiple channels for increasing driving current. This publication contains results of the project "High Brightness OLEDs for ICT & Next Generation Lighting Applications" (OLLA), funded by the European Commission.
机译:OLED技术可以通过结合高效率,成本效益的制造和低成本材料来极好地适用于照明应用。到目前为止,某些问题仍有待解决,包括OLED亮度,颜色,寿命,大面积均匀性和封装。另一方面,可能能够解决一些提到的问题,是OLED照明电驱动。我们报告了OLED照明试验板或基板的驾驶平台的设计。它旨在作为照明基板的测试环境以及演示/演示环境。它基于128频道的无源矩阵驱动器/控制器ASIC OC2。其关键组件是MSP430兼容的16位微控制器核心,包括嵌入式闪存(程序),EEPROM(参数)和RAM(数据存储器)。该装置的一个重要特征是用于改善连接OLED的寿命/均匀性行为的电子方法。嵌入式微控制器是OC2高通用性的关键,因为通过固件修改,它可以适应各种应用和条件。这里提出了其对OLED照明驾驶平台的应用。该平台的主要功能是PC控制模式(通过USB接口),独立模式(无需外部控制,只需电源),板载OLED面板参数存储,OLED照明面板架(板)的平面几何形状,交流和直流驾驶制度,可调逆电压,专用用户SW(基于PC / Windows),子瓦图案化和单子设备控制,组合多个通道,用于增加驱动电流。本出版物包含项目“ICT和下一代照明应用”(OLLA)的项目结果,由欧盟委员会资助。

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