Organic light emitting display and lighting device has its own outstanding advantages, including low power, high performance, and small size. 有机电致发光器件在显示和照明方面有其自身突出的优点,包括,低能耗,高性能,体积小等。
Based on the characters of organic light emitting display ( OLED ), an OLED controlled display circuit is designed utilizing decode module and controlling circuit by FPGA. 根据有机发光二极管(OLED)的特性,利用解码模块和FPGA控制模块,设计OLED视频动态图像驱动控制电路。
OLED ( Organic Light Emitting Display(OLED) ) is one of the most prospective panel display in the future because it has many advantages, such as light quality, thin thickness, high contrast, fast response and actively light emitting. OLED(有机电致发光显示屏)具有质量轻、厚度薄、对比度高、响应速度快和主动发光等优良特性,是未来最有发展前途的平板显示器之一。
For low temperature poly-silicon ( LTPS ) active matrix organic light emitting display ( AM-OLED ), the digital gray scale of sub-field can significantly improves the light uniformity and gray scale accuracy. 研究分场数字灰度方案,以提高低温多晶硅(LTPS)有源驱动有机电致发光显示器(AM-OLED)的亮度均匀性和灰度精确性。