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Sequential variable bilevel driving approach suitable for use in high-color-precision LED display panels

机译:顺序可变双电平驱动方法,适用于高精度彩色LED显示面板

摘要

A bilevel driving approach was proposed in the literature for mitigating the energy wastage associated with driving LEDs at high peak current. The main idea is to introduce two drive parameters, i.e., high/low PWM current levels and duty cycles, that give rise to a 2-D luminosity control capability. The same idea was later generalized to an $n$-level driving approach for maximizing the electrical-to-light conversion efficiency of LEDs. Although previous uses of the $n$-level driving approach have been focusing on improving the luminous efficacy of LEDs, it is shown in this paper that its 2-D luminosity control feature can also lead to a significant improvement in color resolution when applied to driving RGB LEDs, hence making it well suited for applications in large-area LED display panels. In comparison to the first prototype driver proposed by the inventor of the driving approach, a more practical implementation of the complex 2-D driving approach with digital microcontroller is demonstrated. The various technical aspects of the driving approach, including luminous efficacy, color resolution, and color stability over dimming, are discussed in this paper with the aid of experimental results.
机译:文献中提出了一种双级驱动方法,以减轻与在高峰值电流下驱动LED相关的能量浪费。主要思想是引入两个驱动参数,即高/低PWM电流水平和占空比,从而产生2D亮度控制能力。后来,将相同的想法推广到n级驱动方法,以最大化LED的电光转换效率。尽管以前使用$ n $级驱动方法的重点是提高LED的发光效率,但本文显示,其2-D光度控制功能在应用于LED时也可以显着改善色彩分辨率。驱动RGB LED,因此非常适合大面积LED显示面板中的应用。与驱动方法的发明者提出的第一个原型驱动器相比,演示了使用数字微控制器的复杂二维驱动方法的更实际的实现。本文借助实验结果讨论了驱动方法的各个技术方面,包括发光效率,颜色分辨率和变暗时的颜色稳定性。

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