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On Supplying LEDs From Very Low DC Voltages With High-Frequency AC-LED Drivers

机译:使用高频AC-LED驱动器从极低的直流电压提供LED

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This paper studies the driving of white light emitting diodes (LEDs) from very low voltages in the 1.2 to 2 V range. The proposed idea is based on replacing the standard Schottky diode used in conventional converter topologies (i.e., buck, buck-boost, and boost) with an LED while shortcutting the output of the converter. In this configuration, the LED works both as the load and the rectifier diode of the converter, hence switching the LED at high frequencies (> 100 kHz). Moreover, a thorough analytical study is carried out for the two topologies proposed in this paper, emphasizing in particular their static analysis and the obtaining of the boundaries between the different conduction modes. Finally, the idea is experimentally validated bymeans of the boost converter variation (i.e., the DL//Sac-LED driver). The DL//S ac-LED driver was also compared with a dc-dc boost converter, showing a better luminous efficacy while disposing of the Schottky diode and the output capacitor. The analysis was carried out when connected to a Li-ion battery using a simple control and integrated circuit for its development.
机译:本文研究了从1.2V至2V范围内的极低电压驱动白色发光二极管(LED)的方法。提出的想法是基于用LED代替传统转换器拓扑结构(即降压,降压-升压和升压)中使用的标准肖特基二极管,同时缩短了转换器的输出。在这种配置中,LED既充当转换器的负载,又充当整流器二极管,因此以高频(> 100 kHz)切换LED。此外,对本文提出的两种拓扑进行了详尽的分析研究,尤其强调了它们的静态分析以及不同传导模式之间边界的获取。最后,该想法通过升压转换器变化(即DL // Sac-LED驱动器)的手段在实验上得到了验证。还将DL // S ac-LED驱动器与dc-dc升压转换器进行了比较,在布置肖特基二极管和输出电容器的同时显示了更好的发光效率。当使用简单的控制和集成电路将其连接到锂离子电池以进行开发时,便进行了分析。

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