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Class E Resonant Converter Design for LED Drivers

机译:LED驱动器级谐振转换器设计

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The LED (Light Emitting Diode) lighting technology has been becoming widespread rapidly due to having advantages such as extremely long lifetime, compact structure and very low energy consumption. In the literature, various LED driver topologies are proposed for controlling the LED's current and voltage. However, most of them require a large capacitor and inductor values due to low switching frequency operation. On the other hand, high capacitance with low volume can be achieved by using the electrolytic type capacitors which limits the lifetime and reliability of LED driver. By the help of high switching frequency, converter size can be reduced significantly. In addition, the capacitor size decreases and therefore electrolytic capacitors can be eliminated. In this study, isolated Class E resonant topology operating at 1 MHz is analysed and designed for 48 V/60 W offline LED driver. The design methodology is presented and verified by PSIM simulation.
机译:LED(发光二极管)照明技术由于具有极长的寿命,结构紧凑,能量消耗而具有极高的优点而变得普遍迅速。在文献中,提出了各种LED驱动器拓扑,用于控制LED的电流和电压。然而,由于低开关频率操作,它们中的大多数需要大电容器和电感值。另一方面,通过使用电解型电容器可以通过限制LED驱动器的寿命和可靠性来实现具有低容积的高电容。通过高开关频率的帮助,可以显着降低转换器尺寸。另外,电容器尺寸减小,因此可以消除电解电容器。在本研究中,分析了在1 MHz的孤立的E谐振拓扑,并设计为48 V / 60W离线LED驱动器。通过PSIM仿真提出和验证了设计方法。

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