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An electrolytic-free offline LED driver with a ceramic-capacitor-based compact SSC energy buffer

机译:无电解离线LED驱动器,具有基于陶瓷电容的紧凑型SSC能量缓冲器

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This paper presents the design and implementation of a compact ceramic-capacitor-based stacked switched capacitor (SSC) energy buffer for a single-stage offline 8-W 21-V output electrolytic-free LED driver. The elimination of the electrolytic capacitors can lead to a longer lifetime for the LED driver. Compared to earlier works, this design of the SSC energy buffer has a simpler ground-referenced gate drive circuit and eliminates the need for a separate precharge circuit. The prototype LED driver presented here uses a ceramic-capacitor-based SSC energy buffer with optimized capacitor sizing that provides substantially higher effective energy density than electrolytic capacitors. The improvement in energy density is achieved in part by a design approach which optimizes the ratio of the capacitance values of the capacitors in the SSC energy buffer. The prototyped SSC energy buffer achieves a round-trip efficiency of above 98%. The total passive volume of the ceramic capacitors in the prototype is less than half the volume of the electrolytic capacitors it replaces.
机译:本文介绍了一种基于紧凑型陶瓷 - 电容的堆叠开关电容器(SSC)能量缓冲器的设计和实现,用于单级离线8-W 21-V输出电解电解LED驱动器。消除电解电容器可以导致LED驱动器的寿命更长。与早期的工作相比,SSC能量缓冲器的这种设计具有更简单的地面参考栅极驱动电路,并消除了对单独的预充电电路的需求。这里提出的原型LED驱动器使用了基于陶瓷电容的SSC能量缓冲器,具有优化的电容器尺寸,该电容器尺寸提供比电解电容器的有效能量密度大得多。能量密度的改善是部分地通过设计方法实现,该设计方法优化SSC能量缓冲器中电容器的电容值的比率。原型SSC能量缓冲液实现往返效率高于98%。原型中陶瓷电容器的总无源体积小于其取代的电解电容器的体积的一半。

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