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A High-Voltage Low-Power Switched-Capacitor DC-DC Converter Based on GaN and SiC Devices for LED Drivers

机译:基于GaN和LED驱动器的GAN和SIC器件的高压低功耗开关电容器DC-DC转换器

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Previous research on switched-capacitor DC-DC converters has focused on low-voltage and/or high-power ranges, where the efficiencies are dominated by conduction losses. Switched-capacitor DC-DC converters at high-voltage ( 100 V) and low-power ( 10 W) levels with high efficiency and high power density are anticipated to emerge. This paper presents a switched-capacitor converter with an input voltage up to 380 V (compatible with rectified European mains) and a maximum output power of 10 W. The converter is intended for LED drivers. GaN switches and SiC diodes are analytically compared and actively combined to properly address the challenges at high-voltage low-current levels, where switching losses become significant. Further trade-off between conduction losses and switching losses is experimentally optimized with switching frequencies. Three variant designs of the proposed converter are implemented, and the trade-off between efficiencies and power densities is validated with measurement results. A peak efficiency of 98.6 % and a power density of 7.5 W/cm 3 are achieved without heatsink or airflow. The characteristic impedance level of the converter is an order of magnitude higher than previously published ones.
机译:以前关于开关电容器DC-DC转换器的研究专注于低电压和/或高功率范围,其中效率以传导损耗为主。预计高压(& 100 V)和低功耗(&lt 19 w)水平的开关电容器DC-DC转换器预计将出现高效率和高功率密度。本文介绍了开关电容转换器,输入电压高达380 V(与整流欧洲电源兼容),最大输出功率为10W。转换器适用于LED驱动器。在分析和积极组合的GaN交换机和SiC二极管以适当地解决高压低电流水平的挑战,其中开关损耗变得显着。导通损耗和切换损耗之间的进一步折衷是通过开关频率进行实验优化的。实施了三个拟议转换器的变体设计,验证了效率和功率密度之间的权衡验证了测量结果。峰值效率为98.6%,功率密度为7.5W / cm 3,无散热或气流。转换器的特征阻抗水平比先前发布的阶数高。

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