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Efficiency-Optimized Current-Source Resonant Converter for USB-C Power Delivery

机译:用于USB-C电源的效率优化电流源谐振转换器

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This paper presents a resonant dc-dc converter capable of providing load-independent output current without the need for active current control. This converter comprises an LC3L resonant tank, with inductance and capacitance values selected based on a new design methodology that achieves two objectives: 1) the converter’s output current is independent of its output voltage, and 2) the resonant tank losses are minimized. The design methodology is based on minimizing inductive energy storage to improve the power conversion efficiency. This design methodology makes the converter suitable for applications that require constant current over a wide range of output voltages, such as USB-C power delivery (PD) based battery charging. An efficiency-optimized current-source LC3L converter prototype operating from 20-V input and delivering 6 A current with USB-C PD output voltages in the range from 5 V to 15 V is designed, built and tested. The prototype achieves a peak efficiency of 92%, maintains >87% efficiency over the entire output voltage range, and is also shown to have >10% lower losses compared to a conventionally designed prototype. A loss breakdown demonstrates how reduced inductive energy storage results in lower system losses.
机译:本文介绍了一种能够提供无关的输出电流的谐振DC-DC转换器,而无需有效电流控制。该转换器包括LC 3 l谐振罐,采用电感和电容值选择基于实现两个目标的新设计方法:1)转换器的输出电流与其输出电压无关,2)谐振槽损耗最小化。设计方法是基于最小化电感储能来提高电力转换效率。这种设计方法使转换器适用于需要恒定电流在宽范围的输出电压上的应用,例如基于USB-C电源输送(PD)的电池充电。效率优化的电流源LC 3 L从20-V输入操作的L转换器原型,使用USB-C PD输出电压的电流为5 V至15 V,设计,构建和测试。原型实现了92%的峰值效率,在整个输出电压范围内保持> 87%的效率,并且与传统设计的原型相比,损耗也显示出> 10%。损失击穿表明,感应储能量降低导致较低的系统损失。

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