首页> 外文会议>IEEE International Solid- State Circuits Conference >18.6 A 92.8-Peak-Efficiency 60A 48V-to-1V 3-Level Half-Bridge DC-DC Converter with Balanced Voltage on a Flying Capacitor
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18.6 A 92.8-Peak-Efficiency 60A 48V-to-1V 3-Level Half-Bridge DC-DC Converter with Balanced Voltage on a Flying Capacitor

机译:18.6一个峰值效率为92.8%的60A 48V至1V三电平半桥DC-DC转换器,在飞电容上具有平衡电压

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Demand for DC-DC voltage conversion from a 48V input has been on the rise due to proliferation of server and automotive applications with a 48V intermediate bus and 48V batteries, respectively. Compared to a 12V, the 48V architecture reduces the power loss thanks to the low distribution losses in the power delivery network. However, improving efficiency is a major challenge in the design of a 48V point-of-load (PoL) DC-DC converter due to the high step-down ratio and high output current. To improve conversion efficiency, several 48V PoL converters implemented with high-quality GaN transistors have been proposed [1], [3]. However, the non-isolated hybrid converter in [1] shows a moderate peak efficiency of 90.9% and requires a large number of switches and passive elements. The isolated converter in [2] shows high efficiency and maximum output current of 80A, requiring a high conversion-ratio planar transformer of 40:1, many switches, and a complicated controller, but offers a limited conversion range. In addition, the GaN transistor suffers from reliability issues [4]. Although an active-clamp forward converter in [5] is implemented with MOSFETs, the peak efficiency is limited to 89.5%. A half-bridge (HB) DC-DC converter with a current-doubler rectifier in [3] is a well-known architecture for high step-down ratio and high output current applications. However, the switching loss in the primary-side HB topology limits the overall efficiency. This paper presents a high-efficiency 3-level HB DC-DC converter with a current-doubler rectifier for power conversion from a 48-to-60V input to an output ranging from 0.5V to 1V.
机译:由于分别使用48V中间总线和48V电池的服务器和汽车应用的激增,对48V输入的DC-DC电压转换的需求一直在增长。与12V电压相比,48V架构由于功率传输网络中的配电损耗低而减少了功率损耗。但是,由于高降压比和高输出电流,提高效率是48V负载点(PoL)DC-DC转换器设计中的主要挑战。为了提高转换效率,已经提出了几种采用高质量GaN晶体管实现的48V PoL转换器[1],[3]。但是,[1]中的非隔离式混合转换器显示出90.9%的中等峰值效率,并且需要大量的开关和无源元件。 [2]中的隔离式转换器具有高效率和80A的最大输出电流,需要40:1的高转换比平面变压器,许多开关和复杂的控制器,但转换范围有限。此外,GaN晶体管还存在可靠性问题[4]。尽管[5]中的有源钳位正激转换器是用MOSFET实现的,但峰值效率被限制为89.5%。 [3]中的带有倍流整流器的半桥(HB)DC-DC转换器是一种众所周知的架构,用于高降压比和高输出电流应用。但是,初级侧HB拓扑中的开关损耗限制了整体效率。本文提出了一种具有电流倍增整流器的高效3电平HB DC-DC转换器,用于从48V至60V输入到0.5V至1V的输出功率转换。

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