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An Isolated Multilevel Quasi-Resonant Multiphase Single-Stage Topology for 380-V VRM Applications

机译:380 V VRM应用的孤立的多级准谐振多相单级拓扑

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In order to increase the efficiency of modern microprocessor power supplies used in data centers, 380-V dc power distribution systems have been attracting attention due to their high efficiency and high reliability. This paper presents an innovative single-stage approach for 380-V voltage regulator modules (VRMs) based on a quasi-resonant multilevel topology constant ON-time operation. The proposed topology inherently integrates the multiphase approach, providing fast phase shedding and flat high-efficiency curves even at light-load conditions. This is a unique advantage, which is not possible to establish in the two-stage approach, which is very important in server architectures, and where high efficiency is required even at light-load conditions. This paper analyzes the circuit topology and proposes a control architecture for fast transient response, including current-sharing capabilities. The digital controller has been implemented in 0.16-mu m lithography together with a digital pulsewidth modulation with a 195-ps resolution and a 40-MS/s 7-bit analog-to-digital converter. Experimental results show an efficiency of 93% for a 120-A 380-1.8-V VRM power supply.
机译:为了提高数据中心使用的现代微处理电源的效率,由于其高效率和高可靠性,380 V直流配电系统一直在引起关注。本文介绍了基于准谐振多级拓扑恒定的旋转时间操作的380 V稳压器模块(VRMS)的创新单级方法。所提出的拓扑本身完全集成了多相方法,即使在光负荷条件下也能提供快速相位脱落和平坦的高效曲线。这是一个独特的优势,这是不可能建立在两步方法中,这在服务器架构中非常重要,并且即使在光负荷条件下也需要高效率。本文分析了电路拓扑,提出了一种用于快速瞬态响应的控制架构,包括电流共享功能。数字控制器已在0.16-mu m光刻中实现,与具有195-ps分辨率的数字脉冲宽度调制和40-ms / s 7位模数转换器。实验结果表明,120-A 380-1.8V VRM电源的效率为93%。

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