Switching voltage regulator modeling and its applications in power delivery design

Electromagnetic Compatibility(2014)

引用 11|浏览1
暂无评分
摘要
Switching voltage regulator (VR) modeling has numerous advantages over the conventional state average VR modeling methodology, in terms of accuracy, functionality, tuning capability, and extended applications on EMI. In previous work, switching VR modeling based on Pspice was discussed in the work of Xu and Zhong (2013). However, it is fairly accurate with simulation time limited by circuit complexity and often results in convergence issues. Besides, due to the SPICE nature, a separate average model has to be derived in order to simulate its AC performance. In this paper, we introduce a novel switching VR modeling methodology in Simplis environment, together with Intel latest server platform collaterals. In addition to excellent AC/Transient correlations, the Simplis modeling demonstrates the capability of simulating VR controller specific functions, such as dynamic voltage identification (DVID), Advanced Transient Algorithm (ATA), auto phase shedding, etc. The results in combination reveal an exciting potential that system designers now can co-design VR and board level power delivery to achieve best overall performance and cost solutions.
更多
查看译文
关键词
circuit simulation,switching convertors,transient analysis,voltage regulators,AC-transient correlations,EMI,Simplis environment,Simplis modeling,advanced transient algorithm,autophase shedding,circuit complexity,dynamic voltage identification,power delivery design,switching voltage regulator,AC Bode plot,VRTT,auto phase shedding,dynamic voltage identification,impedance,switching voltage regulator,transient analysis
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要