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A More Accurate Power MOSFET Current Mirror Sensing Scheme in Synchronous Buck Converters

机译:同步降压转换器中更精确的功率MOSFET电流镜传感方案

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This paper presents a current-mirror sensing scheme for high-current trench MOSFETs in synchronous buck converters and implements in a three-die PQFN package capable of delivering 70-A current per phase. Current signal accuracy is critical in high-current multiphase converters that power CPUs, GPUs, DDR memories, and FPGAs in high-performance computers and artificial intelligence systems, since the current information is used not only in optimization of computer system performance and adaptive voltage positioning but also for current sharing between multiple phases and converter over-current protection. Inductor DCR and MOSFET RDS(on) current sensing methods have been used in synchronous buck converters for more than a decade, but the current sensing accuracy is limited to +/-10% and +/-5% respectively and becomes even worse when application conditions vary in wider ranges. Higher current reporting accuracy of the MOSFET current mirror sensing is experimentally verified using multiple synchronous buck converter boards, which are built to measure current sensing error of each power stage and to determine distribution of system current reporting tolerance. Smaller than +/-3%, 3-sigma current error is achieved over wide application ranges of ambient temperature and MOSFET gate drive voltage.
机译:本文介绍了同步降压转换器中的高电流沟槽MOSFET的电流镜传感方案,并实现了一种能够提供每相70级电流的三模PQFN封装。电流信号精度在高性能计算机和人工智能系统中的功率CPU,GPU,DDR存储器和FPGA中的高电流多相转换器中是至关重要的,因为目前的信息不仅用于优化计算机系统性能和自适应电压定位而且还用于多阶段与转换器过电流保护之间的电流共享。电感器DCR和MO​​SFET RDS(ON)电流检测方法已在同步降压转换器中使用超过十年,但电流检测精度分别限制为+/- 10%和+/- 5%,并且在应用时变得更糟条件在更广泛的范围内变化。使用多个同步降压转换器板实验验证MOSFET电流镜传感的较高电流报告精度,该电压转换板是为测量每个功率级的电流检测误差,并确定系统当前报告公差的分布。在环境温度和MOSFET栅极驱动电压的宽应用范围内实现3-Sigma电流误差小于+/- 3%。

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