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87% Overall High Efficiency and 11 μA Ultra-Low Standby Current Derived by Overall Power Management in Laptops With Flexible Voltage Scaling and Dynamic Voltage Scaling Techniques

机译:通过采用灵活的电压调节和动态电压调节技术的笔记本电脑的整体电源管理,可得到87%的总体高效率和11μA超低待机电流

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摘要

The proposed overall power management in laptops can improve overall power conversion efficiency by the flexible voltage scaling (FVS) technique in cooperation with conventional dynamic voltage scaling (DVS) technique. The FVS technique separates the controller into two parts. One is a simple primary side controller and the other is emerged into the power management unit in the laptop for getting direct power control from the microprocessor. 12% light load efficiency and 7% peak efficiency are improved compared to conventional design with the DVS technique only but without the FVS technique. Furthermore, green mode is proposed to effectively reduce chip quiescent current to 11μA and to suppress power loss to 10 mW in ultra-light load, which is much smaller than 500 mW standby power defined by the restriction of Energy Star Standard and 40 mW of state-of-art commercial products.
机译:通过与常规动态电压缩放(DVS)技术配合使用的灵活电压缩放(FVS)技术,笔记本电脑中提出的总体电源管理可以提高总体电源转换效率。 FVS技术将控制器分为两部分。一个是简单的一次侧控制器,另一个是出现在笔记本电脑的电源管理单元中,用于从微处理器获得直接电源控制。与仅使用DVS技术但不使用FVS技术的常规设计相比,光负载效率提高了12%,峰值效率提高了7%。此外,提出了绿色模式,以有效地将芯片静态电流降低至11μA,并将超轻负载下的功率损耗抑制至10mW,该功耗远小于能源之星标准和40mW状态的限制所定义的500mW待机功率。最先进的商业产品。

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