首页> 外文会议>2011 IEEE Asian Solid State Circuits Conference >On-the-fly dynamic voltage scaling (DVS) in 65nm energy-efficient power management with frequency-based control (FBC) for SoC system
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On-the-fly dynamic voltage scaling (DVS) in 65nm energy-efficient power management with frequency-based control (FBC) for SoC system

机译:SoC系统中基于频率控制(FBC)的65nm节能电源管理中的动态动态电压缩放(DVS)

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A 65nm energy-efficient power management (PM) with frequency-based control (FBC) is proposed for achieving dynamic voltage scaling (DVS) on-the-fly in SoC system. Both DVS and dynamic frequency scaling (DFS) operation are the main specifications for system processors. The controlled loop of the proposed single-inductor dual-output (SIDO) power module is merged with the frequency-controlled phase-lock-loop (PLL) aims to simultaneously achieve both DVS and DFS operations, and thereby is not affected by process, supply voltage, and temperature (PVT) variation. In spite of using complex power processor control scheme, the proposed DVS on-the-fly power module can directly receive the demand from system processor. Experimental results show that the SIDO power module can realize a peak efficiency of 90 %, and the system processor power can be reduced by 33 % with the on-the-fly operation under the different temperature conditions.
机译:提出了一种基于频率控制(FBC)的65nm节能电源管理(PM),用于在SoC系统中即时实现动态电压缩放(DVS)。 DVS和动态频率缩放(DFS)操作都是系统处理器的主要规格。拟议中的单电感双输出(SIDO)电源模块的受控环路与频率控制锁相环(PLL)合并在一起,旨在同时实现DVS和DFS操作,因此不受工艺的影响,电源电压和温度(PVT)变化。尽管使用了复杂的电源处理器控制方案,但所提出的DVS动态电源模块仍可以直接接收系统处理器的需求。实验结果表明,SIDO电源模块在不同温度条件下的实时运行中,可以实现90%的峰值效率,并且可以将系统处理器功耗降低33%。

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