LPC1100微控制器的低功耗特性 关键词:Cortex—M0;LPC1100;低功耗;功耗管理 [gap=493]Key words:Cortex—MO;LPC1100;low power;power management
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动态技术本质上是一个系统级的设计方法,其最关键之处在于功耗管理(Power Management,PM)单元:PM单元监控整个系统的工作状态,当发现系统处于欠负载或者无负载状态时,就发送命令来控制目标设备...
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Low power design technology in microprocessor is researched and a design methodology that supports dynamic and static power management is proposed.
本文研究了RISC微处理器的低功耗设计技术并给出了一种支持动态和静态功耗管理的功耗管理单元的设计方法。
参考来源 - 32位RISC微处理器设计研究As the main innovative work of this paper, a new technique was brought forward as hierarchy power management, which based on the hierarchy character of SOC chip design.
作为主要的创新性工作,本文针对SOC芯片设计层次化的特点,提出了一种面向芯核设计的集成电路层次化功耗管理方法,即分层次对各模块的功耗进行管理和优化。
参考来源 - SOC芯片低功耗设计·2,447,543篇论文数据,部分数据来源于NoteExpress
从应用范围上讨论了器件级和系统级的最小功耗管理;
The minimum power consumption management was discussed from the device and system in operation scope, firstly.
功耗管理是可穿戴计算系统低功耗设计的一个重要手段。
Power management is one of the most important key for lower power design of wearable computing system.
其中动态功耗管理便是一种重要的减少系统范围的能量的方式。
The DPM (dynamic power management) is an important solution of reducing energy consumption in the system level.
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