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Design and Analysis of a Low Power Multi-Threshold CMOS Based ARM926 System

机译:低功率多阈值CMOS基于ARM926系统的设计与分析

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Low Power techniques such as multi-voltage islands, voltage scaling and power gating are gaining acceptance to address the need for managing energy and power during run time as well as during standby modes. These design techniques increase the complexity of implementing and analyzing the power network to meet the required average IR drop requirements, transient turn on in-rush (out-rush) currents as well as dynamic voltage drops during runtime. We have designed an ARM926 based SoC that implements the above techniques including a multi-threshold CMOS (MTCMOS) based processor core. To analyze the effects of associated with power gating we have built in, as part of the logic design, a system that uses the scan chain based network to observe the effects of transient currents on the virtual power network on state retention. The system can also be used to check the integrity of the retention latches when the design has been powered off using the MTCMOS network. This paper describes the design techniques and presents the analysis of the energy savings for different modes.
机译:低功率技术,如多电压岛,电压缩放和功率门控是获得接受,以解决在运行时间期间管理能量和功率以及在待机模式期间的需求。这些设计技术提高了实现和分析电源网络以满足所需平均IR降低要求的复杂性,瞬态导通在运行时期间的动态电压下降。我们已经设计了一种基于ARM926的SOC,其实现上述技术,包括基于多阈值CMOS(MTCMOS)的处理器核心。为了分析我们内置的功率门控的效果,作为逻辑设计的一部分,一种使用基于扫描链基的网络的系统,观察瞬态电流对态度保留的虚拟电网的影响。当使用MTCMOS网络关闭设计时,系统还可用于检查保留锁存器的完整性。本文介绍了设计技术,并提出了对不同模式的节能分析。

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