首页> 外文会议>Quality Electronic Design, 2006. ISQED '06 >Power islands: a high-level technique for counteracting leakage in deep sub-micron
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Power islands: a high-level technique for counteracting leakage in deep sub-micron

机译:功率岛:应对深亚微米泄漏的高级技术

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With the migration to deep sub-micron (DSM) process technologies, the static power (leakage) has become the major contributor to the design's overall power consumption. In this work, we show experiments that illustrate the significant increase in the ratio of the leakage to the total power as the DSM process nodes shrink. We also present a high-level design/synthesis method, called power islands that minimize the leakage in the circuit by partitioning it into islands. Each island is a cluster of logic whose power can be controlled independent from the rest of the circuit, and hence can be completely powered down when all the logic contained within it is idling. The partitioning is done in such a way that the components with maximally overlapping lifetimes are placed on the same island. A main benefit of power islands is the elimination of leakage in inactive components during the power down cycles of the islands, and hence a decrease in circuit's power consumption. The effectiveness of the proposed technique is demonstrated through several examples implemented with 4 different feature sizes: 180 nm, 130 nm, 100 nm and 70 nm. These experiments showed improvements in leakage ranging from 41% to 80% at 70 nm due to power islands
机译:随着向深亚微米(DSM)工艺技术的迁移,静态功耗(泄漏)已成为设计总体功耗的主要因素。在这项工作中,我们展示了一些实验,这些实验说明了随着DSM工艺节点的缩小,泄漏与总功率之比的显着增加。我们还提出了一种高级设计/综合方法,称为功率岛,通过将电路划分为多个岛,从而最大程度地减少了电路中的泄漏。每个孤岛都是一个逻辑簇,其功率可以独立于电路的其余部分进行控制,因此,当其中包含的所有逻辑都处于空闲状态时,可以完全断电。进行分区的方式是将具有最大重叠寿命的组件放置在同一岛上。功率岛的主要优点是消除了岛的掉电周期中无效元件的泄漏,从而降低了电路的功耗。通过以4种不同特征尺寸实现的几个示例证明了所提出技术的有效性:180 nm,130 nm,100 nm和70 nm。这些实验表明,由于功率孤岛,在70 nm处泄漏的改善范围从41%到80%

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