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Partial coding algorithm for area and energy efficient crosstalk avoidance codes implementation

机译:用于区域和节能的串扰避免码实现的部分编码算法

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Modern interconnect performance is greatly affected by crosstalk noise because of continuous decrease in wire separation and increase in its aspect ratio with technology scaling. Such noise is highly dependent on data transition patterns, coding techniques have been proposed to alleviate crosstalk delay by controlling these patterns. The complexity of available crosstalk avoidance codes, along with their associated overheads, increase rapidly with bus width. The lack of energy and area-efficient method to implement such codes has so far prevented their use in practical designs. This study presents a generic framework, which allows efficient implementations of crosstalk avoidance codes; the essence of the proposed approach is based on the partial coding concept. Quantitative analysis performed in 32 nm technology shows that substantial savings in area and energy costs can be obtained using the proposed technique compared with both existing coding solutions and conventional methods as shielding and repeater insertion.
机译:由于互连线间距的不断减小以及随着技术的发展其长宽比的不断提高,现代互连性能受到串扰噪声的极大影响。这种噪声高度依赖于数据转换模式,已经提出了通过控制这些模式来减轻串扰延迟的编码技术。可用的串扰避免代码的复杂性及其相关的开销随着总线宽度的增加而迅速增加。迄今为止,缺乏能量和面积有效的方法来实现这样的代码已经阻止了它们在实际设计中的使用。这项研究提出了一个通用框架,可以有效地实现串扰避免代码。所提出的方法的本质是基于部分编码的概念。在32 nm技术中进行的定量分析表明,与现有的编码解决方案和传统方法(如屏蔽和中继器插入)相比,使用本发明的技术可以节省大量的面积和能源成本。

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