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A low-power Content-Addressable Memory based on clustered-sparse networks

机译:基于集群稀疏网络的低功耗内容可寻址存储器

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A low-power Content-Addressable Memory (CAM) is introduced employing a new mechanism for associativity between the input tags and the corresponding address of the output data. The proposed architecture is based on a recently developed clustered-sparse network using binary-weighted connections that on-average will eliminate most of the parallel comparisons performed during a search. Therefore, the dynamic energy consumption of the proposed design is significantly lower compared to that of a conventional low-power CAM design. Given an input tag, the proposed architecture computes a few possibilities for the location of the matched tag and performs the comparisons on them to locate a single valid match. A 0.13μm CMOS technology was used for simulation purposes. The energy consumption and the search delay of the proposed design are 9.5%, and 30.4% of that of the conventional NAND architecture respectively with a 3.4% higher number of transistors.
机译:引入了一种低功耗内容可寻址存储器(CAM),它采用了一种新的机制来实现输入标签与输出数据的相应地址之间的关联。所提出的体系结构基于最近开发的使用二进制加权连接的集群稀疏网络,该网络平均将消除搜索过程中执行的大多数并行比较。因此,与常规的低功耗CAM设计相比,本设计的动态能耗大大降低。在给定输入标签的情况下,提出的体系结构为匹配标签的位置计算了几种可能性,并对它们进行比较以找到单个有效匹配项。 0.13μmCMOS技术用于仿真目的。提出的设计的能耗和搜索延迟分别是传统NAND架构的9.5%和30.4%,其中晶体管数量增加了3.4%。

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