新型高效节能紧凑5T4M三元内容可寻址存储器

M. H. Maruf, Syed Iftekhar Ali
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摘要

基于忆阻器的三元内容可寻址存储器(MTCAM)是一种特殊的存储器形式,其中忆阻器控制主要操作而不是晶体管。此外,忆阻器是一种特殊的无源元件,有两个终端,当电源下降时,它可以将数据作为存储器保存。本文提出了一种新型的5T4M MTCAM,具有体积小、能耗低、数据恢复能力强等特点。本设计采用BSIM 32nm CMOS PTM作为晶体管模型,采用改进的Biolek模型作为忆阻器模型进行仿真。16x16阵列的MTCAM已用于预充低匹配线(ML)传感。该算法的搜索时间为633ps,搜索能量为1.65fJ/位/次,低于现有的算法。此外,这种设计虽然使用相同的节点执行写入和搜索操作,但可以在连续的搜索周期中恢复数据。
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Novel Memristor-based Energy Efficient Compact 5T4M Ternary Content Addressable Memory
Memristor-based ternary content addressable memory (MTCAM) is a form of special memory where the memristor controls the primary operation instead of transistors. In addition, a memristor is a kind of particular passive element with two terminals that keeps the data as memory when the power goes down. This paper proposes a novel 5T4M MTCAM that is compact in size, efficient in energy consumption, and capable of restoring data. The proposed design uses BSIM 32nm CMOS PTM as a transistor model and a modified Biolek model as a memristor model for simulation. 16x16 array of MTCAM has been used with pre-charge low matchline (ML) sensing. This novel MTCAM offers 633ps of search time and 1.65fJ/digit/search of search energy which are lower than the other existing designs. In addition, this design can restore the data in successive search cycles though it performs its write and search operations using the same nodes.
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