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Decoupled Dynamic Ternary Content Addressable Memories

机译:解耦的动态三进制内容可寻址内存

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The content addressable memory (CAM) is a memory in which data can be accessed on the basis of contents rather than by specifying physical address. In the paper, five novel dynamic ternary CAM cells with decoupled match lines are presented. A ternary CAM cell is capable of storing and matching three values: zero (0), one (1), and don't care (X). The proposed dynamic CAM (DCAM) cells range in the number of transistors from 6 n-type transistors up to 10.5 n- and p-type transistors (one transistor is shared between two cells). The cells are capable of fast match and read operations erihancing the performance of the memory system. Using a 0.25-μm CMOS technology, simulations of the proposed CAM cells were performed to compare their performance. With this technology, the shortest match delay is 89.7 ps for the 7.5 DCAM cell. A complete characterization of the five cells is provided in this paper. These results show that the novel CAM cells outperform existing cells. The compact size and low power dissipation of these ternary CAM cells make them suitable for many applications such as routers, database, and associative cache memories.
机译:内容可寻址存储器(CAM)是一种存储器,其中可以根据内容而不是通过指定物理地址来访问数据。在本文中,提出了五个具有解耦匹配线的新型动态三元CAM单元。三元CAM单元能够存储和匹配三个值:零(0),一(1)和无关位(X)。提议的动态CAM(DCAM)单元的晶体管数量从6个n型晶体管到​​10.5个n型和p型晶体管(两个单元之间共享一个晶体管)。单元具有快速匹配和读取操作的能力,可增强存储系统的性能。使用0.25μmCMOS技术,对建议的CAM单元进行了仿真以比较其性能。使用该技术,7.5 DCAM单元的最短匹配延迟为89.7 ps。本文提供了五个电池的完整特性。这些结果表明,新型CAM细胞优于现有细胞。这些三元CAM单元的紧凑尺寸和低功耗特性使其适用于许多应用,例如路由器,数据库和关联的高速缓存。

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