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Self-Controlled High-Performance Precharge-Free Content-Addressable Memory

机译:自控高性能免预充电内容可寻址存储器

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Content-addressable memory (CAM) is a hardware searchengine used for parallel lookup that assures high-speed match but at the cost of higher power consumption. Both low power NAND-type and highspeed NOR-type match-line (ML) schemes suffer from requirement of the precharge prior to the search. Recently, a precharge-free ML structure has been proposed but with inadequate search performance. In this brief, a self-controlled precharge-free CAM (SCPF-CAM) structure is proposed for high-speed applications. The proposed architecture is useful in applications where search time is very crucial to design larger word lengths. The proposed 128×32-bit SCPF-CAM structure has been implemented using predictive 45-nm CMOS process and simulated in SPECTRE at the supply voltage of 1 V. The ML delay using the proposed SCPF-CAM architecture has been reduced by 88% and 73% compared to the precharge-free and traditional NAND-type ML structure.
机译:内容可寻址存储器(CAM)是用于并行查找的硬件搜索引擎,可确保高速匹配,但以更高的功耗为代价。低功率NAND型和高速NOR型匹配线(ML)方案都需要在搜索之前进行预充电。最近,已经提出了无预充电的ML结构,但是搜索性能不足。在本简介中,提出了一种适用于高速应用的自控免预充电CAM(SCPF-CAM)结构。所提出的体系结构在搜索时间对于设计更大的字长非常关键的应用中很有用。拟议的128×32位SCPF-CAM结构已使用预测性45 nm CMOS工艺实现,并在SPECTER中以1 V的电源电压进行了仿真。采用拟议的SCPF-CAM架构的ML延迟已减少了88%,并且与无预充电和传统NAND型ML结构相比,降低了73%。

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