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High-Throughput Low-Energy Content-Addressable Memory Based on Self-Timed Overlapped Search Mechanism

机译:基于自定时重叠搜索机制的高吞吐量低能耗内容可寻址存储器

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This paper introduces a self-timed overlapped search mechanism for high-throughput content-addressable memories (CAMs) with low search energy. Most mismatches can be found by searching the first few bits in a search word. Consequently, if a word circuit is divided into two sections that are sequentially searched, most match lines in the second section are unused. As searching the first section is faster than searching an entire word, we could potentially increase throughput by initiating a second-stage search on the unused match lines as soon as a first-stage search is complete. The overlapped search mechanism is realized using a self-timed word circuit that is independently controlled by a locally generated control signal, reducing the power dissipation of global clocking. A 256 x 144-bit CAM is designed under in 90 nm CMOS that operates with 5.57x faster throughput than a synchronous CAM, with 38% energy saving and 8% area overhead.
机译:本文介绍了一种针对低搜索能量的高吞吐量内容可寻址存储器(CAM)的自定时重叠搜索机制。大多数不匹配都可以通过搜索搜索字的前几位来找到。因此,如果将字电路划分为依次搜索的两个部分,则第二部分中的大多数匹配线都未被使用。由于搜索第一部分比搜索整个单词更快,因此,我们可以通过在第一阶段搜索完成后立即在未使用的匹配行上进行第二阶段搜索来提高吞吐量。重叠搜索机制是使用自定时字电路实现的,该电路由本地生成的控制信号独立控制,从而降低了全局时钟的功耗。 256 x 144位CAM是在90 nm CMOS下设计的,与同步CAM相比,其吞吐速率比同步CAM快5.57倍,节能38%,面积开销8%。

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