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首页> 外文期刊>Circuits, Devices & Systems, IET >Design and Analysis of Power-Efficient Quasi-Adiabatic Ternary Content Addressable Memory (QATCAM)
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Design and Analysis of Power-Efficient Quasi-Adiabatic Ternary Content Addressable Memory (QATCAM)

机译:节能准绝热三元内容可寻址记忆(QATCAM)的设计与分析

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Ternary content addressable memory (TCAM) is a high-speed memory employed in network search engines which consume significant power. Many authors have provided efficient power solutions by proposing different match line schemes. This study proposes the use of energy recovering adiabatic logic scheme in the design of power-efficient TCAM. Two different innovative quasi-adiabatic TCAM (QATCAM) core cells are designed. The design is implemented in 180 nm complementary metal-oxide semiconductor technology with a power clock of 1.8 V on Cadence Virtuoso. It is found that the power dissipated by the proposed QATCAM cells is lower than its conventional counterparts. Adiabatic TCAM arrays are designed using adiabatic peripheral circuits. The proposed adiabatic TCAM core cells yield more considerable power savings even at higher frequencies up to 1 GHz.
机译:三元内容可寻址存储器(TCAM)是在网络搜索引擎中采用的高速存储器,其消耗显着的功率。许多作者通过提出不同的匹配线路方案提供了有效的电力解决方案。本研究提出了在节能TCAM设计中使用能量恢复绝热逻辑方案。设计了两种不同的创新拟绝热TCAM(QATCAM)核心细胞。该设计在180nm互补金属氧化物半导体技术中实现,Cadence Virtuoso具有1.8 V的功率时钟。发现由所提出的QATCAM细胞散发的功率低于其常规对应物。绝热TCAM阵列采用绝热外围电路设计。所提出的绝热TCAM核心细胞即使在高达1 GHz的较高频率下也会产生更大的功率节省。

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