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A static power reduction technique for ternary content addressable memories

机译:三元内容可寻址存储器的静态功耗降低技术

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Ternary content addressable memories (TCAMs) are attractive for high-speed packet forwarding and classification in network switches and routers. Traditionally, the static power in TCAMs has been a small fraction of the total power due to high activity of TCAMs. However, technology scaling and architecture level techniques are reducing the dynamic power of TCAMs. The technology scaling is also increasing the off-current of transistors. Hence, the static power is becoming a significant portion of the total power consumption in TCAMs. This paper presents a technique to reduce the static power in SRAM-based TCAMs without affecting the speed of operation. We analyze the circuits and present the trade-offs of using this power reduction technique. The simulation results show a significant reduction in the static-power (up to a factor of 11) for an SRAM-based TCAM in 0.13 /spl mu/m technology.
机译:三态内容可寻址存储器(TCAM)对于网络交换机和路由器中的高速数据包转发和分类具有吸引力。传统上,由于TCAM的高活动性,TCAM中的静态功率仅占总功率的一小部分。但是,技术扩展和体系结构级别的技术正在降低TCAM的动态能力。技术上的扩展也增加了晶体管的截止电流。因此,静态功率已成为TCAM中总功耗的重要部分。本文提出了一种在不影响操作速度的情况下减少基于SRAM的TCAM的静态功耗的技术。我们分析了电路,并提出了使用这种功率降低技术的折衷方案。仿真结果显示,采用0.13 / spl mu / m技术的基于SRAM的TCAM的静态功耗显着降低(最高达11倍)。

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