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Automatic Charge Balancing Content Addressable Memory With Self-control Mechanism

机译:具有自我控制机制的自动电荷平衡内容可寻址存储器

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Content addressable memory (CAM) is widely used in many applications, especially for those applications needing fast memory access. However, due to the parallel comparison feature and the frequent precharge/discharge of match-lines, the power consumption of CAM is considerable. In this paper, a fast and automatic charge balancing CAM architecture is proposed to control the voltage swing of match-lines so that the huge power consumption of CAM can be reduced. In the proposed design, the complementary property of the N-type CAM and the P-type CAM is used to balance the charge of match-lines. Especially, no specific sense amplifier is needed to detect the match status of match-lines. For a translation lookaside buffer example with 128 memory entries, the experimental result shows that 25.98% dynamic power and 3.30% leakage power can be reduced by using TSMC 90 nm CMOS process with 1.2 V supply voltage and only 2.23% circuit area is increased when compared with the traditional design.
机译:内容可寻址存储器(CAM)广泛用于许多应用程序中,尤其是对于那些需要快速访问存储器的应用程序。但是,由于具有并行比较功能和匹配线的频繁预充电/放电,CAM的功耗非常可观。本文提出了一种快速,自动的电荷平衡CAM架构来控制匹配线的电压摆幅,从而可以降低CAM的巨大功耗。在提出的设计中,使用N型CAM和P型CAM的互补特性来平衡匹配线的电荷。特别地,不需要特定的读出放大器来检测匹配线的匹配状态。对于具有128个存储器条目的转换后备缓冲器示例,实验结果表明,使用TSMC 90 nm CMOS工艺(电源电压为1.2 V)可以减少25.98%的动态功率和3.30%的泄漏功率,与之相比,电路面积仅增加2.23%与传统的设计。

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