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Optimized Large-Capacity Content Addressable Memory (CAM) for Mobile Devices

机译:针对移动设备优化的大容量内容可寻址存储器(CAM)

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摘要

A content addressable memory system includes CAM cells, each having a compare circuit and a memory bit cell that stores complementary bits. The main CAM design challenge is to reduce power consumption associated with large amount of parallel switching circuitry, without sacrificing speed or density. In this paper, we present a new technique to eliminate crowbar current during bit-cell write operation (saving 0.0114mA per cell in 22nm process), reduce average current consumption during cam operation and eliminate the need for routing the complementary data to every cam cell, saving routing track in smaller node technology where wire cap is dominant.
机译:内容可寻址存储系统包括CAM单元,每个CAM单元都有一个比较电路和一个存储互补位的存储位单元。 CAM设计的主要挑战是在不牺牲速度或密度的情况下减少与大量并行开关电路相关的功耗。在本文中,我们提出了一种新技术,可消除位单元写操作期间的撬棍电流(在22nm工艺中每单元节省​​0.0114mA),减少凸轮操作期间的平均电流消耗,并且无需将补充数据路由到每个凸轮单元,从而在较小的节点技术(布线占主导的位置)中节省了布线路径。

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