Energy-efficient multi-level cell phase-change memory system with data encoding

Jue Wang, Xiangyu Dong, Guangyu Sun, Dimin Niu, Yuan Xie
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引用次数: 63

Abstract

Phase-change memory (PCM) is one of the most promising technologies among emerging non-volatile memories. Recently, the technology of multi-level cell (MLC) for PCM has been developed and a high capacity memory system can be implemented by storing multiple bits in a cell. However, programming MLC PCM involves the program-and-verify scheme. Thus, the energy of programming intermediate states in MLC PCM is considerably larger than that of single-level cell (SLC) PCM. To mitigate the MLC energy overhead, we propose an energy-efficient PCM architecture using data encoding write based on the observation that there are significant value-dependent energy variations in programming MLC PCM. In addition, data comparison write (DCW) is adopted to enhance the effectiveness of the proposed data encoding architecture for MLC PCM. Simulation results show that this encoding architecture achieves 9.6% average energy saving (up to 19.8%) on the plain MLC PCM system, and 12.9% average energy saving (up to 26.7%) on the DCW-adopted MLC PCM system1.
具有数据编码的节能多级单元相变存储系统
相变存储器(PCM)是新兴的非易失性存储器中最有前途的技术之一。近年来,PCM的多级单元(MLC)技术得到了发展,通过在一个单元中存储多个比特来实现大容量存储系统。然而,MLC PCM的编程涉及到编程和验证方案。因此,MLC PCM中编程中间态的能量明显大于单能级单元(SLC) PCM。为了减少MLC的能量开销,我们提出了一种使用数据编码写入的节能PCM架构,该架构基于MLC PCM编程中存在显着的值依赖的能量变化。此外,采用数据比较写入(DCW)来提高所提出的MLC PCM数据编码体系的有效性。仿真结果表明,该编码结构在普通MLC PCM系统上平均节能9.6%(最高节能19.8%),在采用dcw的MLC PCM系统上平均节能12.9%(最高节能26.7%)1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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