Memory controller architectures: A comparative study

K. Khalifa, H. Fawzy, Sameh El-Ashry, K. Salah
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引用次数: 9

Abstract

This paper clarifies the differences between six memory architectures, which are Flex-OneNAND, Open NAND Flash Memory (ONFI 3.1), Embedded Multi-Media Card (eMMC v.5.0), Hybrid Memory Cube (HMC v.1.0) WideIO, and Universal Flash Storage (UFS). The paper shows the impact of such discriminating differences on choosing the most suitable architecture for certain application. The comparison is done in terms of most important features to microelectronics industry point of view. The comparison shows that the highest speed is given by HMC v.1.0 which reaches 15GBps supported with power management per link. On the other hand, Flex-OneNAND provides single flash chip with ultra-high density of NAND and simplified interface of NOR with the simplest architecture at very attractive price points. WideIO offers more bandwidth at lower power. Regarding the lowest power consumption, eMMC is sparkling. UFS combines the speed of SSD with the slim form factor and low power of eMMC. ONFI supports increased performance through parallelism using multiple logic units and interleaved addressing. This comparison is very powerful for designers to decide which memory controller is suitable for their applications and satisfies their requirements.
存储器控制器体系结构的比较研究
本文阐述了Flex-OneNAND、Open NAND Flash memory (ONFI 3.1)、Embedded multimedia Card (eMMC v.5.0)、Hybrid memory Cube (HMC v.1.0) WideIO和Universal Flash Storage (UFS)六种存储架构之间的差异。本文展示了这种区别性差异对选择最适合特定应用的体系结构的影响。比较是根据微电子工业的最重要的特点来进行的。比较表明,HMC v.1.0提供了最高的速度,支持每链路电源管理,达到15GBps。另一方面,Flex-OneNAND提供具有超高NAND密度和简化NOR接口的单一闪存芯片,结构最简单,价格极具吸引力。WideIO以更低的功耗提供更多的带宽。在最低功耗方面,eMMC是闪亮的。UFS结合了SSD的速度与eMMC的纤薄外形和低功耗。ONFI通过使用多个逻辑单元和交错寻址的并行性来提高性能。这种比较对设计人员决定哪种内存控制器适合他们的应用程序并满足他们的要求非常有用。
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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