DocumentCode :
177320
Title :
Half-DRAM: A high-bandwidth and low-power DRAM architecture from the rethinking of fine-grained activation
Author :
Tao Zhang ; Ke Chen ; Cong Xu ; Guangyu Sun ; Tao Wang ; Yuan Xie
Author_Institution :
Pennsylvania State Univ., University Park, PA, USA
fYear :
2014
fDate :
14-18 June 2014
Firstpage :
349
Lastpage :
360
Abstract :
DRAM memory is a major contributor for the total power consumption in modern computing systems. Consequently, power reduction for DRAM memory is critical to improve system-level power efficiency. Fine-grained DRAM architecture [1, 2] has been proposed to reduce the activation/ precharge power. However, those prior work either incurs significant performance degradation or introduces large area overhead. In this paper, we propose a novel memory architecture Half-DRAM, in which the DRAM array is reorganized to enable only half of a row being activated. The half-row activation can effectively reduce activation power and meanwhile sustain the full bandwidth one bank can provide. In addition, the half-row activation in Half-DRAM relaxes the power constraint in DRAM, and opens up opportunities for further performance gain. Furthermore, two half-row accesses can be issued in parallel by integrating the sub-array level parallelism to improve the memory level parallelism. The experimental results show that Half-DRAM can achieve both significant performance improvement and power reduction, with negligible design overhead.
Keywords :
DRAM chips; memory architecture; DRAM array; DRAM memory; Half-DRAM; fine-grained activation; half-row activation; high-bandwidth architecture; low-power DRAM architecture; memory architecture; memory level parallelism; power consumption; power reduction; subarray level parallelism; system-level power efficiency; Bandwidth; Computer architecture; Decoding; Degradation; Power demand; Prefetching; Random access memory;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Architecture (ISCA), 2014 ACM/IEEE 41st International Symposium on
Conference_Location :
Minneapolis, MN
Print_ISBN :
978-1-4799-4396-8
Type :
conf
DOI :
10.1109/ISCA.2014.6853217
Filename :
6853217
Link To Document :
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