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Architecting phase change memory as a scalable DRAM alternative

Publication ,  Journal Article
Lee, BC; Ipek, E; Mutlu, O; Burger, D
Published in: Proceedings - International Symposium on Computer Architecture
November 30, 2009

Memory scaling is in jeopardy as charge storage and sensing mechanisms become less reliable for prevalent memory technologies, such as DRAM. In contrast, phase change memory (PCM) storage relies on scalable current and thermal mechanisms. To exploit PCM's scalability as a DRAM alternative, PCM must be architected to address relatively long latencies, high energy writes, and finite endurance. We propose, crafted from a fundamental understanding of PCM technology parameters, area-neutral architectural enhancements that address these limitations and make PCM competitive with DRAM. A baseline PCM system is 1.6x slower and requires 2.2x more energy than a DRAM system. Buffer reorganizations reduce this delay and energy gap to 1.2x and 1.0x, using narrow rows to mitigate write energy and multiple rows to improve locality and write coalescing. Partial writes enhance memory endurance, providing 5.6 years of lifetime. Process scaling will further reduce PCM energy costs and improve endurance. Copyright 2009 ACM.

Published In

Proceedings - International Symposium on Computer Architecture

DOI

ISSN

1063-6897

Publication Date

November 30, 2009

Start / End Page

2 / 13
 

Citation

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Lee, B. C., Ipek, E., Mutlu, O., & Burger, D. (2009). Architecting phase change memory as a scalable DRAM alternative. Proceedings - International Symposium on Computer Architecture, 2–13. https://doi.org/10.1145/1555754.1555758
Lee, B. C., E. Ipek, O. Mutlu, and D. Burger. “Architecting phase change memory as a scalable DRAM alternative.” Proceedings - International Symposium on Computer Architecture, November 30, 2009, 2–13. https://doi.org/10.1145/1555754.1555758.
Lee BC, Ipek E, Mutlu O, Burger D. Architecting phase change memory as a scalable DRAM alternative. Proceedings - International Symposium on Computer Architecture. 2009 Nov 30;2–13.
Lee, B. C., et al. “Architecting phase change memory as a scalable DRAM alternative.” Proceedings - International Symposium on Computer Architecture, Nov. 2009, pp. 2–13. Scopus, doi:10.1145/1555754.1555758.
Lee BC, Ipek E, Mutlu O, Burger D. Architecting phase change memory as a scalable DRAM alternative. Proceedings - International Symposium on Computer Architecture. 2009 Nov 30;2–13.

Published In

Proceedings - International Symposium on Computer Architecture

DOI

ISSN

1063-6897

Publication Date

November 30, 2009

Start / End Page

2 / 13