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Exploring Memory Hierarchy Design with Emerging Memory Technologies (Hardcover, 2014 ed.): Guangyu Sun Exploring Memory Hierarchy Design with Emerging Memory Technologies (Hardcover, 2014 ed.)
Guangyu Sun
R3,190 Discovery Miles 31 900 Ships in 12 - 17 working days

This book equips readers with tools for computer architecture of high performance, low power, and high reliability memory hierarchy in computer systems based on emerging memory technologies, such as STTRAM, PCM, FBDRAM, etc. The techniques described offer advantages of high density, near-zero static power, and immunity to soft errors, which have the potential of overcoming the "memory wall." The authors discuss memory design from various perspectives: emerging memory technologies are employed in the memory hierarchy with novel architecture modification; hybrid memory structure is introduced to leverage advantages from multiple memory technologies; an analytical model named "Moguls" is introduced to explore quantitatively the optimization design of a memory hierarchy; finally, the vulnerability of the CMPs to radiation-based soft errors is improved by replacing different levels of on-chip memory with STT-RAMs.

Exploring Memory Hierarchy Design with Emerging Memory Technologies (Paperback, Softcover reprint of the original 1st ed.... Exploring Memory Hierarchy Design with Emerging Memory Technologies (Paperback, Softcover reprint of the original 1st ed. 2014)
Guangyu Sun
R3,116 Discovery Miles 31 160 Ships in 10 - 15 working days

This book equips readers with tools for computer architecture of high performance, low power, and high reliability memory hierarchy in computer systems based on emerging memory technologies, such as STTRAM, PCM, FBDRAM, etc. The techniques described offer advantages of high density, near-zero static power, and immunity to soft errors, which have the potential of overcoming the "memory wall." The authors discuss memory design from various perspectives: emerging memory technologies are employed in the memory hierarchy with novel architecture modification; hybrid memory structure is introduced to leverage advantages from multiple memory technologies; an analytical model named "Moguls" is introduced to explore quantitatively the optimization design of a memory hierarchy; finally, the vulnerability of the CMPs to radiation-based soft errors is improved by replacing different levels of on-chip memory with STT-RAMs.

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