Scalable high performance main memory system using phase-change memory technology
Moinuddin K. Qureshi, Vijayalakshmi Srinivasan, Jude A. Rivers
Abstract
Moinuddin K. Qureshi, Vijayalakshmi Srinivasan, Jude A. Rivers
Abstract
The memory subsystem accounts for a significant cost and power budget of a computer system. Current DRAM-based main memory systems are starting to hit the power and cost limit. An alternative memory technology that uses resistance contrast in phase-change materials is being actively investigated in the circuits community. Phase Change Memory (PCM) devices offer more density relative to DRAM, and can help increase main memory capacity of future systems while remaining within the cost and power constraints.
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The memory subsystem accounts for a significant cost and power budget of a computer system. Current DRAM-based main memory systems are starting to hit the power and cost limit. An alternative memory technology that uses resistance contrast in phase-change materials is being actively investigated in the circuits community. Phase Change Memory (PCM) devices offer more density relative to DRAM, and can help increase main memory capacity of future systems while remaining within the cost and power constraints.
Key concepts: Phase-change memory, Dram, Computer science, Scalability, Memory management, Universal memory, Semiconductor memory, Registered memory