In the last decade, academies and private companies have actively explored emerging memory technologies. STT-MRAM in particular is experiencing a rapid development but it is facing several challenges in terms of performance and reliability. Several techniques at cell level have been proposed to mitigate such issues but currently few tools and methodologies exist to support designers in evaluating the impact that specific micro-level design choices can determine on the STT-MRAM macro design. In this paper we present a system-level tool based on CACTI simulator to assist memory system designers. We use our tool to generate high-performance and low-power cache memories comparing performance, energy consumption, and area with traditional SRAM.
Integration of STT-MRAM model into CACTI simulator / Indaco, M.; DI CARLO, Stefano; Vatajelu, E. I.; Prinetto, Paolo Ernesto; Arcaro, S.; Pala, D.. - ELETTRONICO. - (2014), pp. 67-72. (Intervento presentato al convegno 9th IEEE International Design and Test Symposium (IDT) tenutosi a Algiers, DZ nel 16-18 Dec. 2014) [10.1109/IDT.2014.7038589].
Integration of STT-MRAM model into CACTI simulator
DI CARLO, STEFANO;PRINETTO, Paolo Ernesto;
2014
Abstract
In the last decade, academies and private companies have actively explored emerging memory technologies. STT-MRAM in particular is experiencing a rapid development but it is facing several challenges in terms of performance and reliability. Several techniques at cell level have been proposed to mitigate such issues but currently few tools and methodologies exist to support designers in evaluating the impact that specific micro-level design choices can determine on the STT-MRAM macro design. In this paper we present a system-level tool based on CACTI simulator to assist memory system designers. We use our tool to generate high-performance and low-power cache memories comparing performance, energy consumption, and area with traditional SRAM.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2587977
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