2011Unpublished venueRequires access

PRET DRAM controller

Jan Reineke, Isaac Liu, Hiren Patel, Sung Jun Kim, Edward A. Lee

Open publisher page 175 citations

Abstract

Hard real-time embedded systems employ high-capacity memories such as Dynamic RAMs (DRAMs) to cope with increasing data and code sizes of modern designs. However, memory controller design has so far largely focused on improving average-case performance. As a consequence, the latency of memory accesses is unpredictable, which complicates the worst-case execution time analysis necessary for hard real-time embedded systems.

About this research paper

What this paper is about

Hard real-time embedded systems employ high-capacity memories such as Dynamic RAMs (DRAMs) to cope with increasing data and code sizes of modern designs. However, memory controller design has so far largely focused on improving average-case performance. As a consequence, the latency of memory accesses is unpredictable, which complicates the worst-case execution time analysis necessary for hard real-time embedded systems.

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OpenAlex reports 175 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Hard real-time embedded systems employ high-capacity memories such as Dynamic RAMs (DRAMs) to cope with increasing data and code sizes of modern designs. However, memory controller design has so far largely focused on improving average-case performance. As a consequence, the latency of memory accesses is unpredictable, which complicates the worst-case execution time analysis necessary for hard real-time embedded systems.

Key concepts: Memory controller, Dram, Computer science, CAS latency, Latency (audio), Embedded system, Dynamic random-access memory, Controller (irrigation)

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