2011•Unpublished venueRequires access

FPGA and ASIC convergence

Carlos Alberto Valderrama, Laurent Jojczyk, Paulo Possa, Julio Dondo

Open publisher page 4 citations

Abstract

The growing demands on multimedia applications and high-speed high-quality telecommunication systems with real-time constrains oriented to portable, low power consumption, devices, have being driven technologies development, methodologies and design flows of embedded systems during the last years. Through the analysis of design methodologies and strategies facing multi-core, reconfigurability and power consumption challenges, this educational survey will follow that evolution approaching ASIC and FPGA architectures on the embedded systems arena.

About this research paper

What this paper is about

The growing demands on multimedia applications and high-speed high-quality telecommunication systems with real-time constrains oriented to portable, low power consumption, devices, have being driven technologies development, methodologies and design flows of embedded systems during the last years. Through the analysis of design methodologies and strategies facing multi-core, reconfigurability and power consumption challenges, this educational survey will follow that evolution approaching ASIC and FPGA architectures on the embedded systems arena.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The growing demands on multimedia applications and high-speed high-quality telecommunication systems with real-time constrains oriented to portable, low power consumption, devices, have being driven technologies development, methodologies and design flows of embedded systems during the last years. Through the analysis of design methodologies and strategies facing multi-core, reconfigurability and power consumption challenges, this educational survey will follow that evolution approaching ASIC and FPGA architectures on the embedded systems arena.

Key concepts: Reconfigurability, Application-specific integrated circuit, Field-programmable gate array, Computer science, Embedded system, Power consumption, Computer architecture, Power demand

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