2002Unpublished venueRequires access

Architectural tradeoffs in field-programmable-device-based computing systems

P.K. Chan, Martine Schlag

Open publisher page 48 citations

Abstract

Reprogrammable Field-Programmable Gate Arrays (FPGAs) have enabled the realization of high-performance and affordable reconfigurable computing engines. The authors examine the architectural tradeoffs involved in designing general purpose FPGA-based computing systems with field-programmable gate arrays and field-programmable interconnects. The fact that FPGAs provide both programmable logic and programmable interconnects raises numerous design issues that need to be considered with care. Factors that influence the tradeoffs are routability, rearrangeability and speed.>

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What this paper is about

Reprogrammable Field-Programmable Gate Arrays (FPGAs) have enabled the realization of high-performance and affordable reconfigurable computing engines. The authors examine the architectural tradeoffs involved in designing general purpose FPGA-based computing systems with field-programmable gate arrays and field-programmable interconnects. The fact that FPGAs provide both programmable logic and programmable interconnects raises numerous design issues that need to be considered with care. Factors that influence the tradeoffs are routability, rearrangeability and speed.>

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OpenAlex reports 48 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Reprogrammable Field-Programmable Gate Arrays (FPGAs) have enabled the realization of high-performance and affordable reconfigurable computing engines. The authors examine the architectural tradeoffs involved in designing general purpose FPGA-based computing systems with field-programmable gate arrays and field-programmable interconnects. The fact that FPGAs provide both programmable logic and programmable interconnects raises numerous design issues that need to be considered with care. Factors that influence the tradeoffs are routability, rearrangeability and speed.>

Key concepts: Field-programmable gate array, Simple programmable logic device, Programmable logic device, Programmable Array Logic, Programmable logic array, Computer science, Erasable programmable logic device, Computer architecture

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