Application Domain Specific Embedded FPGAs for Flexible ISA-Extension of ASIPs

Authored by

B. Neumann, T. Von Sydow, H. Blume, T. G. Noll

Abstract

This paper presents a novel architecture combining an application specific instruction set processor (ASIP) core and an application domain specific embedded FPGAs (eFPGAs) used as flexible accelerator for the ASIP. The eFPGA is based on a parametrisable architecture template optimised for arithmetic oriented applications. It was designed as a physically optimised VLSI-macro using a flexible design methodology also sketched in this paper. Quantitative comparisons of the eFPGA with a commercial standard FPGA show significant improvements in energy, area and timing delays. Simulations of the new ASIP-eFPGA architecture have been conducted using a model based approach to evaluate its efficiency. The results show that power- and area-efficiencies similar to an FPGA can be achieved for the flexible ASIP-eFPGA while preserving the flexibility of a software programmable processor.

Details

External Organisation(s)
RWTH Aachen University
Type
Article
Journal
Journal of Signal Processing Systems
Volume
53
Pages
129-143
No. of pages
15
ISSN
1939-8018
Publication date
20.05.2008
Publication status
Published
Peer reviewed
Yes
ASJC Scopus subject areas
Control and Systems Engineering, Theoretical Computer Science, Signal Processing, Information Systems, Modelling and Simulation, Hardware and Architecture
Electronic version(s)
https://doi.org/10.1007/s11265-008-0211-9 (Access: Closed )