Open AccessEngineeringComputer Science

A. Andreev, Fulya Kaplan, M. Zapater, A. Coskun, David Atienza Alonso

2018.7.23Proceedings of the International Symposium on Low Power Electronics and Design

DOI: 10.1145/3218603.3218606

tlooto Summary

This work explores the impact of FCA system design on various 3D architectures and proposes a methodology to optimize a 3D MPSoC with integrated FCA to run a given workload in the most energy-efficient way.

Abstract

Integrated flow cell array (FCA) is an emerging technology, targeting the cooling and power delivery challenges of modern 2D/3D Multi-Processor Systems-on-Chip (MPSoCs). In FCA, electrolytic solutions are pumped through microchannels etched in the silicon of the chips, removing heat from the system, while, at the same time, generating power on-chip. In this work, we explore the impact of FCA system design on various 3D architectures and propose a methodology to optimize a 3D MPSoC with integrated FCA to run a given workload in the most energy-efficient way. Our results show that an optimized configuration can save up to 50% energy with respect to sub-optimal 3D MPSoC configurations.

Citation format

ANDREEV, A., et al. Design optimization of 3d multi-processor system-on-chip with integrated flow cell arrays. Proceedings of the International Symposium on Low Power Electronics and Design, 2018.