Energy-effective design & implementation of an embedded VLIW DSP

Tien-Wei Hsieh, Pi-Chen Hsiao, Che-Yu Liao, Hsien-Ching Hsieh, Huang-Lun Lin, Tay–Jyi Lin, Yuan‐Hua Chu, An-Yeu Andy Wu · 2008

This paper describes the power/energy optimizations of an embedded VLIW digital signal processor (DSP) - PACDSP from the Industrial Technology Research Institute (ITRI). First, a configurable cache/scratchpad memory subsystem has been implemented, which saves the energy for tag matching in deeply embedded applications. An energy-effective cell-based design has been produced by analyzing the relationships between the energy efficiency and the synthesis constraints. Finally, dynamic voltage & frequency scaling (DVFS) and power gating have been applied to reduce both switching and leakage power dissipations with a novel Common Power Format (CPF) flow. The test-chip will be fabricated in the TSMC 90nm CMOS technology, of which the estimated power dissipations are 156.62mW for 350MHz @1V and 46.60mW for 230MHz @0.7V respectively.

Read the paper · More papers on PaperTik