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arXiv · 2608.30058

High-Performance Low-Power Adiabatic Systolic Array Design in Advanced FinFET Nodes

Abstract

Adiabatic logic has traditionally been recognized as a low-power solution but constrained to low clock speeds to preserve adiabatic behavior. For advanced FinFET nodes, however, clock frequencies have plateaued due to power/thermal concerns (dark silicon) even as the intrinsic device speeds have continued to scale. This convergence opens an opportunity for adiabatic logic to maintain adiabatic behavior even at GHz clocks. We demonstrate an adiabatic logic (AL) design methodology through a MAC systolic array implemented in commercial 16 nm FinFET technology with a resonant 4-phase power clock (PCK) generator, including digital-to-AL and AL-to-digital interfaces. Simulations show that the AL MAC systolic array at 1 GHz achieves power reductions of up to 42% and 36% at the core and system levels, respectively, compared to digital counterparts. Scaling to more advanced nodes should provide even better power/performance metrics.

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Jun Yin, Liangtao Dai, Yimin Gao, Mircea R. Stan. 2026-08-30. High-Performance Low-Power Adiabatic Systolic Array Design in Advanced FinFET Nodes. https://arxiv.org/abs/2608.30058

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