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HyCUBE: A 0.9V 26.4 MOPS/mW, 290 pJ/op, Power Efficient Accelerator for IoT Applications
Conference proceeding

HyCUBE: A 0.9V 26.4 MOPS/mW, 290 pJ/op, Power Efficient Accelerator for IoT Applications

Bo Wang, Manupa Karunarathne, Aditi Kulkarni, Tulika Mitra, Li-Shivan Peh and IEEE
2019 IEEE ASIAN SOLID-STATE CIRCUITS CONFERENCE (A-SSCC), pp.133-136
IEEE Asian Solid-State Circuits Conference Proceedings of Technical Papers
01/01/2019

Abstract

Engineering Engineering, Electrical & Electronic Science & Technology Technology
IoT devices use ultra-low-power micro-controllers that cannot handle the performance demands of emerging compute-intensive applications. Accelerators can be added to improve system power-performance efficiency. We present Hy CUBE, a Coarse-Grained Reconfigurable Array (CGRA) accelerator chip that realizes 127x improvement in power efficiency compared to TI Sensortag IoT platform. HyCUBE has a bufferless Network-on-Chip (NoC), enabling single-cycle data traversal to boost throughput and a software-scheduled architecture, automatically extracting application parallelism. Our 40nm test chip delivers peak efficiency of 26.4 MOPS/mW with 290 pJ/operation, realizing a power efficiency improvement of 28.6 x and 26.5x compared to Xilinx Zynq FPGA and ARM Cortex-A7 core.

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