VLSI · June 2024
Onyx: A 12nm 756 GOPS/W Coarse-Grained Reconfigurable Array for Accelerating Dense and Sparse Applications
Topics Accelerators & dataflow
Cite this paper
BibTeX
@inproceedings{koul2024onyx,
author = {Koul, Kalhan and Strange, Maxwell and Melchert, Jackson and Carsello, Alex and Mei, Yuchen and Hsu, Olivia and Kong, Taeyoung and Chen, Po-Han and Ke, Huifeng and Zhang, Keyi and Liu, Qiaoyi and Nyengele, Gedeon and Balasingam, Akhilesh and Adivarahan, Jayashree and Sharma, Ritvik and Xie, Zhouhua and Torng, Christopher and Emer, Joel and Kjolstad, Fredrik and Horowitz, Mark and Raina, Priyanka},
title = {{Onyx}: A 12nm 756 {GOPS/W} Coarse-Grained Reconfigurable Array for Accelerating Dense and Sparse Applications},
booktitle = {2024 {IEEE} Symposium on {VLSI} Technology and Circuits ({VLSI} Technology and Circuits)},
year = {2024},
month = jun,
pages = {1--2},
publisher = {IEEE},
doi = {10.1109/VLSITechnologyandCir46783.2024.10631383},
url = {https://doi.org/10.1109/VLSITechnologyandCir46783.2024.10631383}
} Citation
Kalhan Koul, Maxwell Strange, Jackson Melchert, Alex Carsello, Yuchen Mei, Olivia Hsu, Taeyoung Kong, Po-Han Chen, Huifeng Ke, Keyi Zhang, Qiaoyi Liu, Gedeon Nyengele, Akhilesh Balasingam, Jayashree Adivarahan, Ritvik Sharma, Zhouhua Xie, Christopher Torng, Joel Emer, Fredrik Kjolstad, Mark Horowitz, and Priyanka Raina. Onyx: A 12nm 756 GOPS/W Coarse-Grained Reconfigurable Array for Accelerating Dense and Sparse Applications. VLSI, 2024.