What is it about?
Tool to evaluate the carbon footprint of FPGA-based computing across its lifetime. The tool can also perform comparisons with ASIC counterpart considering differnt aspects such as manufacturing, recycling, disposal, reconfigurability (reuse), operation and design. The sustainable benifits of FPGA compared to ASIC is shown in this work.
Featured Image
Photo by Random Thinking on Unsplash
Why is it important?
Growing global concerns about climate change highlight the need for environmentally sustainable computing. The ecological impact of computing, including operational and embodied, is a key consideration. Field Programmable Gate Arrays (FPGAs) stand out as promising sustainable computing platforms due to their reconfigurability across various applications. This paper introduces GreenFPGA, a tool estimating the total carbon footprint (CFP) of FPGAs over their lifespan, considering design, manufacturing, reconfigurability (reuse), operation, disposal, and recycling. Using GreenFPGA, the paper evaluates scenarios where the ecological benefits of FPGA reconfigurability outweigh operational and embodied carbon costs, positioning FPGAs as a environmentally sustainable choice for hardware acceleration compared to Application-Specific Integrated Circuits (ASICs). Experimental results show that FPGAs have lower CFP than ASICs, particularly for multiple distinct, low-volume applications, or short application lifespans.
Read the Original
This page is a summary of: GreenFPGA: Evaluating FPGAs as Environmentally Sustainable Computing Solutions, June 2024, ACM (Association for Computing Machinery),
DOI: 10.1145/3649329.3657343.
You can read the full text:
Resources
Contributors
The following have contributed to this page







