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Trina Solar attends NVIDIA GTC 2026 Conference, building a green foundation for the "Token Factory"
On March 19, local time, the NVIDIA GTC 2026 conference was held in San Jose, California, USA, with Trina Solar attending the event.
NVIDIA CEO Jensen Huang introduced a new concept in his speech at the GTC conference—Token Factory: In the future, data centers will no longer be simple “storage centers” but will be factories producing “smart Tokens.” Tokens are the core production material of AI, the basic unit through which AI understands the world and processes information. Behind the demand for Tokens is an explosive growth in computing power requirements, along with a large amount of high-quality data and stable power supply. Huang explained that every data center and every factory is, by definition, limited by electricity.
In the ecological map presented at this conference, the strategic value of Trina Solar is increasingly highlighted. At the beginning of 2025, Trina Solar upgraded its strategy to a comprehensive solution for solar-storage smart energy and focused on building an integrated “computing power and electricity collaboration” green electricity intelligence computing system of “new energy + artificial intelligence,” which will effectively promote the Token Factory concept from blueprint to practice.
Currently, the global artificial intelligence industry is facing a critical turning point, with the popularity of AI reaching new heights, and “computing power and electricity collaboration” being mentioned for the first time in the 2026 government work report. “The end of computing power is electricity; the development of computing power requires stable electricity support,” Gao Jifan recognized that this wave of technological change could bring the greatest development opportunity ever to the green electricity industry and is actively promoting “solar-storage computing integration.” In an interview with domestic and foreign media, Gao Jifan stated that based on mastering core technologies, further promotion of the synergy between artificial intelligence and photovoltaic storage new energy should be achieved, realizing a two-way collaboration, ultimately achieving a virtuous cycle of “green electricity guarantees computing power, computing power supports industry” in “computing power and electricity collaboration.”
Trina Solar began laying out its energy storage track ten years ago, promoting the integration of solar and storage. Since early last year, we have anchored “computing power and electricity collaboration,” actively building “solar-storage integration” solutions, especially utilizing “networked” storage technology to intelligently link and effectively collaborate the unstable supply of new energy with the stable electricity demand of computing power centers.
In 2025, the Sanjiangyuan Green Electricity Intelligence Computing Integration Smart Microgrid Demonstration Project, in which Trina Solar participated, was completed and put into operation, achieving intelligent matching of electricity production and computing power demand, with a green electricity consumption rate reaching 100%. It is hailed as the world’s first zero-carbon benchmark project and a model for “computing power and electricity collaboration.”
Today, the model created by Trina Solar is being promoted globally, with the core being the deep integration of green energy, networked storage, and AI computing power. The decarbonization of computing power has become an irreversible development trend, and Trina Solar’s response path is clear and firm: scene-oriented, technology as the core, and system integration as the method, transforming green electricity into green computing power, and then feeding back green computing power into green electricity. In this era of energy and digital transformation, Trina Solar is leveraging zero-carbon intelligence computing as a fulcrum to drive a new wave of computing power and electricity collaboration, building a reliable green foundation for the Token Factory.
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