NVIDIA CorporationNvidia will exclusively supply AI computing systems for the 8-GW Ohio AI campus, securing massive demand for its GPUs and networking equipment.
Nvidia is backing a massive artificial intelligence infrastructure development in Ohio that could ultimately require at least 10 gigawatts of new power generation. The chipmaker has partnered with SB Energy to secure land, power and data center shell capacity at the PORTS-Pike Technology Campus in Pike County, where OpenAI will be the customer under a 20-year lease. The first phase is designed to provide 4.25 gigawatts of IT capacity, with Nvidia holding an option covering another 3.75 GW, bringing the project to 8 GW of AI computing capacity at full buildout. SB Energy, backed by SoftBank Group and OpenAI, will build, own and operate the data center infrastructure, while Nvidia will exclusively supply AI computing systems including GPUs, CPUs and networking equipment through its DSX AI factory platform. SB Energy and SoftBank plan to develop at least 10 GW of new electricity generation and invest at least $4.2 billion in regional grid infrastructure through a partnership with AEP Ohio. Nvidia will also invest $1.5 billion directly in SB Energy, joining SoftBank and OpenAI as investors. Development is expected to proceed in phases beginning in 2028, and OpenAI has added $40 million to an existing $40 million community benefits fund, bringing the initial fund to $80 million.
NVIDIA CorporationNvidia will exclusively supply AI computing systems for the 8-GW Ohio AI campus, securing massive demand for its GPUs and networking equipment.
SoftBank-backed SB Energy will build and operate the data center infrastructure, with SoftBank planning to develop at least 10 GW of new power generation and invest $4.2 billion in grid infrastructure.
SB Energy receives a $1.5 billion investment from Nvidia and will build, own, and operate the data center infrastructure, with SoftBank and OpenAI as investors.
OpenAI is the customer under a 20-year lease for the AI campus, securing long-term compute capacity for its operations.