Brookfield manages hundreds of billions of dollars in long-duration capital invested across toll roads, ports, and power grids. NextEra Energy operates Florida’s largest regulated utility alongside the country’s largest renewable fleet, giving it decades of experience financing gigawatt-scale power plants. Neither company builds cloud software or operates a hyperscale platform, and that absence is exactly why the partnership works. Big Rivers Electric, Jackson Purchase Energy Cooperative, and Paducah Power System contribute established transmission infrastructure, utility relationships, and regional regulatory experience that remain critical to a project of this scale. By combining long-term infrastructure capital with a utility that specializes in large-scale power generation and battery storage, the partnership addresses two of the industry’s most widely recognized challenges: securing sufficient capital and obtaining reliable power capacity.
The Department of Energy issued a formal request for offers in November 2025, and Brookfield’s winning bid secured land that once enriched uranium before the plant closed in 2013. Decades of federal operations left the site with existing transmission infrastructure, industrial water access, and other utility assets that can shorten portions of the redevelopment process compared with a greenfield location. NextEra contributes in parallel rather than downstream because it finances and owns the planned 2 gigawatts of gas generation and 2.6 gigawatts of battery storage separately from the campus itself. This ownership structure separates responsibility for campus development from power generation, allowing each company to focus on the infrastructure it develops and operates. Kentucky officials project that the multi-phase campus development will create roughly 8,000 construction jobs and about 600 permanent operations roles over the coming decade.
The Hyperscaler Self-Build Era Is Quietly Ending
Meta, Microsoft, Google, and Amazon spent recent years pouring capital directly into land and steel, treating each campus as a proprietary asset. That approach worked when power was abundant and interconnection queues moved in months; however, both conditions have reversed sharply across most U.S. markets. Developers that control grid-connected, shovel-ready land have become increasingly valuable as power availability and interconnection capacity have tightened across many U.S. electricity markets. Paducah flips that pattern entirely: Brookfield owns and operates the finished campus while NextEra owns the generation feeding it, and no tenant holds title to either. Major technology companies have increasingly partnered with infrastructure developers and energy providers to secure land, power, and capacity for expanding AI and cloud infrastructure. Both approaches reflect a broader industry trend toward partnerships that combine infrastructure expertise, power development, and private capital to accelerate large-scale AI campus construction.
Estimating third-party development versus self-build is difficult, since SemiAnalysis has noted that datasets like Sightline Climate undercount third-party and joint-venture capacity by a wide margin. Brookfield has said the Paducah development forms part of its broader plan to invest up to $100 billion in AI infrastructure, making it one of the largest proposed private infrastructure initiatives tied to artificial intelligence. Gas turbines now carry multi-year backlogs, and grid operators like PJM have flagged shortfalls approaching 60 gigawatts across their territory. NextEra’s decades of experience developing and permitting thermal generation and battery storage provide capabilities that differ from those of cloud platform operators, whose core expertise lies in digital infrastructure rather than utility-scale energy development. Pairing those two skill sets allows infrastructure ownership and power development responsibilities to remain with specialized companies while tenants lease the completed capacity.
Who Holds the Keys When the Campus Isn’t Owned by Big Tech?
Under a traditional hyperscale build, the tenant designs, constructs, and operates its own facility, controlling every switch and access badge from day one. The Paducah structure inverts that relationship: Brookfield leases land from the Department of Energy, then develops, owns, and operates the campus for whichever customers eventually sign leases. NextEra retains the generation assets feeding the site, meaning two separate entities control the infrastructure a tenant’s workloads depend on. Handover looks less like a single ribbon-cutting and more like a staged relationship, with Brookfield delivering shell capacity and NextEra bringing power capacity online in phases. Kentucky’s Public Service Commission still must approve the underlying power agreement, adding a layer of oversight that a purely private self-build would never encounter. Tenants effectively become customers of both an operating landlord and a separate power supplier, a change with real implications for uptime and cost predictability.
Large infrastructure lease structures commonly include provisions that allocate power commitments and capacity obligations between owners and tenants, although specific terms vary by project. As the campus developer and operator, Brookfield would generally manage property operations and facility management under its ownership structure. Multiple organizations will likely share responsibility for security, operations, and site access as they build and support the redevelopment. Because the companies plan to develop both the campus and its supporting power infrastructure in phases, they will reach construction and service milestones over multiple stages instead of meeting a single completion date. This phased approach lets developers add capacity as customer demand grows instead of completing all planned infrastructure before operations begin. Anyone evaluating this campus needs to underwrite counterparty risk across three organizations instead of one, unlike a traditional self-build.
What This Deal Means for GCs Bidding the Next Gigawatt Campus
General contractors accustomed to pitching Meta or Microsoft now need different proposals when the buyer is a fund paired with a regulated utility. As a long-term infrastructure investor, Brookfield has historically emphasized lifecycle performance and long-term asset value across its infrastructure investments. NextEra’s side introduces a separate prequalification track, since building 2 gigawatts of turbines and 2.6 gigawatts of battery storage demands utility-grade EPC experience. Projects that combine large-scale data center construction with utility-scale power infrastructure may require contractors to demonstrate experience across multiple engineering disciplines or work alongside specialized partners. Staffing plans shift too, since Paducah alone needs roughly 8,000 construction workers, straining labor markets already stretched by competing projects. As a result, contractors proving workforce availability across both trades will hold a real advantage over single-discipline specialists.
Payment structures on fund-owned campuses reflect long-duration infrastructure financing, meaning different milestone schedules and bonding requirements than a single hyperscale client typically negotiates. Supply chain planning grows more complex too, since turbine backlogs and battery lead times force GCs to lock equipment commitments earlier than usual. Large integrated developments increase demand for contractors with expertise in high-voltage electrical systems, transmission infrastructure, and utility-scale equipment alongside traditional data center construction. Regulatory approval timelines add another variable, since the Public Service Commission still needs to sign off before certain phases proceed. Because the campus and power infrastructure are being developed by separate organizations, contractors may engage with multiple project teams depending on the scope of work. The increasing use of partnerships between infrastructure investors and power developers may create additional opportunities for contractors experienced in working across both sectors.
A New Class of Data Center Builder Has Arrived
Paducah reflects a broader trend of redeveloping former industrial and energy sites for large-scale digital infrastructure projects, with partnerships between infrastructure investors and power companies becoming increasingly common. Infrastructure funds bring balance sheet discipline and multi-decade patience that public tech companies answering to quarterly earnings often cannot sustain. Independent power producers bring permitting relationships and generation expertise no software company has spent decades building internally. Combining those two capabilities helps address two of the industry’s most significant challenges: securing long-term investment capital and developing reliable power infrastructure. While hyperscalers continue investing in self-built facilities, they are also increasingly using partnerships and leased infrastructure to expand capacity in selected markets. This approach separates infrastructure ownership from the delivery of digital services, allowing specialized companies to focus on their respective areas of expertise.
The largest gigawatt-scale campuses increasingly require substantial capital resources and access to utility-scale power infrastructure, factors that can favor well-capitalized partnerships. Contractors with experience spanning both data center construction and utility-scale power infrastructure may be well positioned to compete for increasingly integrated projects. Sites with existing transmission infrastructure, industrial utilities, and suitable development land are generally viewed as attractive locations for large-scale AI infrastructure projects. Technology companies pursuing self-built campuses continue to compete for equipment, power infrastructure, and skilled labor in increasingly constrained supply chains. Kentucky’s former uranium enrichment site is being redeveloped into a major AI infrastructure project as part of Brookfield’s broader plan to invest up to $100 billion in artificial intelligence infrastructure over time. The Brookfield–NextEra partnership illustrates one emerging model for developing large-scale AI infrastructure by combining long-term infrastructure investment with utility-scale power development.
