NVIDIA reportedly securing $50 billion lease for nuclear-powered AI factory campus
Two recent announcements capture the rapidly changing economics and engineering of the data center industry. In Texas, NVIDIA has reportedly emerged as the customer behind lease commitments worth as much as $50.2 billion at Hut 8's one-gigawatt Beacon Point campus. In Idaho, Aalo Atomics and Crusoe announced a partnership to demonstrate a nuclear-powered AI data center in 2027 and begin deploying commercial 50-megawatt nuclear-powered AI factories by the end of 2029.
Though the projects differ vastly in scope, both signal that the industry is here to stay and that technology will be a major differentiator going forward. Beacon Point is a gigawatt-scale campus designed for hundreds of megawatts of dense AI computing. The Aalo-Crusoe project aims to be a practical demonstration beginning with a modular data center powered by a relatively small advanced reactor. Both announcements share a defining characteristic: neither treats the data center as an isolated building connected to whatever utility service happens to be available. Instead, both look toward a future that combines compute architecture, financing, construction, power and operations into a more vertically coordinated infrastructure platform.
The NVIDIA story is not a conventional $50 billion equity investment or check written upfront. Hut 8 has disclosed two 15-year leases at Beacon Point with a combined base-term contract value of $19.6 billion. If all renewal options are exercised, the campus-level value could reach $50.2 billion.
The Financial Times identified NVIDIA as the previously unnamed investment-grade tenant, while Reuters said it could not independently verify the report. NVIDIA neither confirmed nor denied its role, stating only that it is working with ecosystem partners to deploy efficient AI infrastructure through its DSX AI factory architecture.
If confirmed, this arrangement would represent a notable expansion of NVIDIA's role in the data center market. NVIDIA would become an anchor tenant whose credit quality helps finance a multibillion-dollar campus—not merely a supplier of GPUs, networking, systems and software.
The Beacon Point campus, located in Nueces County, Texas, has one gigawatt of utility capacity secured through an interconnection agreement with AEP Texas. The two leases cover 704 megawatts of IT capacity, divided into two 352-megawatt phases. Each phase carries a base-term contract value of approximately $9.8 billion.
The second agreement fully commercialized the campus and increased Hut 8's total contracted AI data center portfolio to 949 megawatts, supported by 1,330 megawatts of utility capacity. Hut 8 projects aggregate base-term contract value of $26.6 billion and average annual net operating income exceeding $1.75 billion across its contracted AI portfolio.
The campus is being designed around NVIDIA's DSX reference architecture for gigawatt-scale AI factories. Like other purpose-built AI facilities, it is engineered as a complete computing system rather than a collection of interchangeable servers. GPU clusters require coordinated design across electrical distribution, liquid cooling, networking, rack density, software orchestration and building layout. NVIDIA describes DSX as a common platform that brings together reference designs, accelerated computing, software, facility systems and partner technologies, intended to improve deployment speed, reliability and token performance per megawatt.
Reporting has speculated that NVIDIA could sublease capacity to cloud providers that purchase its GPUs and sell AI computing services. This model would allow smaller cloud companies and AI developers to access large-scale capacity without independently signing a multibillion-dollar campus lease. NVIDIA could help accelerate projects that might otherwise struggle to secure financing, standardize deployments around its architecture and expand the customer base for AI compute. Hut 8 would gain a long-term, investment-grade tenant and a clearer path to financing construction. Under a subleasing model, neocloud providers could gain access to scarce power and data center capacity.
The difference between the $19.6 billion base term and the potential $50.2 billion value is especially important. The larger number depends on future renewals extending beyond the initial 15-year commitments. In an industry where computing systems turn over rapidly, the physical campus may remain valuable for decades, but its technology, power density and cooling systems will require repeated upgrades.
Hut 8 has already demonstrated the importance of design flexibility. The company redesigned the first Beacon Point data hall around NVIDIA's architecture, increasing capacity by 57 percent within the same land and utility footprint. The first Phase 2 data hall is expected to be delivered during the second quarter of 2028.
The Aalo-Crusoe partnership addresses the industry's power problem by bringing power generation directly to the compute, bypassing intermediary power stages such as grid connections or custom behind-the-meter gas turbine solutions and going straight to nuclear.
Aalo Atomics and Crusoe plan to deploy a Crusoe Spark modular data center running Crusoe Cloud at Idaho National Laboratory in 2027. The proof-of-concept project will demonstrate AI workloads operating on power from an Aalo advanced reactor. Crusoe continues to expand other data center campus projects.
The companies then intend to deploy Aalo Pods, Aalo's 50-megawatt-electric nuclear power plants, at Crusoe data centers by the end of 2029. Aalo has already begun work on a second reactor beside its initial test unit at the Idaho site. That reactor is expected to produce electricity for the Crusoe installation.
On July 4, 2026, Aalo's zero-power Critical Test Reactor reached criticality, sustaining a nuclear chain reaction without generating commercial electricity. The test reactor contains a full-scale core and components analogous to those planned for the 10-megawatt-electric Aalo-X power reactor being built next door, but operates before sodium coolant and electricity-generating systems are added.
Aalo plans to continue experiments with the Critical Test Reactor to refine its reactor-physics models, characterize control behavior and generate data supporting development and licensing of the full-power Aalo-X system.
Advanced nuclear announcements sometimes blur the line between a successful test, an electricity-producing demonstration and a commercially licensed fleet. Aalo has achieved an important technical milestone, but substantial work remains before reactors can be manufactured, licensed, financed and operated at commercial data center sites.
The pairing with Crusoe is significant because it connects a reactor developer with a company that can provide the data center load, physical infrastructure and cloud platform. Crusoe Spark is a prefabricated AI data center integrating power, cooling, remote monitoring, fire suppression and high-density racks. Crusoe says the modules can be deployed individually or combined into larger clusters, scaling from hundreds of kilowatts to tens or hundreds of megawatts. The factory lease, buildout and investment in an initial fleet of Spark modules represents a commitment of more than $200 million.
This modularity aligns closely with Aalo's product strategy. A 50-megawatt Aalo Pod could support a meaningful AI deployment without waiting for the transmission upgrades required by a conventional hyperscale campus. Multiple reactor and data center modules could theoretically be added as demand grows, creating a more incremental development model than building a one-gigawatt campus before full load is ready. It also represents an effort to apply factory manufacturing to both halves of the project: Aalo manufactures the power plant while Crusoe manufactures the data center.
The obstacles for even a small reactor deployment outside a national laboratory are significant. Commercial deployments will require regulatory approvals, acceptable safety and security arrangements, fuel availability, waste-management plans, insurance, financing and community support. First-of-a-kind reactors also face construction and cost risks even when their designs emphasize factory manufacturing.
Aalo has secured more than $136 million in funding and is expanding toward a one-million-square-foot manufacturing operation. Nevertheless, the 2027 demonstration and 2029 commercial targets should be viewed as ambitious milestones rather than guaranteed delivery dates.