Bitdeer’s Norwegian subsidiary, Tydal Data Center AS (TDC), has signed a construction agreement with Data Center Installations AS (DCI) to redevelop its facility in Tydal, Norway, into a 180-megawatt artificial intelligence data center, with completion targeted for December 2026. The move marks a major step in Bitdeer’s broader push beyond bitcoin mining and into high-performance AI infrastructure.
A large-scale AI data center for the European market
The project is located in the Kirkvollen industrial area in the municipality of Tydal, in Trøndelag county, Norway. Under the agreement announced on March 30, DCI will oversee the full delivery cycle of the expansion, including design, planning, installation, testing, commissioning, and ongoing maintenance. DCI is a Norwegian contractor focused on critical infrastructure and has been part of Sparc Group AB since 2025.
According to the disclosed project outline, the Tydal facility is being configured primarily for AI colocation services built around Nvidia’s Vera Rubin GPU architecture, following Nvidia’s reference design approach. Customer equipment installations are expected to begin after the construction phase is completed, indicating that Bitdeer is building the site to serve external demand for high-density GPU capacity rather than only internal compute needs.
If delivered on schedule, the site would become the largest operational AI data center in Norway and rank among the largest in Europe by installed capacity. That scale is notable at a time when demand for AI-ready infrastructure continues to outpace available supply across the continent, especially for facilities able to support dense GPU deployments and heavy power loads.
Bitdeer’s pivot from bitcoin mining to AI infrastructure
The Tydal development also reflects a broader strategic shift inside Bitdeer. The company has spent 2025 and 2026 accelerating the site’s transition from bitcoin mining infrastructure into AI-oriented data center capacity. As part of that process, Bitdeer had already ordered long-lead equipment and advanced engineering and design work before the latest construction contract was formally awarded.
Bitdeer, headquartered in Singapore and listed on Nasdaq under the ticker BTDR, operates data centers across the United States, Norway, Bhutan, and Ethiopia. Its business model spans both cryptocurrency mining and high-performance compute infrastructure, putting it in a position to repurpose energy-rich mining sites for AI workloads as market economics evolve.
This repositioning is increasingly relevant across the digital infrastructure sector. Companies that historically built power-intensive facilities for crypto mining are now exploring AI opportunities, especially where they already control land, power access, cooling systems, and operational expertise. In Bitdeer’s case, the Tydal project appears designed to turn an existing bitcoin mining footprint into a dedicated European AI colocation hub.
Renewable energy and efficiency as core selling points
One of the central features of the Tydal site is its energy profile. The facility already operates on 100% carbon-free hydropower, a characteristic that could be important for customers facing emissions targets or environmental reporting requirements. The site also uses immersion cooling, a method often associated with better thermal efficiency in high-density compute environments.
Beyond power sourcing and cooling design, Bitdeer said excess heat generated by the facility will be redirected to support food production on a neighboring plot. While the company did not provide financial or operational details for that arrangement, the concept fits into a broader trend of data center operators looking for practical ways to reuse thermal output and improve overall energy utilization.
These sustainability elements may strengthen Tydal’s appeal in Europe, where energy costs, environmental standards, and carbon accountability all play an increasing role in infrastructure selection. Norway, in particular, has attracted ongoing attention from hyperscalers and AI compute operators because of its low-cost hydropower, cooler climate, and established data center base.
Management views the project as a strategic milestone
Haakon Bryhni, president and co-founder of TDC, described the Tydal conversion as a cornerstone of Bitdeer’s global strategy to meet what he called explosive demand for AI data centers. He said the project is intended to deliver sustainable and capital-efficient growth while also creating economic value locally.
From the contractor side, DCI co-founder Bjørn Arve Olsen said the agreement represents a significant milestone for the company both financially and operationally. He pointed to the project’s scale as well as the cost and schedule controls embedded in the delivery model.
Those comments suggest both parties see the contract as more than a standard build-out. For Bitdeer, it is a flagship AI infrastructure move in Europe. For DCI, it is a high-profile critical infrastructure engagement tied to one of the region’s largest planned AI data center deployments.
Why the Tydal project matters
The importance of the Tydal site lies in timing as much as scale. Across Europe, demand for AI compute capacity has been climbing rapidly, while available high-density data center supply remains constrained. Facilities capable of supporting next-generation GPU clusters require substantial power, specialized cooling, robust engineering, and dependable long-term operations. Those requirements have made new capacity difficult and expensive to bring online.
By leveraging an existing powered site and converting it from bitcoin mining to AI colocation, Bitdeer is attempting to shorten that path. The company is effectively using infrastructure originally built for one compute-intensive business to serve another, potentially higher-value market. Whether the model proves commercially successful will depend on execution, customer uptake, and broader AI infrastructure demand by the time the site is ready.
Still, based on the facts disclosed so far, the Tydal buildout gives Bitdeer a dedicated renewable-powered AI foothold in Europe at a moment when market demand for compliant, large-scale GPU capacity remains strong. If construction stays on schedule and customer deployments follow as planned, the facility could become one of the most significant examples of crypto-linked infrastructure being redeployed for the AI era.

