Miners Advised Not to Buy GPUs for AI and to Focus on Infrastructure

cryptonews.ruPublished on 2026-07-28Last updated on 2026-07-28

Abstract

A founder at an energy investment forum advises bitcoin miners not to purchase GPUs for AI themselves, but to instead focus on infrastructure like power and data center space. Mike Alfred of Alpine Fox stated that while AI infrastructure demand is a long-term, 20-30 year trend, it presents a key choice for miners. The first, riskier model involves owning and operating GPUs, which requires financing expensive hardware that quickly becomes obsolete. The second, more conservative model is akin to real estate: providing colocation services where clients bring their own servers, and the miner sells space, power, cooling, and water. Alfred noted this model is easier to finance. Most existing bitcoin mining sites are difficult and expensive to convert for AI, as AI data centers require far higher construction costs, redundant fiber connections, backup power, complex cooling, and near 100% uptime. A hybrid model, where mining acts as a flexible load to use excess power during AI data center construction or from generation facilities, was discussed. However, participants concluded this is only viable with very cheap power; otherwise, developers are better off focusing solely on AI. Miners are increasingly being evaluated for their available power capacity and project portfolios rather than just bitcoin output. Panelists also warned of risks in the AI sector, predicting at least one major default or contract breach among AI tenants, lenders, or landlords before bitcoin's next halving ...

Alpine Fox founder Mike Alfred stated at the Energy Investors Forum in Dallas that he does not consider the boom in artificial intelligence infrastructure to be a bubble, reports TheEnergyMag.

At the same time, the investor warned: for bitcoin miners, diversification into AI comes down to choosing a model—selling sites and power or additionally taking on the risk of purchasing GPUs.

Alfred expressed confidence that the demand for AI infrastructure will persist over a 20–30 year horizon, even if the market experiences corrections and economic downturns.

He described the key fork in the road for miners as a choice of operating model. The first option is to own GPUs at their own sites. This offers the chance of higher revenue and greater control but sharply raises the stakes: the operator needs to finance equipment purchases, account for the risk of rapid chip obsolescence, and ensure constant utilization of capacity.

"If you decide to own them, you must have a very good reason," emphasized the expert.

The second option is colocation. The client places servers and chips themselves, and the site owner sells space, electricity, water, and cooling for the "hardware." Alfred called this scheme more conservative and likened it to real estate. That is precisely why it is much easier to attract financing for it, he noted.

Alfred serves on the board of directors of IREN as a non-executive director. According to him, about 80% of Alpine Fox's investments are concentrated in IREN, as well as in Cipher Digital.

Both companies started as bitcoin miners and later moved into the AI sphere. Among recent deals in this direction are IREN's five-year agreement with Microsoft for approximately $9.7 billion to supply cloud infrastructure based on Nvidia GB300 chips, as well as Cipher's 10-year contract with Fluidstack for equipment placement and allocation of 168 MW of capacity at the Barber Lake site in Texas.

Most Bitcoin Mining Sites Are Not Ready for AI

A significant portion of active cryptocurrency mining facilities are difficult and expensive to convert into AI data centers. This conclusion was reached by participants in a thematic panel at the Energy Investors Forum.

The forum discussed the concept of a model where mining acts as a flexible load:

  • temporarily monetizes unused electricity during the construction phase of an AI campus or absorbs excess generation;
  • shuts off when power is needed for more expensive computations.

SATOKIE founder and CEO Jay Zapata noted that when competing for a suitable substation, cryptocurrency mining will always lose to AI in business attractiveness.

According to TheEnergyMag's observations, investors are increasingly evaluating miners through the lens of available power capacity and project portfolio, not just by bitcoin mining volume. As examples, the publication cited TeraWulf's July agreement with Anthropic for 20 years on a campus in Hawesville (Kentucky) with approximately 401 MW of critical IT capacity and expected revenue of about $19 billion, as well as Galaxy Digital's 15-year deal with CoreWeave for the Helios facility in West Texas at 133 MW and about $4.5 billion in revenue. However, both cases are closer to fully pivoting sites towards AI than to a sustainable coexistence of the two models.

Zapata estimated the cost of building a mining site at $200,000-300,000 per 1 MW versus over $10 million per MW for AI infrastructure excluding chips. According to him, an intermediate scheme only works with cheap electricity: at a price of $0.06-0.08 per kWh, the economics of mining become challenging, and it is more profitable for a developer to go straight into AI or simply hold onto power access without mining revenue.

Panelists emphasized that electricity for an AI project is just the starting point. Typical mining facilities are often located in remote areas, built to simplified standards, and have limited redundancy. AI tenants need redundant fiber-optic lines, backup generation, complex cooling, water, large plots for development, and service availability at about 99.999%.

Compass Mining's Director of Mining, Shannon Squires, stated that after evaluating many new sites for Tier 3 data centers, it became clear that the vast majority of them are unrealistic for this purpose. According to him, the intersection of the two models mostly ends at land, substations, and step-down transformers.

A more sustainable version of the hybrid scheme was named by the speakers as sites with their own generation. Upstream Data CEO Steve Barbour noted that gas power plants are often built with excess capacity, which can be taken by mining while the AI site uses the guaranteed 24/7 load. Then digital asset mining remains a secondary consumer and can be quickly shut down without violating service obligations.

At the same time, panel participants believed that expensive GPUs are less suitable for such flexibility, and long-term AI contracts carry concentration risk. According to the assessment of all four speakers, before the next Bitcoin halving in 2028, at least one major tenant, lender, or lessor in the AI segment could default or break a contract.

Recall that public bitcoin miners are increasingly converting power capacities and data centers into infrastructure for artificial intelligence, according to data from Stanford University.

end-content

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Related Questions

QAccording to investor Mike Alfred, what are the two main operational models for Bitcoin miners diversifying into AI?

AThe two main models are: 1) Owning and operating GPU hardware themselves for potentially higher revenue but with increased risks (financing, rapid chip obsolescence, maintaining capacity utilization). 2) Providing colocation services, where clients bring their own servers/GPUs and the site owner sells space, power, water, and cooling—a more conservative model comparable to real estate.

QWhat key conclusion did participants at the Energy Investors Forum reach about converting existing Bitcoin mining sites for AI?

AThey concluded that a significant portion of existing Bitcoin mining sites are difficult and expensive to retrofit into AI data centers. Most are built to simplified standards in remote locations and lack the redundant fiber optics, backup generation, complex cooling, water access, and 99.999% service availability required by AI tenants.

QWhy is the colocation model considered easier to finance compared to owning GPU hardware for AI, according to the article?

AThe colocation model is considered easier to finance because it is viewed as a more conservative and predictable business, similar to real estate, where the site owner sells core infrastructure (space, power, cooling) rather than taking on the financial and technological risks associated with owning and rapidly depreciating GPU equipment.

QWhat is the 'flexible load' model discussed for mining and AI coexistence, and what is its main limitation?

AThe 'flexible load' model involves using Bitcoin mining to monetize spare electricity during the construction of an AI campus or to absorb excess generation, shutting down when power is needed for more valuable AI computations. Its main limitation is that it only works economically with very cheap electricity (around $0.06–0.08 per kWh); otherwise, it's more profitable to dedicate the site fully to AI.

QAccording to the panelists, what is a more viable version of a hybrid model combining Bitcoin mining and AI?

AA more viable hybrid model involves sites with their own power generation, such as gas-fired power plants often built with excess capacity. Bitcoin mining can act as a flexible, secondary consumer for this excess power, while the AI facility uses the guaranteed baseload. The mining operation can be quickly shut down without breaching the AI service obligations.

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