Mint builds climate‑aligned digital infrastructure for energy‑intensive workloads such as Bitcoin mining, high‑performance computing and AI. By deploying off‑grid, solar‑powered sites like the 100 kW Cheyenne‑1 mining facility, it reduces strain on residential grids while improving resource efficiency. The platform also supports manufacturing optimization and predictive maintenance through HPC‑driven AI.
Funding
$150M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Energy‑intensive workloads such as Bitcoin mining, high‑performance computing, AI, and scientific analytics place heavy demand on electrical grids, often relying on fossil‑fuel generation and causing stress to residential power infrastructure.
Solution
Mint creates off‑grid, solar‑powered digital infrastructure sites that supply clean electricity directly to these compute workloads. By locating dedicated solar farms—such as the upcoming 100 kW Cheyenne‑1 facility—Mint isolates mining and HPC operations from the residential grid, reducing grid load and associated emissions. The platform integrates renewable generation with high‑efficiency compute hardware, enabling continuous operation while supporting the broader energy transition. In addition, Mint leverages HPC‑driven AI to provide manufacturing optimization and predictive maintenance services, helping operators minimize waste and downtime.
Target Audience
Primary customers are operators of Bitcoin mining farms, high‑performance computing clusters, AI workloads, and enterprises requiring large‑scale scientific or genomic data processing.
Features
- Fully off‑grid solar power generation dedicated to compute workloads, eliminating reliance on residential electricity
- Scalable site design that can be replicated for Bitcoin mining, high‑performance computing, AI, and scientific analytics
- Integrated AI analytics for manufacturing process optimization and predictive maintenance
- High resource efficiency through direct coupling of renewable generation and compute hardware
- Planned deployment timeline with the Cheyenne‑1 100 kW solar‑powered mining site slated for completion in Q2 2026