Whiptail Polytech builds AI‑ready data center campuses in West Texas that provide behind‑the‑meter, clean power using Bloom Energy solid‑oxide fuel cells with CO₂ capture. Their first phase delivers 350 MW of power within 18 months on an 8,000‑acre site, scalable to 12 GW, offering tenants a 99.999% power SLA and rapid, customized deployment without grid interconnection delays.
Funding
Funding not disclosed
Founders
Product
Problem
Data center operators seeking AI workloads face long lead times for power infrastructure, grid interconnection delays, and limited access to clean, reliable energy sources, which hinder rapid deployment and scaling.
Solution
Whippail Polytech develops large‑scale, AI‑ready data center campuses in West Texas that provide behind‑the‑meter, clean power generated by Bloom Energy solid‑oxide fuel cells with CO₂ capture. The initial 350 MW phase can be built within 18 months, and the 8,000‑acre site is engineered to expand to 12 GW of IT load. Pre‑secured natural‑gas supply, CO₂ pipelines, and fiber connectivity eliminate traditional permitting and grid‑interconnection bottlenecks, delivering a 99.999 % power availability SLA and enabling tenants to customize and occupy facilities quickly.
Target Audience
Primary customers are hyperscale cloud providers, AI compute operators, and enterprise data center developers requiring rapid, large‑scale deployment of clean, reliable power for AI workloads.
Features
- 350 MW initial power capacity delivered in 18 months, with a roadmap to 12 GW on the same site
- Behind‑the‑meter power generation using Bloom Energy solid‑oxide fuel cells for high availability and dispatchability
- Integrated CO₂ capture and sequestration for a net‑zero emissions power supply
- Pre‑installed natural‑gas, CO₂ pipeline, and fiber infrastructure to bypass grid interconnection and permitting delays
- 99.999 % power availability service level agreement supporting mission‑critical AI workloads
- Modular campus layout allowing up to 50 separate data center footprints, each with 240 MW IT load capacity