WafrAI provides a proprietary closed‑loop cooling system designed for high‑density AI compute that eliminates reliance on external water supplies, achieving over 90% water reduction and up to 80% lower cooling energy use compared to traditional air‑cooled designs. The modular, multi‑megawatt blocks can be installed in new data centers or retrofitted into existing facilities, enabling higher compute density within fixed power envelopes while maintaining climate‑independent operation. Performance is publicly verified by third‑party engineering firms.
Funding
Funding not disclosed
Founders
Product
Problem
Data center operators face a growing cooling bottleneck as AI workloads increase compute density, leading to higher energy consumption and reliance on variable water resources. Traditional air‑based cooling systems consume 30‑40% of a facility’s power and cannot scale without exceeding water availability limits, especially in regions with water scarcity.
Solution
WafrAI offers a proprietary closed‑loop cooling architecture specifically engineered for high‑density AI compute. The system eliminates dependence on external water supplies, achieving over 90% reduction in water use and up to 80% lower cooling power compared to conventional designs. By integrating thermal storage for peak‑load management, the solution enables higher compute density within fixed power envelopes while maintaining stable, climate‑independent operation. Modular multi‑megawatt blocks can be deployed in new data centers or retrofitted into existing facilities, providing a scalable path from 1 MW labs to 100+ MW campuses. All performance claims are validated through rigorous measurement and verification protocols and publicly disclosed third‑party engineering assessments.
Target Audience
Primary customers are hyperscale cloud providers, enterprise data center operators, and AI‑focused infrastructure owners seeking to increase compute density while minimizing energy and water constraints.
Features
- Closed‑loop, near‑zero water cooling loop that decouples cooling performance from local water availability
- Up to 80% reduction in cooling energy consumption versus traditional air‑cooled architectures
- Integrated thermal storage to shift peak cooling loads and improve overall power efficiency
- Modular multi‑megawatt building blocks for rapid deployment in new builds or retrofits
- Scalable design supporting configurations from 1 MW up to 100+ MW campus‑scale installations
- Publicly verified performance metrics validated by internationally recognized third‑party engineering firms