Tenutec provides a graphene‑enhanced nanofluid that can be added to existing closed‑loop liquid‑cooling systems in data centers. The fluid raises thermal conductivity by up to 25 %, enabling roughly 20 % reductions in cooling energy and water use for high‑density AI and GPU workloads. It is non‑toxic, low‑viscosity, and integrates with standard coolant interfaces and DCIM tools.
Funding
Funding not disclosed
Founders
Product
Problem
Data centers that rely on conventional water‑glycol coolants face limited thermal conductivity, resulting in high energy consumption, elevated Power Usage Effectiveness (PUE), and excessive water use—especially problematic for high‑density AI and GPU deployments.
Solution
Tenutec supplies a proprietary graphene‑based nanofluid that can be introduced directly into existing liquid‑cooling loops without any hardware modifications. The nanofluid delivers up to 25 % higher thermal conductivity, allowing heat to be removed more efficiently and enabling pump speeds to be reduced. This translates into roughly 20 % savings in cooling energy and water usage while lowering overall PUE. The formulation is non‑toxic, chemically stable, and engineered for long service life, supporting continuous operation of hyperscale and AI‑intensive clusters. Integration is achieved through standard coolant interfaces, and performance data can be monitored via existing data‑center management tools.
Target Audience
Primary customers are hyperscale cloud providers, colocation operators, and enterprise data‑center managers deploying high‑density AI or GPU workloads that require efficient liquid cooling.
Features
- Graphene‑enhanced nanofluid with up to 25 % improvement in thermal conductivity versus traditional water‑glycol blends
- True drop‑in compatibility: fits standard closed‑loop liquid‑cooling systems without retrofitting or redesign
- Low viscosity and non‑abrasive composition reduces pump power demand and extends pump and heat‑exchanger lifespan
- Environmentally benign, non‑toxic formulation compliant with industry safety standards
- Enables up to 20 % reduction in cooling‑related water consumption through more efficient heat transfer
- Optimized for high‑density workloads such as GPU farms, AI accelerators, and hyperscale server racks
- Seamless integration with existing DCIM and monitoring platforms for real‑time performance tracking