Every application brings its own operating conditions, from fluctuating loads and high ambient temperatures to regulatory requirements and extended operating hours.
JAEGGI works closely with engineers, consultants, contractors, and operators to understand these conditions and design hybrid and adiabatic cooling systems that deliver reliable performance, high efficiency, and long-term operational value in real-world environments.

Our core application areas
Our cooling solution are deployed across a wide range of sectors, each with distinct performance, efficiency and compliance requirements.
Data centers & IT cooling
Industrial process cooling
HVAC & commercial buildings
Designed around the application
Application requirements play a critical role in determining the most effective cooling strategy. By assessing operating conditions, performance targets and site constraints, JAEGGI tailors each solution to deliver optimal efficiency and reliability.
Key considerations
- Load profiles and duty cycles
- Ambient temperatures and climate conditions
- Water availability and usage targets
- Energy efficiency and operating costs
- Regulatory and compliance requirements
Our solutions in action
Across research institutes and large data centres, our hybrid and adiabatic systems operate in some of the world’s most demanding environments. Explore real projects and the challenges they solved.

The right cooling strategy for every application
Depending on the application, JAEGGI solutions may combine hybrid and adiabatic cooling technologies to balance performance, efficiency and sustainability.
Our engineering team works closely with customers to identify the most suitable cooling approach, supported by proven products and long-term service expertise.

Engineered systems, not standard configurations
Each application is supported by a flexible range of hybrid and adiabatic product families, designed to integrate seamlessly into wider cooling and HVAC systems.
This modular approach allows solutions to be adapted to specific application demands without compromising performance or efficiency.
