Hydronic systems engineered for performance in demanding climates
At effiQueenc®, we design complete hydronic systems integrating air-to-water heat pumps, geothermal solutions, thermal energy storage tanks, and fan coil units.
Our engineering approach focuses on optimizing performance, system stability, and energy efficiency under real operating conditions, even in cold climates.
Our systems are developed to meet the requirements of residential, commercial, institutional, and industrial applications, including processes requiring high temperatures.
Ideal for replacing fossil fuel systems in high-temperature applications, enabled by the UHT series.
Why choose an effiQueenc hydronic system

Optimized energy performance
Performance adapted to real operating conditions.

Installation flexibility
Solutions adapted to the project: air-to-water without excavation or geothermal with ground loop.

Project adaptability
Suitable for both new construction and retrofit applications.

Integrated energy storage
Improves system stability and performance in cold climates.

Intelligent control and advanced modulation
Optimized compressor management and reduced ON/OFF cycling.

Reduced greenhouse gas emissions
Energy-efficient solutions contributing to building decarbonization.

Our air/water heat pumps, energy storage tanks, fan coils, and hydronic components
Our heating and ventilation systems are specially designed for the climate in North America.


High efficiency air-to-water heat pump for heating and cooling
Save on your heating bill while doing your part for the environment

Thermal hydronic energy storage tank
To keep you more comfortable in periods of extreme cold

Fan coil and hydronic components
Elegant, whisper-quiet operation for optimal comfort indoors
effiQueenc designs and develops high-performance hydronic systems integrating air-to-water heat pumps, geothermal solutions, thermal energy storage tanks, and fan coil units.
Our technologies are engineered to deliver performance, reliability, and energy efficiency in demanding climate conditions.