ENX is a versatile geothermal compact heat pump, highly energy-efficient thanks to the use of BLDC inverter digital scroll compressors. It can fully meet heating, cooling and domestic hot water production requirements, achieving maximum levels of energy efficiency derived from geothermal energy.
Its wide hydraulic configurability allows it to be equipped with electronic pumps, internal modulating 2- or 3-way valves and external auxiliary devices to be controlled autonomously.
A compact and reliable unit to serve a geothermal system ensuring the highest levels of efficiency and sustainability.
Efficiency and reliability
The ENX heat pump is both reliable and efficient. Suitable for both geothermal probe and groundwater systems, it is equipped with BLDC digital scroll inverter compressors and electronic pumps that make it ideally suited also to systems that require extensive seasonal modulation.
Regulation and remote control
The control software supplied allows all the necessary adjustments to be made in order to maximise efficiency and configurability according to the different system types. The unit interfaces with any communication protocol, for the management and control of operations, even remotely.
Operation
ENX heat pump technology.
BLDC inverter scroll compressor
The high-efficiency BLDC inverter scroll compressor allows ENX to produce hot water up to 65°C and guarantees operating efficiency in all conditions of use.
MODULATING FLOW CONTROL
Electronic pumps and modulating valves, installed inside the unit, are essentially important to ensure flow rate control at constant temperature or constant delta T. Thanks to their control microprocessor, they are also able to adapt to every system need.
EEV
The electronically controlled expansion valve (EEV) maximises ENX performance under any temperature condition, at both source and user end, to ensure consistent efficiency and versatility.
FREE COOLING/HEATING
Wherever the source has temperature levels that allow its use without a compressor, ENX is able to independently manage the production of chilled or heated water, thus obtaining very high energy efficiency.