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Aerothermal heat pump, designed for air water heating and central heating for residential and industrial use.
Latest generation heat pump with new natural R290 refrigerant.
Temperature up to 75oC, with maximum efficiency.
The Aquapura Inverter X30HT , X60HT AND X75HT has a DHW function, 100% hydraulic installation, ultra compact and innovative design.
The Aquapura Inverter X30HT , X60HT AND X75HT Heat Pump consists of an outdoor unit, in centaral heating versions, and an indoor unit, the water heater for the DHW version.
AQUAPURA X30HT
AQUAPURA X60HT
AQUAPURA X75HT

There is a refrigerant fluid that is pumped to an external heat exchanger (evaporator). At this point, the fluid absorbs energy from the environment thanks to the temperature difference present outside. During this process, the fluid changes state and turns into vapor. The gaseous fluid is then drawn into the mechanical part of the system—the compressor. In the compressor, the fluid is compressed, which increases its pressure and, consequently, its temperature. Next, the fluid moves to a second internal heat exchanger (condenser), where it transfers the accumulated heat to the home’s heating system. As it naturally cools, the fluid returns to its liquid state. Finally, the fluid’s pressure is reduced through a throttling process in the expansion valve, and the cycle begins again.
Heat pumps are designed for both heating and cooling, as well as domestic hot water heating. These solutions stand out for their high energy efficiency, enabling them to achieve an energy rating of up to A+++ for heating. They are also notable for their ability to integrate with other heating systems and for their ease of installation.
The heat from the environment is indirect solar energy, stored in water, air, and soil. The heat pump extracts heat precisely from these sources to later use it for heating and cooling your home. Air/Water heat pumps with high-energy-efficiency INVERTER technology are a modern, efficient, and clean solution that ensures the comfort of your home while always respecting the environment.
It is an intelligent way to use natural resources to improve your quality of life. By adopting one of these solutions, you are making a serious commitment to reducing harmful emissions into our atmosphere, thereby contributing to the natural balance of the planet. Air/Water heat pumps with INVERTER technology have been developed to meet both domestic and industrial needs, for heating and cooling solutions as well as domestic hot water (DHW) production.
Compared to an oil boiler, gas boiler, or electric heater, a heat pump provides a better quality of life with low operating costs, thanks to its high efficiency.

DC INVERTER technology is different from any other technology existing on the market because it has a compressor with the capacity to vary the operating frequency, meeting the exact needs of climatization comfort at home. This achieves greater savings in energy consumption.

Use a natural refrigerant with less global warming potential.
It features low noise levels, almost imperceptible just a few meters away when in operation.
The system contains no fluorinated gases, it is 100% hydraulic.

Guaranteed high performance regardless of the use: heating, cooling or production of DHW.
The equipment can reach temperatures up to 75°C making it the ideal solution for replacing boilers.
The A+++ efficiency class gives the equipment one of the highest efficiencies on the market.
The equipment has an ABS polymer-coated exterior designed to provide protection against corrosion.



| TECHNICAL DATA | UND. | X30HT | X60HT | |
|---|---|---|---|---|
| Power supply | -- | 380-415V/3N~/50Hz | 380-415V/3N~/50Hz | |
| Refrigerant | -- | R290 | R290 | R290 |
| Refrigerant charge /CO2 equivalent | kg / Ton | 1,8 / 0,0055 | 1,5 x 2 / 0,0092 | 2,4 x 2 / 0,01472 |
| Heating capacity (min/max) | kW | 9,1 / 35,0 | 14,1 / 69,5 | 19,2 / 79,2 |
| Cooling capacity (min / max) | kW | 6,1 / 22,5 | 9,31 / 48,2 | 12,6 / 54,3 |
| Maximum operating current | A | 20 | 30 | 45 |
| Maximum operating power | kW | 13,1 | 19,7 | 29,5 |
| Operating temperature limit | oC | -25 / 43 | -25 / 43 | -25 / 43 |
| Moisture resistance | -- | IPX4 | IPX4 | IPX4 |
| Heating - Air temperature (DB/WB) 7°C/Water temperature (inlet/outlet) 30°C/35°C | ||||
| Nominal heating capacity | kW | 28,1 | 54,6 | 67,1 |
| Nominal power consumption | kW | 6,1 | 12,18 | 14,84 |
| COP | -- | 4,61 | 4,48 | 4,52 |
| Cooling - Air temperature (DB/WB) 35°C/ 24°C; Water temperature (inlet/outlet): 12°C/ 7°C | ||||
| Nominal cooling capacity | kW | 19,5 | 43,2 | 52,1 |
| Nominal power consumption | kW | 5,5 | 12,4 | 14,8 |
| EER | kW | 3,54 | 3,47 | 3,52 |
| Technical Specifications | ||||
| Maximum heating temperature | oC | 75 | 75 | 75 |
| Minimum cooling temperature | oC | 7 | 7 | 7 |
| Electric backup heater | Un. | Non-integrated | Non-integrated | Non-integrated |
| Number of compressors | Un. | 1 | 2 | 2 |
| Compressor typology | -- | DC Inverter | DC Inverter | DC Inverter |
| Water pump | Un. | Integrated | Integrated contactor | Integrated contactor |
| Nominal water flow (tmax. = 7oC) | m3/h | 3,5 | 6,9 | 8,3 |
| Internal pressure drop of the hydraulic circuit | kPa | 50 | 20 | 25 |
| Number of fans | Un. | 2 | 1 | 2 |
| Hydraulic connections (inlet/outlet) | Inch | 1" 1/4 | 1" 1/2 | DN50 |
| Sound pressure level (1m) | dB(A) | 51 | 53 | 56 |
| Sound power level (1m) | dB | 66 | 69 | 73 |
| Net weight | kg | 202 | 363 | 624 |
| Net dimensions ( A x L x P) | mm | 1330 x 1250 x 540 | 1816 x 1198 x 980 | 1897 x 1987 x 1056 |
| Erp / Performance according to EN 14825 – Average climate (+7ºC) | ||||
| Energy efficiency class (35°C) | -- | A+++ | A+++ | A+++ |
| SCOP/ɳ | -- / % | 4,72/ 186 | 4,59 / 180 | 4,62 / 182 |
| Energy efficiency class (55°C) | -- | A++ | A++ | A++ |
| SCOP/ɳ | -- / % | 3,49/ 136 | 3,43 / 134 | 3,71 / 145 |

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