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Thermodynamic Solar Heat Pump built to the highest quality standards with excellent performance.
The evaporation of the fluid that runs inside the closed looped circuit happens on the solar panel by capturing the heat from the sun, wind, rain and surrounding air by natural convection. The heated fluid then travels to the compressor, that will compress the fluid increasing its pressure and also it’s temperature. Then it goes to the heat exchanger where where this heat is transferred to the water. After this, an expansion valve will make the pressure and temperature drop to sub-zero values. The fluid travels up to the thermody- namic solar panel and the cycle repeats again.
Tested and certified according to the most rigorous European standards it has achived an extraordinary coefficient of performance of 3,8 according to the EN16147. The testing was carried out without solar irradiance, wind or rain. To enhance the real operating performance even more we advise to instal the thermody- namic solar pane facing South (North on the southern hemisphere), east or west. Vertically or horizontally on a wall, roof, flat roofbut always on a landscape position.
The thermodynamic solar panel is made of anodised aluminium with a special Solokote finishing that ensures it’s robust and long-lasting against corrosion, in particular when exposed to saline and/or aggressive environments. This innovative technical feature allows energie to provide a 10 years warranty against corrosion, ensuring peace of mind to the end user.
INSIDE UNIT | ULTRA6 | ULTRA12 | ULTRA16 | ULTRA32 | |||
---|---|---|---|---|---|---|---|
Heating capacity (1) | Power supplied | kW | 4,1 - 11,2 | 5 - 19 | 8 - 26 | 18,5 – 48,2 | |
Maximum power supplied | kW | 11,2 | 18,7 | 25,8 | 48,2 | ||
Heating capacity (2) | Nominal power supplied | kW | 8,5 | 10,3 | 16,2 | 39,6 | |
Nominal consumption | kW | 1,7 | 2,15 | 3,45 | 8,1 | ||
COP | kW | 4,97 | 4,8 | 4,7 | 4,91 | ||
Heating energy class | - | A+ | |||||
Dimensions | HxWxD | cm | 106X60X80 | 106X60X80 | 106X60X80 | 106X60X80 | |
Weight | Kg | 115 | 115 | 115 | 135 | ||
Maximum temperature | °C | 55 | 60 | |||||
Hydraulic Connections | Inlet/Outlet | - | 1”M | ||||
Refrigerant | Type | - | R410A | ||||
Preload | Kg | 3,5 | |||||
Connections | Liquid | - | 1/2” | ||||
Steam | - | 3/4” | |||||
Sound pressure | (distance 10m) | dBA | 65 | ||||
Alimentação Elétrica | Electric cable | Type | - | 240V~50/60Hz | 240V or 400V~50/60Hz | 400V~50/60Hz | |
Maximum power consumed | kW | 2.75 | 5.7 | 7.8 | 13.2 | ||
OUTSIDE UNIT - SOLAR PANELS | |||||||
Number | - | 6 | 12 | 16 | 32 | ||
Dimensions | HxWxD | mm | 2000x800x20 | ||||
Weight | Kg | 8 | |||||
Type | - | Passive solar evaporator | |||||
Material | - | Anodized aluminum | |||||
CONNECTION BETWEEN UNITS | |||||||
Maximum nominal distance | m | 20 | |||||
Maximum Drop | m | 15 | |||||
(1) According to EN14511; Air temperature DB/WB 14°C/13°C; Water temperature inlet/outlet 30°C/35°C; Solar radiation 800w/m2 (2) According to EN14511; Air temperature DB/WB 7°C/6°C; Water temperature inlet/outlet 30°C/35°C; Solar radiation 400w/m2 (3) According to EN 16147, A 14 / W 10-54 Hydraulic Kit for Central Heating: Expansion vessel + safety valve | Hydraulic Kit for DHW: Expansion vessel + safety group + pressure reducing valve |
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