It is a heat pump with a Hybrid Panel for the production of Domestic Hot Water and electricity. This captures the energy contained in the ambient thanks to the heat transfer fluid (glycolated water) that circulates inside the panel, and which also produces electrical energy thanks to hybridization with the photovoltaic panel.
With the combination of photovoltaic and thermal energy, this system provides Domestic Hot Water and electricity simultaneously.
Reduces energy costs compared to using separate systems. This means savings on bills and amortization of the installation.
Reduces energy consumption thanks to its ability to make the most of solar energy and produce both heat and electricity.
System that improves the energy efficiency of the home, with a tank made of stainless steel, advanced control, thick insulation that reduces noise.
TWO TECHNOLOGIES DOUBLE THE POWER
The Hybrid Panel combines two technologies: photovoltaic and thermal, generating heat for DHW and electricity in the same panel. The photovoltaic upper part converts light into electricity, while the thermal inner part captures ambient energy day and night. This combination maximizes efficiency and reduces energy costs.
State of the art photovoltaic production with the best solar utilization that exists on the market.
This heat pump with a hybrid panel takes advantage of both solar thermal energy and solar photovoltaic energy, allowing it to generate electricity and heat water in an efficient and sustainable way. By installing a hybrid system, you will be able to reduce your dependence on the electrical grid and fossil fuels, thanks to this, you will achieve savings on your energy bill in the long term. de energía a largo plazo.
Additionally, hybrid panels take up less space than installing separate systems for each function, which is especially useful if you have limited space on your property or roof. By reducing the carbon footprint of your home or building, you will be helping to protect the environment.
That is why this heat pump with hybrid panel is an innovative and efficient solution for the generation of electricity and domestic hot water in a single system. Take advantage of the power of the sun and make your installation a more sustainable place!
When the panels reach temperatures of up to 75°C under intense solar radiation, they cause a 25% drop in performance.
Faced with this situation, the Efitherma Hybrid Panel with heat pump allows the panels to be cooled down to -15°C. This cooling not only mitigates the effects of photovoltaic overheating, but also increases panel performance by up to 40% compared to one at 75°C, thus offering an innovative and efficient solution to optimize energy generation and extend useful life of the panels.
With the most powerful photovoltaic panel on the market you will get:
The hydraulic circuit of the hybrid panel prevents overheating of the photovoltaic base. It is composed of water, an element that makes this technology efficient and environmentally friendly.
We offer a 100% renewable system in a closed circuit that combines:
Extraction cycle
XL
Nominal power DHW (14ºC)*
1834w
Nominal consumption (14ºC)*
571w
SCOP DHW (14ºC)*
3,21
Thermal power support system
1500w
Refrigerant gas
R134a
* Data expressed for a heating temperature of 55ºC and cold water temperature of 10ºC according to the UNE-EN16147 standard.
* SCOP depending on the climatic zone
Equipment dimensions (AxBxC)*
1785 x 550 x 601 mm
Empty equipment weight
107,5Kg
Panel dimensions (AxBxC)*
2094 x 35 x 1038 mm
Hydraulic connections DHW**
M 3/4 – 3/4 Pulg.
Hydraulic connections 2Water systems**
F 1/2 – 1/2 Pulg.
Hydraulic connection between panels***
20 mm
* A = Height / B = Depth / C = Width
** M (Inlet and outlet of the equipment’s hydraulic connection in Male).
** F (Inlet and outlet of the equipment’s hydraulic connection in Female).
*** Press connection between panels with 20mm tube.
It is a heat pump with a Hybrid Panel for the production of Domestic Hot Water and electricity. This captures the energy contained in the ambient thanks to the heat transfer fluid (glycolated water) that circulates inside the panel, and which also produces electrical energy thanks to hybridization with the photovoltaic panel.
Reduces energy costs compared to using separate systems. This means savings on bills and amortization of the installation.
With the combination of photovoltaic and thermal energy, this system provides Domestic Hot Water and electricity simultaneously.
Reduces energy consumption thanks to its ability to make the most of solar energy and produce both heat and electricity.
System that improves the energy efficiency of the home, with a tank made of stainless steel, advanced control, thick insulation that reduces noise.
The Hybrid Panel combines two technologies: photovoltaic and thermal, generating heat for DHW and electricity in the same panel. The photovoltaic upper part converts light into electricity, while the thermal inner part captures ambient energy day and night. This combination maximizes efficiency and reduces energy costs.
State of the art photovoltaic production with the best solar utilization that exists on the market.
With the most powerful photovoltaic panel on the market you will get:
The hydraulic circuit of the Hybrid Panel prevents the photovoltaic base from overheating. It is composed of water, an element that makes this technology efficient and environmentally friendly.
We offer a 100% renewable system in a closed circuit that combines:
When the panels reach temperatures of up to 75°C under intense solar radiation, they cause a 25% drop in performance. Faced with this situation, the Efitherma Hybrid Panel with heat pump allows the panels to be cooled down to -15°C
This cooling not only mitigates the effects of photovoltaic overheating, but also increases panel performance by up to 40% compared to one at 75°C, thus offering an innovative and efficient solution to optimize energy generation and extend useful life of the panels.
* Datos expresados para una temperatura de calentamiento de 55ºC y temperatura de agua fría de 10ºC según la norma UNE-EN16147
* SCOP según la zona climática
* A = Alto / B = Profundo / C= Ancho
** M (Entrada y salida de la conexión hidráulica del equipo en Macho).
** H (Entrada y salida de la conexión hidráulica del equipo en Hembra).
*** Unión Prensa entre paneles con tubo de 20mm.
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