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This heating system is specifically designed to be optimal for regions with tropical or subtropical climates such as Southeast Asia, South Africa, South Europe, and other similar areas. It utilizes a heat pump to produce hot water that can reach temperatures up to 60ºC, making it ideal for both underfloor and radiator heating.
The intelligent EE valve incorporated in the design of this system is highly efficient across various ambient temperatures, ensuring that it maintains consistent performance throughout the year. The plug-and-play motherboard also makes it easy to service, minimizing downtime and maintenance costs.
The fan motor in this system is uniquely constructed to operate with exceptional efficiency and quietness, allowing for a comfortable and peaceful living environment. Additionally, the R410a system is available for this product, further enhancing its cooling and heating capabilities.
This heating system provides not only cooling and heating but also sanitary hot water, making it an all-in-one solution for your household needs. Featuring a full inverter, it delivers high performance and energy efficiency, making it a cost-effective choice for homeowners.
The heat pump draws free energy from the air and uses it to heat and cool the building or prepare domestic hot water.
Air to water heat pumps(ATWHP),also known as air source heat pumps (ASHP), are a type of heating system that moves heat from outdoors into a building through a refrigerant system.
These heat pumps take in heat from the outside air and use it to warm up domestic hot water, radiators filled with hot water, and underfloor heating. Since air retains heat even when it is very cold, such heating systems are ideal for areas with milder climates and can provide a steady source of heat throughout the year.
If you're considering options for your home, heat pumps can offer a lot of benefits.
Compared to combustion-based systems, heat pumps are more cost-effective. Heat pumps have large upfront costs, but on the other hand, their operating costs translate into long-term savings on energy bills and lead to a path to reduced carbon emissions. The more energy efficient the system, the more significant the long-term energy savings.
Compared to combustion heating systems, heat pumps need minimal maintenance. You'll only need to inspect some parts of the heat pump once a year, and you can do this on your own. A specialist installer will only need to examine the heat pump every 3 to 5 years.
Generally, heat pumps are safe to use and are deemed safer than heating systems that rely on combustion. This is because they use electricity instead of burning fuel to produce heat.
By using a heat pump system, you can lower your carbon footprint and benefit from its high energy-to-heat conversion rate. For instance, water-based heat pumps can achieve remarkable efficiency levels up to 600%.
As the temperature rises, heat pumps can switch their function and work as an AC unit. Air to air heat pumps can easily be adjusted to cool the air during the hotter months.
Heat pumps typically last for around 15 years, although some can remain efficient for over two decades. They are known for their dependability and consistent heat output.
Air-to-water heat pumps are an economical and energy-saving way to heat modern and older homes. This heating system reduces energy expenses and offers a cleaner and more sustainable source of warmth.
This heating system is specifically designed to be optimal for regions with tropical or subtropical climates such as Southeast Asia, South Africa, South Europe, and other similar areas. It utilizes a heat pump to produce hot water that can reach temperatures up to 60ºC, making it ideal for both underfloor and radiator heating.
The intelligent EE valve incorporated in the design of this system is highly efficient across various ambient temperatures, ensuring that it maintains consistent performance throughout the year. The plug-and-play motherboard also makes it easy to service, minimizing downtime and maintenance costs.
The fan motor in this system is uniquely constructed to operate with exceptional efficiency and quietness, allowing for a comfortable and peaceful living environment. Additionally, the R410a system is available for this product, further enhancing its cooling and heating capabilities.
This heating system provides not only cooling and heating but also sanitary hot water, making it an all-in-one solution for your household needs. Featuring a full inverter, it delivers high performance and energy efficiency, making it a cost-effective choice for homeowners.
The heat pump draws free energy from the air and uses it to heat and cool the building or prepare domestic hot water.
Air to water heat pumps(ATWHP),also known as air source heat pumps (ASHP), are a type of heating system that moves heat from outdoors into a building through a refrigerant system.
These heat pumps take in heat from the outside air and use it to warm up domestic hot water, radiators filled with hot water, and underfloor heating. Since air retains heat even when it is very cold, such heating systems are ideal for areas with milder climates and can provide a steady source of heat throughout the year.
If you're considering options for your home, heat pumps can offer a lot of benefits.
Compared to combustion-based systems, heat pumps are more cost-effective. Heat pumps have large upfront costs, but on the other hand, their operating costs translate into long-term savings on energy bills and lead to a path to reduced carbon emissions. The more energy efficient the system, the more significant the long-term energy savings.
Compared to combustion heating systems, heat pumps need minimal maintenance. You'll only need to inspect some parts of the heat pump once a year, and you can do this on your own. A specialist installer will only need to examine the heat pump every 3 to 5 years.
Generally, heat pumps are safe to use and are deemed safer than heating systems that rely on combustion. This is because they use electricity instead of burning fuel to produce heat.
By using a heat pump system, you can lower your carbon footprint and benefit from its high energy-to-heat conversion rate. For instance, water-based heat pumps can achieve remarkable efficiency levels up to 600%.
As the temperature rises, heat pumps can switch their function and work as an AC unit. Air to air heat pumps can easily be adjusted to cool the air during the hotter months.
Heat pumps typically last for around 15 years, although some can remain efficient for over two decades. They are known for their dependability and consistent heat output.
Air-to-water heat pumps are an economical and energy-saving way to heat modern and older homes. This heating system reduces energy expenses and offers a cleaner and more sustainable source of warmth.
Market model | WW09V | WW14V | WW18V | WW25V | WW30V | ||
Heating Working Condition A 7ºC/ 6ºC W 30-35ºC | Output Capacity | Kw | 9.8 | 14 | 18.4 | 25.3 | 30.1 |
Input Power | Kw | 2.4 | 3.3 | 4.3 | 6.2 | 5.3 | |
COP | - | 10.6 | 5.9 | 7.1 | 11.3 | 12.6 | |
Input Current | A | 4.1 | 4.3 | 4.3 | 4.1 | 4 | |
Heating Working Condition A 20ºC/ 15ºC W 40-45ºC | Output Capacity | Kw | 11.3 | 18.4 | 21.8 | 29.5 | 36.2 |
Input Power | Kw | 2.9 | 4.6 | 5.2 | 7.4 | 9.3 | |
COP | - | 13 | 7.8 | 8.4 | 12.7 | 15.4 | |
Input Current | A | 3.9 | 4 | 4.2 | 4 | 3.9 | |
Cooling Working Condition A 35ºC/ 25ºC W 12-7ºC | Output Capacity | Kw | 6.7 | 10.4 | 13.1 | 19.3 | 22.4 |
Input Power | Kw | 2.6 | 3.8 | 5.1 | 7.3 | 8.1 | |
COP | - | 11.3 | 6.8 | 8.5 | 12.6 | 13.6 | |
Input Current | A | 2.6 | 2.7 | 2.6 | 2.7 | 2.8 | |
Power Supply | V/PH/HZ | 220V/1/50HZ | 380V/3/50HZ | 380V/3/50HZ | 380V/3/50HZ | 380V/3/50HZ | |
Electric heater | Kw | 1.5 | 4 | 4 | 6 | 6 | |
internal expansion tank size | L | 5 | 8 | 8 | 12 | 12 | |
Refrigerant Type | - | R410A | R410A | R410A | R410A | R410A | |
Max Water Temperature | ºC | 60 | 60 | 60 | 60 | 60 | |
Working Ambeint Temperature | ºC | -10~43 | -10~43 | -10~43 | -10~43 | -10~43 | |
Water Flow Rate(ΔT 5ºC) | m³/h | 2 | 2.7 | 3.7 | 5.2 | 6.2 | |
Water connection | inch | G1" | G1" | G1" | G1.5" | G1.5" | |
Circulation pump | pcs | 1 | 1 | 1 | 1 | 1 | |
Compressor number | pcs | 1 | 1 | 1 | 1 | 1 | |
Fan number | pcs | 1 | 1 | 1 | 1 | 1 | |
Sound pressure Level @1m | dB(A) | 54 | 56 | 57 | 58 | 58 | |
Net Dimension (L*W*H) | mm | 1165*410*800 | 1165*410*1000 | 1150*440*1350 | 1165*430*1550 | 1165*430*1550 |
Market model | WW09V | WW14V | WW18V | WW25V | WW30V | ||
Heating Working Condition A 7ºC/ 6ºC W 30-35ºC | Output Capacity | Kw | 9.8 | 14 | 18.4 | 25.3 | 30.1 |
Input Power | Kw | 2.4 | 3.3 | 4.3 | 6.2 | 5.3 | |
COP | - | 10.6 | 5.9 | 7.1 | 11.3 | 12.6 | |
Input Current | A | 4.1 | 4.3 | 4.3 | 4.1 | 4 | |
Heating Working Condition A 20ºC/ 15ºC W 40-45ºC | Output Capacity | Kw | 11.3 | 18.4 | 21.8 | 29.5 | 36.2 |
Input Power | Kw | 2.9 | 4.6 | 5.2 | 7.4 | 9.3 | |
COP | - | 13 | 7.8 | 8.4 | 12.7 | 15.4 | |
Input Current | A | 3.9 | 4 | 4.2 | 4 | 3.9 | |
Cooling Working Condition A 35ºC/ 25ºC W 12-7ºC | Output Capacity | Kw | 6.7 | 10.4 | 13.1 | 19.3 | 22.4 |
Input Power | Kw | 2.6 | 3.8 | 5.1 | 7.3 | 8.1 | |
COP | - | 11.3 | 6.8 | 8.5 | 12.6 | 13.6 | |
Input Current | A | 2.6 | 2.7 | 2.6 | 2.7 | 2.8 | |
Power Supply | V/PH/HZ | 220V/1/50HZ | 380V/3/50HZ | 380V/3/50HZ | 380V/3/50HZ | 380V/3/50HZ | |
Electric heater | Kw | 1.5 | 4 | 4 | 6 | 6 | |
internal expansion tank size | L | 5 | 8 | 8 | 12 | 12 | |
Refrigerant Type | - | R410A | R410A | R410A | R410A | R410A | |
Max Water Temperature | ºC | 60 | 60 | 60 | 60 | 60 | |
Working Ambeint Temperature | ºC | -10~43 | -10~43 | -10~43 | -10~43 | -10~43 | |
Water Flow Rate(ΔT 5ºC) | m³/h | 2 | 2.7 | 3.7 | 5.2 | 6.2 | |
Water connection | inch | G1" | G1" | G1" | G1.5" | G1.5" | |
Circulation pump | pcs | 1 | 1 | 1 | 1 | 1 | |
Compressor number | pcs | 1 | 1 | 1 | 1 | 1 | |
Fan number | pcs | 1 | 1 | 1 | 1 | 1 | |
Sound pressure Level @1m | dB(A) | 54 | 56 | 57 | 58 | 58 | |
Net Dimension (L*W*H) | mm | 1165*410*800 | 1165*410*1000 | 1150*440*1350 | 1165*430*1550 | 1165*430*1550 |