Air source heat pump
A domestic air source heat pump is an increasingly popular choice for efficient and sustainable heating of homes. It works by taking the warmth from outside air, transferring it to heat and cool a building’s interior spaces. Heat pumps can be used in both new and existing buildings, using renewable energy to keep them comfortable year-round, while significantly reducing bills and carbon emissions when compared to traditional heating methods. Heat pumps are cost-effective, reliable and simple to maintain, making them ideal for any homeowner looking to add a sustainable energy source to their home.
The heating system has been custom-designed to cater to tropical and subtropical climates, specifically in areas such as Southeast Asia, South Africa, southern Europe and other similar regions. Its heat pump technology generates hot water with temperatures up to 60ºC, making it suitable for both radiator and underfloor heating.
Incorporated into the system design is an intelligent EE valve that operates efficiently across different ambient temperatures, ensuring consistent performance throughout the year. The motherboard is designed as a plug-and-play system, making it easy to service and reducing downtime and maintenance costs.
The system's fan motors operate with exceptional efficiency and quietness, creating a comfortable and peaceful living environment..In addition, the R410a system is available to further enhance the product's cooling and heating capabilities.
This heating system provides an all-in-one solution for the home, providing not only cooling and heating, but also hygienic hot water..It uses an all-in-one inverter that delivers high performance and energy efficiency, making it a cost-effective option 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.
An air source heat pump system for domestic use has become an increasingly favored option for efficient and eco-friendly heating in residences. The process involves extracting warmth from the outside air and converting it into heat or cool air to regulate the temperature inside a building. This renewable energy solution is suitable for both new and old structures, providing year-round comfort while significantly reducing energy bills and carbon footprint when compared to conventional heating systems. Not only are heat pumps cost-effective, but they are also reliable and easy to maintain, making them an excellent choice for homeowners seeking a sustainable energy source for their homes.
DC inverter conversion techniques can achieve equilibrium temperatures, saving power and energy. It adopts DC frequency conversion continuously variable adjustment, which has the advantages of strong power, high efficiency, low noise, stable and reliable performance, and long service life.
Air source heat pump
A domestic air source heat pump is an increasingly popular choice for efficient and sustainable heating of homes. It works by taking the warmth from outside air, transferring it to heat and cool a building’s interior spaces. Heat pumps can be used in both new and existing buildings, using renewable energy to keep them comfortable year-round, while significantly reducing bills and carbon emissions when compared to traditional heating methods. Heat pumps are cost-effective, reliable and simple to maintain, making them ideal for any homeowner looking to add a sustainable energy source to their home.
The heating system has been custom-designed to cater to tropical and subtropical climates, specifically in areas such as Southeast Asia, South Africa, southern Europe and other similar regions. Its heat pump technology generates hot water with temperatures up to 60ºC, making it suitable for both radiator and underfloor heating.
Incorporated into the system design is an intelligent EE valve that operates efficiently across different ambient temperatures, ensuring consistent performance throughout the year. The motherboard is designed as a plug-and-play system, making it easy to service and reducing downtime and maintenance costs.
The system's fan motors operate with exceptional efficiency and quietness, creating a comfortable and peaceful living environment..In addition, the R410a system is available to further enhance the product's cooling and heating capabilities.
This heating system provides an all-in-one solution for the home, providing not only cooling and heating, but also hygienic hot water..It uses an all-in-one inverter that delivers high performance and energy efficiency, making it a cost-effective option 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.
An air source heat pump system for domestic use has become an increasingly favored option for efficient and eco-friendly heating in residences. The process involves extracting warmth from the outside air and converting it into heat or cool air to regulate the temperature inside a building. This renewable energy solution is suitable for both new and old structures, providing year-round comfort while significantly reducing energy bills and carbon footprint when compared to conventional heating systems. Not only are heat pumps cost-effective, but they are also reliable and easy to maintain, making them an excellent choice for homeowners seeking a sustainable energy source for their homes.
DC inverter conversion techniques can achieve equilibrium temperatures, saving power and energy. It adopts DC frequency conversion continuously variable adjustment, which has the advantages of strong power, high efficiency, low noise, stable and reliable performance, and long service life.
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 |