1.Design Suitable for tropical or subtropical region as Southeast Asia,South Africa South Europe and etc.
2.Hot water up to 60ºC,suitable for under floor/radiator heating.
3.Intelligent EE valve,excellent efficiency at different ambient temperature.
4.Plug & play mother board,easy service.
5.Unique fan motor construction,super quiet and efficient.
6.R32 System available
7.Cooling, Heating and Sanitary Hot Water
Air source heat pumps extract thermal energy (heat) from the outside air and convert this into heating and hotwater for your home. Air source heat pumps are designed to work in cold temperatures and are suitable for arange of homes, from a small apartment to a large detached home. Air source heat pumps do require electricity to operate, but 75% of the energy required is generated from the outside air, with only 25% being required fromelectricity. This means that 75% of the energy you use will be from a renewable source, which will reduce youremissions and CO2 impact.
1. Enhanced environmental performance due to the R32 heat pump's GWP being only one-third that of R410A refrigerant.
2. High energy efficiency, reaching A+++ energy level according to EU regulation. By utilizing heat from the outside air, the system minimizes energy consumption while maintaining a comfortable environment. The system requires minimal maintenance, ensuring low running costs. Additionally, with inverter technology, energy savings are further maximized.
The heat pump draws free energy from the air and uses it to heat and cool the building or prepare domestic hot water.
Three-phase heat pumps are designed for larger residential properties, commercial buildings, and industrial applications. They require a three-phase electrical system, which delivers three alternating currents that are evenly spaced out over time. This configuration allows for more power and better performance.
1. Power and capacity
Three-phase heat pumps have a higher power capacity, enabling them to efficiently heat or cool larger spaces and meet higher demands.
2. Energy efficiency
With their ability to handle larger loads, three-phase heat pumps are generally more energy-efficient than single-phase units. This can result in significant cost savings over time.
3. Durability
The three-phase motor in these heat pumps is built to handle higher electrical currents, making it more durable and less prone to wear and tear.
4.Swift Response to the Ever-Changing Weather
These devices have the ability to quickly adapt to the fluctuating weather conditions due to the variable speed mechanism that accelerates the heating or cooling process when the thermostat detects a significant temperature shift. Moreover, they incorporate an alternative or secondary heating system, if required, to ensure there is no unnecessary energy usage.
5. Often Functions at Low Speeds
Typically, the blower and compressor of a three-phase system operate at reduced speeds in order to achieve and sustain the desired temperature in your room. As a result, the amount of electricity consumed by the system is decreased by a factor of two or three. Additionally, running at lower speeds helps to minimize wear and tear on the machine, leading to a longer lifespan and fewer instances of breakdown or malfunction caused by worn-out parts.
6. Less Power Consumption when Starting It
A frequent problem with single-phase devices is their high electricity consumption upon activation. In certain residences, these units can require more than 20% of the electrical panel's capability. Nevertheless, this concern does not arise with three-phase heat pumps as they require minimal power to initiate a cooling or heating cycle, resulting in lower utility expenses.
1. Higher cost
Three-phase heat pumps are typically more expensive than single-phase units due to their larger capacity and increased complexity.
2. Installation challenges
The installation of three-phase heat pumps requires specialized knowledge and equipment, which can add to the overall installation cost and time.
3. Availability
Three-phase heat pumps may not be as readily available as single-phase units, particularly in residential areas where single-phase systems are more common.
1.Design Suitable for tropical or subtropical region as Southeast Asia,South Africa South Europe and etc.
2.Hot water up to 60ºC,suitable for under floor/radiator heating.
3.Intelligent EE valve,excellent efficiency at different ambient temperature.
4.Plug & play mother board,easy service.
5.Unique fan motor construction,super quiet and efficient.
6.R32 System available
7.Cooling, Heating and Sanitary Hot Water
Air source heat pumps extract thermal energy (heat) from the outside air and convert this into heating and hotwater for your home. Air source heat pumps are designed to work in cold temperatures and are suitable for arange of homes, from a small apartment to a large detached home. Air source heat pumps do require electricity to operate, but 75% of the energy required is generated from the outside air, with only 25% being required fromelectricity. This means that 75% of the energy you use will be from a renewable source, which will reduce youremissions and CO2 impact.
1. Enhanced environmental performance due to the R32 heat pump's GWP being only one-third that of R410A refrigerant.
2. High energy efficiency, reaching A+++ energy level according to EU regulation. By utilizing heat from the outside air, the system minimizes energy consumption while maintaining a comfortable environment. The system requires minimal maintenance, ensuring low running costs. Additionally, with inverter technology, energy savings are further maximized.
The heat pump draws free energy from the air and uses it to heat and cool the building or prepare domestic hot water.
Three-phase heat pumps are designed for larger residential properties, commercial buildings, and industrial applications. They require a three-phase electrical system, which delivers three alternating currents that are evenly spaced out over time. This configuration allows for more power and better performance.
1. Power and capacity
Three-phase heat pumps have a higher power capacity, enabling them to efficiently heat or cool larger spaces and meet higher demands.
2. Energy efficiency
With their ability to handle larger loads, three-phase heat pumps are generally more energy-efficient than single-phase units. This can result in significant cost savings over time.
3. Durability
The three-phase motor in these heat pumps is built to handle higher electrical currents, making it more durable and less prone to wear and tear.
4.Swift Response to the Ever-Changing Weather
These devices have the ability to quickly adapt to the fluctuating weather conditions due to the variable speed mechanism that accelerates the heating or cooling process when the thermostat detects a significant temperature shift. Moreover, they incorporate an alternative or secondary heating system, if required, to ensure there is no unnecessary energy usage.
5. Often Functions at Low Speeds
Typically, the blower and compressor of a three-phase system operate at reduced speeds in order to achieve and sustain the desired temperature in your room. As a result, the amount of electricity consumed by the system is decreased by a factor of two or three. Additionally, running at lower speeds helps to minimize wear and tear on the machine, leading to a longer lifespan and fewer instances of breakdown or malfunction caused by worn-out parts.
6. Less Power Consumption when Starting It
A frequent problem with single-phase devices is their high electricity consumption upon activation. In certain residences, these units can require more than 20% of the electrical panel's capability. Nevertheless, this concern does not arise with three-phase heat pumps as they require minimal power to initiate a cooling or heating cycle, resulting in lower utility expenses.
1. Higher cost
Three-phase heat pumps are typically more expensive than single-phase units due to their larger capacity and increased complexity.
2. Installation challenges
The installation of three-phase heat pumps requires specialized knowledge and equipment, which can add to the overall installation cost and time.
3. Availability
Three-phase heat pumps may not be as readily available as single-phase units, particularly in residential areas where single-phase systems are more common.
Market model | WW10 | WW14 | WW19 | ||
Heating Working Condition A 7ºC/ 6ºC W 30-35ºC | Output Capacity | Kw | 9.4 | 13.6 | 19.1 |
Input Power | Kw | 2.41 | 3.32 | 4.55 | |
COP | - | 3.9 | 4.1 | 4.2 | |
Input Current | A | 11.5 | 5.9 | 8.1 | |
Heating Working Condition A 7ºC/ 6ºC W 40-45ºC | Output Capacity | Kw | 9.1 | 13.3 | 18.9 |
Input Power | Kw | 2.84 | 4.03 | 5.56 | |
COP | - | 3.2 | 3.3 | 3.4 | |
Input Current | A | 13.6 | 7.2 | 9.9 | |
Heating Working Condition A 2ºC/ 1ºC W 30-35ºC | Output Capacity | Kw | 8.3 | 11.9 | 16.7 |
Input Power | Kw | 2.44 | 3.4 | 4.64 | |
COP | - | 3.4 | 3.5 | 3.6 | |
Input Current | A | 13.6 | 6.1 | 8.3 | |
Heating Working Condition A -7ºC/ -8ºC W 55-60ºC | Output Capacity | Kw | 6.5 | 8.9 | 13.6 |
Input Power | Kw | 3.61 | 4.94 | 7.16 | |
COP | - | 1.8 | 1.8 | 1.9 | |
Input Current | A | 17.3 | 8.85 | 12.8 | |
Power Supply | V/PH/HZ | 220V/1/50HZ | 380V/3/50HZ | 380V/3/50HZ | |
Display controller | - | LCD including wifi | LCD including wifi | LCD including wifi | |
Refrigerant Type | - | R32 | R32 | R32 | |
Max Water Temperature | ºC | 60 | 60 | 60 | |
Working Ambeint Temperature | ºC | -7~43 | -7~43 | -7~43 | |
Water Flow Rate(ΔT 5ºC) | m³/h | 1.63 | 2.32 | 3.35 | |
Water connection | inch | G1" | G1" | G1" | |
Compressor number | pcs | 1 | 1 | 1 | |
Fan number | pcs | 1 | 2 | 2 | |
Sound pressure Level @1m | dB(A) | 57 | 58 | 58 | |
Net Dimension (L*W*H) | mm | 1120*427*665 | 1120*427*1225 | 1120*427*1225 | |
Net Weight/Gross Weight | kg | 93/100 | 154/169 | 155/170 |
Market model | WW10 | WW14 | WW19 | ||
Heating Working Condition A 7ºC/ 6ºC W 30-35ºC | Output Capacity | Kw | 9.4 | 13.6 | 19.1 |
Input Power | Kw | 2.41 | 3.32 | 4.55 | |
COP | - | 3.9 | 4.1 | 4.2 | |
Input Current | A | 11.5 | 5.9 | 8.1 | |
Heating Working Condition A 7ºC/ 6ºC W 40-45ºC | Output Capacity | Kw | 9.1 | 13.3 | 18.9 |
Input Power | Kw | 2.84 | 4.03 | 5.56 | |
COP | - | 3.2 | 3.3 | 3.4 | |
Input Current | A | 13.6 | 7.2 | 9.9 | |
Heating Working Condition A 2ºC/ 1ºC W 30-35ºC | Output Capacity | Kw | 8.3 | 11.9 | 16.7 |
Input Power | Kw | 2.44 | 3.4 | 4.64 | |
COP | - | 3.4 | 3.5 | 3.6 | |
Input Current | A | 13.6 | 6.1 | 8.3 | |
Heating Working Condition A -7ºC/ -8ºC W 55-60ºC | Output Capacity | Kw | 6.5 | 8.9 | 13.6 |
Input Power | Kw | 3.61 | 4.94 | 7.16 | |
COP | - | 1.8 | 1.8 | 1.9 | |
Input Current | A | 17.3 | 8.85 | 12.8 | |
Power Supply | V/PH/HZ | 220V/1/50HZ | 380V/3/50HZ | 380V/3/50HZ | |
Display controller | - | LCD including wifi | LCD including wifi | LCD including wifi | |
Refrigerant Type | - | R32 | R32 | R32 | |
Max Water Temperature | ºC | 60 | 60 | 60 | |
Working Ambeint Temperature | ºC | -7~43 | -7~43 | -7~43 | |
Water Flow Rate(ΔT 5ºC) | m³/h | 1.63 | 2.32 | 3.35 | |
Water connection | inch | G1" | G1" | G1" | |
Compressor number | pcs | 1 | 1 | 1 | |
Fan number | pcs | 1 | 2 | 2 | |
Sound pressure Level @1m | dB(A) | 57 | 58 | 58 | |
Net Dimension (L*W*H) | mm | 1120*427*665 | 1120*427*1225 | 1120*427*1225 | |
Net Weight/Gross Weight | kg | 93/100 | 154/169 | 155/170 |