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In the monoblock type heat pump, the refrigerant system is completely integrated in the external unit. Such a solution ensures, above all, good thermal insulation, space saving and quiet operation of the device. In addition, the compact design ensures easy installation and simple maintenance.
R32 Gas-Low GWP
Good SCOP, energy label rating W35℃ A+++/ W55℃ A++
Smart logic to control multiple heat source
Climate curves suitable for different countries
House heating,cooling and domestic hot water
Full inverter system,Stable and efficient performance
Space heating Series is specially developed with the most cutting-edge heat pump technology and modern design to meet stringent requirements for efficiency, stability and quietness. Not only does Space heating Series use R32 green gas, but also is rated with A+++ energy label. With top energy rating A+++, the unit is energy efficient and can greatly reduce energy bills for users.
Air source heat pumps using R32 refrigerants can not only improve the efficiency and energy utilization of equipment, but also help reduce damage to the atmosphere, making them more environmentally friendly.
We choose MITSUBISHI compressor for the heat pump. It ensures stable working in the perfect performance.
The DHW tank disinfection function is used to kill legionella by 65°C water to ensure the health and safety.
You can choose different climate correlation curves or your own customised curve. Once the curve is selected, the unit sets the outlet water temperature automatically according to the outdoor ambient air temperature.
Protect your home floor by activating the Floor Preheating function which slowly increases the heating temperature of the floor coils, avoiding possible floor damaging and transitioning smoothly to the heating function. The Floor Drying Up function provides an additional solution to the installer as it helps remove any residual moisture from newly installed floor coils, further protecting the installation and ensuring the optimal and effective operation of the heat pump.
• More flexibility thanks to two control zones
• Independent control of underfloor heating and radiator heating temperature
• No need to purchase an extension module for second heating system
Smart design to work with other heating facilities in your house, like solar, gas boiler and etc, make sure you to pay the lowest bill for heating !
It is crucial to note that both the heat pump and the conventional AC system work using power;the heat pump transports heat, not produces it. But the big difference between a heat pump and AC is that, in winter, heat pumps can also move heat in the atmosphere that’s outside your house inside to keep you warm.
Heat pump technology has been around for a while—you can find it in your refrigerator and your old central AC right now—but in recent years it’s gotten exceedingly advanced at keeping homes warm in the winter, even in really cold temperatures and countries like Switzerland and Finland.
During the summer, when your heat pump is set to cool, it utilizes refrigerant to soak up the heat from inside your house and discharges it into the open air.This is simple to comprehend because there is a considerable amount of heat inside your home that needs to be absorbed.
In winter, A heat pump works the same way as it does in summer, but in reverse.They absorb heat from the outdoor air and use it to heat your home.Surprisingly, even in chilly weather, the outside air has some heat.Heat pumps can effectively extract heat from outdoor air, even when it's as cold as 20 degrees or lower.
Heat pumps use minimal electricity, which can significantly reduce the elevated utility costs associated with running a natural gas furnace.
Regrettably, heat pumps are not the ideal heating choice when the temperature falls below freezing point.During such periods, the efficiency of your heat pump also decreases considerably.
In case of a brief period of one or two days, the heat pump will shift to an emergency heating system that employs electricity to heat up your home, but this will incur a significant expense.For individuals residing in regions with extreme climates, it is more cost-effective to opt for a gas-fired furnace in winter rather than a heat pump.
Wotech heat pumps can be combined with multiple heat sources such as electric heaters, solar panels or boilers, etc.This is great for intelligently heating your house and dealing with ultra-cold climates.
In the monoblock type heat pump, the refrigerant system is completely integrated in the external unit. Such a solution ensures, above all, good thermal insulation, space saving and quiet operation of the device. In addition, the compact design ensures easy installation and simple maintenance.
R32 Gas-Low GWP
Good SCOP, energy label rating W35℃ A+++/ W55℃ A++
Smart logic to control multiple heat source
Climate curves suitable for different countries
House heating,cooling and domestic hot water
Full inverter system,Stable and efficient performance
Space heating Series is specially developed with the most cutting-edge heat pump technology and modern design to meet stringent requirements for efficiency, stability and quietness. Not only does Space heating Series use R32 green gas, but also is rated with A+++ energy label. With top energy rating A+++, the unit is energy efficient and can greatly reduce energy bills for users.
Air source heat pumps using R32 refrigerants can not only improve the efficiency and energy utilization of equipment, but also help reduce damage to the atmosphere, making them more environmentally friendly.
We choose MITSUBISHI compressor for the heat pump. It ensures stable working in the perfect performance.
The DHW tank disinfection function is used to kill legionella by 65°C water to ensure the health and safety.
You can choose different climate correlation curves or your own customised curve. Once the curve is selected, the unit sets the outlet water temperature automatically according to the outdoor ambient air temperature.
Protect your home floor by activating the Floor Preheating function which slowly increases the heating temperature of the floor coils, avoiding possible floor damaging and transitioning smoothly to the heating function. The Floor Drying Up function provides an additional solution to the installer as it helps remove any residual moisture from newly installed floor coils, further protecting the installation and ensuring the optimal and effective operation of the heat pump.
• More flexibility thanks to two control zones
• Independent control of underfloor heating and radiator heating temperature
• No need to purchase an extension module for second heating system
Smart design to work with other heating facilities in your house, like solar, gas boiler and etc, make sure you to pay the lowest bill for heating !
It is crucial to note that both the heat pump and the conventional AC system work using power;the heat pump transports heat, not produces it. But the big difference between a heat pump and AC is that, in winter, heat pumps can also move heat in the atmosphere that’s outside your house inside to keep you warm.
Heat pump technology has been around for a while—you can find it in your refrigerator and your old central AC right now—but in recent years it’s gotten exceedingly advanced at keeping homes warm in the winter, even in really cold temperatures and countries like Switzerland and Finland.
During the summer, when your heat pump is set to cool, it utilizes refrigerant to soak up the heat from inside your house and discharges it into the open air.This is simple to comprehend because there is a considerable amount of heat inside your home that needs to be absorbed.
In winter, A heat pump works the same way as it does in summer, but in reverse.They absorb heat from the outdoor air and use it to heat your home.Surprisingly, even in chilly weather, the outside air has some heat.Heat pumps can effectively extract heat from outdoor air, even when it's as cold as 20 degrees or lower.
Heat pumps use minimal electricity, which can significantly reduce the elevated utility costs associated with running a natural gas furnace.
Regrettably, heat pumps are not the ideal heating choice when the temperature falls below freezing point.During such periods, the efficiency of your heat pump also decreases considerably.
In case of a brief period of one or two days, the heat pump will shift to an emergency heating system that employs electricity to heat up your home, but this will incur a significant expense.For individuals residing in regions with extreme climates, it is more cost-effective to opt for a gas-fired furnace in winter rather than a heat pump.
Wotech heat pumps can be combined with multiple heat sources such as electric heaters, solar panels or boilers, etc.This is great for intelligently heating your house and dealing with ultra-cold climates.
Market model | WW08VM | WW12VM | WW16VM | WW20VT | |||||
Heating | Output Capacity | Kw | 4.78-12.13 | 4.78-12.13 | 6.58-16.71 | 8.14-20.67 | |||
Input Power | Kw | 0.58-1.75 | 0.89-2.75 | 1.21-3.72 | 1.45-4.24 | ||||
COP | - | 4.68-5.62 | 4.42-5.35 | 4.49-5.43 | 4.87-5.60 | ||||
Input Current | A | 2.63-8.01 | 4.09-12.59 | 5.54-17.03 | 2.47-7.21 | ||||
Heating | Output Capacity | Kw | 2.73-7.19 | 4.16-10.94 | 5.54-14.57 | 7.41-19.50 | |||
Input Power | Kw | 0.96-2.51 | 1.35-4.19 | 1.68-5.20 | 1.95-6.06 | ||||
COP | - | 2.86-3.37 | 2.61-3.08 | 2.80-3.30 | 3.22-3.80 | ||||
Input Current | A | 4.37-11.50 | 6.18-19.18 | 7.67-23.81 | 3.32-10.30 | ||||
Heating | Output Capacity | Kw | 3.88-9.84 | 5.73-14.56 | 7.90-20.05 | 9.77-24.80 | |||
Input Power | Kw | 0.80-2.23 | 1.23-3.42 | 1.69-4.71 | 2.04-5.70 | ||||
COP | - | 4.42-4.86 | 4.25-4.68 | 4.26-4.69 | 4.35-4.79 | ||||
Input Current | A | 3.65-10.19 | 5.61-15.67 | 7.71-21.54 | 3.47-9.70 | ||||
Cooling A35ºC W7ºC | Cooling Capacity | Kw | 2.74-6.53 | 4.07-9.70 | 5.28-12.58 | 6.57-15.65 | |||
Input Power | Kw | 0.88-2.48 | 1.30-3.66 | 1.59-4.48 | 1.99-5.20 | ||||
EER | - | 2.63-3.10 | 2.65-3.13 | 2.81-3.32 | 3.01-3.31 | ||||
Input Current | A | 4.04-11.35 | 5.96-16.75 | 7.29-20.49 | 3.38-8.84 | ||||
Power Supply | V/PH/HZ | 220-240V/1/50HZ | 380-415V/3/50HZ | ||||||
ErP level (35ºC) | - | A+++ | A+++ | A+++ | A+++ | ||||
ErP level (35ºC) | - | A++ | A++ | A++ | A++ | ||||
Water Side Heat Exchanger | - | Plate heat exchanger | |||||||
Display controller | - | LCD touch screen | |||||||
Backup heater(Optional) | Kw | 3kw | |||||||
Epansion vessel | - | 3L | 5L | ||||||
Refrigerant Type | - | R32 | |||||||
Max Water Temperature(without backup heater) | ºC | 60 | |||||||
Working Ambeint Temperature | ºC | -25-43 | |||||||
Water connection | inch | G1-1/4 | |||||||
Sound pressure Level @1m | dB(A) | 50 | 52 | 56 | 58 | ||||
Net Dimension (L*W*H) | mm | 1085*410*840 | 1150*430*960 | 1150*430*960 | 1150*430*1400 |
Market model | WW08VM | WW12VM | WW16VM | WW20VT | |||||
Heating | Output Capacity | Kw | 4.78-12.13 | 4.78-12.13 | 6.58-16.71 | 8.14-20.67 | |||
Input Power | Kw | 0.58-1.75 | 0.89-2.75 | 1.21-3.72 | 1.45-4.24 | ||||
COP | - | 4.68-5.62 | 4.42-5.35 | 4.49-5.43 | 4.87-5.60 | ||||
Input Current | A | 2.63-8.01 | 4.09-12.59 | 5.54-17.03 | 2.47-7.21 | ||||
Heating | Output Capacity | Kw | 2.73-7.19 | 4.16-10.94 | 5.54-14.57 | 7.41-19.50 | |||
Input Power | Kw | 0.96-2.51 | 1.35-4.19 | 1.68-5.20 | 1.95-6.06 | ||||
COP | - | 2.86-3.37 | 2.61-3.08 | 2.80-3.30 | 3.22-3.80 | ||||
Input Current | A | 4.37-11.50 | 6.18-19.18 | 7.67-23.81 | 3.32-10.30 | ||||
Heating | Output Capacity | Kw | 3.88-9.84 | 5.73-14.56 | 7.90-20.05 | 9.77-24.80 | |||
Input Power | Kw | 0.80-2.23 | 1.23-3.42 | 1.69-4.71 | 2.04-5.70 | ||||
COP | - | 4.42-4.86 | 4.25-4.68 | 4.26-4.69 | 4.35-4.79 | ||||
Input Current | A | 3.65-10.19 | 5.61-15.67 | 7.71-21.54 | 3.47-9.70 | ||||
Cooling A35ºC W7ºC | Cooling Capacity | Kw | 2.74-6.53 | 4.07-9.70 | 5.28-12.58 | 6.57-15.65 | |||
Input Power | Kw | 0.88-2.48 | 1.30-3.66 | 1.59-4.48 | 1.99-5.20 | ||||
EER | - | 2.63-3.10 | 2.65-3.13 | 2.81-3.32 | 3.01-3.31 | ||||
Input Current | A | 4.04-11.35 | 5.96-16.75 | 7.29-20.49 | 3.38-8.84 | ||||
Power Supply | V/PH/HZ | 220-240V/1/50HZ | 380-415V/3/50HZ | ||||||
ErP level (35ºC) | - | A+++ | A+++ | A+++ | A+++ | ||||
ErP level (35ºC) | - | A++ | A++ | A++ | A++ | ||||
Water Side Heat Exchanger | - | Plate heat exchanger | |||||||
Display controller | - | LCD touch screen | |||||||
Backup heater(Optional) | Kw | 3kw | |||||||
Epansion vessel | - | 3L | 5L | ||||||
Refrigerant Type | - | R32 | |||||||
Max Water Temperature(without backup heater) | ºC | 60 | |||||||
Working Ambeint Temperature | ºC | -25-43 | |||||||
Water connection | inch | G1-1/4 | |||||||
Sound pressure Level @1m | dB(A) | 50 | 52 | 56 | 58 | ||||
Net Dimension (L*W*H) | mm | 1085*410*840 | 1150*430*960 | 1150*430*960 | 1150*430*1400 |