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Product Details:
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COP: | 4.4 | Compressor: | Panasonic Hybrid Inverter &EVI Compressor |
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Refrigerant: | R32 | Condenser: | SWEP Plate Heat Exchanger |
Fan Motor: | DC | Circulation Pump: | Optional Built-in Inverter Water Pump |
Control: | WIFI +APP +4.3/5 Inch Touch Screen Panel | Function: | Hot Water+room Heating/cooling (Auto Changeover) |
What is an inverter air source heat pump?
An inverter air source heat pump is a type of air source heat pump that utilizes inverter technology to control and modulate the compressor's speed and power output. Traditional air source heat pumps use fixed-speed compressors, which operate at a constant speed, resulting in on-off cycling to meet the desired temperature. Inverter heat pumps, on the other hand, have variable-speed compressors that can adjust their output based on the heating or cooling demand.
Benefits of inverter air source heat pumps include:
Energy efficiency. The Inverter type can increase performance by 30% compared to a normal on/off heat pump.
Enhanced comfort: The ability to modulate the compressor's speed and power output allows
for more precise temperature control, avoiding temperature fluctuations and providing a more consistent and comfortable indoor environment.
Quieter operation: Inverter heat pumps tend to operate more quietly than fixed-speed compressors. The variable-speed operation reduces noise levels, making them a suitable option for noise-sensitive environments
Wide Operating Range: The inverter & EVI (Enhanced Vapor Injection) technology enables the heat pump to operate efficiently even in extremely low outdoor temperatures. This ensures reliable heating performance and comfort in cold climates
Features of A3 Pro
The heating curve function of A3 Pro heat pump is a graph or table that represents the relationship between outdoor temperatures and the heat pump's heating capacity. It helps determine how much heat the heat pump can provide at different outdoor temperatures.
By using the heating curve, the A3 Pro heat pump can dynamically adjust the heat pump's operation based on the outdoor temperature. As the outdoor temperature decreases, the heat pump's output capacity decreases as well. The heating curve allows the system to modulate the heat pump's output to match the heating load of the building, optimizing efficiency and comfort.
A smartphone APP control for A3 Pro heat pump is a device that allows you to wirelessly operate and control the functions of a heat pump system from a distance.
With APP control, you can adjust various settings and parameters of the heat pump without having to physically interact with the unit itself. Some common features and functions you can control with a APP for a heat pump include:
-Temperature control
-Mode selection
-Timer settings
-Error codes and troubleshooting
The Coefficient of Performance (COP) of A3 Pro inverter heat pump is typically higher compared to traditional non-inverter heat pumps for several reasons
-Variable Speed inverter Compressor
-Continuous Operation
Inverter heat pumps can operate continuously, maintaining a consistent temperature in the space. Traditional non-inverter heat pumps often operate in an on/off cycle, where the compressor starts and stops to meet the temperature set point. The frequent cycling of the compressor can lead to energy inefficiencies. In contrast, the continuous operation of the inverter heat pump minimizes energy wastage and improves overall efficiency.
-Reduced Start-up Power
-Precise Temperature Control
-Elimination of Cycling Losses
Non-inverter heat pumps experience energy losses during each cycle when the compressor starts and stops. Inverter heat pumps eliminate these cycling losses by continuously adjusting the compressor speed, resulting in improved energy efficiency and higher COP.
R32 refrigerant offers several advantages compared to other commonly used refrigerants, such as R22 and R410A.
-R32 has a lower Global Warming Potential (GWP) compared to other refrigerants, which means it has a reduced impact on global warming and climate change. It has a GWP of 675, significantly lower than R410A (GWP of 1730). This makes R32 a more environmentally friendly choice.
Improved Heat Transfer: R32 has superior thermodynamic properties, allowing for better heat transfer within the heat pump or air conditioning system.
-R32 requires less refrigerant volume compared to other refrigerants.
-R32 is compatible with inverter-driven compressors, which are widely used in modern heat pumps system.
Line-Up
|
Factory model |
K-10GWR/2P |
K-10GWR/3P |
K-10GWR/4P |
|
OEM model |
A3 Pro-7 |
A3 Pro-9 |
A3 Pro-12 |
Heat pump Space heating (35℃) |
ErP rating |
A+++ |
A+++ |
A+++ |
Ƞs |
175% |
175% |
175% |
|
SCOP |
4.71 |
4.7 |
4.74 |
|
Heat pump space heating (55℃) |
ErP rating |
A++ |
A++ |
A++ |
Ƞs |
125% |
125% |
125% |
|
SCOP |
3.15 |
3.16 |
3.18 |
|
Heating (A7/W35℃) |
Rated capacity(kW) |
7.5 |
9.2 |
12.5 |
Capacity range (kW) |
2.3-8.3 |
2.8-10.2 |
3.8-13.8 |
|
Rated power input(kW) |
1.7 |
2.1 |
2.8 |
|
Power input range (kW) |
0.5-1.9 |
0.6-2.3 |
0.8-3.1 |
|
COP |
4.35 |
4.38 |
4.40 |
|
Working ambient temperature range (℃) |
Min/Max |
-25/+43 |
-25/+43 |
-25/+43 |
|
Factory model |
K-16CWR/5P |
K-20CWR/6P |
K-22CWR/8P |
K-30CWR/10P |
K-42CWR/15P |
|
OEM model |
A3 Pro-14 |
A3 Pro-19 |
A3 Pro-22 |
A3 Pro-27 |
A3 Pro-36 |
Heat pump Space heating (35℃) |
ErP rating |
A+++ |
A+++ |
A+++ |
A+++ |
A+++ |
Ƞs |
175% |
175% |
175% |
174% |
174% |
|
SCOP |
4.71 |
4.7 |
4.74 |
4.8 |
4.81 |
|
Heat pump space heating (55℃) |
ErP rating |
A++ |
A++ |
A++ |
A++ |
A++ |
Ƞs |
125% |
125% |
125% |
127% |
127% |
|
SCOP |
3.15 |
3.16 |
3.18 |
3.17 |
3.18 |
|
Heating (A7/W35℃) |
Rated capacity(kW) |
14.5 |
19.2 |
22.5 |
27.2 |
36.3 |
Capacity range (kW) |
4.4-16.0 |
5.8-21.1 |
6.7-24.8 |
8.2-29.9 |
10.9-39.9 |
|
Rated power input(kW) |
3.3 |
4.4 |
5.1 |
6.2 |
8.3 |
|
Power input range (kW) |
1.0-3.7 |
1.3-4.8 |
1.5-5.6 |
1.9-6.9 |
2.5-9.2 |
|
COP |
4.34 |
4.37 |
4.41 |
4.36 |
4.35 |
|
Working ambient temperature range (℃) |
Min/Max |
-25/+43 |
-25/+43 |
-25/+43 |
-25/+43 |
-25/+43 |