32kw A+++ CE -30Deg Cheap House Heating R32 residential EVI Monobloc DC Inverter Air Energy heat pump hot water heater

ADC-32HC

  • 5 years warranty
  • HeatIng&Cooling&DHW
  • SG Ready function
  • Energy class A+++ / A++
  • Quiet operation up to 58 dB
  • Application for remote control of the pump for Android or iOS
  • Water outlet temperature up to 60 degrees
  • R32(high performance and low environmental impact)
Quote Now
Category:

Advantages of residential EVI Monobloc DC Inverter Air Energy heat pump hot water heater

1. Operation
*On-Off type Heat Pump: An On-Off type heat pump operates at a constant speed determined by its design. It runs at full capacity whenever it is turned on.
*DC type Heat Pump: A DC type heat pump has a compressor with a variable speed drive. It can adjust its operating speed based on the heating or cooling demand, providing more flexibility and efficiency.

2. Energy Efficiency
*On-Off type Heat Pump:On-Off type heat pumps operate at a fixed speed regardless of the required heating or cooling load.This can lead to energy inefficiency when the load is lower than the maximum capacity.
*DC type Heat Pump: DC type heat pumps can modulate their speed according to the actual demand, resulting in higher energy efficiency. They can adjust their output to match the required load, reducing energy wastage.

3. Comfort
*On-Off type Heat Pump: On-Off type heat pumps can experience temperature fluctuations since they cycle between on and off states to maintain the desired temperature.
*DC type Heat Pump: DC type heat pumps can provide more consistent and precise temperature control. They can operate at lower speeds for longer periods, maintaining a more stable indoor temperature.

4. Noise Level
*On-Off type Heat Pump: On-Off type heat pumps may produce higher noise levels during startup and shutdown due to the abrupt changes in operation.
* DC type Heat Pump: DC type heat pumps tend to operate at lower noise levels due to their ability to modulate the compressor speed smoothly.

5. Initial Cost
*On-Off type Heat Pump: On-Off type heat pumps generally have a lower initial cost compared to variable speed heat pumps.
*DC type Heat Pump: DC type heat pumps often have a higher initial cost due to the additional technology and control systems required.

.

 

Parameter of residential EVI Monobloc DC Inverter Air Energy heat pump hot water heater

Model
ADC-26H
ADC-32H
ADC-40H
HP
8HP
10HP
12HP
Power Supply
380-415V/50-60Hz/3ph
Heating Condition: Ambient Temp. +7℃/+6℃(WB/DB), Water Temp. +30℃/+35℃(In/Out).
Heating Capacity Rang
kW
6.43-21.57
7.96-26.98
11.54-33.16
Power Input Range
kW
1.04-4.85
1.27-5.96
1.76-7.27
Hot Water Condition: Ambient Temp. +20℃/+15℃ (DB/WB), Water Temp. +15℃/+55℃ (In/Out).
Heating Capacity Rang
kW
6.97-25.95
8.75-32.45
11.66-39.68
Power Input Range
kW
1.44-5.45
1.75-7.76
2.37-9.43
SCOP
at 35℃ water outlet
4.85
4.86
4.84
at 55℃ water outlet
3.54
3.50
3.53
ErP Level
at 35℃ water outlet
A+++
A+++
A+++
at 55℃ water outlet
A++
A++
A++
Heating operation range
Ambient
°C
-30~25
Heating side
°C
18~60
Domestic hot water operation range
Ambient
°C
-30 ~ 43
Water side
°C
25~60
Chilling Condition: Ambient Temp.35℃/30℃ (DB/WB), Water Temp.12℃/7℃(In/Out).
Chilling capacity
kW
4.83-18.56
6.68-23.73
9.28-29.86
Power input range
kW
1.65-6.23
1.93-8.34
2.42-10.05
Chilling operation range
Ambient
°C
10~43
Water side
°C
7~22
Rated water flow rate
m³/h
2.95
3.5
3.8
Rated pressure drop
kPa
47
47
49
Max. working pressure
Refrigerant
Bar
44
44
44
Water
Bar
7
7
7
Controller
Micro processor based digital wire controller, LED Touch Screen
External cabinet
Galvanized steel with powder coating
Compressor
Type
Panasonic Dual Rotary
Refrigerant
R32
Water heat exchanger
SUS 316 Brazed plate heat exchanger
Water pipe
Inlet&Outlet
DN
32
32
32
N W/G W
kg
165/180
175/190
240/255
Noise in 1M
dB(A)
≤59
≤59
≤61

Working Principle of residential EVI Monobloc DC Inverter Air Energy heat pump hot water heater

1. In the heat pump, the evaporator coil is exposed to the outside air.
2. The refrigerant enters the evaporator as a cold liquid/gas mixture at low pressure.
3. Heat from the outside air causes the refrigerant to boil into gas.
4. This gas is pumped through to the condenser coiI by a compressor which also increases the refrigerant’s temperature and pressure.
5. The refrigerant is now hotter than the temperature of the water in the tank, so heat flows out, heating up the water in the tank and condensing the refrigerant back into a liquid.
6. The refrigerant then flows through an expansion valve that allows the pressure and temperature to drop again by the time it reaches the evaporator coil.
7. Once the refrigerant reaches the evaporator coil the cycle is repeated.

SG ready

 

 

1.Demand Response:During periods of high electricity demand, the grid operator may send a signal requesting a reduction in electricity consumption. The heat pump can automatically adjust its operation, such as temporarily decreasing heating or cooling output or shifting operation to off-peak hours, to help balance the grid load.

2.Time-of-Use Optimization:By receiving real-time pricing signals from the grid, the heat pump can adjust its operation to consume more electricity during periods of low pricing and less electricity during high-priced hours. This can lead to cost savings for the homeowner.
3.Grid-Interactive Control:Heat pumps with grid-interactive control capabilities can respond to grid signals beyond pricing, such as grid stability or renewable energy availability.
4.Energy Management and Optimization:Smart grid ready heat pumps can be integrated into home energy management systems or smart home platforms. This integration allows for coordinated control and optimization with other energy consuming devices in the home, such as smart thermostats, energy storage systems, or solar panels. The heat pump can work in harmony with other devices to minimize energy consumption or maximize energy generation based on grid conditions and user preferences.
5.Remote Monitoring and Control: Heat pumps with smart grid readiness often come with remote monitoring and control capabilities. Homeowners can access and control their heat pump system through mobile apps or web interfaces. This allows for real-time monitoring of energy usage, system performance, and the ability to adjust settings remotely, contributing to better energy management and convenience.

SG ready Control logic

When Smart Grid Function is set to “Use”, the logic is as follows:
SG Grid Signal
[LDIsg]
EVU Supply
Signal [LDIevu]
Smart Grid
Command
Smart Grid Display
0
1
Smart Grid
Directive 1
Display low-peak power
consumption icon
0
0
Smart Grid
Directive 2
Display peak power icon
1
0
Smart Grid
Directive 3
Indicates free electricity icon
1
1
Smart Grid
Directive 4
Indicates free electricity icon
There 4 state of the samrt grid of our system control, if you want to know more details, please feel free to contact me!!!

Why choose us

1. DC fan motor cooperates + the aerodynamic anti-freeze fan blade, quiet, energy-saving, frequency-reducing, air-noise-reducing and durable.

2. TWO solders high-temp. welding, fully improving welds’ strength to reduce gas leakage. Mysteriouse flux miraculously improves auxiliary heat conduction, removing oxides, reducing welded surface tension & increasing the area, preventing re-oxidation & >2-time prolonging pipeline’s life.

3. Meticulous heat preservation process. High-quality thermal insulation tape combines with high-density Polyeaster rubber-plastic thermal insulation foam, conducting 360°thermal insulation around components & pipes, heat loss in 24H is <4℃ & seals much noise.

4. Pipe clamps are assembled to strenthen welding gap, reducing weld pressure, resisting & absorbing the shock to pipeline, reducing gas-leakage possibility rapidly, & reducing after-sales.

 

Installation Reference

Send your message to us

    *Full Name

    *Country

    * Email

    Phone

    Message