180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling

Product Details
Customization: Available
Certification: SASO, RoHS, CB, CCC, ISO9001, CE
Compressor: Dan-Foss
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  • 180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
  • 180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
  • 180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
  • 180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
  • 180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
  • 180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
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  • Overview
  • Product Description
  • Company Profile
  • Our Advantages
  • Product Parameters
  • FAQ
Overview

Basic Info.

Model NO.
DFC180II/BP
Modbus
Yes
Master-Slave
Yes
WiFi
Option
Transport Package
Wooden Case
Specification
180KW
Trademark
AirValley
Origin
China
HS Code
8418612090
Production Capacity
3000 Units/Month

Packaging & Delivery

Package Size
235.00cm * 128.00cm * 245.00cm
Package Gross Weight
1350.000kg

Product Description

AirValley Commercial DC Inverter Air source heat pump for HEATING + COOLING,
DC Inverter compressor & R410A refrigerant,
Maximum water output temperature 60 deg C,
Lowest working ambient temperature -35 deg C
Product Description

Hita-chi DC Inverter compressor, Low noise, reliable:
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Intelligent defrosting technology to reduce heating attenuation

Air source heat pump units are prone to frosting when the air density is low and the humidity is high. The air-cooled heat pump module unit can accurately judge the defrosting timing according to the main parameters of the heating operation and the load change, so as to achieve defrosting with frost and normal heating without frost, and can perform forced manual defrosting according to the actual situation.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Modular design, more flexible installation
Unit modules of different capacity specifications can be freely combined, and a maximum of 16 units can be connected in parallel, with strong compatibility and scalability. According to the site characteristics of the installation site, the user can choose a variety of combination connection methods to realize the parallel use of 1-16 modules, and the maximum cooling capacity is as high as 2080kW, fully meeting different needs. The air source module units of the same system are started in stages and run in a balanced manner, reducing the impact of the starting current of the units on the power grid.180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Modular rotation work
According to the load conditions of the system, the unit rotates the module units that are turned on first, and distributes the running time of each module unit in a balanced manner, which greatly improves the reliability and service life of the unit.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling

Building intelligent control to improve management reliability
Modbus is an open protocol that is widely used, especially in BMS building control systems. The unit can be connected to the BMS system through the Modbus protocol to realize remote control of multiple air cooling and heat pump modules.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
 
 
Multiple protection functions
To ensure the safe operation of the system, a modular structure is adopted, and the units are started in stages to reduce the impact of the starting current of the units on the power grid. The unit is equipped with high and low pressure switches, antifreeze protection devices, water flow switches, overload protection devices, power supply phase sequence protection devices, etc., and is equipped with an operation control device. When a fault occurs, the controller will automatically alarm in real time.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling

Wifi function for option
Control your heat pump in your smartphone anywhere, anytime.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling

Top quality Sensata pressure sensor
Excellent precision, excellent mechanical resistance and EMC protection characteristics, meeting the most stringent application requirements under various pressure conditions.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling

FUJIKOJI Electronic expansion valve
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Water side heat exchanger
High-efficiency shell & coil heat exchanger with both cooling and heating is adopted, with water in the tube and fluorine outside the tube. High heat exchange efficiency, small size, excellent water quality, strong antifreeze ability, stable and reliable.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
 
Company Profile

AirValley is a heat pump manufacturer focusing on OEM and ODM. We have excellent R&D engineers and cooperate with excellent components manufacturers to provide customers with cost-effective products, and can provide customized services according to customer requirements.

All of our current sales and R&D engineers have worked in the heat pump industry for more
than 10 years, and we can provide professional and timely products and services. We have set up a professional 15HP heat pump laboratory, and at the same time have strategic cooperation with Dan-foss China. All DC Inverter commercial units have been tested for a long time in Dan-foss local laboratory to ensure the product's ultra-high performance and strong stability.
We look forward to working with you!
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Our Advantages

Advanced Production Line

180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Work flow chart
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
The cooperation of Dan-foss & AirValley
The commercial DC Inverter heat pump were supported by Dan-foss, the heart of heat pump - Compressor comes from Dan-foss, and the
economizer of EVI system comes from Dan-foss too, Not only that, Dan-foss help AirValley to test commercial DC Inverter heat pumps in Dan-foss
laboratory.
180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Advanced Laboratory
-35ºC 15HP heat pump performance laboratory     Dan-foss laboratory in Haiyan China180kw Commercial DC Inverter Heat Pump -35 Deg C Working for Heating Cooling
Ultra-low temperature laboratory, Dan-foss Enthalpy difference laboratory,
Dan-foss data monitoring center, long-term operation laboratory.
Testing temperature from -40ºC ~55ºC
Maximum heat pump can be tested up to 300kW
 
Product Parameters
CDl series EVI DC Inverter air to water heat pump for Heating & Cooling Commercial type
Model DFC45II/BP   DFC60II/BP   DFC80II/BP  DFC90II/BP  DFC160II/BP  DFC180II/BP 
Rated heating Rated heating capacity
(A7 W45)
kW 45.00  60.00  80.00  90.00  160.00  180.00 
Rated power consumption kW 12.36  16.48  21.93  25.07  43.93  50.28 
COP W/W 3.64  3.64  3.65  3.59  3.64  3.58 
Floor heating Nominal heating capacity (A-12 W35) kW 33.00  44.50  56.00  67.00  102.00  135.00 
Nominal power consumption kW 10.00  13.48  16.97  20.30  31.00  41.16 
COP W/W 3.30  3.30  3.30  3.30  3.29  3.28 
Low temp. heating capacity (A-20ºC W35 ) kW 26.00  35.00  44.00  52.00  80.50  105.00 
Low temp. power consumption kW 9.63  12.92  16.30  19.33  29.60  39.18 
COP W/W 2.70  2.71  2.70  2.69  2.72  2.68 
Fan coil heating Nominal heating capacity (A-12 W41) kW 30.00  40.00  50.00  60.00  100.00  120.00 
Nominal power consumption kW 11.90  15.69  19.84  24.19  39.84  48.19 
COP W/W 2.52  2.55  2.52  2.48  2.51  2.49 
Low temp. heating capacity (A-20ºC W41 ) kW 24.00  32.00  40.38  48.00  80.00  95.00 
Low temp. power consumption kW 10.76  14.29  18.78  22.86  37.21  45.24 
COP W/W 2.23  2.24  2.15  2.10  2.15  2.10 
Radiator heating Nominal heating capacity (A-12 W50) kW 25.00  34.00  42.00  50.00  83.00  100.00 
Nominal power consumption kW 11.47  15.60  19.72  22.94  37.73  45.87 
COP W/W 2.18  2.18  2.13  2.18  2.20  2.18 
Low temp. capacity
(A-20 W50)
kW 22.70  30.00  38.00  45.00  72.00  90.00 
Low temp. power consumption kW 11.88  15.71  19.79  23.56  37.50  47.12 
COP W/W 1.91  1.91  1.92  1.91  1.92  1.91 
Nominal cooling Nominal cooling capacity (A35 W7) kW 33.00  43.00  65.00  70.00  130.00  140.00 
Nominal power consumption kW 11.74  15.30  23.21  25.93  46.59  51.85 
EER W/W 2.81  2.81  2.80  2.70  2.79  2.70 
Refrigerant Type R410A
Compressor Type EVI DC Inverter compressor
Driver cooling Type Air cooled Air cooled Fluorine cooled Fluorine cooled Fluorine cooled Fluorine cooled
Air side heat exchanger Type High Efficiency Hydrophilic Aluminum Foil Fin Heat Exchanger
Water side heat exchanger Type Shell & tube heat exchanger
Power supply / 380V 3N~50Hz
Heating operating ambient temperature range ºC -35~48ºC
Cooling operating ambient temperature range ºC -10~48ºC
Maximum input power kW 18 24 30 33 61 65
Maximum input current A 34 45 53 62 115 124
Waterproof level / IPX4
Anti-electric shock type / Type I
Water inlet/outlet pipe DN DN40 DN40 DN65 DN65 DN80 DN80
Water flow required m³/h 5.6 7.4 11.20  12.10  22.40  24.1
Water pressure drop kPa 43 45 45 50 52 55
Unit dimensions mm 1200*950*1950 1250*1200*2360 1250*1200*2360 1250*1200*2360  2300*1250*2360  2300*1250*2360
Net weight kg 350 510 610 690 1250 1350
Noise level dB(A) ≤66 ≤66 ≤70 ≤73 ≤76 ≤77
Test conditions:
- Rated heating: Inlet/outlet temperature 40°C/45°C. Dry bulb/wet bulb Temperature 7°C/6°C;
- Floor nominal heating: Outlet Water Temperature 35°C. Dry Bulb/Wet Bulb Temperature -12°C/-13.5°C;
- Floor low temp. heating: Outlet Water Temperature 35°C. Dry Bulb/Wet Bulb Temperature -20ºC/--;
- Fan coil nominal heating: outlet water temperature 41
ºC. Dry bulb/wet bulb temperature -12ºC/-13.5ºC;
- Fan coil low temp. heating: outlet water temperature 41
ºC. Dry bulb /Wet bulb temperature -20ºC/--;
- Radiator nominal heating: outlet water temperature 50
ºC. Dry bulb/wet bulb temperature -12ºC/-13.5ºC;
- Radiator low temp. heating capacity: outlet water temperature 50
ºC. Dry Bulb/wet bulb temperature -20ºC/--;
- Nominal cooling: Inlet/outlet temperature 12°C/7°C. Dry bulb/wet bulb temperature 35°C/24°C.
FAQ
Q: What is the advantages of Air Source Heat Pump?
A: 1. High energy saving efficiency
Direct heating by electric energy is relatively inefficient, and one kilowatt-hour of electricity can only produce one share of heat energy, which is one of the reasons for the high electricity bill when electric heating is used in winter. The working principle of the air source heat pump is slightly different. The compressor is driven by low power to absorb the low-grade heat energy in the air and convert it into high-grade heat energy, which is then used for indoor heating. Consuming 1 degree of electricity can get more than 3 parts of heat energy. Therefore, the electric energy consumed by the air source heat pump to produce the same heat is very low, and it is a very efficient energy-saving heating equipment.
2. High environmental protection and safety
When the air source heat pump is working, it only consumes electric energy and does not rely on natural gas, coal, oil and other non-renewable resources. Therefore, there will be no open flames, no pollutant emissions, and no pollution to the environment. It is highly environmentally friendly. At the same time, the power system of the air source heat pump is concentrated in the outdoor unit, and the heat is transmitted to the room through water, so that water and electricity can be separated, and the room will not be exposed to the power supply, which has good safety. Compared with other heating equipment, it can avoid fire and explosion. , poisoning, electric shock and other risks. Even if the fan coil unit is used for heating in winter, it will not bring danger indoors. The indoor pipes are full of water. If there is leakage, it will only wet the ceiling, and there will be no leakage of refrigerant from the fluorine air conditioner, which will reduce the fluoride content in the room. If it is too high, it will affect your health.
3. Low cost of use
The air source heat pump uses 1 kilowatt-hour of electricity to generate 3 parts of heat energy. Compared with air conditioning and electric heating, it can save 2/3 of the cost of use, and can save 1/2 of the cost of gas wall-hung boiler heating. Compared with central heating, it can also About 30% cheaper. If the heating area is 100 square meters, using air conditioners and electric heaters, the cost of day and night operation is at least 3,000 yuan, and the use of gas wall-hung boilers for heating is also day and night operation, and the cost is about 1,500 yuan. 500 yuan is enough. Of course, the cost cannot be compared with coal-fired heating, but it is higher than coal-fired heating in terms of energy cleanliness, cleanliness, convenience, and sanitation.
4. High heating comfort
The air source heat pump mainly uses the water system to work, and the heating end can be carried out through fan coils, floor heating and radiators. In terms of comfort, floor heating is well-deserved first. The indoor coils are evenly laid, and the temperature is evenly dissipated. High transmission, heat the feet first and then the body, so that the temperature feeling of warming the feet and cooling the roof is the most comfortable heating solution at present.
Not only that, the air source heat pump is also very comfortable when cooling in summer. Chilled water is generated by the heat pump host and circulated to the indoor fan coil for heat exchange. The indoor temperature is very constant (the inertia of water), and the outlet air temperature of the water system air conditioner is only 12°C-15°C, compared with fluoride air conditioners At a low temperature of 7°C-10°C, the air outlet is softer, the air outlet temperature is higher, the temperature fluctuation is smaller and the impact on humidity is smaller.
5. Wide range of use
Air source heat pumps use low electric energy to absorb heat in the air, and can be used as long as there is electricity, water, and air (the temperature is above -25°C), and are not affected by light and energy, and are less affected by the environment . The application of the air source heat pump to the air injection enthalpy increase technology makes the ability to adapt to the ambient temperature stronger, and it can be heated at -35°C-48°C, which can meet the use in most regions of the world.
6. Good stability
All the refrigerants used by air conditioners are fluorides, while the refrigerants used by air source heat pumps include fluorides and water. Fluorides are used in the main unit and water is used in the indoor part. In contrast, water is more inert and can last longer. The heat absorbed by the air energy heat pump can be stored in the water for a longer period of time, making the indoor temperature more constant, and reducing the frequent operation of equipment, so that it can be more energy-saving while maintaining stability.
7. Strong intelligent ability
The air source heat pump host is controlled by a microcomputer. When debugging, set the required parameter configuration, and the host will automatically adjust the amount of water replenishment, heating, power-off protection, water tank insulation and Heating and other work do not require complex operation control panels, and the air source heat pump can be connected to the smart 485 interface, and the air source heat pump system is compatible with the intelligent equipment of the whole house to realize remote intelligent control.
8. Long service life
The service life of gas water heaters is about 8 years, and the service life of gas wall-hung boilers can reach 15 years, but the gas quality and water quality must be good, otherwise the service life of the equipment will be scrapped after a few years of use. However, the design life of the core components of the air source heat pump is more than 15 years, which can cope with the impact of power aging and scale problems. Of course, regular maintenance can also increase the service life of the equipment.
9. Simple installation conditions
Although the air source heat pump is relatively large in size, it has certain installation space requirements. However, the installation of air source heat pumps is not limited by geology, pipelines and energy supply. The normal operation of the main engine can be realized in places with air circulation, and there is no excessive demand for power equipment, which is equivalent to the power distribution of ordinary air conditioners. Don't worry The troubles caused by insufficient power at home and capacity expansion can be used in large and small houses.
 
Q: How to become a AirValley partner?
A: It's very simple, just place an order with us and you are our partner.
If you want to become our local agent, you need to reach a certain order volume and then sign an agency agreement with us. For agents, we have better terms of service. for example: 
1.The best product price; 
2.Priority production arrangements; 
3.Rich product training; 
4.First-hand new product consultation; 
5.Free brochure design; 
6.More timely email reply and so on.
 
Q: What is the delivery time?
A: Sample order 35~45 days after receiving deposit; Bulk order 25~40 days after receiving deposit.
 
Q: What is the warranty time?
A: We give two years warranty time after shipping time.
During the warranty time, we can supply free spare parts if any problem casued by AirValley.

 

Air to water heat pump, Air source heat pump, Heat pump water heater, DC Inverter heat pump, Water source heat pump

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