Products Description
Air Source Heat Pumps are energy-saving and eco-friendly devices that convert low-grade heat in the air into high-grade heat. Adopting the reverse Carnot cycle principle, they absorb free heat from the air and raise the temperature via compressor compression to supply heating, cooling or hot water. Composed of core parts including compressors, evaporators, condensers and expansion valves, the units feature a compact structure and stable operation. Widely applied to residential heating, commercial hot water supply and agricultural greenhouses, they are an ideal alternative to traditional coal-fired boilers. Equipped with full DC inverter technology, the units automatically adjust operating status according to ambient temperature and maintain high heating efficiency even in low-temperature environments, delivering an energy-saving, eco-friendly and comfortable experience.
Application Scope
Residential Heating
Ideal for villas and residential buildings, it provides floor heating or radiator heating to deliver warmth to every corner of the home.
Commercial Hot Water
Supplies stable domestic hot water for hotels, schools, hospitals and other facilities to meet large-scale centralized water demand.


Agricultural Planting
Used for greenhouse heating and constant-temperature water control for aquaculture. Precise temperature control effectively boosts agricultural output and economic benefits.
Industrial Heating
Suitable for low-temperature heating demands in factory workshops and warehouses. It delivers remarkable energy-saving and cost-reducing effects as a replacement for traditional boilers.
Working Principle
Air Source Heat Pumps operate based on the reverse Carnot cycle. Low-temperature and low-pressure refrigerant absorbs heat from the air in the evaporator and vaporizes into gas. The gaseous refrigerant is compressed by the compressor into high-temperature and high-pressure gas, which releases heat to water in the condenser and condenses into liquid. The liquid refrigerant is then throttled and depressurized by the expansion valve and flows back to the evaporator to start a new cycle. Throughout the process, only a small amount of electricity is needed to drive the compressor to transfer large quantities of free heat from the air.
Technology & Craftsmanship
Inverter Drive
Adopts full DC inverter compressors that intelligently adjust rotation speed according to load changes to realize precise temperature control and energy-saving operation.
Hydrophilic Fin Design
The evaporator is fitted with hydrophilic aluminum fins to inhibit frost formation and improve heat exchange efficiency in low-temperature environments.
Noise Reduction Design
Optimized air duct and shock absorption structures greatly reduce operating noise for a quiet working and living environment.
Product Advantages
By utilizing free heat in the air, its operating cost is far lower than that of electric heating equipment and gas-fired boilers, greatly reducing energy expenditure.
No combustion or emissions are generated during operation. It is a zero-pollution clean heating solution.
Adopting a water-electricity separation design, it avoids risks such as gas leakage and poisoning, ensuring safe application across all kinds of premises.
FAQ
Q: What is the service life of Air Source Heat Pumps? Is maintenance complicated?
A: Under normal operating conditions, the units can serve for more than ten years. They feature a simple structure for easy inspection and repair. Only basic regular cleaning and maintenance are required, with low operation difficulty and maintenance costs.
Q: Are there any potential safety hazards when using Air Source Heat Pumps?
A: The equipment has no open flames and does not burn fuels, so there are no risks such as waste gas leakage or explosion. The water-electricity separation design ensures full compliance with safety standards for all application scenarios.
Q: How much can Air Source Heat Pumps reduce operating costs compared with gas-fired boilers?
A: Leveraging free heat from the air, the equipment features high energy utilization efficiency. Compared with gas and oil-fired boilers, it can significantly cut energy consumption and overall operating costs during long-term operation.
Factory Environment



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