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The FKH-10ICGW is a high-temperature air source heat pump designed for light industrial and commercial heating scenarios. Taking ambient air as the heat source, the unit converts low-grade thermal energy in the air into high-grade thermal energy through heat pump technology, and can supply high-temperature hot water up to 90℃. It adopts two-stage compression and intermediate heat exchange technologies, to achieve efficient and stable high-temperature hot water supply in low-temperature environments. The unit adapts to diversified heating demands including commercial building temperature control, swimming pool constant temperature and agricultural heating.
Parameter Category | Details |
|---|---|
Type | FKH-10I/CGW Side air outlet |
Power specifications | 220V~50Hz |
Heating capacity under A1 operating condition(20) | 10kW |
Heating consumption power under A1 working condition | 4.8kW |
Heating capacity under A2 working condition(7) | 9.5kW |
Heating consumption power under A2 working condition | 5kW |
Heating capacity under A3 working condition(-12) | 9.5kW |
Heating consumption power under A3 working condition | 6.2kW |
Heating capacity under A4 working condition(-20) | 8kW |
Heating consumption power under A4 working condition | 5.6kW |
Maximum operating current | 40A |
Discharge | 1.7m³/h |
Noise | ≤56dB(A) |
Water side pressure loss | ≤72kPa |
Unit size (length × width × height mm) | 1030×410×1390 |
CONNECT SIZE | DN32(hexagon nipples) |
Unit weight (kg) | 160 |
The unit adopts two-stage compression technology combined with intermediate heat exchange design, which effectively improves heating efficiency in low-temperature environments. It can continuously produce 90℃ high-temperature hot water at an ambient temperature of -20℃. Specific heating capacity and power consumption data under different ambient temperatures are listed in the technical specifications, adapting to the usage demands of different climate regions.
The unit adopts intelligent defrosting technology, which comprehensively judges the frosting status of the equipment through multi-dimensional operating parameters, and starts the defrosting procedure on demand. This design reduces invalid defrosting operations under frost-free conditions, lowers the impact of defrosting on heating efficiency, and improves the continuity of system operation.
The unit is fitted with low-noise compressors and axial fans, combined with multiple noise reduction control systems and sound-absorbing barrier technology, to reduce operating noise. Under rated operating conditions, the operating noise of the unit is ≤56dB(A), which adapts to commercial scenarios with requirements for noise level control.
There is no combustion process during equipment operation, and no pollutants such as exhaust gas and waste residue are generated. The unit adopts environmentally friendly refrigerants, which helps reduce damage to the ozone layer and mitigate the greenhouse effect, complying with relevant low-carbon operation requirements.
The unit can maintain swimming pool water temperature in the range of 26℃-28℃, meeting the constant temperature demand for winter swimming. Compared with traditional heating methods using boilers and plate heat exchangers, the unit shows better energy efficiency in low-temperature water heating scenarios. Based on actual operational data, it helps users reduce the operational cost of swimming pool heating.
The unit can be used for winter heating and summer cooling, adapting to temperature control demands of commercial buildings such as office buildings, shopping malls and hotels, as well as residential buildings. In regions aiming to reduce coal-fired pollution and improve winter air quality, the unit serves as an alternative to traditional coal-fired heating methods.
For livestock breeding scenarios, the unit provides continuous heating services, adapting to winter heating demands of various farms such as pig farms and chicken farms. It helps maintain a suitable ambient temperature for breeding, corresponding to the environmental requirements of livestock growth in cold seasons.
In cold regions, the unit provides stable thermal energy for agricultural greenhouses, raises the internal temperature of greenhouses, and ensures the normal growth of crops such as vegetables and fruits, adapting to the heating demand of agricultural production in low-temperature seasons.
Based on actual operational data, compared with traditional heating methods such as electric and gas boilers, this heat pump can reduce operating costs by approximately 30% - 50% under corresponding working conditions.
No. There is no combustion process during operation, so no pollutants such as exhaust gas and waste residue are generated. In addition, the use of eco-friendly refrigerants helps reduce damage to the ozone layer and mitigate the greenhouse effect.
This heat pump adopts two-stage compression technology, and can operate continuously and supply 90℃ high-temperature hot water at ambient temperatures as low as -20℃. Refer to the technical specifications for specific performance data under different low-temperature conditions.