| MOQ: | 1 |
| Price: | Negotiable |
| Standard Packaging: | standard export package, or as per customer request |
| Delivery Period: | 1-30 working days |
| Payment Method: | L/C, D/A, D/P, T/T, Western Union |
This high-temperature air-source heat pump delivers water temperatures up to 85°C, making it ideal for complete boiler replacement or as a backup heating source.
Our high-temperature heat pumps are suitable for residential domestic hot water and space heating. They also serve specialized industries—such as food processing, electric forging, spray coating, packaging/printing, chemical manufacturing, and slaughterhouses—that require hot water temperatures exceeding 55°C.
Features
1. EVI Compressor Technology: Utilizes Copeland EVI compressors for efficient operation across diverse conditions.
2. Multi-Power Compatibility: Supports both 220V–240V single-phase and 380V–415V three-phase power supplies.
3. Comprehensive Safety Protection: Includes safeguards for temperature, timing, water flow, anti-freezing, current, and pressure.
4. Flexible Customization: Offers options for full customization, small-batch customization, and production based on specific designs or samples.
5. Wide Application Range: Suitable for villas, hotels, factories, hospitals, and student dormitories.
6. Quality Certifications: Certified by CE, ISO9001, CCC, CB, RoHS, SASO, and SGS.
7. High Energy Efficiency: Achieves an energy efficiency ratio (COP) of 2.52–2.56, offering approximately 70% energy savings compared to traditional heaters.
Advantages
1. Compressor
Our large-scale heat pumps utilize US-made Copeland scroll compressors, while smaller models use compressors; both are specifically designed for heat pump applications to ensure high operational efficiency.
2. Electrical Control System
Advanced control functions allow for easy management of circulation pumps, water make-up, water supply, auxiliary electric heating, and PID-based automatic defrosting. Users can configure parameters to meet specific project requirements and achieve full system automation.
3. Shell-and-Tube Heat Exchanger
The heat pump employs a high-efficiency shell-and-tube heat exchanger with a heat transfer surface area 3.7 times larger than that of bare-tube designs; its unique configuration and compact spiral structure ensure optimal heat exchange for the refrigerant.
4. Electronic Expansion Valve
We utilize Sanhua expansion valves in conjunction with our proprietary control system to develop a specialized electronic expansion controller. This system employs digital technology to regulate refrigerant flow based on temperature, ensuring optimal flow rates and achieving a higher Coefficient of Performance (COP).
Specifications
| type | FKH-10I/CGW | FKH-18II/CGW | FKH-35II/CGW |
| Side air outlet | Top out wind | Top out wind | |
| Power specifications | 220V~50Hz | 380V 3N~50Hz | 380V 3N~50Hz |
| Heating capacity under A1 operating condition(20) |
10kW | 18kW | 35kW |
| Heating consumption power under A1 working condition |
4.8kW | 8.2kW | 16.8kW |
| Heating capacity under A2 working condition(7) |
9.5kW | 17kW | 34kW |
| Heating consumption power under A2 working condition |
5kW | 8.9kW | 17.9kW |
| Heating capacity under A3 working condition(-12) |
9.5kW | 17kW | 32kW |
| Heating consumption power under A3 working condition |
6.2kW | 10.6kW | 20.6kW |
| Heating capacity under A4working condition(-20) |
8kW | 16kW | 30kW |
| Heating consumption power under A4 working condition |
5.6kW | 11.1kW | 20.1kW |
| Maximum operating current | 40A | 35A | 70A |
| discharge | 1.7m³/h | 3.1m³/h | 6m³/h |
| noise | ≤56dB(A) | ≤58dB(A) | ≤60dB(A) |
| Water side pressure loss | ≤72kPa | ≤75kPa | ≤75kPa |
| Unit size (length ×widthx height mm) | 1030×410×1390 | 860×780×1780 | 1550×780×1780 |
| CONNECT SIZE | DN32(hexagon nipples)) |
DN32(hexagon nipples)) |
DN40(hexagon nipples) |
| Unit weight(kg) | 160 | 215 | 415 |
Need Further Assistance
Leomon offers high-quality ODM and OEM services, providing solutions tailored to your specific requirements. Contact us today for more information.
| MOQ: | 1 |
| Price: | Negotiable |
| Standard Packaging: | standard export package, or as per customer request |
| Delivery Period: | 1-30 working days |
| Payment Method: | L/C, D/A, D/P, T/T, Western Union |
This high-temperature air-source heat pump delivers water temperatures up to 85°C, making it ideal for complete boiler replacement or as a backup heating source.
Our high-temperature heat pumps are suitable for residential domestic hot water and space heating. They also serve specialized industries—such as food processing, electric forging, spray coating, packaging/printing, chemical manufacturing, and slaughterhouses—that require hot water temperatures exceeding 55°C.
Features
1. EVI Compressor Technology: Utilizes Copeland EVI compressors for efficient operation across diverse conditions.
2. Multi-Power Compatibility: Supports both 220V–240V single-phase and 380V–415V three-phase power supplies.
3. Comprehensive Safety Protection: Includes safeguards for temperature, timing, water flow, anti-freezing, current, and pressure.
4. Flexible Customization: Offers options for full customization, small-batch customization, and production based on specific designs or samples.
5. Wide Application Range: Suitable for villas, hotels, factories, hospitals, and student dormitories.
6. Quality Certifications: Certified by CE, ISO9001, CCC, CB, RoHS, SASO, and SGS.
7. High Energy Efficiency: Achieves an energy efficiency ratio (COP) of 2.52–2.56, offering approximately 70% energy savings compared to traditional heaters.
Advantages
1. Compressor
Our large-scale heat pumps utilize US-made Copeland scroll compressors, while smaller models use compressors; both are specifically designed for heat pump applications to ensure high operational efficiency.
2. Electrical Control System
Advanced control functions allow for easy management of circulation pumps, water make-up, water supply, auxiliary electric heating, and PID-based automatic defrosting. Users can configure parameters to meet specific project requirements and achieve full system automation.
3. Shell-and-Tube Heat Exchanger
The heat pump employs a high-efficiency shell-and-tube heat exchanger with a heat transfer surface area 3.7 times larger than that of bare-tube designs; its unique configuration and compact spiral structure ensure optimal heat exchange for the refrigerant.
4. Electronic Expansion Valve
We utilize Sanhua expansion valves in conjunction with our proprietary control system to develop a specialized electronic expansion controller. This system employs digital technology to regulate refrigerant flow based on temperature, ensuring optimal flow rates and achieving a higher Coefficient of Performance (COP).
Specifications
| type | FKH-10I/CGW | FKH-18II/CGW | FKH-35II/CGW |
| Side air outlet | Top out wind | Top out wind | |
| Power specifications | 220V~50Hz | 380V 3N~50Hz | 380V 3N~50Hz |
| Heating capacity under A1 operating condition(20) |
10kW | 18kW | 35kW |
| Heating consumption power under A1 working condition |
4.8kW | 8.2kW | 16.8kW |
| Heating capacity under A2 working condition(7) |
9.5kW | 17kW | 34kW |
| Heating consumption power under A2 working condition |
5kW | 8.9kW | 17.9kW |
| Heating capacity under A3 working condition(-12) |
9.5kW | 17kW | 32kW |
| Heating consumption power under A3 working condition |
6.2kW | 10.6kW | 20.6kW |
| Heating capacity under A4working condition(-20) |
8kW | 16kW | 30kW |
| Heating consumption power under A4 working condition |
5.6kW | 11.1kW | 20.1kW |
| Maximum operating current | 40A | 35A | 70A |
| discharge | 1.7m³/h | 3.1m³/h | 6m³/h |
| noise | ≤56dB(A) | ≤58dB(A) | ≤60dB(A) |
| Water side pressure loss | ≤72kPa | ≤75kPa | ≤75kPa |
| Unit size (length ×widthx height mm) | 1030×410×1390 | 860×780×1780 | 1550×780×1780 |
| CONNECT SIZE | DN32(hexagon nipples)) |
DN32(hexagon nipples)) |
DN40(hexagon nipples) |
| Unit weight(kg) | 160 | 215 | 415 |
Need Further Assistance
Leomon offers high-quality ODM and OEM services, providing solutions tailored to your specific requirements. Contact us today for more information.