A heat pump is an energy-efficient device that absorbs heat energy from surrounding environments such as air, water, or geothermal sources and utilizes it for heating, cooling, and hot water supply.
It operates based on the principle of transferring heat using electrical energy, making it environmentally friendly as it does not directly burn fossil fuels.
1. Can operate independently using either seawater heat or air heat
- When seawater heat is needed, it can operate solely on seawater heat, and when seawater is insufficient or at a low temperature,
it can switch to air heat operation.
2. High-efficiency heat exchanger adoption
- Uses high-efficiency titanium and FIN & TUBE heat exchangers with excellent corrosion resistance, ensuring stability and efficiency.
3. Can produce high-temperature water above 55℃, enhancing usability.
※ The above products are subject to changes in design and specifications without prior notice for quality improvement.
Detailed specifications can be checked on a PC.
1. Adoption of a two-stage compression cycle
- Uses an intercooler and vapor injection to save energy and improve performance/COP.
2. Excellent low-temperature heating performance
- Maintains outstanding heating performance even at an outdoor temperature of -15℃.
3. Use of an electronic expansion valve
- Real-time discharge temperature control prevents oil carbonization and compressor damage.
4. Adoption of a high-efficiency large-capacity fin-tube heat exchanger
- Manufactured in-house and applied with ceramic-coated fins for excellent corrosion resistance.
5. Application of a short hot gas defrost system
- Enhances equipment efficiency.
6. Adoption of a world-class SWEP heat exchanger
7. Modular design
- Easy to assemble and simple to install.
8. Hot water supply available during cooling operation
- Provides hot water during cooling operation,
achieving high-efficiency operation with a COP of over 6.0.
9. Real-time alarm history monitoring available
- Ensures stable product use with 200 diagnostic functions, including high/low pressure,
phase reversal prevention, overload prevention, and insufficient flow.
10. Parallel-configured cooling system
- Allows for independent cooling circuits, enabling maintenance without stopping the entire system.
11. Automatic energy adjustment based on heat load variation
- Internal modules automatically control energy output based on changes in refrigerant and heat exchange water temperature, ensuring broad energy adjustment range and economic operation.
※ The above products are subject to changes in design and specifications without prior notice for quality improvement.
※ Heating capacity: Based on hot water inlet at 40℃ and geothermal inlet at 5℃ (ground loop).
※ Cooling capacity: Based on chilled water inlet at 12℃ and geothermal inlet at 25℃ (ground loop).