Heat Pump Modular Type V-III Series AJH180LALBH
Features
- Excellent energy saving
- Great design flexibility for placement in any building
- Easy installation and maintenance
- Outstanding efficiency in real-world operating conditions
- Energy-saving technologies for boosting operational efficiency
Capacity
56.0 kW
63.0 kW
Specifications
Rated Capacity Range | 20 |
---|---|
Max. Number of Connectable Indoor Units*1 | 43 |
Connectable Capacity of Indoor Units | 28.0 - 84.0 kW |
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Power Source | Phase | 3 phase 4 wire |
---|---|---|
Voltage | 400 V | |
Frequency | 50 Hz | |
Capacity | Cooling | 56.0 kW |
Heating | 63.0 kW | |
Input Power | Cooling | 14.56 kW |
Heating | 14.50 kW | |
EER | Cooling | 3.85 W/W |
COP | Heating | 4.34 W/W |
Airflow Rate | 11,100×2 m³/h | |
Sound Pressure Level*2 | Cooling | 61 dB(A) |
Heating | 62 dB(A) | |
Sound Power Level | Cooling | 82 dB(A) |
Heating | 84 dB(A) | |
Max. External Static Pressure | 82 Pa | |
Compressor Motor Output | 7.5×2 kW | |
Heat Exchanger Fin | Blue fin | |
Net Dimensions | Height | 1,690 mm |
Width | 930×2 mm | |
Depth | 765 mm | |
Net Weight | 252×2 kg | |
Refrigerant | Type | R410A |
Global Warming Potential | 2,088 | |
Charge | 11.7×2 kg | |
Connection Pipe Diameter | Liquid | 15.88 mm |
Gas | 28.58 mm | |
Operation Range | Cooling | -5 to 46 °CDB |
Heating | -20 to 21 °CDB |
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- Note:
- Specifications are subject to the following conditions:
- Cooling:
- Indoor temperature of 27°C DB/19°C WB; outdoor temperature of 35°C DB/24°C WB
- Heating:
- Indoor temperature of 20°C DB/(15°C WB); outdoor temperature of 7°C DB/6°C WB
- Pipe length:
- 7.5 m Height difference between outdoor unit and indoor unit: 0 m
- When cooling operation will be conducted at outdoor air temperature below -5°C,
- the outdoor unit must be installed in a position that is higher than or equal to those of indoor units.
- *1
- Minimum connectable indoor unit number is 2.
- *2
- The noise value is the value when measured in an anechoic room. When measured in the actual installed state,
- surrounding noise and reflections are received and the measured value is usually larger than the indicated value.