Cooling capacity (50/60Hz) |
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0.8~1.6kW |
Operating Ambient Temp. Range |
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5~45℃ |
Operating Liquid Temp. Range |
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5~40℃ |
Control Accuracy |
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±0.1℃ |
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Model | RKS402J-MV-00000 | RKS752J-MV-00000 | RKS1502J-MV-00000 | |||
Performance | Compressor output (50Hz) | HP | 0.8 | 1 | 1.6 | |
Cooling capacity (50Hz)*1 | KW | 1.1 | 1.8 | 3.7 | ||
TR | 0.3 | 0.5 | 1.1 | |||
BTU/h | 3,700 | 6,100 | 12,600 | |||
Heating capacity (50Hz)*1 | kW | 0.53/0.53 | 0.6/0.6 | 1.1/1.1 | ||
Ambient Temp. Range | ℃ | 5~45 | ||||
Operating temperature range (Liquid temperature) | ℃ | 5~40 | ||||
Operating Water Pressure | Mpa | 0.05~0.3 | 0.1~0.6 | |||
Control accuracy*4 | ℃ | ±0.1 | ||||
Min. operating circulation rate (50/60Hz) | L/min | 10 (Head 30m) | 18 (Head 60m) | |||
Power specification | Power source*2 | V(Hz) | Single phase 200 - 230±10%(50/60) | Single phase 200 - 230(50/60)-5%,+10% | ||
Power consumption (50/60Hz)*1 | kW | 0.9/1.0 | 1.1/1.2 | 2.0/2.5 | ||
Electric current (50/60Hz)*1 | A | 3.8/4.7 | 5.2/5.4 | 9.5/11.3 | ||
Power capacity*3 | kVA | 1.5 | 2.0 | 4.2 | ||
Breaker capacity*5 | A | 10 | 15 | 30 | ||
Operation control method | Electronic expansion valve capacity control | |||||
Equipment detail | Refrigerating compressor | Structure | Fully sealed rotary type | |||
Output | kW | 0.6 | 0.75 | 1.2 | ||
Condenser | Corrugated fin & Parallel flow tube type | |||||
Heat exchanger | Structure | Plate type heat exchanger | ||||
Material | SUS316 (Brazing: Cu) | |||||
Discharge pump | Structure | Cascade type | ||||
Output | kW | 0.25 (Inverter-driven) | 0.4 (Inverter-driven) | |||
Water tank capacity | L/min | Approx. 17 | ||||
Refrigerant | R-410A | |||||
External dimensions (Height x Length x Width) | mm | 615×500×375 | 933×590×375 | |||
Product mass (Dry weight) | kg | 42 | 45 | 72 | ||
Operating noise level (50/60Hz)*6 | dB | 59/60 | 61/62 | 64/65 |
*1 Under the following conditions: Chilled water temp.: 20 °C, Ambient temp.: 32 °C, Max. discharge pump circulating load. Cooling capacity is at least 95 % of listed figures. Heating capacity will change according to operating conditions. | |||||||||||
*2 Source voltage phase unbalance should be less than ±3 %. | |||||||||||
*3 The figure noted is when the equipment is operating at the highest capacity of its normal operating range. | |||||||||||
*4 When the current load is continuously within ±10 %, and the ambient temperature is stable. However does not include starting times or when the heat-load exceeds the chiller capacity. |
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*5 Comes standard with a built-in overload protection circuit breaker (NFB). | |||||||||||
*6 Operating noise levels are from a position of 1 m in front of the product and at a height of 1 m. |
Note 1) Liquid (chilled water) that can be used are either clean water and a 30 to 40 % ethylene glycol solution. Note that there will be a drop in cooling capacity of 10 % if using a 30 to 40 % ethylene glycol solution. Alternatively, if deionized water is to be used, it should have an electrical conductivity of at least 1 μs/cm. |
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Note 2) Heat output from the unit (in kW) for air cooled model is approx. 1.3 times that of the cooling capacity. | ||||||
Note 3) Depending on the operating environment, condensation may form on piping inside the product, and temporary leakage of water from the pump mechanical seals may also occur, therefore a drain pan should be installed if required. |