Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: D+N+Z
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: N+Z
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: D+N+Y
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: DeviceNet Communication
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: D+N+Y+Z
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: N+Y
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: DI Control Kit
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: Y+Z
Cooling Capacity: 15 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: D+N+Y+Z
Cooling Capacity: 15 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: D+N+Z
Cooling Capacity: 15 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: N+Y
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: Analog Communication
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: C+N+Y
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: N+Y
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: C+N+Y
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: SI Unit Only
Cooling Capacity: 15 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: C+D
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: None, Option: C+D
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, THERMO CHILLER, OTHERS, HRZ- THERMO CHILLER, 2X, HRZ - NO SIZE RATING, 379.19508 lb
The HRW series thermo-chiller is a high-performance device for circulating a fluid at a constant temperature (Water-cooled type). Energy saving is substantially increased by exchanging cooling water and heat directly. The HRW can achieve reduction in power consumption as it does not have a compressor, and reduction in the amount of facility water used because heat is exchanged directly with