Cooling Capacity: 002 (2 kW), Type: 2 (Clean/DI Water), Pump Inverter Control: S (Pump Inverter Type)
Cooling Capacity: 2 kW, Type: Clean/DI Water, Pump Inverter Control: -, Option: -
Cooling Capacity: 2 kW, Type: Fluorinated Fluid, Pump Inverter Control: Pump Inverter Type, Option: -
Cooling Capacity: 2 kW, Type: Ethylene Glycol, Pump Inverter Control: Pump Inverter Type, Option: -
Cooling Capacity: 2 kW, Type: Clean/DI Water, Pump Inverter Control: Pump Inverter Type, Option: -
Cooling Capacity: 1kW, Temperature Set Range: -20°C to 40°C, Option: C+N+Y
Cooling Capacity: 2kW, Temperature Set Range: -20°C to 40°C, Option: C+N+Y
Cooling Capacity: 8kW, Temperature Set Range: -20°C to 90°C, Option: C+N+Y
Circulating Fluid: Clear/Deionized Water, 10 to 60°C, Option: C+N+Y
Circulating Fluid: Ethylene Glycol Aqueous Solution, -20 to 90°C, Option: C+N+Y
Cooling Capacity: 15 kW, Type: Clean/DI Water, Pump Inverter Control: None, Option: C+N+Y
Cooling Capacity: 8 kW, Type: Ethylene Glycol, Pump Inverter Control: Pump Inverter Type, Option: C+N+Y
Cooling Capacity: 30 kW, Type: Ethylene Glycol, Pump Inverter Control: Pump Inverter Type, Option: C+N+Y
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
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
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
I lube OUlslde dia. od Inch size H1 (Width across flats) H2 (Widlh across lIats) , _ l4'. W~igh L2 L..3, ~L ~ "A1 '" , 'A2 oM II'. I '-1 'N . ,." " H1 H2 01 02 03 l1 M odel ~ T1 T2 ' ~ f . 9 4 ' 3 ~9 . 2~q .. ~ " 6 8" 41,-'1; " W }?'.." 48.7' 42.6, 10.9 46.4 2B,2 " . . '118:'7 ~7 .3 .70~ .2M ..
L6 T2 A1 H1 L5 A3 T1 A2 Applicable A1 A2 A3 D1 D2 H H1 L1 L2 L3 L4 L5 L6 M T T1 T2 tubing Model number diameter d 6mm ASP330F-U01-06-X352 ASP330F-U01-07-X352 ASP430F-U02-07-X352 ASP430F-U02-08-X352 ASP530F-U03-10-X352 ASP530F-U03-11-X352 ASP630F-U04-12-X352 ASP630F-U04-13-X352 45.7 9.4 16.1 11.6 45.5 51.1 1/8 Uni G 1/8 14.2 14 29.3 14 13.7 38.4 22.9 26.9 34.6 to 39.6 1/4 1/4 63.6 10.4 23
.:98 06 Rc3/4 10 Rc1 Model Port size Rc1/4 Rc3/8 Rc1/2 Rc3/4 Rc1 XTO-2571 XTO-1239 XTO-1719 Dimensions: mm ASP-X369 Series Applicable tubing O.D.d D2 Laser printed T2 (Pilot port) 3 H1 (Hexagon width across flats) H2 (Hexagon width across flats) A L4 D1 L3 T1 (With sealant) M L1 L2 *Reference dimensions after A thread installation.