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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

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

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

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

Please contact us for the latest version.sales@ocaire.com, CYL, H/RIGIDITY H/PREC, ACTUATOR, MYH GUIDED CYLINDER, NE, 50MM MY1H DBL ACTING AUTO-SW, 188.05430 lb

Valve Type: XLDV (Smooth Exhaust, Normally Closed, Bellows, O-ring Seal), Flange Size: 80, Flange Type: D [K (DN)], Valve Direction: L (w/o Indicator, Rear Flange Surface; Std. Indicator, Rear Flange Surface), Auto Switch: M9N--Solid State, Gen.

Series: 1 (JSY1000), Type: 10S (Side-Ported, Serial Interface, EX260), SI Unit: DN (EtherCAT, Comm: M8 2pc, Pwr: M8 2pc), Valve Stations: 5 Stations, P,E Port Location: B (Both Sides, 2 to 24 Stations), SUP/EXH Block: Internal Pilot, Number of Pressure Sensors: 3 (3 Stations), Pressure Detection Port for Non Pilot Control Sensor Blocks: A (Built-in Pressure Sensor, A Port: Fitting, B Port

Type: Air-Actuated Vacuum Valve, Application: Single Item Operating, Installation Method: Direct, Number of Ports: 3-Port Valve, Solenoid Type: Single, Switching Type: 2-Position Normally Closed, Piping Opening: Flange, Flange Type: [Other] DN, Flange Size Nominal: 63, Seal Type: Bellows Seal, Indicator: No indicator, Pilot Port Direction: Flange side, Temperature Range(°C): 5 to 60℃ (no

Type: Air-Actuated Vacuum Valve, Application: Single Item Operating, Installation Method: Direct, Number of Ports: 3-Port Valve, Solenoid Type: Single, Switching Type: 2-Position Normally Closed, Piping Opening: Flange, Flange Type: [Other] DN, Flange Size Nominal: 63, Seal Type: Bellows Seal, Indicator: No indicator, Pilot Port Direction: Flange side, Temperature Range(°C): 5 to 60℃ (no