SMC Corporation of America
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Search Results "HRS012-AN-20-GT"

Please contact us for the latest version.sales@ocaire.com, PC BOARD / HRS012-W-10, OTHERS, HRS THERMO-CHILLERS, 21, HRS - NO SIZE RATING, .00000 lb

Cooling Capacity: Cooling Capacity: 1100/1300W, 50/60 Hz, Cooling Method: Water-cooled Refrigeration, Thread: G w/PT-G Conversion Fitting Set, Option: -

Type: Thermo-Chiller, Cooling Method: Air-Cooling, Cooling Capacity: 1,100/1,300 W (50/60 Hz), Piping thread type: Rc, Optional specifications: None

Type: Thermo-Chiller, Cooling Method: Air-Cooling, Cooling Capacity: 1,100/1,300 W (50/60 Hz), Piping thread type: G (PT-G conversion fitting set included), Optional specifications: None

Type: Thermo-Chiller, Cooling Method: Water Cooling, Cooling Capacity: 1,100/1,300 W (50/60 Hz), Piping thread type: Rc, Optional specifications: None

Type: -, Cooling Method: -, Cooling Capacity: 1,100/1,300 W (50/60 Hz), Piping thread type: NPT (PT-NPT conversion fitting set included), Optional specifications: None

Cooling Capacity: 012 (Cooling Capacity: 1100/1300W, 50/60 Hz), Cooling Method: W (Water-cooled Refrigeration), Thread: F (G w/PT-G Conversion Fitting Set)

Cooling Capacity: 012 (Cooling Capacity: 1100/1300W, 50/60 Hz), Cooling Method: W (Water-cooled Refrigeration), Thread: N (NPT w/PT-NPT Conversion Fitting Set)

Cooling Capacity: 012 (Cooling Capacity: 1100/1300W, 50/60 Hz), Cooling Method: A (Air-cooled Refrigeration), Thread: Rc

Cooling Capacity: 012 (Cooling Capacity: 1100/1300W, 50/60 Hz), Cooling Method: A (Air-cooled Refrigeration), Thread: F (G w/PT-G Conversion Fitting Set)

Cooling Capacity: 012 (Cooling Capacity: 1100/1300W, 50/60 Hz), Cooling Method: W (Water-cooled Refrigeration), Thread: Rc

It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air.

It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air.

It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air.

It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air.

It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air.

It converts air pressure to an equivalent hydraulic pressure, and this hydraulic pressure is used for operating an actuator, thus solving the problem that is associated with the compression characteristics of air.