SMC Corporation of America
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Search Results "HRS024-A-20-GT"

Cooling Capacity: Cooling Capacity: 1700/1900W, 50/60 Hz, Cooling Method: Air-cooled Refrigeration, Thread: Rc, Option: G + T

Cooling Capacity: 024 (Cooling Capacity: 2100/2400W, 50/60 Hz), Cooling Method: W (Water-cooled Refrigeration), Thread: Rc

Cooling Capacity: 024 (Cooling Capacity: 2100/2400W, 50/60 Hz), Cooling Method: W (Water-cooled Refrigeration), Thread: N (NPT w/PT-NPT Conversion Fitting Set)

Cooling Capacity: 024 (Cooling Capacity: 2100/2400W, 50/60 Hz), Cooling Method: A (Air-cooled Refrigeration), Thread: N (NPT w/PT-NPT Conversion Fitting Set)

Cooling Capacity: 024 (Cooling Capacity: 2100/2400W, 50/60 Hz), Cooling Method: A (Air-cooled Refrigeration), Thread: F (G w/PT-G Conversion Fitting Set)

Cooling Capacity: 024 (Cooling Capacity: 2100/2400W, 50/60 Hz), Cooling Method: W (Water-cooled Refrigeration), Thread: F (G w/PT-G Conversion Fitting Set)

Type: Thermo-Chiller, Cooling Method: Air-Cooling, Cooling Capacity: 2,100/2,400 W (50/60 Hz), Piping thread type: G (PT-G conversion fitting set included), Optional specifications: None

Type: Thermo-Chiller, Cooling Method: Air-Cooling, Cooling Capacity: 2,100/2,400 W (50/60 Hz), Piping thread type: NPT (PT-NPT conversion fitting set included), Optional specifications: None

Type: -, Cooling Method: -, Cooling Capacity: 2,100/2,400 W (50/60 Hz), Piping thread type: Rc, Optional specifications: None

Type: Thermo-Chiller, Cooling Method: Water Cooling, Cooling Capacity: 2,100/2,400 W (50/60 Hz), Piping thread type: G (PT-G conversion fitting set included), Optional specifications: None

Type: -, Cooling Method: -, Cooling Capacity: 2,100/2,400 W (50/60 Hz), Piping thread type: NPT (PT-NPT conversion fitting set included), Optional specifications: None

B C D E F G H J M 14.5 17 L 29 32 1 8 1 4 VXA31 VXA32 19 25 20 20 18 21 20 20 22.5 27.5 42.5 47.5 71 80 81 90 21 27 1 4 3 8 4.1-71 Direct Air Operated 3 Port Valve/Manifold Series VVXA31/32 For Air, Gas, Vacuum and Oil Compatible with a wide variety of fluids.

Thread dia. 6 8 10113 10 a o a a M4 x 0.7 16 a a o a o o a M5 x 0.8 20 o a a a o a M6 x 1.0 25 a a o o o MB x 1.25 32 o o a o o M'l0 x 1 .25 zcDuKc T.

Thread dia. 6 8 10113 10 a o a a M4 x 0.7 16 a a o a o o a M5 x 0.8 20 o a a a o a M6 x 1.0 25 a a o o o MB x 1.25 32 o o a o o M'l0 x 1 .25 zcDuKc T.

Pdrt Numlel llodel (Rel) A I D T H I K UFfll0xl ut 6363109 0 tli0. l l'l( E ) M l O x l r,50 .41 .24 .25 1.000.98 0.49 IVA.20 N/A Ut l2rl ut5588189 0H,r. r 5 (BI M l 2 x l t.50 .47 .24 .15 1.000.980.49 N/A.20 N/A UlV2.20 ut3935095 ([n)0EM.25(B) rr.?0 uNt 1.50 .56.28 -t) t.001.00 0.50 fl/A .?0 il/a UtjA6.

Example 1:How many sctm will flow through a valve with a C, of 1 .0 given a supply pressure ot 80 psig and a 20 psi pressure drop? From the chart Fig. 3.10 find 80 psig on the criticalflow line. Next, lind 60 psig (80 psig minus a 20 psi pre*sure drop) on the horizontral axis at the bottom.

Example 1:How many sctm will flow through a valve with a C, of 1 .0 given a supply pressure ot 80 psig and a 20 psi pressure drop? From the chart Fig. 3.10 find 80 psig on the criticalflow line. Next, lind 60 psig (80 psig minus a 20 psi pre*sure drop) on the horizontral axis at the bottom.

GTa disassemble, hold the spanner flats of the tube COver in a vice 40 20 9,43 37,7 47.2 56,6 IN 28,3 and by holding the rod cover spanner flats with a spanner, 98,2 OUT 19,63 58,9 78.5 117.8 20 SEt IN 16,49 49,5 66.0 82.5 99.0 unscrew anti-clockwise to remove the cover.