SMC Corporation of America
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(page 135) -136No.PF-OMA1007-B Standby E/P regulator type NO Specification AMS20/30/40/60A-R/N/F#D Part number P A B C D E J M L AMS20A-#D 1/8 1/4 274.3 214.7 85.1 134.4 25.6 46.2 24 40.1 AMS30A-#D 1/4 3/8 291.8 214.7 102.1 134.4 29.1 46.2 30 40.1 AMS40A-#D 3/8 1/2 334.8 214.9 119.4 151.6 32.6 46.2 36 40.1 AMS60A-#D 3/4 1 401.8 214.8 117.7 151.6 42.1 46.2 46 40.1 Dimensions with bracket

M N 4-O T Q 2-P AH AG S K W U L B AL I 4-AK hole R AA AP J X AB A Y + Stroke V AI Z + Stroke AJ For 4-AO AG AN AI Cutout window 100 piston rod end connection AM Mounting dimensions For standard strokes (mm) Bore size (mm) Stroke range (mm) O N M L K J I B AP AO AN AM AL AK AJ AI AH AG AB AA P A 75, 100 125, 150 200, 250 300 63 80 100 M12 x 1.75 depth 23 100 66 180 135 117 65 228 60 M12 234

COM External pilot Low wattage type (0.5 W) Nil K N R Y (A) 4 (B) 2 Note 1) C Note) 5 (R1) 3 (R2) 1 (P) Seal type 5 (R1) 3 (R2) 1 (P) Note 2) 0 1 N.C N.O Metal seal Rubber seal 3 position closed center Note) For rubber seal type only.

port) 2-Rc 1/8 (P port) n1-Rc 1/8 (A port) 2-4.5 (Mounting hole) SYJ VK (Pitch) VZ Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com VT VP VG VP (Pitch) n-Rc 1/8 (R port) S070 VQ L Dimension n: Stations VKF n L 20 399 388 19 380 369 18 361 350 17 342 331 16 323 312

The theoretical output for the extension stroke is 1924 N, from the theoretical output table on page 429. 100 60 50 50 40 50 40 32 25 20 40 32 20 0 0 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 Operating pressure P (MPa) Operating pressure P (MPa) Selection Graph (6) to (8) (Horizontal Mounting) Graph (6) l: 100 mm or less Graph (7) l: 101 to 200 mm Graph (8) l: 201 to 300

sides n = 2, 3, 4 n = 2, 4, 6, 8 n = 2, 4, 6, 8 n = 2, 4, 6, 8 (n 2) 2 100 + 100 Same side 100 + 100 (n 2) n = 4, 6, 8 n = 2, 3, 4 1 pc. 75 90 80 10 Different sides 35 75 90 80 Same side 55 75 90 80 90 + 30 (n 2) 35 + 30 (n 2) 75 + 30 (n 2) 80 + 30 (n 2) Different sides D-A44 n = 2, 3, 4 n = 2, 4, 6, 8 n = 2, 4, 6, 8 n = 2, 4, 6, 8 55 + 50 (n 2) 75 + 50 (n 2) 80 + 50 (n

P P P K K K K C C C C U U U U O O O O S S S S H H H H L L L L to to to to Possible to change to the optional mounting angles.

Cooling Heating Heat suction (cooling) Heat generation (heating) HRG HRS HRZ HRZD HRW HEC HEB HED Technical Data Related Products Circulating fluid Circulating fluid Electron hole flow Electron flow Electron hole flow Electron flow N P N P Facility water Facility water Current Heat radiation (heating) Current Heat suction (cooling) DC power supply DC power supply Construction and Principle

Piping thread type : When N is selected, NPT thread adapter set will be added.

AL P port pressure (MPa) P port pressure (MPa) VY190 0 1 VY170 0 1 A port pressure (MPa) A port pressure (MPa) Set point Set point Set point Set point Set point Set point P port pressure (MPa) P port pressure (MPa) 14-10-5 Series VY1 Characteristics Flow Characteristics VY1A00 1/1B00 1 VY1D00 A port pressure (MPa) P port pressure 0.88 MPa A port pressure (MPa) P port pressure 0.88 MPa Flow

Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1. Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) CC 70 Lateral load F (N) RB 60 0.4 MPa 50 J 40 2. Confirmation of allowable lateral load From the graph, the allowable lateral load at L = 50 mm and P = 0.4 MPa is 18 N. Because 2.1 N < 18 N, it is applicable. 30 20 D2.

Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1. Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) CC 70 Lateral load F (N) RB 60 0.4 MPa 50 J 40 2. Confirmation of allowable lateral load From the graph, the allowable lateral load at L = 50 mm and P = 0.4 MPa is 18 N. Because 2.1 N < 18 N, it is applicable. 30 20 D2.

External pilot port Without M5 x 0.8 thread: Internal pilot VVEXB-1 With M5 x 0.8 thread: Common external pilot VVEXB-2 P = 31 P(1) port: Rc 1/8, For 6 manifold stations or n-Rc 1 8 more, exhaust from the both sides.

= 7.2 11 22 3.5 3.5 8 R1.7 7 25.5 3.4 28.5 3.5 150 (lead wire AWG#26) 27 5 150 (lead wire AWG#26) 3.5 6 barb fitting 1 (SUP) port n U side 1 2 3 4 5 D side 6 barb fitting 3 (EXH) port (18) 12 7 5 5 3.5 3.2 3.5 P = 7.2 12.8 n-3.2, 4 barb fitting 2 (OUT) port Dimensions Formulas: L1 = n 7.2 + 14.8, L2 = n 7.2 + 18.4, n: Stations (maximum 20 stations) n L 12 101.2 104.8 19 151.6 155.2 2 29.2

Stainless steel used for improved corrosion resistance Operating range Centre of Sphere Stainless steel (SUS304) e 5 g n a r U U Centre axis g n ti a r 5 e p O Cylinder connection threads Spherical rotation No leakage of water, etc., from the threads into the interior.

Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1. Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) 70 Lateral load F (N) 60 0.4 MPa 50 2. Confirmation of allowable lateral load From the graph, the allowable lateral load at L = 50 mm and P = 0.4 MPa is 18 N. Because 2.1 N < 18 N, it is applicable. 40 30 20 2.

F1 = X A1 X P . (1) F2 = X A2 X P . (2) 4 A1 = D2 . (3) 4 A2 = (D2 d2) . (4) F1 = Cylinder force generated on the extending side (N) F2 = Cylinder force generated on the retracting side (N) = Load rate A1 = Piston area on the extending side (mm2) A2 = Piston area on the retracting side (mm2) D = Tube bore size (mm) d = Piston rod diameter (mm) P = Operating pressure (MPa) While not

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