SMC Corporation of America
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In case of facility having a small installation area (that can not vent the air naturally) Make a forced air exhaust vent on a wall at a high level and an air inlet on a wall at a low level. 3.

AA D K S Model PF3W704S--T 115 50 81.2 69.5 67.5 PF3W720S--T 123 54 85.2 73.5 71.5 PF3W740S--T 153 71 105.5 90 89 -88No.PF-OMM0005-N PF3W711-U25/PF3W721-U30 (Vinyl chloride piping) Piping port A B D E F J K L N P Q 25 A 154 46 77 57.6 23 77 63 28 18 3.5 depth 14 32 30 A 146 56 91 71.6 28.5 73 60.5 25 27.5 3.5 depth 14 38 Bracket dimensions Piping port S T U V W Y Z 25 A 59 36 48 58 70 7 2

If driving a load such as a relay that generates a surge voltage, use a switch with a built-in contact protection circuit or use a contact protection box.

When a load, such as a relay or solenoid, which generates surge is directly driven, use a type of switch with a built-in surge absorbing element. 8.

Refer to external dimensions in pages 1-6-44 to 1-6-46, and then mount it. 1-6-43 SX7000: SS5X7-20Stations Grommet (G) 2n2-One-touch fittings (A, B port) 2n1-Rc 1/4 (A, B port) 6-Rc 1/4 L1 L2 Applicable tubing O.D.: 8 (Mounting hole) 4-4.5 10 (P, EA, EB port) 10 16.5 11.5 22.4 76.8 19.5 19 20.5 B A B A B A B A B A B A B A 20 20 EA EB P EB EA P 21 21 62.5 67.7 21 60 128.6 115.6 30 99.5 28.2

When a load, such as a relay or solenoid, which generates surge is directly driven, use a type of switch with a built-in surge absorbing element. 8.

When a load, such as a relay or solenoid, which generates surge is directly driven, use a type of switch with a built-in surge absorbing element. 8.

When a load, such as a relay or solenoid, which generates surge is directly driven, use a type of switch with a built-in surge absorbing element. 8.

If there is a risk of contact, provide safety measures such as a cover or a system that uses sensors that will activate an emergency stop before contact is made. 2. Use a balance circuit in which lurching of the piston is taken into consideration.

From a point indicating 500 mm/s on the axis of abscissas, extend a line upward and find a point where it intersects with a line for the 63 mm bore size. Extend a line from the intersection to the left and find a load mass 80 kg.

(1) 1 2 16 4 6 4 (2) SW1 Ab AC Ad Ab A b A b . A C A d A E A F A H A A (1) b # # Ready-off Ready-off (1) d # # ON ON (1) C # # OFF OFF (2) * * No.No.81 8 8 8 CPU CPU (3) 0 0. b JOGDO (1) # #. b (3) # #. d # #. C 1. ##0016 ## 00 01 1 02 2 03 3 04 4 05 5 06 6 07 7 08 8 09 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 2. **No. 3.

39 18 22 23.6 D Applicable tube 8 30.5 29.4 25.5 46 20 18.5 1/2" 9.53 60 22 M A L Reference dimensions after installation of NPT thread Note 1) D is maximum diameter.

D A B Grommet with membrane Power cable outlet (17) Dimensions (mm) A 230 B C D Circuit breaker Model 32 B D IDFA4E, 6E, 8E, 11E IDFA15E1 67 179 43 258 77 158 C E A IDFA22E to 75E Power cable outlet (17) (Wire diameter 9 to 11) F (mm) Dimensions E D C B A F Model Signal cable outlet (Wire diameter 17) Grommet with membrane IDFA22E IDFA37E IDFA55E IDFA75E 59 125 40 25 46 39 60 Terminal block

Caution Caution indicates a hazard with a low level of risk which, if not avoided, could result in minor or moderate injury. Warning Warning indicates a hazard with a medium level of risk which, if not avoided, could result in death or serious injury. Danger Danger indicates a hazard with a high level of risk which, if not avoided, will result in death or serious injury. Warning 1.

0.3 High flow rate nozzle High flow rate nozzle 0.2 O.D. 6 mm, I.D. 4 mm tube (Length 10 mm) 0.1 0 0 120 40 60 20 80 100 Flow rate [L/min (ANR)] Ionizer 21 Made to Order IZN10E Series Dimensions Energy saving static neutralization nozzle IZN10E-01-X367 (107) 16 92.5 5 9.5 12 Variable nozzle direction 46 3.5 A 18.5 6 11 6 A 12.4 8 5 6 A-A 27.7 40 M3 x 0.5 thread depth 4 (Ground terminal)