SMC Corporation of America
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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.

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.

Stabilize the source pressure by providing a tank and a vacuum regulator. Provide a vacuum switch valve to individual lines.

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.

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.

Vertical actuation (Speed control) I II P2 W A P1 a B A P0 P0 a A W (1) Basically, meter-out control is used. Combine meter-in control to reduce sudden movement. (1) Basically, meter-out control is used.

Normal output Reversed output P_1 = A (A B)/4 n_1 = B + (A B)/4 A = Maximum pressure H_1 = (A B)/2 H_1 = (A B)/2 B = Minimum pressure In the OUT2 setting, the above P_1, n_1 and H_1 will be P_2, n_2 and H_2 respectively.

Detaching To detach a socket from a connector, pull out the lead wire while pressing the sockets hook with a stick having a thin tip (approx. 1 mm).

P R I N G R E T U R N / S P R I N G E X T E N D NC J2 NC J2 A U T O S W I T C H C A P A B L E N U M B E R O F S W I T C H E S Not Switch Capable D Switch Capable With Built-In Magnet 2 Pieces S 1 Piece n n Pieces M O U N T I N G B O R E S I Z E See NCJ2 Accessories Section A P P L I C A B L E A U T O S W I T C H B Basic L Axial Foot F Rod Side Flange D Double Clevis (Except for 6) 6 (1/4

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.

Devise a safety system so that if a person engages the emergency stop, or if a safety device is tripped during a system malfunction such as a power outage, the movement of the cylinder will not cause a hazard to humans or damage the equipment. Avoid synchronized operation using cylinders only.

If the connector is a larger diameter it will interfere with the clamping face. -34No.EX-OMW0016-A Revision history A: Contents revised in several places.

AD27-6-A With bowl guard AD27-6C-A AD37m-6-A AD47m-6-A Normally open (N.O.) With bowl guard AD38m-6-A AD48m-6-A Automatic (Auto drain) Manual With drain cock C2SF-2-A C3SF-2-A C4SF-2-A With level gauge C3LF-8-A C4LF-8-A With drain guide (without valve function) C2SFm-2J-A C3SFm-2J-A C4SFm-2J-A With level gauge C3LFm-8J-A C4LFm-8J-A Metal Normally closed (N.C.)

When the product is mounted so that the exhaust port side will be against a wall, use a spacer to secure a clearance of at least 0.039 inch (1 mm). (Fig. 1) For the single unit, PV port and PD port are oriented downward. When it is installed on a working table, use a bracket for single unit (Fig. 2) or secure a space for piping underneath the ports.

B A B A A A A A A 2.PUSH 2.PUSH B B B B 1.TURN 1.TURN VQZ 28 5.5 35 74.5 SMC VQD 13 2-M4 clamp screw EXH outlet M5: External pilot port 9 D side U side Stations 1 2 3 4 5 6 7 8 n C8: 3(R) port Lead wire length: L0, 600 mm L1, 1500 mm L2, 3000 mm C8: 1 (P) port 9 For top ported 4 4 4 4 4 4 4 4 R 3 60 37 26 (49.5) 2 1 2 2 2 2 2 2 2 P 29.5 13 7.5 P = 11.5 44 29.5 2n-C3, C4, C6, M5 (4(A),