Symbol Stroke O.D. thread size 0604 0806 1007 1412 2015 2725 6 mm 4 mm 2 pcs. 1 pc. 8 mm 6 mm 3 pcs. 1 pc. 10 mm 7 mm 1 pc. 14 mm 12 mm Note) RJ0604: "Nil" or "N" only 20 mm 15 mm 27 mm 25 mm With cap Nil U Basic type Collision speed range With urethane cap H L 0.05 to 2 m/s 0.05 to 1 m/s Specifications RJ1007 RJ0604 RJ0806 RJ1412 RJ2015 RJ2725 Basic type RJ0806U RJ1007U RJ1412U RJ2015U
For air gripper and auto switch precautions, refer to the Handling Precautions for SMC Products and the Operation Manual on the SMC website: http://www.smcworld.com Refer to pages 12 to 14 for cylinders with auto switches.
5 Port Air Operated Valve Series VPA450/470 How to Order VPA4 1 5 0 10 VP 5 port Air operated valve Thread type Nil Rc G NPT NPTF Function F N T VPA4270-14 2 position single pilot 2 position double pilot 3 position closed center 3 position exhaust center 1 2 3 4 VPA4150-04 Symbol Port size Applicable valve model Port size Note) 3 position is not available on Series VPA470.
Fluid Nil No L Yes Thread type*1 5 Steam Nil Rc A G B NPT Body material/Port size/Orifice diameter Symbol Body material Port size Orice diameter A Bronze (CAC) *1 The thread type for the main piping and pilot piping is the same. 3/8 11 B 1/2 14 C 3/4 18 D Stainless steel 316L equivalent Pressure type 3/8 11 E 1/2 14 F 3/4 18 Nil Standard H High pressure Other Special Options Special Entry
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.