Piping length [m] Air consumption Q [Nl/min.] 4 3 100 cylinder [mm] 40 50 63 80 2 2 100 100 Stroke [mm] Air consumption Q [Nl/min.]
B(9.5) B(12.7) B(19.1) 1B(25.4) 1 B(31.8) 1 B(38.1) 2B(50.8) VNA 111 211 311 411 511 611 711 AS 420-03 420-04 500-06 600-10 800-12 900-14 900-20 Caution Warning 1Piping When operation is suspended, surge pressure will be generated between the cylinder and VNA11A.
3 m 5 m None Solid state switches marked with are produced upon receipt of order.
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
Option/Semi-standard symbol: When more than one specification is required, indicate in alphanumeric order. q Symbol Description Body size 20 40 60 30 Nil K Note 1) Without backflow function With backflow function With backflow function w + Nil N Note 2) F Note 3) Thread type Rc NPT G e + 01 02 03 04 06 10 1/8 1/4 3/8 1/2 3/4 1 Port size r + Nil B Note 5) H Note 4) a Without mounting option
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
The kinetic energy of a load can be found using the following formula. 20 10 5 M 100 300 1000 2000 500 M 2 2 Ek = Maximum drive speed (mm/s) Ek: Kinetic energy (J) M: Weight of load (kg) : Piston speed (m/s) Example) Find the rod end load limit when a 63 air cylinder is operated at a maximum drive speed of 500mm/s.
Safety Instructions Be sure to read the Handling Precautions for SMC Products (M-E03-3) and Operation Manual before use.
M type plug connector There are no sliding parts in the valve (ex: spool, pistons, etc.), so the valve is able to function continuously and reliably at low pressure. The sealing function is performed by diaphragm. Therefore, the valve is non-lubricated for applications that are sensitive to lubrication.
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
SMC's VP300/500/700 series solenoid valve, offers high flow capacity and reduced power consumption (1.55W standard, 0.55W with power saving circuit). The series may be used as either a selector valve, or a divider valve. It is vacuum applicable up to –101.2kPa. Series VP3145/3165/3185 is a large size, 3 port solenoid valve with a rubber seal. It is possible to use the series in vacuum
(95% particle size collection) Oil mist removal rate Max. 0.1 mg/m3 (ANR) (2) (At saturation of element oil, less than 0.01 mg/m 3 (ANR) 0.008 ppm) 2 years or when pressure drop reaches 0.1 MPa Element life Note 2) At oil mist density of 30 mg/m 3 ANR is blown out by compressor.