SMC Corporation of America
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Compatible Fluid: Air, Operating Environment: Standard, Type: Electromagnetic Type, Number of Solenoids: Single Solenoid, Switching Type: Normally Closed, Application: Multi-Port, Connection Type: Others, Operating Temperature Range(°C): -10~50, Driving Type: Linear Motion Type, Response Time: 1 msec. or Less, Acquired Standards: CE, Pipe opening type (details): Gasket mount, Voltage: 24 

Compatible Fluid: Air, Operating Environment: Standard, Type: Electromagnetic Type, Number of Solenoids: Single Solenoid, Switching Type: Normally Closed, Application: Multi-Port, Connection Type: Others, Operating Temperature Range(°C): -10~50, Driving Type: Linear Motion Type, Response Time: 1 msec. or Less, Acquired Standards: CE, Pipe opening type (details): Quick mount (ø6.9), Voltage

Accepts nylon and urethane tubes, Applicable for both vacuum and positive pressure applications, Release collar allows easy removal of tubing without damaging the tube, Maximum vacuum pressure of 1.0MPa, FITTING, MALE ELBOW, CONNECTORS, KQ2 FITTING, MG, KQ2 1/2, .08467 lb

Accepts nylon and urethane tubes, Applicable for both vacuum and positive pressure applications, Release collar allows easy removal of tubing without damaging the tube, Maximum vacuum pressure of 1.0MPa, FITTING, MALE ELBOW, CONNECTORS, KQ2 FITTING, MG, KQ2 1/2, .19694 lb

Accepts nylon and urethane tubes, Applicable for both vacuum and positive pressure applications, Release collar allows easy removal of tubing without damaging the tube, Maximum vacuum pressure of 1.0MPa, FITTING, MALE ELBOW, CONNECTORS, KQ2(UNI) ONE TOUCH UNIFIT, MG, 1/2 KQ2(UNI), .10980 lb

m (99.9% filtered particle size)Max. 1.0 mg/m3 (ANR) ( 0.8 ppm) Note 4) Note 5)1100PolycarbonateStandardRelieving type1.76

Accepts nylon and urethane tubes, Applicable for both vacuum and positive pressure applications, Release collar allows easy removal of tubing without damaging the tube, Maximum vacuum pressure of 1.0MPa, FITTING, MALE ELBOW, CONNECTORS, KQ2 FITTING, MG, KQ2 1/2, .15432 lb

Accepts nylon and urethane tubes, Applicable for both vacuum and positive pressure applications, Release collar allows easy removal of tubing without damaging the tube, Maximum vacuum pressure of 1.0MPa, KQ2 1/2, CONNECTORS, KQ2 FITTING, MG, KQ2 1/2, 0.09393 lb

m (95% filtered particle size)Maximum 1.0 mg/m3 (ANR) (approx. 0.8 ppm) (2)PolycarbonateStandard450.44

Part Number Description: VALVE SOL   Product Line: V   Product Line Description: VALVE   Family Code: 214   Family Description: VJ3000 SOL VALVE 4/5 PORT   Class Code: MG   Part Code: 1   Reference Code:  K   PDF Documentation:  Datasheet   Click here to report information errorImage shown may not match exact part number

Accepts nylon and urethane tubes, Applicable for both vacuum and positive pressure applications, Release collar allows easy removal of tubing without damaging the tube, Maximum vacuum pressure of 1.0MPa, FITTING, MALE ELBOW, CONNECTORS, KQ2 FITTING, MG, KQ2 1/2, .06463 lb

Operating range (RS2H80) Note) The graphs indicate the values at normal temperature. (20 to 25C) 6 - Warning Lateral load F=mg[N] (g: gravitational acceleration=9.8[m/s2] Mass of transferred object m[kg] Operating pressure: P [MPa] Coefficient of friction P: Cylinder operating pressure [MPa] Lateral load: F [N] Figure-2-1. Lateral load and operating pressure Figure-2-2.

drain Max. air flow capacity Note 1) 1,100 L/min(ANR) 200 L/min(ANR) 450 L/min(ANR) Filtration rating 0.3 m (99.9% filtered particle size) Max. 1.0 mg/m30.8 ppm Outlet side oil mist concentration Compressed air quality class Note 2) ISO8573-1:2010 [3:7:3] 45 cm3 Drain capacity 8 cm3 25 cm3 Bowl material Polycarbonate Bowl guard Standard (Polycarbonate) Semi-standard (Steel) Weight 0.10 kg

[AF/AFM] auto drain Set pressure range 0.05 to 0.85 MPa [AR] Max. air flow capacity Note 3) 1,100 L/min(ANR) [AFM] 200 L/min(ANR) 450 L/min(ANR) [AF] 5 m Filtration rating [AFM] 0.3 m (99.9% filtered particle size) Max. 1.0 mg/m30.8 ppm Outlet side oil mist concentration [AFM] Compressed air quality class Note 4) ISO8573-1:2010 [3:4:3] 45 cm3 Drain capacity [AF/AFM] 8 cm3 25 cm3 Polycarbonate

The purity class of compressed air quality based on ISO8573-1:2010 2 : 6 : 3 Solid particle Moisture Oil Max number of particles per m3 Oil concentration (mg/m3) 0.1 < d 0.5 0.5 < d 1.0 1.0 < d 5.0 Pressure dew point Particle size d (m) Class Class (oC) at air pressure Class of 0.7 MPa 1 20,000 400 10 1 -70 1 0.01 2 400,000 6,000 100 2 -40 2 0.1 3 Not specified 90,000 1,000

The purity class of compressed air quality based on ISO8573-1:2010 2 : 6 : 3 Solid particle Moisture Oil Max number of particles per m3 Oil concentration (mg/m3) 0.1 < d 0.5 0.5 < d 1.0 1.0 < d 5.0 Pressure dew point Particle size d (m) Class Class (oC) at air pressure Class of 0.7 MPa 1 20,000 400 10 1 -70 1 0.01 2 400,000 6,000 100 2 -40 2 0.1 3 Not specified 90,000 1,000

Keep the air flow within the rated flow to prevent an outflow of lubricant to the outlet side Note 4 When the compressor oil mist discharge concentration is 30 mg/m3 (ANR). Note 5Bowl seal and other O-rings are slightly lubricated.

SPECIFICATIONS Model AFM20-A AFM30-A AFM40-A AFM40-06-A Port size 1/81/4 1/43/8 1/43/81/2 3/4 Fluid Air Ambient and fluid -5 60 (Should be no freezing) temperature Proof pressure Max. operating pressure 1.5 MPa 1.0 MPa Min. operating pressure 0.05 MPa 0.3 m (FILTRATION EFECIENCY 99.9%) Filtration MAX.1.0 mg/m3(ANR)(0.008ppm) Note1 Note2 Oil mist density at the out side 1100 Flow rateLminANR

Accelerating torque calculation (Example) (Example) Friction coefficient Ta = I x (Nm) Mass m F = mg Clamp F F I : Inertial moment Static torque calculation Movement Load Refer to features page 5. : Angular acceleration = (rad/s) Tf = F x l (Nm) g = 9.8m / s F: Pressing force (N) l l Static torque calculation 2 Load t2 Ts = F x l (Nm) Lever : Rotation angle (rad) t : Rotation time

Actuator effective torque STa (S is 10 times or more) (Example) (Example) F: Pressing force (N) Friction coefficient Accelerating torque calculation Ta = I (Nm) Static torque calculation Weight m F = mg Ts = F x l (Nm) I : Moment of inertia Static torque calculation Movement Refer to page 11.