SMC Corporation of America
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Search Results "VFM350-N02-33-F"

V100 Mounting bracket Thread type SY VT307 manifold Nil F N T Rc G NPT NPTF SYJ Manifold valve can be easily converted from N.C.

= F x L M3 = F x L M1 = F x L Note) Deflection: Displacement of point A when force acts on point F Point A: Indicates a measurement point CYV15 (M1) CYV15 (M2) CYV15 (M3) 0.05 0.05 0.05 0.04 0.04 0.04 Deflection (mm) Deflection (mm) Deflection (mm) 0.03 0.03 0.03 0.02 0.02 0.02 0.01 0.01 0.01 0.1 0.2 0.3 0 0.1 0.2 0.3 0 0.1 0.2 0.3 0 Moment (Nm) Moment (Nm) Moment (Nm) CYV32 (M1) CYV32 (

B F Accumulated pulse output Brown 1 Load ON OFF OUT1 Main circuit Main circuit 4 Black Analog output White A 50msec 2 + 24VDC Load DOWN MODE SET U P 3 Blue 2-G C 60 PF2A7H-(-M) 28 29 (41.5) 3 4 Accumulated pulse output Brown 1 ON OFF OUT1 4 Black Analog output Load 2 1 50msec 2 + White Connector pin numbers Load 24VDC 3 Blue Pin no.

Thread type Voltage Rc G NPT Nil F N 1 2 3 4 5 6 100 VAC (50/60 Hz) 200 VAC (50/60 Hz) 110 VAC (50/60 Hz) 220 VAC (50/60 Hz) 24 VDC 12 VDC Port size Please consult with SMC regarding other voltages.

S + Stroke F ZZ + Stroke H B E G Mounting nut NN NA F N 12CY3B15 (mm) L 57 66 70 80 92 J 6 6 8 8 10 K 11 8 10 15 16 I 12 15 18 23 G 5.5 7.5 7.5 8 11 H 13 20 20.5 22 29 F 10 13 13 16 16 E 2 2 2 2 3 NN M10 x 1 M20 x 1.5 M26 x 1.5 M26 x 1.5 M32 x 2 D 16.6 21.6 26.4 33.6 41.6 MM M4 x 0.7 M4 x 0.7 M5 x 0.8 M6 x 1 M6 x 1 B 35 36 46 60 70 N 11 18 18.5 20 26 ZZ 103 132 137 156 182 NA 17 24 30 36

H 28 30 36 44 54 E 22 21 26 F 45 55 58 65 76 G 33 42 44 50 61 D 34 46 63 67 78 A 59 78 107 110 134 B 20 29 39 42 53 C 40 53 70 75 90 I 45 55 63 69 81 Model Piping port VHS20 VHS30 VHS40 VHS40-06 VHS50 1/8, 1/4 1/4, 3/8 1/4, 3/8, 1/2 3/4 3/4, 1 1938 Series VHS20/30/40/50 Specific Product Precautions Be sure to read before handling.

Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.

Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.

F G Rod flange Auto switch type Head flange Auto switch multiple side mounting Nil Without auto switch (Built-in magnet) Rod flange, head flanges are shipped together, (but not assembled). For applicable auto switch models, refer to the below table. Auto switches are shipped together, (but not assembled).

AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.

Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa 0.5 40 8 0.5 Gripping force (N) Gripping force (N) 0.4 30 6 0.4 0.3 0.3 20 4 0.2 0.2 10 2 0.1 0.1 0 20 30 50 60 Gripping point L (mm) 40 0 30 40 60 70 Gripping point L (mm) 50 80 MHY2-16D MHY2-25D F F F F 35 100 Pressure 0.6 MPa Pressure 0.6 MPa 30 0.5 0.5 80 Gripping force (N) Gripping force (N) 25 External grip 0.4 0.4

(F: Thrust of one finger) Pressure 0.6MPa 0.5 40 8 0.5 Holding force (N) Holding force (N) 0.4 30 6 0.4 0.3 0.3 20 4 0.2 0.2 10 2 0.1 0.1 0 20 30 50 60 Holding point L (mm) 40 0 30 40 60 70 Holding point L (mm) 50 80 F F F F MHY2-16D MHY2-25D 35 100 Pressure 0.6MPa Pressure 0.6MPa 30 0.5 0.5 80 25 External hold Holding force (N) Holding force (N) 0.4 0.4 60 20 0.3 0.3 15 40 0.2 0.2 10 20

Deflection on A when load is applied on F. Table deflection when yawing moment is applied. Deflection on A when load is applied on F. Table deflection when roll moment is applied. Deflection on A when load is applied on F.

T n t Operating conditions Impact mass Collision speed Dropping height Angular speed Unit kg m/s m rad/s m N Nm cycle/min C m 2 1 2 E1 Kinetic energy F S E2 Thrust energy E Distance between rotational center and impact point Thrust Torque Operating frequency Ambient temperature Friction coefficient E1 + E2 Absorbed energy Note 2) E 2 2 Me Equivalent mass m F n t = 5 kg = 0.5 m/s =