SMC Corporation of America
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L5 A1 A2 D1 D1 T T Metric Size L4 L5 A1 A2 M Max.

LEFS LEFB LEY LEYG LESYH LES LESH LEHF LER JXC51/61 JXC 1 a1 a a1 a2 b a2 a I = m1 + m2 3 a12 3 a22 I = m 12 a2 I = m 12 a2 I = m1 12 4a12 + b2 12 4a22 + b2 + m2 5. Thin rectangular plate (cuboid) Position of the rotation shaft: Passes through the center of gravity of the plate and perpendicular to the plate. (The same applies to thicker cuboids.) 6.

L : Stroke [mm] V : Speed [mm/s] a1: Acceleration [mm/s2] a2: Deceleration [mm/s2] T1 and T3 can be obtained by the following equation. T1 = V/a1 [s] T3 = V/a2 [s] T1 = V/a1 = 300/3000 = 0.1 [s], The acceleration and deceleration values have upper limits depending on the workpiece mass and the duty ratio.

-L MR-PWS1CBLM-A1-H MR-PWS1CBLM-A2-H CNP3 AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) AWG 19(/) (b) 10m 10m 2m 11.5 2m 2m MR-PWS1CBL2M-A1-L MR-PWS1CBL2M-A2-L MR-PWS1CBL2M-A1-H MR-PWS1CBL2M-A2-H LE-CSM50m 50m MR-PWS2CBL03M-A1-L MR-PWS2CBL03M-A2-L CNP3 AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) AWG 19(/) () () b) a)

Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], Time [s] T3 = V/a2 = 300/3000 = 0.1 [s] T = T1 + T2 + T3 + T4 [s] L 0.5 V (T1 + T3) V T1 T2 T3 T4 T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.

. 1 2 3 Circuit Cable color U V W Red White Black Connector A2 terminal no.

San=a1+a2+a31 3.11-10 Air Slide Table Series MXS Allowable load: W (N) Fig.1 Overhang: Ln (mm), Correction value for moment center distance An (mm) Fig.2 Pitch moment Yaw moment Roll moment W My Mp Mr W W W Static moment Dynamic moment L1 A1 L3 A5 L2 A3 CL W Mp Mr My W W MLGC L3 A6 W L1 A2 L2 A4 CNA W Mey Mep CB L2 A4 CV/MVG A2 L3 Work mounting coefficient: K Fig.3 CXW Table mounting CXS

L1 A1 L3 A3 Mp Mr Static moment Dynamic moment My W W W L2 A2 L3 A3 L1 A1 Mp Mr My W W W W Mey Mep We We L3 A3 L2 A2 W Note) It is not necessary to consider load factor when using this device vertically perpendicular.

-L MR-PWS1CBLM-A1-H MR-PWS1CBLM-A2-H LE-CSMCNP3 AWG19 AWG19 AWG19 AWG19 / AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) (B) 10m 10m 2m 13.4 2m MR-PWS1CBL2M-A1-L MR-PWS1CBL2M-A2-L MR-PWS1CBL2M-A1-H MR-PWS1CBL2M-A2-H LE-CSM50m MR-PWS2CBL03M-A1-L MR-PWS2CBL03M-A2-L CNP3 AWG19 AWG19 AWG19 AWG19 / AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) () () .

Time [s] LEC SS-T T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] LEC Y T2: Constant speed time can be found from the following equation.

L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/10 = 0.03 [s], T3 = V/a2 = 300/10 = 0.03 [s] Time T = T1 + T2 + T3 + T4 [s] [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be found by the following equation.

A2 AK ASS T T ASR ASF Model T H D1 D2 D3 L1 L2 L6 A2 M L5 A1 Weight (g) Note 5) MAX.

SMC Pneumatics, Inc. 12 Series ASIII1F-T Dimensions (mm) 1in=25.4mm L2 Inch sizes L3 Applicable tubing O.D. d D1 M1 L6 D2 L1 D4 L4 H (width across flats) D3 D4 A1 L5 A2 L6 T Inch sizes A1 A2 L3 L4 L5 L6 D2 D3 D4 L1 L2 Model H D1 d T M1 ASD230F-U10/32-01T 8.4 1/8" 17.5 29.4 12.9 ASD230F-U10/32-03T 9.3 5/32" 30.7 31 0.7 9.6 10 4.5 11.7 8 10-32UNF 28.4 7.8 ASD230F-U10/32-05T 23.3 35.2 11.4 3

A32 A33 A34 Note 1) Dimensions indicated with an asterisk () in the patterns A1, A2, A18, A20, A22, A31, A32, A33, and A34 are provided in the table below.

Pilot port Rc, NPT 1/8 12 R 132 100 42.3 91 116 1 2 SMC 4 x 6.5 (Mounting hole) 80 OUT IN 100 6 HEX.35 (178) With nut 80 Pilot port Rc, NPT 1/8 12 R 132 100 116 1 2 SMC 4 x 6.5 (Mounting hole) 80 100 SRF50 19 Model A1 A2 B1 B2 OUT IN SRF50S-1S19 SRF50S-1S1925 SRF50S-1S25 SRF50S-1S2519 SRF50S-2S19 42.3 91 58 91 58 91 55 98 55 98 55 98 A1 A2 58 91 6 B1 B2 56 95 56 95 Tube extensions 80

With Double Clevis and Double Knuckle Joint Symbol -XC26 Bore Size 32 to 63 Standard C(D)Q2D-XC26 A B C 2 x P (Rc, NPT, G) (Port size) Width across flat K Auto switch 4 x O Cap bolt C1 X L1 Q Minimum lead wire bending radius 10 F Width across flat B1 CT Z MM CD hole H10 Axis d9 J CD hole H10 Axis d9 W E M D H1 4 x O effective depth R +0.4 CX 0 +0.4 CX 0 (A + Stroke) (L) B + Stroke CW CU A2