SMC Corporation of America
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A M1 = F x L M2 = F x L M3 = F x L Note) Displacement of Section A when force acts on Section F CYP15 (M1) CYP15 (M2) CYP15 (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) CYP32 (M1) CYP32 (M2) CYP32 (M3) 0.05 0.05 0.05 0.04 0.04 0.04

F A L L L Guide central axis A M1 = F x L M2 = F x L M3 = F x L Note) Displacement of Section A when force acts on Section F CYP15 (M1) CYP15 (M2) CYP15 (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) CYP32 (M1) CYP32 (M2) CYP32 (M3)

F A L L L Guide central axis A M1 = F x L M2 = F x L M3 = F x L Note) Displacement of Section A when force acts on Section F CYP15 (M1) CYP15 (M2) CYP15 (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) CYP32 (M1) CYP32 (M2) CYP32 (M3)

Calculation of applied lateral load The lateral load F equals the total load of the work piece. Thus, F = x m g (N) 1. Calculation of applied lateral load F The lateral load F equals the coefficient between the work piece and the conveyor. Thus, from the total amount of the work piece and coefficient of friction, F = x m g (N) 2.

Calculation of applied lateral load The lateral load F equals the total load of the work piece. Thus, F = x m g (N) 1. Calculation of applied lateral load F The lateral load F equals the coefficient between the work piece and the conveyor. Thus, from the total amount of the work piece and coefficient of friction, F = x m g (N) 2.

Note 2) For ZSE40 (F)/ISE40-Note 3) For ZSE40 (F)/ISE40-Note 4) For ZSE40F (compound pressure) with "psi" indication, this is 0.03 to 0.04 psi.

M12 x 1.0 12.5 9.5 47 6 9 75 4 Series CJ5-S Dimensions R V Front flange type (F)/CJ5FS CA Rod cover side Piping port 2-M5 x 0.8 Piping port M5 x 0.8 GB GA NN MM Cover surface BA CB D FY FB 2-FC With head cover port in axial position (R) Mounting hole NB A BB FX FZ NA F FT S + Stroke Z + Stroke H (mm) A BA BB CA CB D F FB FC FT FX FY FZ GA GB H MM NN NA NB S Z Bore size (mm) 10 15 15 12 17

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

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

Nomihal diameleri 3mm 41-140.F (5-60.C) Non-lube Not available Male thfead (srd.)

Nomihal diameleri 3mm 41-140.F (5-60.C) Non-lube Not available Male thfead (srd.)

Cylinder bore size 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 MGQ GP b>0.5 Calculation of load ratio b to MGG the theoretical output of cylinder b=f / F Horizontal mounting: f= X W Inclined mounting: f= X Wcosq+Wsinq (Refer to the diagram on the right.)

OK OK NG OK OK 17 4-2 W (N) WeN) () V m/s) () Va (m/s) L (m) M (Nm) E (J) g (m/s) (9.8m/ ) (N) W1 (Nm) V=1.4Va MFL F (V=0.) 1 L <> W1.VaW10 M2F2L2 F2 M= WeL =5VaWL 3 2 L W2 M3F3L3 F3 an= F Fmax 3 L F W4 Fmax : () W Ek= W V 2g (V=0.

A A a B B s j C f g t C0.5 C0.2 C0.2 b d e 45 45 Section A-A p k C0.5 45 C n h i l (d) C0.5 q m O Section B-B r (l) View C (mm) +0.2 0 l i o j k m n p q r s t b e g a c d f h Model 0 0.2 0.05 0.15 + 0.1 0 +0.2 0 3.5 +0.013 +0.001 CXS 6 2.75 M2.5 x 0.45 4.5 3.5 4.75 C0.5 2.8 0.5 4 3.5 3 3.5 16 0.1 M3 x 0.5 4 1 5.5 6 +0.2 0 0.05 0.15 0 0.2 + 0.1 0 +0.2 0 5 +0.016 +0.001 CXS10 4 M3 x 0.5 8 5

Low profile guide cylinder with lock Nil S n Bearing type M L Slide bearing Ball bushing Auto switch type Without auto switch (built-in magnet cylinder) Nil Bore size Refer to the table below for auto switch model numbers. 50mm 63mm 80mm 100mm 20mm 25mm 32mm 40mm 50 63 80 100 20 25 32 40 Locking direction Extension locking Retraction locking F B Cylinder stroke (mm) Refer to the standard

Low profile guide cylinder with lock Nil S n Bearing type M L Slide bearing Ball bushing Auto switch type Without auto switch (built-in magnet cylinder) Nil Bore size Refer to the table below for auto switch model numbers. 50mm 63mm 80mm 100mm 20mm 25mm 32mm 40mm 50 63 80 100 20 25 32 40 Locking direction Extension locking Retraction locking F B Cylinder stroke (mm) Refer to the standard

MY1W25 MY1W32 MY1W40 MY1W50 MY1W63 F 4 4 6 6 6 6 6 T 6 6 7 12 12 15 15 EA 7 10 12 14 17 20 26 W 58 58 70 88 104 128 152 Shock absorber unit model RB0806 RB0806 RB1007 RB1412 RB1412 RB2015 RB2015 8 Series MY1W Side Supports Side support A MY-SA 2-G 2-H E E F A B C D Side support B MY-SB 2-J 2-H C D A B J M4 x 0.7 M5 x 0.8 M6 x 1 M8 x 1.25 C 15 25 35 45 E 4.9 6.4 8 11.7 F 3 4 5 6 H 3.4 4.5

Nil N F Rc NPT G The cable and connector are shipped unassembled. Port size Lead wire (Refer to page 322.)

MRHQ10D MRHQ10D 20 20 Gripping force N Gripping force N 15 15 Pressure 0.6MPa Pressure 0.6MPa 0.5MPa 0.5MPa 10 10 0.4MPa 0.3MPa 0.4MPa 0.3MPa 5 5 0.2MPa 0.2MPa 0 10 20 30 40 50 0 10 20 30 40 50 F F Gripping point L mm Gripping point L mm F F MRHQ16D MRHQ16D 50 50 External gripping Pressure 0.6MPa Pressure 0.6MPa 40 40 Gripping force N Gripping force N 0.5MPa 0.5MPa 30 30 0.4MPa 0.3MPa 0.4MPa