, z + A = 100 y, z + A a 100 10 y, z + A = 200 y, z + A = 200 y, z + A = 300 y, z + A = 300 1 1 0 200 400 600 800 1000 1200 0 100 200 300 400 500 600 700 800 Stroke [mm] Stroke [mm] [Graph 6] Allowable load mass by stroke 32 [Graph 5] Allowable load mass by stroke 25 100 100 y, z + A = 0 y, z + A = 0 y, z + A = 50 y, z + A = 50 10 Load mass [kg] Load mass [kg] 10 y, z + A = 100 y, z + A =
Calculate the load factor for each direction. x = Xc/Lx, y = Yc/Ly, z = Zc/Lz 5. Conrm the total of x, y and z is 1 or less. x + y + z 1 When 1 is exceeded, please consider a reduction of acceleration and work load, or a change of the work load center position and series. Acceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3.
) Lr = 70 mm MXQ8( )-Z, MXQ6B-Z A C MXQ8( )-Z, MXQ6B-Z A C MXQ8( )-Z, MXQ6B-Z A C 0.007 0.004 0.120 ST 10 to 30 ST 75 0.006 ST 75 0.100 Table displacement [mm] Table displacement [mm] Table displacement [mm] ST 40 0.003 0.005 ST 30 to 50 0.080 0.004 ST 50, 75 0.060 0.002 ST 50 0.003 ST 20 0.040 0.002 ST 40 0.001 ST 10 ST 10 to 30 0.020 0.001 ST 75 ST 10 to 30 0.000 0.000 0.000 0 5 10 15 0
m1 x g x X m2 x g x X m4 x g x Z M1 M1 Static moment z y Y m1 x g x Y m2 x g x Y m3 x g x Z M2 Z m3 x g x X m4 x g x Y M3 m4 x g Note) m4 is a mass movable by thrust.
MY1B32-500 Average operating speed a 300mm/s Mounting orientation .. Horizontal mounting 1. Horizontal mounting 2. Wall mounting P. 58 z y x y x z W: Work piece (2kg) 3. Ceiling mounting P. 42 4.
Quantity set(s) Required date 1 Manifold Type Enter a "" for the manifold type to be used and enter requirements in the available boxes for that manifold. Enter "". SS5Y7 20P 42P SS5Y7 A/B port size Top ported (type 20P) 02 Rc 1/4 C10 10 One-touch fitting Side ported (type 42P) Stations 03 3 stations ... ... 12 12 stations U Z U Z 2 Valve Type Note) SY520-LO is for type 20P manifolds.
Mep 2000 a = 1000 L1 (mm) Pitching m : Transfer load (kg) a : Work piece acceleration (mm/s) Me: Dynamic moment L : Overhang to work piece center of gravity (mm) m a = 2000 1000 L1 a = 3000 0 2 4 6 8 10 Transfer load m (kg) 600 L2 400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 2 4 6 8 10 m Transfer load m (kg) 3000 a = 1000 L3 (mm) 2000 L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer
Bore size (mm) Unit A H A A L H A L H A L H A L H Tightening torque MY1B80 Horizontal collision: P = 0.5 MPa 0.3 10 2000 1500 0.6 16 Collision speed (mm/s) Collision speed (mm/s) Air cushion Caution Use caution not to get your hands caught in the unit.
7 LEH A @7 !0 LEY -X5 !6 11LEFS 11LEJS A @6 !1o !5 @5 @4 !4 25Aw A-A * Motor bottom mounting type is the same. LEC LEC S LEC SS-T LEC Y LEC Y Motorless Component Parts No. Description Material Note No.
Z CQ2 Without auto switch A M9BW 32 200 DC Z CDQ2 With auto switch With auto switch (Built-in magnet) Number of auto switches Nil S n Mounting 2 pcs. 1 pc. n pcs.
flange surface Symbol S K L S L M K L M Pilot port direction Solid state auto switch D-M9P(M)(L)(Z) Left flange surface D-M9B(M)(L)(Z) D-A90(L) D-A93(M)(L)(Z) 1 Reed auto switch Right flange surface Without auto switch (with built-in magnet) 2 When the seal material is not being changed, there is no need to select a symbol.
+ Stroke 5 Z + Stroke (mm) Data Stroke 5 to 15 16 to 30 31 to 45 46 to 60 S 30.5 39.5 43.5 57.5 Z 63.5 72.5 76.5 90.5 Note) 1.
S, Z and T type (with power saving circuit) should be used within the following allowable voltage fluctuation range due to a voltage drop caused by the internal circuit.
Applicable Cylinder Series: (N)CDQ2, (N)CDQ2W, (N)CDQ2www-wS/wT (Single acting), (N)CDQ2, (N)CDQ2W (Large bore size), (N)CDQ2K, (N)CDQ2KW, (Non-rotating rod), (N)CDQ2 (Long stroke), CDQ2wS (High lateral load) Auto switch type s e r u t a e F l e d o M e z i s e r o b e l b a c i l p p A y r t n e l a c i r t c e l E D-A72 D-A73 Grommet (Perpendicular) D-A80 Without indicator light D-A79W
Refer to page 293 for details. * Select Z or NZ for models with a power saving circuit. Select R, U, S, or Z for the valve when the SI unit specification is A2 (positive common).
ND hole H10 Axis d9 MM NX2 H A L R2 U2 Z (Min.)
S) PB PA PB SMC B PA A A B SMC SMC (mm) Dimensions (Max.
T) V N 1 2 1 2 1 2 1 2 LVQ3 S, LVQ4 S LVQ5 S, LVQ6 S M V A B SMC U C A B Z D (Max. T) View Z LVQm0-S shown.
Calculate the load factor for each direction. x = Xc/Lx, y = Yc/Ly, z = Zc/Lz 5. Confirm the total of x, y and z is 1 or less. x + y + z 1 When 1 is exceeded, consider a reduction of acceleration and work load, or a change of the work load center position and series. Acceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3. Wall x y x z 2.
+0.1 A NA B 0 0.3 S + Stroke H U CZ 0 0.3 Z + Stroke R ZZ + Stroke (mm) * A clevis pin and retaining rings are included.