) 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
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.
Wall mounting z y P. 26 Wb: MGGLB25-200 (4.35kg) x y x z MY1H40-500 3. Ceiling mounting 4.
ND hole H10 Axis d9 MM NX2 H A L R2 U2 Z (Min.)
49 4.5 (58.4) 56 30 30 78.7 (mm) Rod Trunnion (mm) Head Trunnion Bore size Z ZZ 1 to 50 st 51 to 100 st 101 to 125 st 126 to 200 st 20 46 131 156 181 25 51 136 161 186 211 32 51 138 163 188 213 40 62 155 180 205 230 Bore size 1 to 50 st 51 to 100 st 101 to 125 st 126 to 200 st Z ZZ Z ZZ Z ZZ Z ZZ 20 118 139 143 164 168 189 25 123 144 148 169 173 194 198 219 32 126 150 151 175 176 200
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, 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.
Weight m X-axis Y-axis Z-axis Z 20 W 20 mm 30 mm 50 mm 2 kg 50 Y 30 3.
Power saving circuit is only available for the Z type.
section detail Stroke + 150 (table movement range) 53 190 52 52.5 Z section 92 3.3 55 Stroke + 393 90 82 Z section 5.8 1.7 4.8 135 A section detail (Switch groove) Stroke + 32 92 3-8H10 depth 5 20 67 11.5 90 (T-slot pitch) 45 62 8-6.6 92 58 30 Stroke + 216 9.4 4.5 10 18 The body mounting reference plane and work piece mounting reference plane should be used as standards when mounting onto
B -X51 MXP6 Standard product 2.4 2.4 Z 2-plugs: M-3P -X23 (mm) Z 2-hexagon socket set screws: M3 A 20 20 25 B 10.5 9 12 C 8 9 10 D 4.5 5 6 Model MXP10--X51 MXP12--X51 MXP16--X51 (mm) Z 45 60 Model MXP6-5-X23 MXP6-10-X23 MXP10/12/16 Standard products 2-plugs: M-5P 3 3 Z -X23 Z 2-hexagon socket set screws: M5 x 4 (mm) Z 60 90 76 106 102 128 Model MXP10-10-X23 MXP10-20-X23 MXP12-15-X23 MXP12
E 200 D I M E N S I O N S (N)VH S E R I E S B O D Y S I Z E 300 D I M E N S I O N S (N)VH S E R I E S B O D Y S I Z E 400 Courtesy of Steven Engineering, Inc. !
M plug connector 2 position double: VZS2250-M(Z)-01 3 position closed center: VZS2350-M(Z)-01 3 position exhaust center: VZS2450-M(Z)-01 3 position pressure center: VZS2550-M(Z)-01 DIN terminal 2 position double: VZS2250-D(Z)-01 3 position closed center: VZS2350-D(Z)-01 3 position exhaust center: VZS2450-D(Z)-01 3 position pressure center: VZS2550-D(Z)-01 Applicable cable O.D.: 3.5 to 7 MAX
3.1 z z z z 50kg IDFA60/70/80/90 Series 3-1 IDX-OM-W094 3.2 3.2.1 z (85%) z z z z z z 245 050 z z () z z z z z 2000m z z z 600 mm 600 mm 600 mm 600 mm 600 mm z z z 3.2.2 z z 7 7.3 z IDF-AB500 14 1 IDFA60/70/80/90 Series 3-2 IDX-OM-W094 3.2.3 z z z z z 60 z 65 65 z z z z z z z OUT IN (IN) (OUT) IN OUT IDFA60/70/80/90 Series 3-3 IDX-OM-W094
Refer to the table (3) for the available combinations between each electrical option (S, L, Z) and rated voltage.
Bore size A B C CD (cd) CX CZ D GA GB H MM NA NB R S U Z ZZ 10 15 12 14 3.3 3.2 12 4 8 18 28 M4 x 0.7 12.5 22.5 5 46 8 82 87 16 15 18.3 20 5 6.5 18.3 5 8 23 28 M5 x 0.8 12.5 27.5 8 47 10 85 93 6 Smooth Cylinder Double Acting, Single Rod Series CJ2Y Dimensions CJ2Y-Z CM2Y-Z CG1Y-Z MBY-Z CA2Y-Z CS2Y CQSY CQ2Y-Z CJ2X-Z CM2X-Z CQSX CQ2X CUX Double-side bossed (E) CJ2YE Bore size Stroke Z NDh8
-XC47 to -XC58 S, W, Y -XC59 to -XC61 Change of port direction S, W, X, Y Z, T, J, K -X7* Heat resistant type (100C) S, W, X, Y Z, T, J, K Angle adjusting screw -X16 Fluororubber seal S, W, X, Y Z, T, J, K -X10 Both sides angle adjustable S, W, X, Y Z, T, J, K 0 0 9 0 y 1 a y A port B port w a y n w e -X11 One side angle adjustable, One side with cushion io k y of e S, W, X, Y Z, T, J, K
to Z kgm2 IB m1 m2 r1 r2 Axis on the center gravity of B part of attachment and parallel to Z Z2 Weight of A part of attachment kg MHF kgm2 Weight of B part of attachment kg Total moment of inertia for attachment I Distance between Z and Z1 axis mm Inertia moment around the Z1 axis of A part of attachment kgm2 IZ1 MHL Distance between Z and Z2 axis mm Inertia moment around the Z2 axis of
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.
) Z: Positive common specifications only.
S ZZ Z Z S S Z S S ZZ ZZ ZZ ZZ Z 20 6 21.5 25 20 158 112 143 183 133 137 87 168 193 6 24.5 32 25 162 112 147 187 137 137 87 172 197 6 27 40 32 164 114 149 189 139 139 89 174 199 164 214 224 8 32.5 40 138 179 168.5 163 113 204 229 188 243.5 254 193.5 218.5 213 268.5 279 6-4-49 50 Series CM2 Clevis Integrated Style (E) CM2E Bore size Stroke S T Spring return S + Stroke Z + Stroke ZZ +