How to Order How to Order R Mounting -XC6 Stroke Bore size CDG1 G5BAL R Mounting -XC6 Bore size CDM2 H7BAL Type Stroke Made to order specification Made to order specification With auto switch (built-in magnet) With auto switch (built-in magnet) Water resistant 2 color indication solid state switch Water resistant 2 color indication solid state switch Water resistant cylinder Water resistant
-XC6 Piston rod and rod end nut made of stainless steel -XC13 Auto switch rail mounting style Data -XC18 NPT finish piping port -XC22 Fluoro rubber seals Rod Boot Material With Auto Switch Symbol -XC37 Large throttle diameter of connecting port Maximum ambient temperature Rod boot material Double acting: Auto switch can be mounted for double rod.
MK MB1 ML + Adjustable range 4 Stroke XC6 Standard model no.
Action Double acting, Single rod Bore size (mm) 20, 25, 32, 40, 50, 63, 80, 100 Cushion None Auto switch mounting Rail mounting (D-F7BAL) Piston rod/Rod end nut material: Stainless steel (-XC6) Made to order Specifications other than above are the same as standard, basic style.
Mounting Basic Axial foot Rod flange Center trunnion Standard Rod end nut For parts made of stainless steel (-XC6), use the same specification stainless steel with the surface treatment (with hard chrome plated piston rod) (-XC68).
-XC6 Piston rod and rod end nut made of stainless steel DTie-rod, cushion valve, and tie-rod nut -XC7 Accessory and similar parts made of stainless steel -X -XC8 Adjustable stroke/Extension -XC9 Adjustable stroke/Retraction Center trunnion style Double clevis style Single clevis style Head side flange style Mounting Basic style Rod side flange style Axial foot style 20-XC10 Dual stroke/Double
Heat resistant cylinder (110C) -XC5 -XC6 Piston rod and rod end nut made of stainless steel Auto Switch Mounting Bracket Part No.
Symbol Specifications -XA Change of rod end shape -XB6 Heat resistant cylinder (150C) -XB7 Cold resistant cylinder -XB9 Low speed cylinder (10 to 50 mm/s) -XB10 Intermediate stroke (Using exclusive body) -XB13 Low speed cylinder (5 to 50 mm/s) -XB18 Low friction cylinder -XC6 Piston rod and rod end nut made of stainless steel -XC8 Adjustable stroke cylinder/Adjustable extension type -XC9
(Made of stainless steel) XC8 (Adjustable stroke cylinder/Adjustable extension type) 12 MGP12-Z-PS MGP12-Z-XC8-PS 16 MGP16-Z-PS MGP16-Z-XC8-PS 20 MGP20-Z-PS MGP20-Z-PS MGP20-Z-XC8-PS 25 MGP25-Z-PS MGP25-Z-PS MGP25-Z-XC8-PS 32 MGP32-Z-PS MGP32-Z-PS MGP32-Z-XC8-PS 40 MGP40-Z-PS MGP40-Z-PS MGP40-Z-XC8-PS 50 MGP50-Z-XC4-PS MGP50-Z-XC6-PS MGP50-Z-XC8-PS 63 MGP63-Z-XC4-PS MGP63-Z-XC6-PS MGP63
m (kg) 1000 a = 1000 to 3000 L2 500 Mer m 5 10 0 Transfer load m (kg) a 1000 Mey a = 1000 to 3000 500 m L3 5 10 0 Transfer load m (kg) Refer to page 304 for deflection data. 268 5 Phase Stepper Motor/Without Motor Brake Series LXS Dimensions/LXSH5BD Scale: 25% F G x I +0.030 0 depth 5 +0.030 0 depth 5 5H9 D-5.1 through Refer to Cross section C-C, bottom view.
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 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area
Can be connected with the ZK2 series vacuum unit p. 7 JSY3000 JSY3000 Ejector System JSY1000 JSY5000 Vacuum Unit ZK2 JSY1000/3000/5000 Series CAT.ES11-110B a Plug-in Compact 5-Port Solenoid Valve JSY1000/3000/5000 Series Series Map JSY1000 JSY3000 JSY5000 Valve width 39% reduction 36% reduction 35% reduction 6.4 mm b 10 mm 10 mm b 15.5 mm 15 mm b 24.6 mm 29% reduction 32% reduction 59% reduction
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 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area
Model Allowable Moment (Nm) Allowable dynamic moment Model Mounting orientation Load movement direction LTF6 200 Horizontal/Lateral Horizontal/Lateral Lateral Horizontal a Mep L1 (mm) Pitching 100 m a=1000 a=2000 a=3000 L1 30 20 10 0 Transfer load m (kg) L2 200 a=1000 a=2000 a=3000 Mer L2 (mm) Rolling Yawing 100 m L2 Mer 30 20 10 0 m Transfer load m (kg) 200 a=1000 a=2000 a=3000 L3 (mm) 100
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 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 Standard Motor/Horizontal Mount Specification Series LJ1H10 Dimensions/LJ1H101PB Scale: 15% 10 6 Work piece mounting reference plane
1000 1200 1400 3000 mm/s2 2 Work load: W [kg] Work load: W [kg] 3000 mm/s2 1.5 1 0.5 5000 mm/s2 10 mm/s2 0 1400 200 400 600 800 1000 1200 0 Speed: V [mm/s] Speed: V [mm/s] EQFS25HA/Ball Screw Drive Horizontal/Lead 12 Vertical/Lead 12 35 9 8 7 6 5 4 3 2 1 0 3000 mm/s2 30 Work load: W [kg] Work load: W [kg] 3000 mm/s2 25 20 15 10 10 mm/s2 5000 mm/s2 5 0 0 0 Speed: V [mm/s] 100 200 300 400
T1 = V/a1 = 300/3000 = 0.1 [s], a1 a2 T3 = V/a2 = 300/3000 = 0.1 [s] T = T1 + T2 + T3 + T4 [s] Time [s] T2 = L 0.5V(T1 + T3) V T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.
Note 2) Applicable to VQZ2000 and 3000.
Example) IS10M-30-6LP Symbol Description V q Body size 20 30 40 50 60 a Set pressure range Nil 0.1 to 0.4 MPa 6 Note 1) 0.1 to 0.6 MPa Semi-standard + Nil 0.5 m b Lead wire length V w L 3 m 23 15 Z 5 m (13) + c Pressure unit of the scale plate Nil MPa (23) (5000) (3000) (500) P Note 2) MPa/psi dual scale Note 1) Set pressure range of 6P (L, Z) is 0.2 to 0.6 MPa (30 to 90 psi).
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.