/s; Up to 50 st Graph (16) V = Over 400 mm/s; Up to 75 st 2 2 CXSM CXSL CXSM CXSL 1 1 0.5 Weight m (kg) Weight m (kg) 32 32 0.1 0.1 25 25 0.05 20 20 15 15 10 0.01 0 0.01 10 20 40 60 80 100 0 20 40 60 80 100 Overhang l (mm) Overhang l (mm) Graph (17) V = Over 400 mm/s; Up to 100 st 1 CXSM CXSL Weight m (kg) 32 0.1 25 20 15 0.01 0 20 40 60 80 100 Overhang l (mm) 8-28-14 14 Series CXS Model
st 1 CXSM CXSL Weight m (kg) 32 0.1 25 20 15 0.01 0 20 40 60 80 100 Overhang l (mm) 8-28-14 14 Series CXS Model Selection Caution Confirmation of theoretical output is required separately.
Table 14 Replacement parts < Adjustment bolt type, Internal shock absorber type > Description Size 10 20 30 50 P523010-5 P523020-5 P523030-5 P523040-5 Seal kit No. Description Qty. No. Description Qty. No. Description Qty. No.
Cooling Capacity HRSH100-A-20/40HRSH100-W-20/4014 16 Ambient temperature 32C Facility water temperature 32C 14 12 Cooling capacity [kW] Cooling capacity [kW] 10.5 10 11.5 12 10 Ambient temperature 43C 8 8 Facility water temperature 40C 6 6 Ambient temperature 45C 4 4 2 2 0 0 5 10 15 20 25 30 35 5 10 15 20 25 30 35 Circulating fluid temperature [C] Circulating fluid temperature [C] HRSH150
Reed Auto Switch: D-A93 (mm) Stroke B A Stroke C Auto switch operating range Stroke Model 5 10 15 20 5 10 15 20 5 10 15 20 11-MXJ4 11-MXJ6 11-MXJ8 14 14 0.5 0.5 9 4 4 3 14 14 18 0.5 0.5 0.5 9 4 10 5 25 14 14 25 0.5 0.5 0.5 0.5 9 4 Solid State Auto Switch (Lead Wire, In-line Entry): D-M9 (mm) Stroke B A Stroke C Stroke Auto switch operating range Model 5 10 15 20 5 10 15 20 5 10 15 20
50 51 100 200 Stroke [mm] Stroke [mm] L = 50 mm, V = 400 mm/s L = 100 mm, V = 400 mm/s 100 100 10 10 50 50 50 50 Load mass m [kg] Load mass m [kg] 40 40 40 40 32 32 32 32 25 25 25 25 1 1 20 20 20 20 16 16 16 16 12 12 12 12 0.1 10 30 50 51 100 200 0.1 10 30 50 51 100 200 Stroke [mm] Stroke [mm] 14 MGPK Series L L m m Plate Material Carbon Steel /MGPKL Vertical Mounting Operating pressure:
Therefore, the graph used for your model selection should be the one for CXSJL25-75 14 ). 32 8 mm 3 Compact Type Dual-Rod Cylinder Series CXSJ Vertical Mounting CXSJM CXSJL CXSJM CXSJL Graph V = up to 200 mm/s 1 Graph V = up to 400 mm/s 2 20 10 32 25 1 20 32 Weight m (kg) Weight m (kg) Weight m (kg) 25 15 1 20 15 10 0.1 10 0.1 6 6 0.03 5 5 10 20 30 40 50 100 10 20 30 40 50 100 Overhang L
Therefore, the graph used for your model selection should be the one for CXSJL25-75 14 ). 32 8 mm 3 Compact Type Dual-Rod Cylinder Series CXSJ Vertical Mounting CXSJM CXSJL CXSJM CXSJL Graph V = up to 200 mm/s 1 Graph V = up to 400 mm/s 2 20 10 32 25 1 20 32 Weight m (kg) Weight m (kg) Weight m (kg) 25 15 1 20 15 10 0.1 10 0.1 6 6 0.03 5 5 10 20 30 40 50 100 10 20 30 40 50 100 Overhang L
Nil TN TF 20 (16 x 2) 20, 30, 50 100, 150 38 27.5 8 7.5 3 22 12.5 7.5 11 83 11 3 11 14 M4 x 0.7 10 M4 x 0.7 25 (20 x 2) 39.5 28 10 8.5 3 26 12 7.5 11 93 13 4.5 13 17 M5 x 0.8 12.5 M5 x 0.8 32 (25 x 2) 25, 50, 100 150, 200 44.5 30 12 11.5 3 32 15 7.5 13 109 16 8 16 21 M6 x 1 15 M6 x 1 40 (32 x 2) 54 37 16 13 4 41 19.5 21 12 17.5 9 120 20.5 4 20.5 27 M8 x 1.25 20 M6 x 1 Bore size
M2 M3 m2 m3 m4 10 15 25 1 2 1 2 2 2 1.4 CY1F 1.5 3 1.5 5 5 5 2 14 20 14 12 12 12 12 The above values are the maximum allowable values for moment and load. Refer to each graph regarding the maximum allowable moment and maximum allowable load for a particular piston speed.
710 670 20 700 230 120 222 2 1 14-13-14
(Resin, Carbon steel) J 20 14 32 20 50 32 63 40 63 40 80 Bore size (mm) Easy maintenance is possible with a shock absorber that can be removed simply by loosening the bolts and shock absorber fixing screw from the stopper.
(Resin, Carbon steel) J 20 14 32 20 50 32 63 40 63 40 80 Bore size (mm) Easy maintenance is possible with a shock absorber that can be removed simply by loosening the bolts and shock absorber fixing screw from the stopper.
MH*-OMM0056 MHS2-D MHS3-D MHS4-D MHSJ3-D MHSH(J)3-D 1. 23 2. 2-1. 45 3. 3-1. 6 3-2. 67 3-3. 713 3-4. 13 3-5. 14 3-6. 14 3-7. 14 4. 4-1. 14 4-2. 1518 4-3. 1922 4-4. 2326 1 [ ][][] ISO4414*1)JISB8370*2) 1) ISO4414Pneumatic fluid power-Recommendations for the application of equipment to transmission and control systems. 2) JIS B8370 2 1. 2. 3. 4. 3 2 2-1 MHS2 MHS2 -16D MHS2 -20D MHS2 -25D
7 7 7 8 ZP10B ZPT2-7A-X2 ZP 13 B ZPG13B-7A-X2 7 8 8 8 ZP13B ZP 16 B ZPG16B-7A-X2 8 8 8 9 ZP16B ZP 20 B ZPG20B-7A-X2 11 11 11 13 ZP20B ZPT3-7A-X2 ZP 25 B ZPG25B-7A-X2 11 12 12 14 ZP25B ZP 32 B ZPG32B-7A-X2 14 15 15 18 ZP32B ZP 20 UT ZPG20UT-7A-X2 4 4 4 4 ZPT1-A6 ZP2-20UT ZP 16 J ZPG16J-7A-X2 8 8 8 9 ZPT2-7A-X2 ZP2-16J ZP B25 J ZPGB25J-7A-X2 14 15 15 18 ZP2-B25J ZPT3-7A-X2 ZP B30 J
J MVGQM (Slide bearing) A, DB, E Dimensions MVGQL (Ball bushing bearing) A, DB, E Dimensions DSymbol A E Symbol Bore size (mm) 40 A DB E DB Bore size (mm) Stroke Up to 50 st Over 50 st Up to 50 st Over 50 st -X 40 54 90 0 36 16 71.5 20 17.5 50 50 60 102 4 46 20 81 25 25 2063 63 61 102 0 41 20 81 25 20 Data 10-16-13 14 Valve Mounted Guide Cylinder Series MVGQ 80, 100 How to Order How to Order
Holding point L (mm) 120 80 160 200 20 40 60 Holding point L (mm) 80 0 20 40 60 Holding point L (mm) 80 100 120 MHW2-25D MHW2-40D MHZ2 160 50 Pressure 0.7MPa Pressure 0.7MPa 140 MHZJ2 0.6 0.6 40 120 Holding force (N) Holding force (N) 0.5 0.5 MHQ 100 30 0.4 0.4 80 0.3 MHL2 0.3 20 60 0.2 0.2 40 10 MHR 20 0 20 40 60 Holding point L (mm) 100 80 20 40 60 Holding point L (mm) 80 100 120 140 160
30 40 50 5 0 10 15 20 25 Discharge rate (L/min) Discharge rate (L/min) PAF3410 Air Consumption PAF5410 Air Consumption 200 SUP = 0.5 MPa 300 SUP = 0.5 MPa Air consumption (L/min [ANR]) Air consumption (L/min [ANR]) 150 SUP = 0.4 MPa SUP = 0.4 MPa 200 SUP = 0.3 MPa SUP = 0.3 MPa 100 SUP = 0.2 MPa SUP = 0.2 MPa 100 50 0 0 10 15 20 25 5 0 20 30 40 50 10 0 Discharge rate (L/min) Discharge rate
Operation status Power supply usage example Operation ON] 19 This product power supply usage example Contact output 2 : "FLT" Fault when an alarm occurs OFF] 7 Contact output 3 : "WRN" DC24V 1 Warning when an alarm occurs OFF] 2 20 Contact output 4 : OFF 14 Internal 8 circuit Contact output 5 : OFF 3 3 4 15 Contact output 1-5 common Customer power supply usage example 5 Contact output 6