SMC Corporation of America
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Search Results "KM11-09-13-10"

Weight reduction is achieved through the configuration changes of the head cover and cylinder tubing. 17% Reduced Weight 17% lighter 17% lighter Weight comparison (kg) MY1B MY1B 9.9 8.2 MY1H 13% lighter 13% lighter Current model MY1B 5.8 6.7 MY1B 13% lighter 13% lighter MY1M 3.4 3.9 MY1C MY1H 25 32 40 Back MY1 HT Compared with L unit at 1000 strokes.

[C] 5 10 15 20 25 30 35 Circulating fluid temperature [C] HRS090-W-20/40 (50 Hz) HRS090-W-20/40 (60 Hz) 14 12 12 10 Facility water temperature 32C Facility water temperature 32C Cooling capacity [kW] Cooling capacity [kW] 10 8 8 6 Facility water temperature 40C Facility water temperature 40C 6 4 4 2 2 0 0 5 10 15 20 25 30 35 Circulating fluid temperature [C] 5 10 15 20 25 30 35 Circulating

S 10-1 . 10-1 10-2 . 10-1 11 T 11-1 . 11-1 11-2 . 11-1 11-3 . 11-1 11-4 . 11-2 11-5 . 11-3 11-6 . 11-4 12 V 12-1 . 12-1 12-2 . 12-2 12-3 . 12-2 12-4 . 12-2 13 13-1 . 13-1 -2 IDX-OM-W035 i i i-1 () 3 i-1-1 3 IDFB Series i-1 i-1 IDX-OM-W035 i i-2 5 . i-2-1 i-2 IDFB Series i-2 IDX-OM-W035 i i-2-2 i-2-3 50 i-2-4 i-2-5 0 i-2 IDFB Series i-3 IDX-OM-W035 i i-2-6

Q 26 R 4.5 S 1.6 AMG150C AMG250C AMG350C AMG450C AMG550C 10 99 63 20 63 10 1/8, 1/4 158 14 113 76 20 76 10 190 66 24 8 6 6 12 6 10 40 66 80 28 5 2 1/4, 3/8 172 18 145 90 20 90 10 222 80 28 8 7 7 14 7 12 50 80 95 34 5 2.3 3/8, 1/2 204 20 166 106 20 106 10 246 90 31 10 9 9 18 9 15 55 88 111 50 9 3.2 1/2, 3/4 225 24 200 122 20 122 15 278 100 33 10 9 9 18 9 15 65 102 126 60 10 3.2 3/4, 1 259

Specifications Model MSUA1 MSUA3 MSUA7 MSUA20 Vane Type Single vane Rotating angle *1) 90 o 180 o 90 o 180 o 90 o 180 o 90 o 180 o +/10 o +/10 o +/10 o +/10 o +/10 o +/10 o +/10 o +/10 o Fluid Air (Non-lube) Proof pressure 1.05 MPa 1.5 MPa Ambient and fluid temperature 5 to 60 oC Operating pressure range 0.2 to 0.7 MPa 0.15 to 0.7 MPa 0.15 to 1.0 MPa Rotation time adjustment range 0.07 to

TERM P14=OUT 13 TERM P2=OUT 1 TERM P2=OUT 1 TERM P21=ITV_IN0 TERM P21=ITV_IN0 TERM P9=OUT 8 TERM P9=OUT 8 TERM P15=OUT 14 TERM P15=OUT 14 TERM P3=OUT 2 TERM P3=OUT 2 TERM P16=OUT 15 TERM P16=OUT 15 TERM P10=OUT 9 TERM P10=OUT 9 TERM P4=OUT 3 TERM P4=OUT 3 TERM P22=ITV_IN1 TERM P22=ITV_IN1 TERM P17=OV TERM P17=OV TERM P11=OUT 10 TERM P11=OUT 10 TERM P5=OUT 4 TERM P5=OUT 4 TERM P18=OV TERM

B B When D-F8 is used Size: 10 to 200 B A Reed switch Solid state switch Size 10 20 30 50 70 100 200 Rotation A B Actuation range A B Rotation range m Actuation range Rotation range m 36 50 66 68 78 91 115 10 190 90 10 90 40 54 60 72 82 95 19 21 27 31 37 41 48 61 17 23 27 33 37 44 57 190 80 10 80 10 10 65 10 190 65 10 10 50 190 50 10 190 45 10 45 Operating range at proper mounting position

20 0.05 15 10 0 0.01 20 40 60 80 100 Overhang l (mm) 8-28-13 13 Series CXS Horizontal Mounting 10 to 32 Graph (13) V = Over 400 mm/s; Up to 30 st Graph (14) V = Up to 400 mm/s; Up to 50 st 2 2 CXSM CXSL CXSM CXSL 1 1 0.5 Weight m (kg) Weight m (kg) 32 32 25 0.1 25 20 0.05 20 15 15 10 0 0.01 0 0.1 10 20 40 60 80 100 20 40 60 80 100 Overhang l (mm) Overhang l (mm) Graph (15) V = Over 400 mm

(8) UV = Up to 400 mm/s; Up to 10 mm stroke 1 1 Weight m (kg) Weight m (kg) 32 32 25 25 0.1 0.1 20 20 15 15 10 10 0.01 0 0.01 0 20 40 100 60 80 20 40 100 60 80 Overhang L (mm) Overhang L (mm) Graph (12) V = Up to 400 mm/s; Up to 50 mm stroke CXSJM CXSJL Graph (13) V = Over 400 mm/s; Up to 50 mm stroke CXSJM CXSJL 1 1 Weight m (kg) Weight m (kg) 32 32 0.1 0.1 25 25 20 20 15 15 10 10 0.01

10 10 5 5 5 1 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 1 0 1 2 3 4 5 6 8 9 10 11 13 1 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 7 12 Distance from cylinder shaft center: L0 (cm) Distance from cylinder shaft center: L0 (cm) Distance from cylinder shaft center: L0 (cm) 50 63 1000 1000 Recommended driving force: Fn(N) Recommended driving force: Fn(N) 500 400 500 200 300 300 200 Usable range 100 100

14 8 10 14 12 14 4 10 19 6 12 20 13 21 26 36 38 65 4 4 4 18 10.4 20.7 D1 10 L2 A D2 8 H 6 10 10 19.5 12.8 22.8 Connection threads 10 (R) 8 (R) 15.2 18 26 21.5 12 26.3 Applicable tubing 10 18.5 29 41 24 29.4 M L1 17 17 12 20.9 46 58 25 31.4 22 D1 Reference dimension for R threads after installation Note 1) D1 indicates the maximum diameter.

, 20, 30, 40, 50 10, 20, 30, 40, 50, 75 10, 20, 30, 40, 50, 75, 100 10, 20, 30, 40, 50, 75, 100, 125 10, 20, 30, 40, 50, 75, 100, 125, 150 10, 20, 30, 40, 50,7 5, 100, 125, 150 *90and 91-series MXQ6 products do not have shock absorbers.

79 16 24 32 40 47 55 12 113 23 34 45 57 68 79 16 201 40 60 80 101 121 141 Standard Stroke Weight With Shock Absorber (g) (mm) Body weight Additional weight of magnet and rail Model MXP6-5 MXP6-10 MXP10-10 MXP10-20 MXP12-15 MXP12-25 MXP16-20 MXP16-30 Model Standard stroke 80 105 130 210 210 320 640 830 10 10 13 20 17 23 20 23 MXP6 5, 10 MXP10 10, 20 MXP12 15, 25 MXP16 20, 30 Shock Absorber

(mm) Port size Av x 10-6m2 Cv converted 10 10 15 10 15 20 25 35 40 50 1/4 (8A) 1.9 2.4 4.5 2.4 5.5 9.5 13 23 31 49 46 58 110 58 130 230 310 550 740 1200 VXED2130-02 VXED2130-03 VXED2140-03 VXED2130-04 VXED2140-04 VXED2150-06 VXED2260-10 VXED2270-32 VXED2380-40 VXED2390-50 420 0.5 3/8 (10A) 670 500 670 1150 1650 5400 6800 8400 1.0 0.5 Thread (Nominal size) 0.02 1/2 (15A) 1.5 3/4 (20A) 1 (25A

CY1H25 (Nm) 64 56 50 40 30 50 40 M1 1.5 10 13 M2 2.5 16 16 M3 1.5 10 13 M1 28 56 64 M2 26 85 96 M3 28 56 64 Model CY1H25 CY1HT25 CY1HT32 Model CY1H10 CY1H15 CY1H20 30 28 26 20 20 CY1H20 CY1H15 16 13 Moment Nm Moment Nm 10 10 2 2.5 3 4 5 3 4 5 CY1H10 M3 2 CY1H10 1.5 1 1 0.5 0.5 70 100 300 500 100 300 500 1000 1000 70 M1 M2 Piston speed mm/s Piston speed mm/s Graph (3) Graph (2) Moment generated

BDL (108.5) 10 4.6 10 34.3 101 74.5 35 5.5 28.1 12.7 ADDRESS No.

MHR2-10/MDHR2-10 MHR2-10/MDHR2-10 20 20 Pressure 0.6 MPa Pressure Gripping force (N) Gripping force (N) 15 15 0.6 MPa 0.5 MPa MHZ 0.5 MPa 10 10 0.4 MPa 0.4 MPa MHF External grip 0.3 MPa 0.3 MPa 5 5 MHL 0.2 MPa 0.2 MPa MHR 0 10 20 30 40 50 0 10 20 30 40 50 Gripping point L (mm) Gripping point L (mm) MHK Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main

A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)

A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)

MY2 H/HT MY3A MY3B MY3M Load Mass Allowable Moment MY1H/m3 MY1H/M3 MY1H/M1 MY1H/M2 q r w e t 30 40 50 50 40 30 40 50 30 40 50 30 20 20 20 20 MY1H40 MY1H32 10 10 10 MY1H40 MY1H40 MY1H32 Load mass kg MY1H32 Moment Nm Moment Nm Moment Nm 5 4 3 MY1H25 MY1H40 10 5 4 3 5 4 3 MY1H32 MY1H25 MY1H25 2 MY1H25 5 4 2 2 1 3 1 1 0.5 0.4 0.3 2 0.5 0.4 0.3 0.5 0.4 0.3 D0.2 1 0.2 0.2 0.1 -X 100 200 300 400