SMC Corporation of America
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Stations mTr rt t*. lT' 20 | 20 stations lpllrih llnlr Jrb dI vJ3000-21-1A A,B port Type 46 & 546 (for 5 port base mounted type) Appllcable valves NVJ30400-O NVJ30430-O Itdi.

Mineral oil A C A A A A 18 Sodium hypochlorite (2%, Room temperature) A C A D D B 19 Sodium chloride A A A A B 20 Carbon dioxide A A A A A A 21 Natural gas A A A A A A 22 Boric acid A B A D A B 23 Unless noted otherwise, the solution concentration is in a saturated state.

The kinetic energy of a load can be found using the following formula. 20 10 5 M 100 300 1000 2000 500 M 2 2 Ek = Maximum drive speed (mm/s) Ek: Kinetic energy (J) M: Weight of load (kg) : Piston speed (m/s) Example) Find the rod end load limit when a 63 air cylinder is operated at a maximum drive speed of 500mm/s.

10 J 6 Mounting base side B D 10 9.5 Across AA MXP10-20 Without magnet and switch rail 2-M30.5, 3.5 deep 2-M20.4, 3 deep For magnet mounting For rail mounting 8 2.5 4.7 6-M30.5 15 15 4 deep L (mm) Model G H J K L M N S V W Z MXP10-10 8 32 52.4 20 20 21 6.5 10 44 40 60 MXP10-20 20 50 82.4 36 36 39 7.5 20 74 65 90 168 168 Precision Air Slide Table Series MXP Dimensions 12 MXP12 Scale:55%

B A HS HS B A B A 075, 106 HS B A B A 150, 200, 250, 300, 400 Note) Figures in the table below are references for auto switch mounting positions in the stroke end detection.

F A A Lr MXF8 Lr = 20 mm 0.08 0.04 0.03 MXF8-30 Table displacement amount (mm) Table displacement amount (mm) Table displacement amount (mm) MXF8-30 0.06 MXF8-10 MXF8-20 MXF8-30 0.03 0.02 MXF8-20 0.04 0.02 MXF8-20 MXF8-10 0.01 0.02 0.01 MXF8-10 0 0 0 10 20 30 40 10 20 30 10 20 30 40 Load (N) Load (N) Load (N) MXF12 Lr = 30 mm 0.10 0.08 MXF12-50 0.06 Table displacement amount (mm) Table displacement

"#$ " %# &'# D t D D t t c c e c e e u u u s s s d d d i i i Rotary Gripper g g g o o o n n n r r r P P P A A A 9 9 9 MRHQ 10/16/20/25 w w w 9 9 m 9 I m I 1 1 n 9 9 9 9 n 9 9 d u d u r u a a a r u 9 o 9 9 s o s F tr F ie tr ie r r r 1 1 1 Modular construction D r D r d d d e e e e v v s s o o i i n g n g n n n n a a H H n P n P g g r r Gripper section is unitized for simple replacement.

zone) H H B B B B B B B J J 26 77.9 59.3 AC10-A 26 AC20-A 58.5 59.5 37.5 37.5 104.9 87.4 93.9 91.4 AC25-A 58.5 59.5 37.5 37.5 156.8 117.6 122.1 137.6 142.1 123.6 121.9 AC30-A 65 66 37.5 37.5 156.8 117.6 122.1 137.6 142.1 123.6 121.9 AC40-A 72 72 42.5 42.5 186.9 149.6 154.1 169.6 174.1 155.6 153.9 AC40-06-A 72 72 42.5 42.5 188.9 151.6 156.1 171.6 176.1 157.6 155.9 20 Standard

acting/Spring extend (mm) C95 A B A B Bore size Auto switch model Bore size Auto switch model Hs Hs C92 25 50 75 100 125 150 200 25 50 75 100 125 150 200 All strokes All strokes 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 20 25 32 40 D-C7 D-C7 55 55 80 80 105 24.5 (27) 45.5 45.5 70.5 70.5 95.5 24.5

F A A Lr MXF8 Lr = 20 mm 0.04 0.04 0.08 MXF8-30 Table displacement amount (mm) Table displacement amount (mm) Table displacement amount (mm) MXF8-30 0.03 0.06 0.03 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com MXF8-20 MXF8-10 MXF8-20 MXF8-30 0.02 0.04 0.02 MXF8-

2 w i A CJ1 CJP CJ2 A Cylinder tube sectional view A-A !0 o CM2 CG1 Component Parts MB No. q w e r t y u i o !0 !1 No.

across flats MB J K MM N P V W S ZZ S ZZ A C B D Ee11 F G H 32 40 50 63 80 100 4 4 5 5 5 5 M6 x 1 6 6 7 7 10 10 M10 x 1.25 26.5 26.5 31 31 37.5 37.5 1/8 1/4 1/4 3/8 3/8 1/2 84 84 94 94 114 114 178 186 210 210 258 258 90 90 102 102 124 124 184 192 218 218 268 268 32.5 38 46.5 56.5 72 89 12 16 20 20 25 30 30 35 40 45 45 55 13 13 14 14 20 20 47 51 58 58 72 72 46 52 65 75 95 114 22 30 35 35 40

CY MQQ M RHC MK(2) RS Q G RS H A RZQ MI W S CEP1 CE1 CE2 ML2B C J G5-S CV MVGQ CC RB J D-X 20Data 10-12-43 Stroke Reading Cylinder with Brake/CE2 Controller/CEU2 A cylinder capable of highly reproducible positioning (stopping accuracy of 0.5 mm) has been created by adding a brake mechanism to a stroke reading cylinder which can measure stroke length.

B C GA H1 FF GL F GD D E E GC M BB J BL C CC D EE GB K AA AL Bore size (mm) Without rod boot With rod boot 40 50 63 80 100 25 to 850 25 to 700 45 30 10 10 10 54 32 26 11 22 20 44 16 11 15 6 27 71.5 60 42 22 21 150.5 8 M8 x 1.25 25 to 800 25 to 650 50 35 12 13 10 59 40 27 11 27 21 52 20 10 17 9 32 80.5 70 46 24 28.5 162.5 11 M8 x 1.25 25 to 800 25 to 650 60 35 15 18 10 67 40 26 27 23 64 20

Grommet: G) G (Air operated) Main port 1(A) (Back side 2(B)) Port size: refer to table below Main port 1(A), 2(B) Pilot port 12(P1), 10(P2) A B C D E F G H I J Note) K L M Model VNB5-32A VNB6-40A VNB7-50A 1 8 1 4 1 4 1 4 1 2 1 1 2 105 120 140 77 96 113 53 60 74 26.5 30 37 120.5 137 160 20 24 24 129.5 147 170 163 180.5 203.5 175.5 193 216 218.5 (215.5) 236 (233) 259 (256) 223 240.5 263.5 229.5

The kinetic energy of a load can be found using the following formula. 20 10 5 M 100 300 1000 2000 500 M 2 2 Ek = Maximum drive speed (mm/s) Ek: Kinetic energy (J) M: Weight of load (kg) : Piston speed (m/s) Example) Find the rod end load limit when a 63 air cylinder is operated at a maximum drive speed of 500mm/s.

INP 1 INP ON 0.50 2 INP ON a bINP ON < / [mm/sec] [mm/sec] 1 4 30% 1 4 40% 5 20 35% 5 20 60% LEY*16** 21 50 60% 85% LEY*16*A* 21 50 80% 95% 1 4 20% 1 4 40% 5 20 35% 5 20 60% LEY*25** 21 35 50% 65% LEY*25*A* 21 35 80% 95% 1 4 20% 5 20 35% LEY*32** 21 30 60% 85% -41- LEY*16** LEY*25** LEY*32** LEY*16*A* LEY*25*A* A B C A B C A B C A B C A B C [kg] 1 1.5

Take measures for drop prevention by strut, etc. * For lock unit with a rod boot, add J to the part number suffix. Example) MWB50TF-UA-J 2.

J Prevent air from being drawn into the hydraulic piping. DWhen operating a stop valve or a skip valve with a solenoid valve, considering it is an external pilot, provide pneumatic piping with 0.3 to 0.7 MPa of air pressure. The pressure for the pilot must be set to the operating pressure of the cylinder or higher.