C 0.2 B 0.2 0.1 A 0.2 0.05 100 1000 D (mm) MGPWM MGPWL/A Hexagon socket head cap screw 126 146 176 192 240 266 Maximum speed (mm/s) Bore size (mm) A (mm) B (mm) C (mm) 20 25 32 40 50 63 24 30 34 40 46 58 108 128 156 172 220 248 12 14 18 18 22 22 12 15 18 18 22 22 M5 x 0.8 M6 x 1.0 M8 x 1.25 M8 x 1.25 M10 x 1.5 M10 x 1.5 Other Caution Do not use this cylinder as a stopper. 518
D-Y7WV D-Y7BAL D-A3 D-A44 D-G39 D-K39 D-A5 D-A6 D-A59W D-F5NTL D-F5LF D-P5DWL Bore size (mm) A A A A B A A A A B B B B B B B 32 12 11 7 4.5 0 0.5 3.5 4 0.5 9.5 8.5 4.5 2 1 1.5 0 40 12 11 7 4.5 0 0.5 3.5 4 0.5 9.5 8.5 4.5 2 1 1.5 0 50 12.5 11.5 7.5 5 0 1 4 4.5 1 10 9 5 2.5 1.5 2 0 63 12.5 11.5 7.5 5 0 1 4 4.5 1 10 9 5 2.5 1.5 2 0 80 15.5 14.5 10.5 8 2.5 4 7 7.5 4 14 13 9 6.5 5.5 6 2.5 100
Load at end of lever Position of rotational axis: Perpendicular to the plate through one end 2 1 2 2 a + K = m1 + m2 3 a Ex.) When shape of W2 is a sphere, refer to u, and 4a + b 2 1 2 4a + b 2 2 2 = m1 + m2 12 12 It becomes K = m2 2r2 5 5. Thin rectangular plate (Rectangular parallelepiped) 10.
If there is a risk of contact, provide safety measures such as a cover or a system that uses sensors that will activate an emergency stop before contact is made. 2. Use a balance circuit in which lurching of the piston is taken into consideration.
Dimensions [mm] Model A B C D E F G H J K L M N P Q R S T U V W Weight [g]*1 Outer body dia.
thread size 40-150 M40 x 1.5 45-150 M45 x 1.5 Basic Type: JA JA180 200--X530 Center of sphere M M U U D Width across flats F 60 B E H G P A R Dimensions (mm) DMaximum operating tensile and compressive force (N) Center of sphere R Maximum screw-in depth P Allowable eccentricity U Applicable bore size Model M A B D E F G H Weight (kg) Nominal size Pitch -X 180 JA180-40-150-X530 40 1.5 191 61
HS A A A B 19.5 (27.5) 19.5 (27.5) 20.5 (28.5) 23 (32) 27.5 (39.5) 27.5 (39.5) A HS A HS B 15 (22.5) 15 (22.5) 15.5 (23.5) 18 (27) 22.5 (34.5) 22.5 (34.5) 31 (45) 31 (45) 30 24.5 27 27.5 29 24 27 25.5 27.5 20 30 27 27 27.5 29 24 29.5 25.5 30 25 31 30.5 28 28.5 30 25 33 26.5 33.5 32 35.5 35 32.5 33 34.5 29.5 37.5 31 38 40 43 40.5 40 40.5 42 37 43 38.5 43.5 50 43 47.5 40 40.5 42 37 50 38.5
Position of rotation axis: Parallel to side b and passes a center of gravity. 1=m 12 a 2 1=m 4 r 2 oWith a load at the lever end rThin rectangle board (Parallelogram) Position of rotation axis: Perpendicular to the board and passes through center line. 2 1 2 2 a +K 1=m1 +m2 3 a Ex.)
Install a light shielding plate as a cover. position Modify the pulse and test the operation.
D D t D t t c e c c e e u u s u s s d i d i d i g g g o o o n n n r r r P P P A A A 1 1 9 9 9 9 9 9 w w 9 w 9 9 m I m I n n 9 9 9 u d u d a a a r u r u o s o F s tr F i e tr i e 9 9 9 D r r D r r r e e e e v v s 1 d d s 1 1 d o o i i n g n g n n n n a a H H n P n P g g r r o o i i s s d d e e u u D D c c t t d A d A r r w w a a 12-11-1 2 Courtesy of Steven Engineering, Inc.-230 Ryan Way,
P T 21.5 27.5 A I R R G Y 7 R A I 8 17.5 32 8 42 Side A Side B Scale: 40% 12 Rotary Gripper Series MRHQ Construction Description Material Note Parts list No.
Content 40 50 63 A set of above nos. 29, 34, 35, 36, 37, 38, 39 and 40.
Technical Data 1219 MY1H Series Auto Switch Mounting Auto Switch Proper Mounting Position Auto Switch Proper Mounting Position (mm) D-M9 D-M9V D-M9W D-M9WV D-M9AL D-M9AV Auto switch model D-A9 D-A9V A A Bore size A A 25 32 40 81 85 112.5 116.5 133.5 137.5 Note) Adjust the auto switch after confirming the operating conditions in the actual setting.
bolt B at ot ot (For clockwise rotation end adjustment) 5 5 r r 9 se 9 e e is e wi g w g n n k k ra oc c a o t r cl cl en nt er er e tm e m nt nt is us u t u w C 0 us o 90 k o c lo o C l dj C C 19 dj se c Cl 1 A k A A wi e w oc ge dj k A is oc k ng dj u wi e Cl an st us se ro ra m r ta t ot m r d at ti n e n io on e n e on nt e nt tio nd r r a a ti n n g ta e 5 9 g ta e 9 ro 5 ro m m
1 V 1.5 V 5 V 4 mA 6 mA 20 mA (PF3W711) A B C 1 V 1.4 V 5 V 4 mA 5.6 mA 20 mA (PF3W721) A B C 1 V 1.5 V 5 V 4 mA 5.9 mA 20 mA [L/min] PF3W504 0.5 4 PF3W520 2 16 PF3W540 5 40 PF3W511 10 100 PF3W521 30 250 -69No.PF-OMN0011CN-C / A B C D 0.6 V 1 V 5 V 5.4 V 2.4 mA 4 mA 20 mA 21.6 mA -70No.PF-OMN0011CN-C -71No.PF-OMN0011CN-C 0.58 mm(0.56 mm) (ZS-40-W) -72No.PF-OMN0011CN-C Revision history
DFSIIWDJ59W> lmm) DA59W DF5BA:DE5NT (mm) DF5BA A B A B A .B A B A B , 32 0.5 0 4.5 2 7 4.5 11 8.5 12 9.5 , 40 0.5 0 4.5 2 7 4.5 11 8 .5 12 9.5 , SO 1 0 5 2.5 7.5 5 11 .5 9 12.5 10 Ht H~ HI Hs 32 24.S 35 25 32.5 t 40 27.S 38.5 27.5 36.5 I SO 34.5 43.5 34 41 ; 80 4 2.5 6 6 .5 10.5 9 14.5 13 15.5 14 , 100 4 2.5 8 6.5 10.5 9 14.5 13 15.5 14 J 63 39.5 46.5 39 46 '. 63 1 0 5 2.5 7.5 5 11 .5 9 12.5
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
10 40 68 22 24 29 40 18 15 59 55 76 11-/22-MXP12-25 30 60 98 40 42 49 60 23 25 89 75 106 836 Air Slide Table MXP/MXPJ6 1122Dimensions: MXP16 11223 Z V K Metal stopper C 6.5 C Max. 4 25 5 Without stroke adjuster G M 11 Max. 4 C 2 x M5 x 0.8 depth 8 Stroke: S 2 x M4 x 0.7 depth 6 11-/22-MXP16-20 A 4 x M5 x 0.8 depth 7 (Plug: MGP12-08-CA001-R) 2 x M5 x 0.8 Piping port H Width across flats 8
0 4 Section AA Mounting base side B D +0.030 0 depth 1.5 3 Q QL 11-/22-MXP12-25 Without magnet and switch rail 2-M2 x 0.4 depth 3 8 5.7 3.5 L 6-M4 x 0.7 depth 4.5 20 20 2-M3 x 0.5 depth 3.5 (mm) G H J K L M Q QL S V W Z Model 10 40 68 22 24 29 40 18 15 59 55 76 11-/22-MXP12-15 30 60 98 40 42 49 60 23 25 89 75 106 11-/22-MXP12-25 103 Precision air slide table MXP/MXPJ6 11221122Dimensions
Model r e b m u N A f o t r o P l e d o M g n i t r o P e z i s t r o P B e z i s t r o P A c i r t e M " 2 3 / 5 " 4 " 4 / 1 " 6 " 6 1 / 5 " 8 t r o P A t r o P B h c n I 1 1 M K h c u o t e n O g n i t t i f g n i t t i f h c u o t e n O 0 1 , 6 6 1 / 5 8 8 / 3 0 1 2 / 1 2 1 2 1 M K h c u o t e n O g n i t t i f d a e r h t T P N 0 1 , 6 4 / 1 T P N ) T P ( c R 4 / 1 d a e r h