4 C-9 MYMK-40-Stroke MYM50-15AK0502 GMY50 MC-16 P44 C-4 C-11.2 MYM63-15AK0503 GMY63 MC-20 P53 C-4 C-14 MYM16-15AK0500 GMY16 MYB16-15-A7163 P12 4 x 1.8 x 1.1 7 x 4 x 1.5 MYMK-16-Stroke 7.15 x 3.75 x 1.7 8.3 x 4.5 x 1.9 C-6 MYMK-25-Stroke C-7 MYMK-32-Stroke Polyurethane Note) Two types of dust seal bands are available.
C H B H B B C D d H B C D d H Part no.
83 106 129 EB 30 32 38 50 57 66 77 EC 5.8 5.8 6.5 8.5 10 14 14 Model MY1W16 MY1W20 MY1W25 MY1W32 MY1W40 MY1W50 MY1W63 F 4 4 6 6 6 6 6 T 6 6 7 12 12 15 15 EA 7 10 12 14 17 20 26 W 58 58 70 88 104 128 152 Shock absorber unit model RB0806 RB0806 RB1007 RB1412 RB1412 RB2015 RB2015 8 Series MY1W Side Supports Side support A MY-SA 2-G 2-H E E F A B C D Side support B MY-SB 2-J 2-H C D A B J M4
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
Determination of load's kinetic energy (E) E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 1548.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 1548.)
screw D-B5/B64 D-B59W D-G5NTL D-G5NBL BA-01 BA-02 BA-32 BA-04 Cylinder tube BD1-01M BD1-02M BD1-02 BD1-04M D-A3/A44 D-G39/K39 qBMA2-: A set of a and b in the figures. wBJ3-1: A set of c, d and e in the figures.
screw D-B5/B64 D-B59W D-G5NTL D-G5NBL BA-01 BA-02 BA-32 BA-04 Cylinder tube BD1-01M BD1-02M BD1-02 BD1-04M D-A3/A44 D-G39/K39 qBMA2-: A set of a and b in the figures. wBJ3-1: A set of c, d and e in the figures.
screw D-B5/B64 D-B59W D-G5NTL D-G5NBL BA-01 BA-02 BA-32 BA-04 Cylinder tube BD1-01M BD1-02M BD1-02 BD1-04M D-A3/A44 D-G39/K39 qBMA2-: A set of a and b in the figures. wBJ3-1: A set of c, d and e in the figures.
0.5 0.6 0.7 F Black 0 V G Shield Connector pin arrangement A phase output pulse G A DB phase output pulse F B H E D C -X Counter value 0 1 2 3 4 3 2 1 699
L L+A Fig. 1 Fig. 2 L 2 1 V E = W ( ) 2 1000 Collision speed V = 1.4 Va Find the kinetic energy E (J) of the load. 1 420 E = 1 ( ) = 0.088 2 1000 V = 1.4 x 300 = 420 Correction factor (reference value) Find the allowable kinetic energy Ea (J).
u t o s w i t c h A u t o s w i t c h s p e c i f i c a t i o n A u t o s w i t c h i n s t a l l a t i o n A u t o s w i t c h s e t p o s i t i o n I n t e r n a l s t r u c t u r e a n d o p e r a t i o n p r i n c i p l e C u s h i o n s M a i n t e n a n c e I n s p e c t i o n P e r i o d i c i n s p e c t i o n D i sassem ble and reassem bl e C a u t i o n o f d i
0.4 MXJ8 0.3 0.5 0.35 Rubber stopper 0.4 0.30 0.2 Load mass W kg Metal stopper 0.25 0.3 0.20 0.15 0.2 100 50 200 300 0.1 100 50 200 300 400 500 Average speed Va mm/s 0.10 500 700 Average speed Va mm/s Collision speed V mm/s 0.05 400 600 0.00 200 100 300 400 500 600 0 Collision speed V mm/s (Average speed x 1.4) 700 Table (2) Max.
2 @1 e u o t @3 !8 @0 @0 @2 !4 !7 !1 !9 !2 @1 @4 e u o t @3 !8 @0 @0 @2 q w r @5 y !5 !6 i q w r @5 y !5 !
8 1 6.2 x 3 x 1.6 O-ring NBR C-14 10.5 x 8.5 x 1 C-5 @3 4 8-14-16 16 Mechanically Jointed Rodless Cylinder Series MY3A/3B Construction MY3B w e t u i @1 @6 @9 !3 !5 !6 !7 !8 MX MTS y q MY !0 @8 @7 !4 !9 r CY !
.20) 88 104 4.5 6 -X 35 57 10 83 12 17 67.3 9 (Max.25) 4.5 6 RB2015 40 66 14 106 128 152 15 20 73.2 13 (Max.33) 6 5.5 Technical Data RB2015 52 77 14 129 15 26 73.2 13 (Max.38) 6 5.5 1357 MY1W Series Side Support Side support A MY-SA 2 x G 2 x H E E F A B C D Side support B MY-SB 2 x J 2 x H C D A B A B C D E F G H J Applicable cylinder MY1W16 MY1W20 MY1W25 MY1W32 MY1W40 MY1W50 MY1W63 Model
C11.2 1218 MY1H Series Mechanically Jointed Rodless Cylinder Linear Guide Type Side Support Side support A MY-SA 2 x G F 2 x H E C D A B Side support B MY-SB MY1B 2 x J MY1H MY1H MY1B E A B C D MY1M MY1C (mm) MY1H Part no.
MSQ Angle adjustment Range Figure 5 MSZ MSZ CRQ2X MSQX ad a ge ju Cl lt MRQ an st bo oc t r m nd en g k en tm wi in e us 10 10 se t r st on dj a ju an r on ti ot ad iti ta os ge at p ro er y nt io e b C e b n y is e ge n ad w d k an c ju lo t r C st in en g m bo st lt ju b ad M 0 ax 19 im e u ng m ra ro n ta tio Center position adjustment Table 2 R: Clockwise adjustment L: Counterclockwise
C D 15 (mm) Auto switch model A D-F9 B C D D-A9 D-F9 D-A9 D-F9 D-A9 D-F9 Bore size (mm) 17.5 15 D-A9 21.5 76.5 72.5 56.5 60.5 Note) Auto switches cannot be installed in Area C in the case of 15. 25, 32 (mm) A D-Y5 D-Y7 D-Y7W B C D Auto switch model D-Y5 D-Y7 D-Y7W D-Y5 D-Y7 D-Y7W D-Y5 D-Y7 D-Y7W D-Z7 D-Z8 D-Z7 D-Z8 D-Z7 D-Z8 D-Z7 D-Z8 Bore size (mm) 25 22 101 103 47 47 78 78 22 32 30.5
(Refer to page 338.) 348 Compact Guide Cylinder Series MGQ Bore Size 32 to 100: MGQM, MGQL 4 x YY depth YL X W + Stroke Z 4 x MM depth ML 4 x NN through 2 x P DB DA R H V T PW GB GA 2 L F C + Stroke G TB TA S Q K J B + Stroke E MGJ A + Stroke MGP MGQM, MGQL Common Dimensions (mm) P PW Bore size (mm) 32 40 50 63 80 100 Standard stroke (mm) B MGQ C DA F G GA GB H J K L MM ML NN Q R S TN TF