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Remove the hexagon socket head cap screws (11). 2. Hold either body A (1) or body B (2), and separate the body A and B by pushing the vane shaft (3) out. 3. Take out the vane shaft (3), stoppers (4) and (5). 1. Mount the vane shaft (3) into the body B (2). 2. Mount the stopper seals (7) into the stopper (4). 3. Mount the stoppers (4) and (5) into the body B (2).

Lateral piping / wiring Axial piping / wiring 135 135 MXW Series Long Stroke Slide Table How To Order Preferred Option Program F9N L S B MXW 16 100 Auto switch 2 pcs. 1 pc. n pcs.

Grease pack part no.: GR-S-010 (10 g), GR-S-020 (20 g) 430 Non-rotating Double Power Cylinder Series MGZ Dimensions Basic style GA 2 x P (Rc, NPT, G) GB Y Y 4 x MM depth M XAH7 depth 6 +0.2 0 D1 KA D B C E 2 x 4 x J KA E MB MA NB MC NA K H B C MGJ S + Stroke ZZ + Stroke MGP MGQ The allowable angle difference of E to B should be limited to 1.5.

Series NVFR40O0:Base Mounted Tlpe Constructio n/ P ar ts L i.st NVFR4 I OO 2 posi$on sirle 2 Doition double A P B E B P E 3 poBition Closed center/Erhsust center/Pressure center Closed center/NVFR43O0 I & C t 0 $ r P E E A A P B E B P E Main Parts No.

A B 1 Actuator section PPS 2 Body PFA A B 3 Diaphragm PTFE 4 End plate PPS 5 Flow rate adjuster section PPS 503 Series LVD Dimensions Basic type A D L K 4 x M (Q) 2 x P One-touch fitting Breathing port PB H C PA G A B N E J B (F) T 2 x U PB PA A B Pilot port threaded type With flow rate adjustment (Max.

Series NVFR40O0:Base Mounted Tlpe Constructio n/ P ar ts L i.st NVFR4 I OO 2 posi$on sirle 2 Doition double A P B E B P E 3 poBition Closed center/Erhsust center/Pressure center Closed center/NVFR43O0 I & C t 0 $ r P E E A A P B E B P E Main Parts No.

When air enters drive chamber B, the fluid in pump chamber B is forced out, and at the same time fluid is sucked into pump chamber A. 2. When the diaphragm moves in the opposite direction, the fluid in pump chamber A is forced out, and fluid is sucked into pump chamber B. 3.

M9 M9V F9W(V) B Electrical entry is in the direction C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C

M9 M9V F9W(V) B Electrical entry is in the direction C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C

(n 2) 2 D-C7 D-C80 15 + 45 10 15 50 50 + 45 (n 2) (n = 2, 4, 6...) D-H7 D-H7W D-H7NF (n 2) 2 15 + 45 10 15 60 60 + 45 (n 2) (n = 2, 4, 6...) D-C73C D-C80C D-H7C (n 2) 2 15 + 50 10 15 65 65 + 50 (n 2) (n = 2, 4, 6...) (n 2) 2 D-B5/B64 D-G5NTL 15 + 50 75 + 55 (n 2) 10 15 75 (n = 2, 4, 6...) (n 2) 2 20 + 50 D-B59W 75 + 55 (n 2) 15 20 75 (n = 2, 4, 6...)

The element retainer shall be assembled in such a way that the symbol A-A in (a) of Fig. 6 is overlapped with symbol B-B of element retainer shown in (b) of Fig. 6 in parallel. B A B A C View of c Actuators Modular F.R.L.

The element retainer shall be assembled in such a way that the symbol A-A in (a) of Fig. 6 is overlapped with symbol B-B of element retainer shown in (b) of Fig. 6 in parallel. B A B A C View of c Actuators Modular F.R.L.

x 0.7 thread depth 8 B A 3H9 depth 3 +0.025 0 HA GA Section AA Section BB (mm) ZZ 74 79 90 108 126 176 M 49 54 65 83 101 151 Z 48.5 53.5 64.5 82.5 100.5 150.5 K 23.5 33.5 43.5 53.5 63.5 88.5 J 19.5 29 39 56 60 96 I 13 8.5 9.5 10.5 24.5 38.5 NN 2 2 3 3 4 5 HA 20 30 20 28 46 56 H 28 30 20 28 23 28 GA 17 12 33 43 43 83 G 9 12 13 15 20 27 KA 82.5 132.5 N 4 4 4 4 6 6 NA 2 2 2 2 4 4 Model F 25

B L2 1 = W/Wmax = 1/7 = 0.14 L3 C 2. Static moment Mr = W x 9.8 (L3 + C) Examine Mr. (Mp, My values do not apply to this example.)

Solmldc.pc y indud6 cap, (1)rutbre3 pluo dor 15, (r ) dr 19, (2) (h 13, (2) dn 14, dnd (1) d.r 7 sc@01 t2B sordrdrdcp*3y. t'dud6p, (r) rss$d i@roddng cp...ro.dor t6. 0 ) &l 1q (2) del 13, (2) d.l 14, -d 11 | d.r 7lv5tv rvd'l{1 s6602 Solmidc4 s y. hdude, (1) .ubod a@ds plus rb| r 5, (1) irdi@ro.lign a$nbry dor 1 7& 13, (1 )drr 19, (2) dr 13, 12) d6r 14. and lrl dat 7 (b,vo lve 1"1 1 6 sdendd

SY SYJ 0 VQ4 0 1 Plug-in SX 2 5 VQ4 1 Plug lead VK VZ Enclosure Configuration Dust-proof 2 position single 3 position closed center VF (A) 4 (B) 2 (A) 4 (B) 2 Dust tight, jet proof (Applicable to IP 65) W 3 1 VFR 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) Manual override 2 position double 3 position exhaust center (A) 4 (B) 2 (A) 4 (B) 2 VP7 Metal Rubber B: Locking slotted style : Non-locking

1-C 2-A 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 2-B 2-B 1-A 1-B 1-C 2-A 2-B 1-C 2-A 2-B 2-B 2-B 2-B 2-B 1-A 1-B 1-C 2-A 2-B 2-B 2-B 2-B 2-B 2-B CE2 6 1/8, 1/4 1.5 500 0 1,000 2,000 3,000 ML2B Max. speed Vmax (mm/s) 6 1/4, 3/8 3 1000 Graph 3:25 ML1C 10 1/4, 3/8 20 (1/4) 4.5 1500 20 10 1/4, 3/8 REA Composed effective area So (mm2) Composed effective area