B C D E F H N-OT 0 1 2 3 4 5 6 Reverse Run Prohibited Pn50B.0 7 8 L /N-OT 0 A B C D E F L /P-CL 0 1 2 3 4 5 6 Forward External Torque Limit Pn50B.2 8 7 H P-CL 9 A B C D E F L /N-CL 0 1 2 3 4 5 6 Reserve External Torque Limit Pn50B.3 8 7 H N-CL 9 A B C D E F L /DEC 0 1 2 3 4 5 6 Homing Deceleration LS Pn511.0 8 7 H DEC 9 A B C D E F L EXT1 * * * * 4 5 6 External Latch Signal 1 Pn511.1 7 8
B C D E F H N-OT 0 1 2 3 4 5 6 Reverse Run Prohibited Pn50B.0 7 8 L /N-OT 0 A B C D E F L /P-CL 0 1 2 3 4 5 6 Forward External Torque Limit Pn50B.2 8 7 H P-CL 9 A B C D E F L /N-CL 0 1 2 3 4 5 6 Reserve External Torque Limit Pn50B.3 8 7 H N-CL 9 A B C D E F L /DEC 0 1 2 3 4 5 6 Homing Deceleration LS Pn511.0 8 7 H DEC 9 A B C D E F L EXT1 * * * * 4 5 6 External Latch Signal 1 Pn511.1 7 8
A B A B A B A B AXT511 -3 (V) AXT511 -4 (V) 24V DC 12V DC AXT511 -1 (V) AXT511 -2 (V) 100V AC 50/60 Hz 200V AC 50/60 Hz 0.049/0.043 0.024/0.021 0.031/0.020 0.015/0.01 VQ Rated voltage (V) Inrush current (A) Holding current (A) Allowable voltage (V) 0.075 0.15 VQ4 85 to 110% of rated voltage Insulation Class B (130 oC) or equivalent VQ5 A: With 2-M4 X 46 bolts for 2 position valve, B: With
1 ) 0 . 1 ( 1 2 . 2 ) 5 1 . 1 ( 4 5 . 2 ) 5 8 . 1 ( 8 0 . 4 ) 9 . 1 ( 9 1 . 4 ) d r a d n a t s ( d r a u g l w o B t e k c a r B P 4 4 B P 1 4 4 B P 1 5 4 B P 2 5 4 B P 6 4 B F 8 6 e r u t a r e p m e T , 2 3 G V 1 # l i o e n i b r u t e s u , n i m / s p o r d 5 e t a r p i r d l i o g i s p 3 7 f o e r u s s e r p y l p p u s h t i W * s e i r e S T L A N k n a T d e e F o t u A l
IO-Link master (class A) IO-Link master (class B) Precautions for handling Be sure to fit a seal cap on any unused connectors.
OPERATING PRESSURE: 100 PSI .007 B-062-007 B-125-007 .008 B-062-008 B-125-008 .009 B-062-009 B-125-009 .010 B-062-010 B-125-010 .012 B-062-012 B-125-012 .014 B-062-014 B-125-014 .016 B-062-016 B-125-016 .017 B-062-017 B-125-017 .019 B-062-019 B-125-019 .020 B-062-020 B-125-020 .025 B-062-025 B-125-025 .030 B-062-030 B-125-030 .035 B-062-035 B-125-035 .040 B-062-040 B-125-040 Back to Top .
Valve type NBR Seal material Fluid 2 For water Class B Coil insulation type Rc Thread type Size/Valve type Body material/Port size/Orifice diameter Voltage/Electrical entry Symbol Size Valve type Symbol Body material Orifice diameter Port size Symbol Electrical entry Voltage A B C D E F G H J K 1.0 A Grommet 24 VDC M5 1.6 B 100 VAC 1.0 Resin (PPS) 3.2 One-touch fitting C 110 VAC 1.6 Single
B 7 2 38 12 6.6 11 12 A B 34 16 34 16 H Cross section AA Cross section BB (NN-1) X H G (mm) Note) Refer to "Dimensions" of MXS25 on P. 64 for one with shock absorber as symmetric.
Hs A B A B 32 to 50 D-A73C D-A80C D-J79C D-A79W D-F7W D-F7V Approx. Hs Approx.
Hs B 30 MLGP Auto Switch Proper Mounting Position (mm) ML1C Auto switch model D-A9 D-A9V D-M9 D-M9V D-M9W D-M9WV D-M9AL D-M9AVL D-Z7/Z80 D-Y5/Y6 D-Y7P/Y7PV D-Y7W D-Y7WV D-Y7BAL D-A5 D-A6 D-A3 D-A44 D-G39 D-K39 D-F5W D-J59W D-F5BAL D-F5 D-J5 D-F59F D-A59W D-F5NTL Bore size (mm) A A A B A B A B A B B A B B 125 140 160 180 200 4 4 8 8 1.5 1.5 0 0 2 2 4.5 4.5 9.5 9.5 4 4 8 8 1.5 1.5 0 0 2 2 4.5
A B A B A B A B MY-S16 MY-S25 MY-S32 MY-S40 63.6 091 130 182 Note) A set of side supports consists of a left support and a right support.
C Y Y B G A 90 B 90 B G A D Note 1) 90 G A H X X X D Note 1) D Note 1) B B B F E F F E A H A G G RG RT RS B 296 305 C R310 R445 D 93 129 E 60 87 F 10 15 G 6 7 B 296 309 C R390 R495 D 93 129 E 60 87 F 10 15 G 6 7 B 299 307 C R350 R440 D 93 129 F 10 15 G 6 7 H 610 700 A 600 743 A 680 797 A 643 740 15 32 15 32 15 32 Y Note 2) Y Note 2) Y Note 2) X 558 to 573 685 to 708 X 518 to 533 558 to 581
size (mm) Solid state switch D-P5DW A B HS (mm) D-P5DW Auto switch model 40, 50 A B Hs 9 7 4.5 7.5 44 50 Symbol Bore size (mm) 40 50 8 Series CQM Auto Switches/Proper Mounting Positions and Height for Stroke End Detection HS Reed switch D-A9 V Solid state switch D-F9 V D-F9 WV A B 12 HS A B 16, 20, 25 HS A B 32, 40, 50 (mm) D-F9 V, D-F9 WV D-A9 V Auto switch model Symbol A B Hs A B Hs 12
1() 1() 2(0) 7 B 0() 0() A 6(4) 6(4) 7(5) 12 B B 0() 0() 1(0) 6 Hs 22.5 25 28.5 32.5 B 5(3) 5(3) 6(4) 11 A 7(5) 7(5) 8(6) 13 Hs 25 27.5 31 35 A B 6(4) 6(4) 7(5) 12 Hs 60 62.5 66 70 A 4(2) 4(2) 5(3) 10 Hs 69.5 72 75.5 79.5 B 3(1) 3(1) 4(2) 9 A 0.5() 2.5(0.5) 1.5(0) 0.5() 2.5(0.5) 1.5(0) 0.5(0) 5.5 2.5(0.5) 7.5 1.5(0) 6.5 3.5(1.5) 8.5 ( ): Denotes the values with air cushion.
B C For vacuum pressure 0.0 to 101.0 kPa 10.1 kPa 0 101.0 kPa Analog output [mA] 5 20 Analog output [V] For compound pressure 100.0 to 100.0 kPa 100.0 kPa 100.0 kPa For positive pressure 0.100 to 1.000 MPa 0.100 MPa 0 1.000 MPa 0.100 to 2.00 MPa 0.100 MPa*1 0 2.00 MPa 1 4 *1 Analog output is 0.8 [V] or 3.2 [mA] at the pressure A. 0.6 2.4 B A C B A C Pressure Pressure Functions Sub screen
Manifold Specifications for 41 and 42 Type Manifold Specifications for 41 and 42 Type SS5Y5-41 SS5Y5-42 SS5Y7-42 Port size Flow characteristics Model 52-SY740 52-SY540 1 4/2 (P A/B) 4/2 5/3 (A/B EA/EB) 1,5,3 Model Applicable valve 4,2 (A,B) (P ,EA,EB) b Cv c[dm3/(sbar)] c[dm3/(sbar)] Single base / B mounting Manifold style b Cv SS5Y5-41 1 (SUP) / 3/5 (EXH) Common SUP / Common EXH 1/4
port (FLUID IN) LVQ Diaphragm B Diaphragm A Drive chamber A Drive chamber B LQ LVN TI/ TIL PA 1.When air is supplied to P1 port, it enters drive chamber A. 2.Diaphragm A moves to the left, and at the same time diaphragm B also moves to the left. 3.The fluid in pump chamber A is forced out to the discharge port, and the fluid is sucked into pump chamber B from the suction port. 4.If air is
Note 2) D-K39A Note 2) D-M9l D-M9lW D-A9l D-B59W D-H7C D-H7BAL D-H7NF D-G5NTL D-B54 D-B64 D-C73C D-C80C A A B A B B B A B A B A B A B Bore size A 20 25 32 40 10 9 6 5 0.5 0 5.5 3.5 2.5 0 0 5.5 4.5 2 1 6.5 10 10 6 6 0.5 0.5 6.5 3.5 3.5 0 0 5.5 5.5 2 2 6.5 10 10 6 6 0.5 0.5 6.5 3.5 3.5 0 0 5.5 5.5 2 2 6.5 12 12 8 8 2.5 2.5 8.5 5.5 5.5 2 2 7.5 7.5 4 4 8.5 Note 1) Adjust the auto switch after
Action AN SOL Cylinder Xa Xb Xc Yb Ya Mode AMC ON OFF a High speed b Upward Low speed c High speed Downward d Low speed Stop e a: The air in the upper cylinder chamber is exhausted from the P port of VEXY Y,and the air in the tank flows in through the P port of VEXX X. b: AIr flows into the lower cylinder chamber through a throttled opening,set by a needle,from the A to P port of VEXX
M a n i f o l d m o u n t e d v e r s i o n s o f t h e V YH y r e g a r e a v a i l a b l e .