change without prior notice and any obligation on the part of the manufacturer. 2017 SMC Corporation All Rights Reserved No.VT325-OMK0002-B
Combinations of contact mark and core color Contact Mark Core Color Signal White A-phase Yellow B-phase Brown (OV) Blue (OV) Red V Black V Connector Pin Layout Shield 4-2 Wiring for Counter The wiring for CEU5 and MONOSASHI-KUN uses three twisted-pair cables.
16 (24) 16 (24) 17 (25) 19.5 (28.5) 24 (36) 24 (36) 32.5 (46.5) 32.5 (46.5) B 20.5 (28. 5) 20.5 (28.5) 21.5 (29.5) 24 (33) 28.5 (40.5) 28.5 (40.5) B 17.5 (25.5) 17.5 (25.5) 18.5 (26.5) 21 (30) 25.5 (37.5) 25.5 (37.5) 34 (48) 34 (48) B 18 (26) 18 (26) 19 (27) 21.5 (30.5) 26 (38) 26 (38) A 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
50/60 Hz 24 V 15 to 10% of rated voltage Coil rated voltage Terminal type VT Coil insulation type Class B or equivalent (130C) (3) Shock/Vibration resistance (m/s2) 150/50 (4) VP Note 1) If it is low temperature, dry air should be used.
(B) Within the acceptable range (Seats correctly).
ST Edition B Added centralized lead wire. Added the AR-B series regulator (control unit). Added AC type 2 port solenoid valve (control unit). Number of pages increased from 16 to 24. US Edition C Safety Instructions Be sure to read the Handling Precautions for SMC Products (M-E03-3) and Operation Manual before use.
12 V IC circuit 12 V Diagnostic indication (2-color display) 5 V,12 V IC circuit Relay, PLC Grommet 24 V Yes 12 V 5 V,12 V IC circuit Water-resistant (2-color display) M9PAV1 M9BAV1 12 V 2-wire (Non-polar) Magnetic field resistant (2-color display) 3-wire (NPN equivalent) A96 A96V 5 V IC circuit Yes 24 V Grommet A93V2 A90V A93 A90 12 V 5 V,12 V IC circuit 100 V Relay, PLC 2-wire
IDX-OM-W017-E / Series IDFA3E-23-A,C IDFA4E-23-A,C,L,R,T,V IDFA6E-23-A,C,K,L,R,T,V IDFA8E-23-A,C,K,L,R,T,V IDFA11E-23-A,C,K,L,R,T,V IDFA15E1-23-A,C,K,L,R,T,V URLhttps://www.smcworld.com/ English instruction manual can be downloaded from our URLhttps://www.smcworld.com/ SMC ISO4414 *1) JIS B8370 *2 ) *1) ISO 4414: Pneumatic fluid power General rules and safety requirements for systems and
NPN) C76 IC 5 V Grommet C73 B54 C73C A33A A34A A44A B59W H7A1 H7A2 H7B H7C G39A K39A H7NW H7PW H7BW H7BA H7NF 100 V Reed switch Solid state switch Relay, PLC 100 V, 200 V Yes Yes Connector 12 V 2-wire 24 V PLC Terminal conduit 100 V, 200 V Relay, PLC Grommet DIN terminal Diagnostic indication (2-color) 3-wire (NPN) 3-wire (PNP) IC 5 V, 12 V Grommet 12 V 2-wire Connector 3-wire (NPN) 2-wire
. / IN: White (unused / temp. sensor: 1 to 5 V) Selects the switch output type from: Instantaneous flow (either hysteresis or window comparator mode), accumulated flow or accumulated pulse. 1 2 3 4 Output mode Hysteresis mode DC(-): Blue 3 4 INPUT: Black (flow sensor: 1 to 5 V) Reversed output Selects which type of switch output is used, normal or reverse.
Voltage without load (V peak) Max. current rating (A) 0 to 20[V] 5.0 Over 20[V] up to 30[V] 100/peak voltage 2. Circuit (of class 2) which is of 30Vrms (42.4V peak) or less with the power supply unit of class 2 complying with UL1310 or transducer of class 2 complying with UL1585. NOTE Follow the instructions given below when handling your actuator.
fluid velocity (m/s) v: fluid velocity (m/s) v: fluid velocity (m/s) v: fluid velocity (m/s) Q: flow rate (l/min) Q: flow rate (l/min) Q: flow rate (l/min) Q: flow rate (l/min) d: int d: int d: int d: internal diameter of pipe (mm) ernal diameter of pipe (mm) ernal diameter of pipe (mm) ernal diameter of pipe (mm) 8 VN-OMM0001-C Troubleshooting Seek the same trouble from the following table
Load voltage Lead wire length (m) Applicable load Type Special function Electrical entry Indicator light Wiring (output) Direct mounting 0.5 (Nil) 3 (L) 5 (Z) DC 3-wire (NPN) F8N Solid state switch IC circuit Relay PLC 5 V 12 V Grommet (Perpendicular) 3-wire (PNP) F8P Yes 24 V F8B 2-wire 12 V Lead wire length symbols: 0.5 m . Nil (Example) F8N 3 m . L (Example) F8NL 5 m .
Series V V Y Series V V J Applicable cylinder size Cylinder size y Series C dm bar)] b Cv 6 8 10 12 16 20 25 32 40 50 63 80 100 0.28 0.37 0.28 0.29 0.36 0.32 0.35 0.29 0.90 1.4 2.5 0.12 0.21 0.74 V1Y V2Y V3Y V4Y 3.4 5.2 Series VY 10 0.46 0.83 2.9 V1J V2J V3J Series VJ Conditions Pressure: 0.5MPa Load rate: 50% Cylinder speed: 450mm/s 1-16-4 Shimbashi, Minato-ku, Tokyo 105-8659, JAPAN Tel:
(4.5 to 28 V) Current consumption 10 mA or less Load voltage 28 VDC or less 24 VDC (10 to 28 VDC) Load current 40 mA or less 2.5 to 40 mA Internal voltage drop 0.8 V or less at 10 mA (2 V or less at 40 mA) 4 V or less Leakage current 100 A or less at 24 VDC 0.8 mA or less Dimensions Indicator light Red LED lights up when turned ON.
(4.5 to 28 V) Current consumption 10 mA or less Load voltage 28 VDC or less 24 VDC (10 to 28 VDC) Load current 40 mA or less 2.5 to 40 mA Internal voltage drop 0.8 V or less at 10 mA (2 V or less at 40 mA) 4 V or less Leakage current 100 A or less at 24 VDC 0.8 mA or less Dimensions Indicator light Red LED lights up when turned ON.
High Power Cylinder 20, 25, 32, 40, 50, 63, 80, 100 Series RHC How to Order RHC 20 B High Power Cylinder M9BW Made to Order Refer to page 1202 for details. High power cylinder Mounting style Number of auto switches B L F G Basic style Bore size Nil S n 2 pcs. Axial foot style 20 25 32 40 50 63 80 100 20mm 1 pc. Rod side flange style 25mm n pcs.
Series V V Y Series V V J Applicable cylinder size Cylinder size y Series C dm bar)] b Cv 6 8 10 12 16 20 25 32 40 50 63 80 100 0.28 0.37 0.28 0.29 0.36 0.32 0.35 0.29 0.90 1.4 2.5 0.12 0.21 0.74 V1Y V2Y V3Y V4Y 3.4 5.2 Series VY 10 0.46 0.83 2.9 V1J V2J V3J Series VJ Conditions Pressure: 0.5MPa Load rate: 50% Cylinder speed: 450mm/s
On B side SY3000-37-80A-7 On A side 1 to 8stations SY3000-37-80A-3 On B side SY3000-37-80A-10 On A side 9 to 12stations SY3000-37-80A-6 On B side SS5YJ7-21,41SA SY3000-37-80A-12 On A side 13to16stations SY3000-37-80A-9 On B side Note 1) The above is for station addition or maintenance.
Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 2 Calculate corrected air flow by using A or B and C. Corrected air flow = (Air flow) (Data A x Data C) Corrected air flow = (Air flow) (Data B x Data C) 3 Select a model having an air flow capacity that is higher than the corrected air flow.