SMC Corporation of America
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Search Results "53-SY5120-TT3-N7-F1"

Terminal Setting 47 Troubleshooting 50 Parameter Setting 52 Specifications 53 Dimensions 53 -1No.EX-OML0011-C Safety Instructions These safety instructions are intended to prevent hazardous situations and/or equipment damage. These instructions indicate the level of potential hazard with the labels of "Caution", "Warning" or "Danger".

and How to Order 10 Summary of Product parts 11 Definition and terminology 12 Mounting and Installation 14 Installation 15 Piping 17 Wiring 18 Outline of Settings [Measurement mode] 22 Flow Setting (set value only) of OUT1 OUT2 [3 step setting mode] 23 Default settings 23 Function Setting [Function selection mode] 25 Default settings 26 F0 Reference condition/Unit selection function 27 F1

Wire color Brown Blue 1 3 4 Black 1 3 12 4 M8 SW11 Wiring Plug connector pin assignment PCA-1557743 Fieldwireable connector (M12) 53 Terminal no. Wire color 2 1 Brown 1 2 3 4 14.8 16.3 White Blue Black 4 3 M12 SPEEDCON Plug connector pin assignment A-coded (Normal key) Wiring PCA-1557756 Fieldwireable connector (M12) 55 Terminal no.

One-touch fitting (Inch size) N3 N7 5/32" one-touch fitting (Straight) 1/4" one-touch fitting (Straight) The valve arrangement is numbered as the 1st station from D side.

) 63 (37) 81 (55) 84 (58) 0.36 0.12 0.46 0.35 0.12 0.46 2 position 5 port Base mounted 0.33 0.39 0.12 0.10 0.47 0.59 [0.40] 0.46 0.31 0.12 0.47 0.36 0.58 [0.32] M5 x 0.8 M5 x 0.8 (with sub-plate) 0.43 [0.33] 0.32 0.16 [0.11] 0.11 82 (56) 92 (66) 3 position 0.42 [0.33] 0.16 [0.080] 36 53 41 63 37 55 2 position 5 port Body ported 0.9 M3 x 0.5 M3 x 0.5 3 position 56 66 58 36 53 41 63 37 55

Note 2) ( ): Denotes without sub-plate. 5-2-6 5 5 Port Air Operated Valve Series SYA3000/5000/7000 Series SYA3000: Body Ported Foot bracket SYA3120-F1 C4, N3 C6, N7 2 position single SYA3120(-F2) C4, N3 C6, N7 One-touch fitting (A, B port) M5 x 8 (Pilot port) Applicable tubing O.D.: 4, 1/4" 6, 5/32" Manual override (Non-locking) SA VA 2 2.2 (For manifold mounting) SA 2 3.2 (For mounting

Note 2) ( ): Denotes without sub-plate. 5-2-6 5 5 Port Air Operated Valve Series SYA3000/5000/7000 Series SYA3000: Body Ported Foot bracket SYA3120-F1 C4, N3 C6, N7 2 position single SYA3120(-F2) C4, N3 C6, N7 One-touch fitting (A, B port) M5 x 8 (Pilot port) Applicable tubing O.D.: 4, 1/4" 6, 5/32" Manual override (Non-locking) SA VA 2 2.2 (For manifold mounting) SA 2 3.2 (For mounting

Note 2) ( ): denotes without sub-plate. 1731 Series SYA3000/5000/7000 Dimensions/Series SYA3000: Body Ported Foot bracket SYA3120-F1 C4, N3 C6, N7 2 position single SYA3120(-F2) C4, N3 C6, N7 One-touch fitting (A, B port) M5 x 0.8 (Pilot port) Applicable tubing O.D.: 4, 1/4" 6, 5/32" Manual override (Non-locking) 2 x 2.2 (For manifold mounting) 2 x 3.2 (For mounting) (2 x 3.2 for mounting

Note 2) ( ): denotes without sub-plate. 1461 SYA3000/5000/7000 Series Dimensions/SYA3000 Series: Body Ported Foot bracket SYA3120-F1 C4, N3 C6, N7 2 position single SYA3120(-F2) C4, N3 C6, N7 One-touch fitting (A, B port) M5 x 0.8 (Pilot port) Manual override (Non-locking) Applicable tubing O.D.: 4, 1/4" 6, 5/32" 2 x 2.2 (For manifold mounting) 2 x 3.2 (For mounting) (2 x 3.2 for mounting

Load (kg) m1 m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. Maximum allowable load To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

F1 = X A1 X P . (1) F2 = X A2 X P . (2) 4 A1 = D2 . (3) 4 A2 = (D2 d2) . (4) F1 = Cylinder force generated on the extending side (N) F2 = Cylinder force generated on the retracting side (N) = Load rate A1 = Piston area on the extending side (mm2) A2 = Piston area on the retracting side (mm2) D = Tube bore size (mm) d = Piston rod diameter (mm) P = Operating pressure (MPa) While not

Load mass (kg) m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3 1. Maximum load mass (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

Porting No. of Ports DXT172-2-1 NPTF Y4" NPTF side ports DXfi72-2-2NPTF %" NPTF side Dorts 3 'lnclud6s gas*et and screws SERIES NVEF FLOW RATE TYPE FLOW CHARACTERISTICS % CurrcnvFlow Rate OPERATING PBINCIPLES The effective orifice size is controlled by lhe movement of the spool, which is balanced between the Solenoid Force (F1) and the Spring Force (F2).

No.PS-OMV0008CN-E / / ISE70G--L2 ISE75G--L2 ISE76G--L2 ISE77G--L2 ISE78G--L2 2 9 10 12 15 15 17 19 21 22 3 23 25 27 27 28 F0 30 F1 OUT1 32 F2 OUT2 35 F3 37 F4 38 F6 40 F10 41 F11 47 F14 Zero-cut 48 F80 49 F81 50 F90 52 F96 54 F98 55 F99 57 58 IO-Link 63 IO-Link 63 63 64 IO-Link 67 76 76 77 86 88 -1No.PS-OMV0008CN-E (ISO/IEC)(JIS) *1) *2) *1) ISO

Porting No. of Ports DXT172-2-1 NPTF Y4" NPTF side ports DXfi72-2-2NPTF %" NPTF side Dorts 3 'lnclud6s gas*et and screws SERIES NVEF FLOW RATE TYPE FLOW CHARACTERISTICS % CurrcnvFlow Rate OPERATING PBINCIPLES The effective orifice size is controlled by lhe movement of the spool, which is balanced between the Solenoid Force (F1) and the Spring Force (F2).

D1.6 x P WB Inclined operation W+WBWV PPV W + WB>WV P>PV Allowable driving force table (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (cos + sin) Inclined F3 = (W + WB) x 9.8 x ( + 1) Vertical (Refer to page 4 for connection fitting weight.)

+ WB > WV P > PV Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal Inclined Vertical F2 = (W + WB) x 9.8 x (cos + sin) (See page 63 for vertical operation.)

Load (kg) m1 m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. Maximum Allowable Load To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

Load (kg) m1 m4 m2 m3 Moment (Nm) F3 M3=F3 x L3 L3 F1 M1=F1 x L1 F2 M2=F2 x L2 L1 L2 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. Maximum Allowable Load To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

Load weight (kg) m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3 1. Maximum load weight (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).