SMC Corporation of America
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A B C D E F G H J 1.6 M5 2.3 3.2 For other special options, refer to page 462.

Please contact SMC to check if the valve can be used in the application by providing the relevant fluid circuit. 223 VXS Series For Steam Dimensions/Body Material: C37, Stainless Steel Grommet Conduit terminal 34 D Q2 S2 F F Q 300 D 40 (42) 32 25 a h e Built-in full-wave rectifier type T R E (With surge voltage suppressor) C R E d g J C G1/2 f j J 2 x M depth 5 H B1 B 2 x M depth 5 H B1

10 mA (2 V or less at 40 mA) Internal voltage drop LES 100 A or less at 24 VDC 0.8 mA or less Leakage current Operating range .

= F x L M3 = F x L M1 = F x L Note) Deflection: Displacement of point A when force acts on point F Point A: Indicates a measurement point CYV15 (M1) CYV15 (M2) CYV15 (M3) 0.05 0.05 0.05 0.04 0.04 0.04 Deflection (mm) Deflection (mm) Deflection (mm) 0.03 0.03 0.03 0.02 0.02 0.02 0.01 0.01 0.01 0.1 0.2 0.3 0 0.1 0.2 0.3 0 0.1 0.2 0.3 0 Moment (Nm) Moment (Nm) Moment (Nm) CYV32 (M1) CYV32 (M2

is at least 10 to 20 times the workpiece weight.

is at least 10 to 20 times the workpiece weight.

Reference formula [Dynamic moment at impact] Use the following formulae to calculate dynamic moment when taking stopper impact into consideration. : Collision speed (mm/s) L1: Distance to the load,s center of gravity (m) ME: Dynamic moment (Nm) g: Gravitational acceleration (9.8 m/s2) m: Load weight (kg) F: Load (N) FE: Load equivalent to impact (at impact with stopper) (N) a: Average speed

Reference formula [Dynamic moment at impact] Use the following formulae to calculate dynamic moment when taking stopper impact into consideration. : Collision speed (mm/s) L1: Distance to the load,s center of gravity (m) ME: Dynamic moment (Nm) g: Gravitational acceleration (9.8 m/s2) m: Load weight (kg) F: Load (N) FE: Load equivalent to impact (at impact with stopper) (N) a: Average speed

a sensing position, and the green indicator light goes on at the position of maximum sensitivity.

If the pressure differential at each port exceeds the values in the table below, valve leakage may occur.

F .G. + 24 V Brown (2 pcs.) + 24 VDC + + + 24 V Power supply 24 VDC 0 V 0 V 0 V DC/DC Blue (2 pcs.) 0 V F .G.

Note 4) Except valves. 581 A 5 Port Solenoid Valve/Plug-in Unit 10-SQ1000 Kit (D-sub connector) F Directional Control Valves Air Grippers Modular F. R.

D-Y7 W (V) 5 6 A B D-Y 9 Red light at ON Green light at ON Red light at ON Green light at ON MHW2-20D MHW2-25D MHW2-32D MHW2-40D MHW2-50D 4 6 15 5 11 4 5 11 4 9 2 4 9 3 7 2 3 6 2 5 2 3 5 2 4 2.8-24

A Wireless Remote can then be registered to the dummy area at a later time, without having to change the I/O map Dummy Remote E Export Function to save the configured values of a wireless unit by exporting them to a PC. F Fieldbus Network protocol to establish digital communication between an automated industrial system such as a measurement tool or manipulation tool and a PLC.

XT661-2A: F = f x (1/t) = 0.8 x (1/2) = 0.4 N XT661-4A: F = f x (1/t) = 3.8 x (1/2) = 1.9 N XT661-6A: F = f x (1/t) = 5.9 x (1/2) = 2.95 N XT661-8A: F = f x (1/t) = 7.5 x (1/2) = 3.75 N XT661-10A: F = f x (1/t) = 14.4 x (1/2) = 7.2 N 9700 g 9700 x 9.8/1000 = 95.06 N XT661-10A: Temporary lifting force 11.2 N < Workpiece mass 9700 g (95.06 N) 3) Confirm the relationship temporary lifting force

F Fieldbus Network protocol to establish digital communication between an automated industrial system such as a measurement tool or manipulation tool and a PLC. Full duplex Communication system that can send and receive data at the same time bi-directionally. H Half-duplex Communication method that can send and receive data reciprocally in bi-directional communication.

Cylinder bore size 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 MGQ GP b>0.5 Calculation of load ratio b to MGG the theoretical output of cylinder b=f / F Horizontal mounting: f= X W Inclined mounting: f= X Wcosq+Wsinq (Refer to the diagram on the right.)