SMC Corporation of America
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MLGC Find the maximum load speed V [mm/s] with following formula (1) below. The maximum load speed V [mm/s] is approximately equal to V1 x 1.4 (1) V1: Average load speed [mm/s] V1 = st/t st: Load transfer distance [mm] t: Load transfer time [s] CNG MNB CNA Find the bore size. Step (2) 1.

B1 A B 2 x P 1(IN), 2(OUT) port 2 x M5 Thread depth N 2 x P 1(IN), 2(OUT) port B 2 x M5 Thread depth N K K J H J H Conduit terminal DIN terminal Cable 0.24 to 0.47 Q F D D S G1/2 Qp0.08 F 1.34 (1.73) 1.26 R 1.24 0.99 T C K C R E E Sp0.08 A A B1 2 x P 1(IN), 2(OUT) port B1 2 x P 1(IN), 2(OUT) port B B 2 x M5 Thread depth N 2 x M5 Thread depth N K J H G1/2 J H (inch) Grommet Grommet (with surge

[mm] [s] 0 1 Pushing Absolute 9.00 0.50 2 500 2 Positioning Absolute 5.00 0.10 500 Controller Parallel input / output signals Flow chart (Reference) (1) Turn the SVON signal ON. (The motor is energized.) (2) Select/input Step No.1: Turn the IN0 input ON, and the "IN1"input OFF.

plug) G NW A GB N Z + Stroke Rc 3/8 WW WW (Hexagon socket head taper plug) Rc 3/8 Rc 3/8 (Port) Rc 3/8 (Port) (Hexagon socket head taper plug) XX XX Centralized piping type Centralized piping type VV VV 2-Rc 1/4 (Hexagon socket head taper plug) 2-Rc 1/4 (Hexagon socket head taper plug) S 1.1 WX 17.5 Bottom ported (ZZ) (Applicable O-ring) 2-10 Y GC 12 15 J M14 x 2 M16 x 2 MM M8 x 1.25 M10

m s m s Type of impact s m Kinetic energy E1 1 2 m2 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E1 + E2 Symbol : Speed of impact object (m/s) m: Weight of impact object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8 m/s2) s: Shock absorber stroke (m) Note) The speed of the impact object is measured at the moment of impact with the shock absorber. 8-12-11 12 Series

1 15 20 20 D-A5l D-A6l n (Different surfaces) 15 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 20 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 20 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 2 (Different surfaces, same surface) 20 25 25 n (Same surface) 20 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 25 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 25 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) D-A59W 1 15 25 25 2 (Different

Piston speed mm/s Piston speed mm/s Piston speed mm/s Load weight/MY2H (Single axis) MY2H/m1 MY2H/m2 MY2H/m3 60 50 60 60 50 50 30 30 30 20 20 20 Load mass kg Load mass kg Load mass kg MY2H40 MY2H40 MY2H40 10 10 10 MY2H25 MY2H25 MY2H25 5 5 5 4 4 4 3 3 3 MY2H16 MY2H16 MY2H16 2 2 2 1 100 200 300 400500 1000 1500 1 100 200 300 400500 1000 1500 1 100 200 300 400500 1000 1500 Piston speed mm/s

s m m Horizontal /Vertical Orientation, Linear Ball Bearing Guide Series LXP Max, pay load: 60N (ln horizontal mounting) Max. pay toad: 50N (ln vertical mounting) ax. thtust: 220N Max, speed: 200mm/s Avallable suokee: 50mm, 75mm, 100mm, 125mm, 15omm, 175mm, 200mm 2-phsse steppinq motor, screw lead 1 2 5-pha3. slepping motor, screw led 1 2 Horizontal/Vertical Orientation, Slide Table With

of fingers 2 2 fingers Nil S 2 pcs. 1 pc.

Long Stroke Type Series MHZL2 Size: 10, 16, 20, 25 How to Order MHZL2 D 16 F9BW Number of auto switches Number of fingers 2 2 fingers Nil S 2 pcs. 1 pc.

1) 02 2 stations W Note 1) Combination of [C ] and [S ] is not possible.

rr' :i : DIRECTIONAL AIR VALVE DIRECT SOLENOID OPERATED N\E 3 Ufay 2-7 N\6 4 Way/s Fort (Class 1) 8-14 a,fL r--\--r-r---t--_,_ \ ^ 1 , \ l / . 2 l NVS 4 Way/s Fort (Class 2-5) 15-24 S U P E X H SPECIFICATIONS &&* ANSlSvmbol (As a normally closed +way) DESIGN This deslgn concepi consisls of a Matchcround "SPOOL & SLEEVE" assembly which controls lhe main valving functionsThis match{round fit

How to Order Valves Light/Surge voltage suppressor Type of actuation Nil S Z Without light/surge voltage suppressor With surge voltage suppressor With light/surge voltage suppressor 1 2 3 4 5 2 position single solenoid 2 position double solenoid Bracket SV 3 position closed center YOZ is not available. For AC voltage valves there is no S option.

0 1 2 3 0 1 2 3 0 1 2 3 2 0 1 2 3 0 1 2 3 0 1 2 3 2 0 1 2 3 0 1 2 3 2 0 1 2 3 0 1 2 3 2.9 3.4 3.6 3.5 3.5 3.4 3.6 3.5 3.5 3.4 3.6 3.5 3.5 4.5 5.0 5.2 5.1 5.1 5.0 5.2 5.1 5.1 5.0 5.2 5.1 5.1 5.6 6.8 7.2 7.0 7.0 6.8 7.2 7.0 7.0 23.4 24.6 25.0 24.8 24.8 24.6 25.0 24.8 24.8 1 63 S 2 3 0 1 S 2 100 3 0 1 L 2 0 1 160 L 2 Air-hydro Converter Weight (kg) Effective oil level stroke CCT40 CCT63 CCT100

Solenoid Valve VXD Series Air Air Oil Water Dimensions/VXD2 /2 /2 Body Material: CAC408 7 E 8 F 9 G Conduit terminal (V2) (U2) E C 32 VX2 25 T B VXK G1/2 R VXD VXD A VXZ IN OUT N SMC 8 x 18 VXS VXB F S D Q VXE VXP Conduit C E U 280 VXR VXH 23 B G1/2 VXF R T VX3 A IN OUT N SMC VXA 8 x 18 F S Q D Flat terminal C E U 11 R T B A IN OUT N SMC 8 x 18 S Q D F (mm) Electrical entry Model Flat terminal

R 2 mgh F1S m Nm C m/s kg S T t m MK(2) E1 + E2 mgS F1S mgS mgS F1S + mgS RS Q G 2 2 E1 + E2 E1 + E2 E1 + E2 E1 + E2 E1 + E2 E Corresponding weight of impact object 2 2 E 2 2 E 2 2 E 2 2 Me kg RS H A E 2 E 2 Angle speed Friction coefficient rad/s 2.

L Required facility water system 10 s 5 s 2 s Min. 1 s 0.5 s 0.2 s 0.1 s Model Heat radiation [kW] Facility water specifications HRSH100-Wl-l Approx. 20 Refer to "Facility water system" in the specifications on pages 167 and 169. 0.05 s HRSH150-Wl-l Approx. 27 HRSH200-Wl-l Approx. 34 HRSH250-Wl-l Approx. 40 0.02 s 0.01 s 100 135 200 300

1 2 2 1 2 m 2 1 2 1 2 Kinetic energy E1 m 2 RB T S R Thrust energy E2 m g S F S + m g S F S m g S Absorbed energy E E1 + E2 E1 + E2 E1 + E2 E1 + E2 Note 2) E 2 2 E 2 2 E 2 2 E 2 2 Equivalent mass Me Note 1) This is the momentary speed at which an object is impacting against a shock absorber.