SMC Corporation of America
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Search Results "VDW250-5G-2-01N-A-F-Q"

ZP 40HB ZP HB ZP HB 40 50 63 80 100 125 F F 4 x 9.5 F 4 x 8 4 x 6 3 x 6.5 4 x 5 G 3 x 4 Y 3.5 Y 6 E E E Y 8 10 6 34 40 18 C C C A B D A A B D B D Dimensions (mm) Dimensions (mm) Dimensions (mm) A B C D E F Y A B C D E F G Y A B C D E F Y Model Model Model ZP40HB ZP63HB ZP100HB 40 41 28 43 20.5 30 13 63 65 46 68 31.5 50 4.5 21.5 100 103 69 107 47.5 80 35.5 ZP125HB ZP50HB ZP80HB 50 52 36 54

valve seal CLKG CKP140, 50, 63 Rod mounting type CKQ CLKQ #1 q @1 w e @2 @3 @0 !

V 30 ms -22No.PF-OMM0004-D NPN2 PF3W7--A(T)NPN PF3W7--C(T)PF3W7--D(T)NPN PF3W7--GPNP2 PF3W7--B(T)PNP PF3W7--E(T)PF3W7--F(T)PNP PF3W7--HOFF OUT2 OUT2 / -23No.PF-OMM0004-D 30() 3 ON OFF ON OFF [F 1]OUT1(60)[F 2]OUT2(36) -24No.PF-OMM0004-D 3 1 [P_1][n_1] 1 1 OUT1OUT2[P_2][n_2] [ tn][ tp] [F 1]OUT1(60)[F 2]OUT2(36) 30 (26) -25No.PF-OMM0004-D 2 [F 1] [F] 2 [F 1] OUT1 60 ON OFF

VQ 2 VKF Port size M5 M5 x 0.8 VQZ Regarding VZ120, R port is a supply port.

For the angle adjusting type, angle adjusting screws are mounted to the left cover. k e of y e gr g Angle adjusting screw o n o Angle adjusting screw ra v e n io 1 8 at 0 ot R n io ct re di g n ti us n A dj io n a gl ct e re e gl a di dj n g u in A st st in u g dj 0 di 0 a re 8 8 e ct gl 1 1 io n R n A e R e o v v o t o o a t o a o ti o r ti r g g n o n y y r a e e r n k a k g f o e n f

For the angle adjusting type, angle adjusting screws are mounted to the left cover. k e of y e gr g Angle adjusting screw o n o Angle adjusting screw ra v e n io 1 8 at 0 ot R n io ct re di g n ti us n A dj io n a gl ct e re e gl a di dj n g u in A st st in u g dj 0 di 0 a re 8 8 e ct gl 1 1 io n R n A e R e o v v o t o o a t o a o ti o r ti r g g n o n y y r a e e r n k a k g f o e n f

SUP. 3 1 2 3 1 2 3 1 2 E Padlock mounting position D C SUP J 2 2 x K A T IN OUT AA 3 L 2 x P1 (Port size) B V BB U Built-in silencer (Option) M (Width across flats) 3 N P2 (Port size) Q EXH Y Bracket (Option) R S X W Dimensions (mm) Standard specifications Model P1 P2 A B C D E F G H I J K L M 1/8, 1/4 1/4, 3/8 1/8 1/4 3/8 1/2 1/2 66.4 80.3 104.9 110.4 134.3 22.3 29.4 38.5 42 53 40 53 70

Sizes 10, 15 TA 0.6 30 BU 2-M5 x 0.8 through (Opposite side 7.6 counter bore depth 4.2) B With double shaft DD W D H 2 10 2-M5 x 0.8 (port size) (US) M (UW) BD Q BC ab BA BB BA D (AU) Max.

K J H G F E D C B A 475 432 512 472 525 482 562 522 L Booster part no. Tank model VBA2100-03 VBA2200-03 VBA4100-04 VBA4200-04 VBA2100-03 VBA2200-03 VBA4100-04 VBA4200-04 394 Rc 3/8 VBAT20 VBAT20S 305 206 674 180 200 100 400 Rc 1/2 430 Rc 1/2 444 Rc 3/8 VBAT38 VBAT38S 355 256 824 205 250 150 500 Rc 3/4 480 Rc 1/2 14-9-9

Calculation: (Example 1) MUB40-15S(T) Basic weight 0.62 kg RQ (Example 2) MUC50-5S(T) Basic weight 1.06 Additional weight (Mounting bracket) 0.40 1.06 + 0.40 = 1.46 kg MU Construction DSpring return -X B 20Data B section MU25 Spring extend B A A section MU25 Component Parts No. q w e r t y u i o !0 !1 !2 !3 !4 !5 !6 !7 !

Calculation: (Example 1) MUB40-15S(T) Basic weight 0.62 kg RQ (Example 2) MUC50-5S(T) Basic weight 1.06 Additional weight (Mounting bracket) 0.40 1.06 + 0.40 = 1.46 kg MU Construction DSpring return -X B 20Data B section MU25 Spring extend B A A section MU25 Component Parts No. q w e r t y u i o !0 !1 !2 !3 !4 !5 !6 !7 !

Furthermore, if the cable length exceeds 5 m, then it will decrease by up to 10% for each 5 m. *2 A reference value for correcting errors in reciprocal operation *3 Impact resistance: No malfunction occurred when the actuator was tested with a drop tester in both an axial direction and a perpendicular direction to the lead screw.

x EE PL KK SW KK WB WA B D D B 8 x RT L9 VD BG L2 L12 A WH G H ZY + 2 x Stroke L12 VD L2 Cushion valve G WH + Stroke A H + Stroke L8 + Stroke With rod boot at one end d e f l h h + L8 + H + 2 x Stroke With rod boot at both ends d d e e L8 + Stroke h f l l + Stroke f 2 x h + L8 + 2 x Stroke h + Stroke A B d11 D EE PL RT L12 KK SW G BG L8 VD WA WB WH ZY Bore size (mm) Stroke range (mm) L2 L9

Model AME250 AME350 AME450 AME550 AME650 AME850 AME150 12000 (1) 12000 Rated flow (l/min (ANR)) 500 1000 2000 3500 6000 200 Port size (Nominal size B) 1 8 1 4 3 8 , , , , , , , , , , 1 4 3 8 1 2 3 8 1 2 3 4 1 2 3 4 1 1 3 4 1 1, 1 2 1 2 1 2 Weight (kg) 0.38 0.55 0.9 1.4 2.1 4.2 10.5 Note 1) Max. flow capacity at a pressure of 0.7MPa. It varies depending on operating pressure.

Valve side exhaust 493 XMH, XYH Series Dimensions XMH/Angle type C D L2 (KF flange) Fn Fc C (Fc) L1 (CF flange) H J B G A A (mm) Model A 100.5 114 162.5 179.5 B 38 48 66 79 C 1 1 2 2 D 30 40 55 75 Fn 34 70 Fc 17 26 41 52 G 35 40.5 57 70 H 18 21.5 30 35 J P.C.D L1 6 x 4.4 6 x 6.6 L2 XMH-16 XMH-25 XMH-40 XMH-50 40 50 65 70 P.C.D 27 P.C.D 58.7 XYH/In-line type D C G C H B J E A Fn (KF

O F , < F , Q r '=r, @ r,> r, Pressure Raies (P1 =Primary Pressure) (P2=Secondary Pressure) NVEP3l2O-2 NVEP314O-'r -04 Primary Pressure P1 = 45 PSIG (3 KSI/cmr) E t2 I { t r S F g t o o E 28 (r. a ( 1 ) E a E a NVEHtl4O-1 E t ^ *t 6 S (0.15) (0.s) t . 5 ( 0 1 ) F 5 (0.05) NVEE NVEP CONSTRUCTION DETAIL Flow Raie'lvpo: VEF212O (2 Pdts) NVEF:112O (3 Porb) Pressuro llrp: NVEP3I2O (3 Porb) l l

(Table traveling distance) 36 L 7 7 27 40 40 33 (40) 21.7 20 n x 3.5 Vacuum port M5 x 0.8 x 5 34 B D x 100 (= E) 100 F Dimensions [mm] Model L A B n D E F 11-LEFG16-S-50 144 57 130 4 15 11-LEFG16-S-100 194 107 180 11-LEFG16-S-150 244 157 230 11-LEFG16-S-200 294 207 280 6 2 200 11-LEFG16-S-250 344 257 330 11-LEFG16-S-300 394 307 380 8 3 300 11-LEFG16-S-350 444 357 430 11-LEFG16-S-400 494

a %silrc q"s cAT.ES60-15o Electro-Pneumatic Regu lator Sensitivitfo;, 2 Xp^(l00 kpa speciricarions) Linearity: Within *,tg6-{f.S.)

1 2 3 4 5 1 2 3 4 5 1 2 3 4 5 5 2 1 3 4 32.4 32.6 15 18 M12 SPEEDCON w 4 3 5 1 2 Plug connector pin assignment A-coded (Normal key) 4.2 M12 SPEEDCON M12 SPEEDCON 17 3 4 Socket connector pin assignment A-coded (Normal key) Wiring #7 PCA-1557798 Y connector (2 x M8-M12) Socket connector pin assignment 40.7 9.9 15.8 8.3 14.8 1 q 1 3 3 4 1 2 3 4 1 2 1 4 21.8 21.7 13 12 M8 4 3 w 1 3 3 4 Plug connector

Rush speed into cushion is as follows: M + m 2 = 1.4a Ek = 2 Ek: Kinetic energy (J) M: Weight for the driven object (kg) m: Weight for movable part of cylinder (kg) : Maximum speed (m/s) a: Average speed (m/s) = 1.4 x 300 = 420 mm/s. Note) Set a so that rush speed into cushion should not exceed 0.75 m/s.