SMC Corporation of America
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Search Results "AW30-F02CEH-2-B"

External Cover Series HYQ/20, 25 2 x C 2 x C Head end Rod end D A B A B Cover material: Stainless steel Mounting bolt material: Stainless steel (mm) Cover material: Stainless steel Mounting bolt material: Stainless steel (mm) t=1 t=1 D C B A HYQ-HA020SUS HYQ-HA025SUS Part no. Installation bolt C B A HYQ-HB020SUS HYQ-HB025SUS Part no.

p to 2.l soenoids poss ble A, B port size (inch) A, B port size (metric) o1l8 One{ouch 05/32' One touch flling o1,'4 One{ouch o52' One-touch or.a" one iouctr o5./16' One touch fl sv1000 One touch llting o 1 O One-touch l1t ng sv2000 o 1 2 Onelouch Ilt ng sv3000 o5./16' Onelouch o:'/8'One.touch o5./16' Onetouch o3' One touch o 1 2 One touch filting sv4000 Rc 3/8 Bc 3/a G 1i4 G 3 G 3,/8 B

(CUJB12 to 20) Features 2 Mini Free Mount Cylinder 4, 6, 8, 10 Series CUJ How to Order Bore size 4 6 8 10 4 mm 6 mm 8 mm 10 mm Made to Order Refer to pages 2 and 24 for details. CUJ B 6 D 10 F8N With auto switch CDUJ B 6 D 10 With auto switch (Built-in magnet) Number of auto switches 2 pcs. 1 pc. Nil S Mounting B Basic (Through-hole) M9: with 1 pc.

A A/B CON screen TYPE No.9 Contact input signal 2 function OFF OFF/STOP/SW D.IN2 Setting function of contact input signal 2. screen SEL D.IN2 No.10 Contact input signal 2 type ALT ALT/MT Setting input type of contact input signal 2. SW screen TYPE Contact input signal 2 operation D.IN2 No.11 Setting input operation of contact input signal 2.

I$ODEL NO. 2 , 1 3 (s4) S P & S P A 0 1 1 3 43 y. qB siB s/B s/g 9a SP & SPA 0114 54 B B B B sP & sPA 0115 45 S s 2 MTNG HOLES I .FOOTPRINT' CLASS 1 SUB.PLATE MOUNTED 'SWAY VATVES '49 i.'8 (?

I$ODEL NO. 2 , 1 3 (s4) S P & S P A 0 1 1 3 43 y. qB siB s/B s/g 9a SP & SPA 0114 54 B B B B sP & sPA 0115 45 S s I 2 MTNG HOLES .FOOTPRINT' CLASS 1 SUB.PLATE MOUNTED 'SWAY VATVES '49 i.'8 (?

2 i e @ A @ C @ B Boss-cut Clevis integrated Note No.

A B A B A B A B AXT511 -3 (V) AXT511 -4 (V) 24V DC 12V DC AXT511 -1 (V) AXT511 -2 (V) 100V AC 50/60 Hz 200V AC 50/60 Hz 0.049/0.043 0.024/0.021 0.031/0.020 0.015/0.01 VQ Rated voltage (V) Inrush current (A) Holding current (A) Allowable voltage (V) 0.075 0.15 VQ4 85 to 110% of rated voltage Insulation Class B (130 oC) or equivalent VQ5 A: With 2-M4 X 46 bolts for 2 position valve, B: With

2 #3 @6 @7 !9 qo r !3 @1 e #1 #4 @0 !8 t @3 B' CL !7 N@4 CL1 A' A A' A MLGC CNG B MNB @5 !5 CNA CNS 20, 25: 50 stroke or less Over 100 stroke CLS CLQ Extension locking (Type F) Retraction locking (Type B) MLGP N#2 u #6 y @2 u #6 #2 y #5 @2 i i RLQ MLU ML1C D-X Section B-B' Section B-B' 20Section A-A' !6 !6 Section A-A' Data Component Parts Description Material Note No. !7 !8 !

5 CNA CNS Over 100 stroke 20, 25: 50 stroke or less CLS CLQ Extension locking (Type F) Retraction locking (Type B) MLGP N#2 u #6 y @2 u #6 #2 y #5 @2 i i RLQ MLU ML1C D-X Section B-B' Section B-B' 20Section A-A' !6 !6 Section A-A' Data Component Parts Description Material Note No. !7 !8 !

T FGE A 10 B N 002 FGET type (Bolt tightening type) Material Symbol Element seal material Note 1) Symbol Stainless steel 304 Gasket/O-ring Fluororesin T Body Element seal material Non-asbestos Fluororesin NBR FKM A Note 2) T N V Symbol Element length Element length L250 L500 (L250 x 2) L750 (L250 x 3) A B C Note 1) Not used with fiber elements. Note 2) Not possible with bronze elements.

T FGE A 10 B N 002 FGET type (Bolt tightening type) Material Symbol Element seal material Note 1) Symbol Stainless steel 304 Gasket/O-ring Fluororesin T Body Element seal material Non-asbestos Fluororesin NBR FKM A Note 2) T N V Symbol Element length Element length L250 L500 (L250 x 2) L750 (L250 x 3) A B C Note 1) Not used with fiber elements. Note 2) Not possible with bronze elements.

The 220 VAC and 230 VAC are interchangeable as well. -15- Flow Rate Characteristics Series AV2000-A AV3000-A AV4000-A AV5000-A Port size 1(P)2(A) 1/4 3/8 1/2 3/4 1 3(R) 1/4 3/8 1/2 3/4 C [dm3/(sbar)] 9.2 13.1 19.2 34.8 41.3 1(P)2(A) b 0.36 0.27 0.32 0.66 0.34 Cv 2.4 3.1 5.1 12.6 13.7 Flow rate characteristics C [dm3/(sbar)] 8.8 9.2 10.1 23.7 2(A)3(R) b 0.46 0.48 0.55 0.67 Cv 2.5 2.6 3.2 9.2

+ Full stroke M K A + Full stroke J E 4-O1 effective thread depth RB RA W 4-O1 T Section a-a Standard type (Through hole type)/RZQB 2-RR 50, 63 Flat washer (Included) 4-HR 2-RR Flat washer (Included) b 2-N 4-O 4-N b Section b-b (mm) Bore size (mm) A B C D E FA FB G H I J K L M N O1 O P Q RA RB RR RH T W Z 100.5 82.5 14 22.4 45 33 12.5 9 M8 x 1.25 60 4.5 17 18 34 5.5 M6 x 1.0 9 Rc1/8 24.5

II + t + 2 x strokes with rod boot 011 one side} ~ . B ZZ -t2 xstrokes.1 12 + 2X!

U side 1 2 3 4 5 n Direct manual override (Non-locking) 2n x C4, M5 4(A), 2(B) port C4: One-touch fitting for 4 M5: M5 thread 2(B) 2(B) 27.5 20 15 4(A) 4(A) 5 P = 11 12.5 (46) L plug connector (L) n: Stations Dimensions n L 11 138 130 10 127 119 L1 L2 2 39 31 3 50 42 4 61 53 5 72 64 6 83 75 7 94 86 8 105 97 9 116 108 12 149 141 13 160 152 14 171 163 15 182 174 16 193 185 17 204 196 18 215

Note 2) ( ): Without sub-plate. 5-2-5 4 Series SYA3000/5000/7000 Flow Characteristics/Weight Model/Series SYA540 (Body ported) Valve model Type of actuation Port size Flow characteristics Note) Weight (g) Pilot port size (Nominal size) b 4/2 5/3 (A/B EA/EB) 1 4/2 (P A/B) C [dm3/(sbar)] C [dm3/(sbar)] Cv b Cv 58 64 P, EA, EB A, B 2 position Single Double Closed center 1.9 0.35 0.49 2.4

RB RA W 4-O1 T Section a-a' Basic style (Through-hole): RZQB 2-RR 50, 63 Flat washer (Included) 4-HR 2-RR Flat washer (Included) b 2-N 4-O 4-N b' Section b-b' (mm) Bore size (mm) A B C D FB G H I J K L M N O1 O P Q RA RB RR RH T W E FA Z 32 100.5 82.5 14 22.4 12.5 9 M8 x 1.25 60 4.5 17 18 34 5.5 M6 x 1.0 9 Rc1/8 24.5 14 10 5.5 7 4.5 49.5 45 33 14 40 110 92 16 28 52 35 14 9 M10 x 1.5 69 5

L2 Kinetic Energy 2 1 420 2 E = 0.2 () = 0.018 2 1000 V = 1.4 x 300 = 420 1 420 2 E = 0.2 () = 0.018 2 1000 V = 1.4 x 300 = 420 1 V 2 E = W () 2 1000 1 V 2 E = W () 2 1000 Find the kinetic energy E (J) of the load.

When air enters drive chamber B, the fluid in pump chamber B is forced out, and at the same time fluid is sucked into pump chamber A. 2. When the diaphragm moves in the opposite direction, the fluid in pump chamber A is forced out, and fluid is sucked into pump chamber B. 3.