SMC Corporation of America
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Search Results "ZSE20C-X-A2-W"

Normal Close High Vacuum Solenoid Valve *1 RoHS Minimum operating pressure *1 Excluding grommet/AC *1 OUT side 1x10 6 Pa(abs) *1 Leakage Internal External 1.3x10 9 Pam3/s 1.3x10 11 Pam3/s Power consumption Fluid temperature 5 to 60C Size XSA [W] Previous model [W] 25% reduction Max. Max.

0.45 x 4 l Auto switch w When tightening an auto switch mounting screw, use a watchmakers screwdriver with a grip diameter of 5 to 6 mm.

Without brake C section details Cross section BB l\rodel D F L 1 5 4 231 LXPB B-50 L X P B B . 7 5 173 256 52 L X P B _ B _ 1 0 0 204 281 246 323 LXPB B -.125 L X P B B 1 5 0 271 348 120 90 L X P B _ B _ 1 7 5 296 373 LXPB_B_-200 321 394 ?$rc zs S8[i8$ [10 Camraclnectl' 0i|llomiom $lift $crExi tlE LXPB S With brake I I shows the localion at which origin point swiich operates.

9.8)/Theoretical output) x 100% VEX VEX Conditions System Solenoid valve Speed controller Silencer Tubing diameter x Length A VEX31 22-02 AS4000-02 AN20-02 10 x 1 m B 12 x 1 m C VEX33 42-03 04 AS420-03 AN30-03 12 x 1 m D AS420-04 AN40-04 SGP15A x 1 m 1723 3 Port 3 Position Valve Body Ported VEX3 Series How to Order Air operated Pilot solenoid VEX3 B 12 0 01 1 Air operated VEX3 D B 5 1 12

tapped) l Model MXU6 MXU10 MXU16 Bolt Maximum tightening torque (Nm) M3 x 0.5 1.1 5 M4 x 0.7 2.5 7 M4 x 0.7 2.5 9.5 Top Mounting l Model MXU6 MXU10 MXU16 Bolt Maximum tightening torque (Nm) M3 x 0.5 1.1 4.8 M4 x 0.7 2.5 6 M4 x 0.7 2.5 6 Axial Mounting (Body tapped) l Model MXU6 MXU10 MXU16 Bolt Maximum tightening torque (Nm) M3 x 0.5 1.1 5 M4 x 0.7 2.5 6 M4 x 0.7 2.5 6 Operating Direction

torque (Nm) M3 x 0.5 1.1 4.8 M4 x 0.7 2.5 6 M4 x 0.7 2.5 6 Axial Mounting (Body tapped) l Model MXU6 MXU10 MXU16 Bolt Maximum tightening torque (Nm) M3 x 0.5 1.1 5 M4 x 0.7 2.5 6 M4 x 0.7 2.5 6 Operating Direction with Different Pressure Ports OUT port (2 on both sides) OUT port l Model MXU6 MXU10 MXU16 Bolt Maximum tightening torque (Nm) M3 x 0.5 1.1 4.8 M4 x 0.7 2.5 6 IN port OUT port

CNA Vertical (Downward) Vertical (Upward) Horizontal collision CNS CLS Type of impact CLQ MLGP RLQ W 2 g Kinetic energy E1 V2 MLU Thrust energy E2 Fs Ws Fs Fs + Ws ML1C Absorbed energy E E1 + E2 DSymbol V: Impact speed (m/s) g: Gravitational acceleration (m/s2) W: Impact object weight (kg) F: Cylinder thrust (N) s: Stroke length of shock absorber (m) -X Air Cushion Stroke Note) The speed

bases are composed by connecting 2 station and 3 station bases. 2stns. x 1 3stns. x 2 2stns. x 2 + 3stns. x 2 2stns. x 2 + 3stns. 2stns. + 3stns. x 2 Dimensions (mm) Electrical entry A B C D E G H J Z Model Grommet Conduit DIN connector Conduit terminal Q R S T U V W N X Y VV2CW2 49 20 24.5 28 4.5 38 17.3 34.5 65.5 22 45.5 44 43.5 46 58 41.5 66 99 77 VV2CW3 57 25.5 28.5 30 5.5 42 19.3 38.5

bases are composed by connecting 2 station and 3 station bases. 2stns. x 1 3stns. x 2 2stns. x 2 + 3stns. x 2 2stns. x 2 + 3stns. 2stns. + 3stns. x 2 Dimensions (mm) Electrical entry A B C D E G H J Z Model Grommet Conduit DIN connector Conduit terminal Q R S T U V W N X Y VV2CW2 49 20 24.5 28 4.5 38 17.3 34.5 65.5 22 45.5 44 43.5 46 58 41.5 66 99 77 VV2CW3 57 25.5 28.5 30 5.5 42 19.3 38.5

bases are composed by connecting 2 station and 3 station bases. 2stns. x 1 3stns. x 2 2stns. x 2 + 3stns. x 2 2stns. x 2 + 3stns. 2stns. + 3stns. x 2 Dimensions (mm) Electrical entry A B C D E G H J Z Model Grommet Conduit DIN connector Conduit terminal Q R S T U V W N X Y VV2CW2 49 20 24.5 28 4.5 38 17.3 34.5 65.5 22 45.5 44 43.5 46 58 41.5 66 99 77 VV2CW3 57 25.5 28.5 30 5.5 42 19.3 38.5

CNA Vertical (Downward) Vertical (Upward) Horizontal collision CNS CLS Type of impact CLQ MLGP RLQ W 2 g Kinetic energy E1 V2 MLU Thrust energy E2 Fs Ws Fs Fs + Ws ML1C Absorbed energy E E1 + E2 DSymbol V: Impact speed (m/s) g: Gravitational acceleration (m/s2) W: Impact object weight (kg) F: Cylinder thrust (N) s: Stroke length of shock absorber (m) -X Air Cushion Stroke Note) The speed

stroke Cylinder Volume (head end) = Piston area x stroke Torque = force x perpendicular disiance trom shafl lbf=pound-torce N . m = n w t o n m e t e r kg.m=kilogram-metr It. tb = foot pound mm (HrO) = millimeter water column in (HrO) = inches water column mm (H) = millimeter mercury column in (Hg) = inches mercury column mils = 0.001 inch in = inch It = foot cc = cubic centimeter L = liter

Body oplion %NPTF subplate O :lndividual pllot exhaust I t -43 W 3:Common exhaust for main and pilot valve I :Without subolate 'ubplate ' -x-jr.,T3,l#:' G:Grommet(std.)

Bore size Standard stroke (mm) MM YY L X K W J V H GA GB TA TB U G T F S DA R C Z NN Q B ML P PW YL (mm) 12 16 20 25 18 50 13 5 16 40 58 5 7.5 5 36 29 56 8 22 6 48 29 12 14 39 7 10, 20, 30, 40, 50, 75, 100 M4 x 0.7 10 M4 x 0.7 M5 x 0.8 7 M4 x 0.7 11 22 54 15 7 18 42 64 2.5 8 5.5 38 33 62 8 25 8 52 33 13 16 43 8 10, 20, 30, 40, 50, 75, 100 M5 x 0.8 13 M5 x 0.8 M5 x 0.8 5 M5 x 0.8 11 20, 30

n pcs.+ L16 x 2 L8 x n pcs.+ L17 x 2 L8 x n pcs.+ L25 x 2 L8 Refer to page 6 for L8.

0x071F 0 R/W Line name 4th letter U8 0 Y 1824 0x0720 0 R/W Line name Left side bot U8 0 Y 1825 0x0721 0 R/W Line name Centre bot U8 0 Y 0: OFF (dot OFF) 1: ON (dot ON) 1826 0x0722 0 R/W Line name Right side bot U8 0 Y drE (Selection of display value resolution) 0: Normal resolution 1: Lower resolution (1/10) Setting of display value resolution 1110 0x0456 0 R/W U8 0 Y 1140 0x0474 0 R/W Cut

Specifications Table. 9-1 EX245-EA2-1 specifications Item Description General Dimensions (W x L x H) in mm 28.6 x 120 x 61.5 Weight 200 g or less Housing material Nylon Table. 9-2 EX245-EA2-2 specifications Item Description General Dimensions (W x L x H) in mm 14 x 120 x 61.5 Weight 100 g or less Housing material Nylon NOTE EX245-EA2-2 can be used to have a special bracket which must be

Body oplion %NPTF subplate O :lndividual pllot exhaust I t -43 W 3:Common exhaust for main and pilot valve I :Without subolate 'ubplate ' -x-jr.,T3,l#:' G:Grommet(std.)

Note 3) Weight without sub-plate 1.12-7 VQZ1000/2000/3000 Body Ported Construction: VQZ1000/2000/3000 Metal seal Rubber seal e w q r e w q r 2 position single 2 position single (A) 4 (B) 2 (A) 4 (B) 2 5 (R1) 1 (P) 3 (R2) 5 (R1) 1 (P) 3 (R2) e w q r e w q r 2 position double 2 position double (A) 4 (B) 2 (A) 4 (B) 2 5 (R1) 1 (P) 3 (R2) 5 (R1) 1 (P) 3 (R2) e w q e w q 4 r 3 position pressure