SMC Corporation of America
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Search Results "VV061-0840-6H-C1"

64.5 4 16 54.5 5 C1 4 x 22l SWRM B E 80 80 all types Polished round 18SPCC 71.5 4 16 61.5 5 A 5 x 30l SWRM 100 Polished round 20SPCC 100, 125 all types 82 5 20 72 5 5 x 30l SWRM 160 Polished round 22SPCC 160 all types 94 5 20 79 7.5 Knuckle Material: Carbon steel d (H8) L (F8) Applicable cylinder type Order no.

X L1 Rod end male thread (mm) Bore size (mm) C1 X H1 L1 32 20.5 23.5 28.5 M14 x 1.5 40 20.5 23.5 28.5 M14 x 1.5 50 26 28.5 33.5 M18 x 1.5 (mm) Without auto switch With auto switch A B A B U Z Bore size (mm) Stroke range (mm) C D E F H I J K L M N O P Q S 5 to 50 40 33 9 depth 7 32 50 43 13 16 45 7.5 M8 x 1.25 60 4.5 14 7 34 5.5 1/8 10.5 58.5 31.5 14 75, 100 50 43 5 to 50 46.5 39.5 9 depth

With rod end male thread: MQQ-DM Rod end nut H1 (mm) Bore size (mm) L1 C1 H1 X 10 23.5 10.5 M5 x 0.8 15.5 16 26.5 11.5 M6 x 1.0 16.5 C1 20 28.5 13.5 M8 x 1.25 18.5 Rod end thread adapter X 25 34.5 16.5 M10 x 1.25 22.5 L1 30 40.5 22.5 M14 x 1.5 28.5 40 40.5 22.5 M14 x 1.5 28.5 Refer to page 9 for details regarding the rod end thread adapter and the rod end nut. 5 Compact Low Friction Cylinder

80 100 L1 X C1 H2 Rod end nut Note) Be sure to use the attached flat washers when mounting a cylinder from the rod side.

D-F9BAL Bore size (mm) D 18.5 16 -9 -6 -4 -3.5 B 2 9 12 14 14.5 C 0.5 10.5 16.5 24 25 34 A 18.5 28.5 34.5 42 43 52 6 10 15 20 25 32 A C Electrical entry direction: Inward Electrical entry direction: Outward Auto Switch Mounting Dimensions (mm) CXSJ6, 10 C3 Bore size 6, 10 0.4 0.4 7.2 4.8 7.2 4.8 B1 Symbol Auto switch model C2 D2 D1 A1 B1 C1 C2, C3 D1 D2 D-A9 D-F9, D-F9 W,D-M9 C1 A1 D-A9V

B + Stroke L K A + Stroke 2 x 4-M6 x 1.0 effective depth 10 M W Rod end male threads H1 Rod end nut C1 X L1 Rod end male threads mm Bore size (mm) C1 X H1 L1 20 25 18.5 12 14 M8 x 1.25 22.5 15 17.5 M10 x 1.25 Standard type mm A B C D E E1 E2 F H K L M Q W Bore size (mm) 20 25 Stroke range (mm) 15 to 50 36.5 32 7 10 36 18 21 15.5 M5 x 0.8 8 4.5 25.5 21 39 15 to 50 41.5 36.5 12 12 40 20 23.5

C1 Model (Stock item) Pressure range Note) Model Unit Connecting Note (kPa) GZ46-K-01 to 02 100 to 0 1 8 1 8 1 4 kPa R , kPa With covering assembly GZ46-K-01 to 02-C, C1 100 to 0 R ,1 4 1 8 1 4 kPa GZ46-K-01 to 02M 100 to 0 GZ46-K2K-01 to 02 100 to 200 R , M5 (Female thread) kPa GZ46E-K-01 to 02M 100 to 0 1 8 1 4 R , M5 (Female thread) R , 1 8 1 4 kPa Note) Do not apply pressure that exceeds

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, MFLD, 8-STATION UNIT, VALVE, V060 BUILT IN FITTING .23148 lb, .23148 lb

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, MFLD, 4-STATION UNIT, VALVE, V060 BUILT IN FITTING .22046 lb, .22046 lb

(Example) For M4: L2 = 8 mm Applicable shaft types: X, Z Q1 = M C1 = C L2 = L2 = D1 = L1 + (3 x P) L1 = C1 Q2 = M Q2 = M Z axis X axis L1 = X = (mm) (mm) (mm) D1 5 to 7.9 5 to 14.9 5 to 16.9 8 to 19.9 8 to 24.9 L1 max Size 30 50 63 80 100 X 3 to 25 3.5 to 36 3.5 to 41 4 to 50 5 to 60 Q2 M3 M4, M5, M6, M8 M4, M5, M6, M8, M10 M4, M5, M6, M8, M10, M12 M5, M6, M8, M10, M12 Q1 M3 M4, M5, M6,

(Example) For M4: L2 = 8 Applicable shaft types: X, Z L1 + (3 x P) Q1 = M C1 = C L2 = L1 = L2 = D1 = Q2 = M Q2 = M C1 Z axis X axis X = L1 = [mm] [mm] [mm] Size Q1 30 M3 50 M4, M5, M6, M8 63 M4, M5, M6, M8, M10 80 M4, M5, M6, M8, M10, M12 100 M5, M6, M8, M10, M12 Size Q2 30 M3 50 M4, M5, M6, M8 63 M4, M5, M6, M8, M10 80 M4, M5, M6, M8, M10, M12 100 M5, M6, M8, M10, M12 Size X L1max D1 30

K V 1 10 XLA S P1P2 XL XL Conductances combined When each of the separate conductances are given as C1, C2 and Cn, the composite conductance C is expressed as: C=1/(1/C1+1/C2++1/Cn) when in series, and C=C1+C2++Cn, when in parallel.

K V 1 10 XLA S P1P2 XL XL Conductances combined When each of the separate conductances are given as C1, C2 and Cn, the composite conductance C is expressed as: C=1/(1/C1+1/C2++1/Cn) when in series, and C=C1+C2++Cn, when in parallel.

(Example) For M4: L2 = 8 mm Applicable shaft types: X, Z Q1 = M C1 = C L2 = L2 = D1 = L1 + (3 x P) L1 = C1 Q2 = M Q2 = M Z axis X axis L1 = X = (mm) (mm) (mm) D1 5 to 7.9 5 to 14.9 5 to 16.9 8 to 19.9 8 to 24.9 L1 max Size 30 50 63 80 100 X 3 to 25 3.5 to 36 3.5 to 41 4 to 50 5 to 60 Q2 M3 M4, M5, M6, M8 M4, M5, M6, M8, M10 M4, M5, M6, M8, M10, M12 M5, M6, M8, M10, M12 Q1 M3 M4, M5, M6,

Symbol Wiring C C1 S0 Centralized wiring V V 3 Individual wiring is specified for pressure switches for vacuum and sensors. 4 When more than one option is selected, list the option symbols in alphabetical order.

B L1 W M2 B side Inch Size 6 4 Model A side B side B C1 C2 E1 E2 H1 H2 L1 L2 M1 M2 Min. port size W Applicable tubing O.D.

1 I/O cable length [m]*3 Compatible driver Power supply voltage [V] Size 25 32 40 Nil Without driver A1 LECSA1-S100 to 120 A2 LECSA2-S200 to 230 B1 LECSB1-S100 to 120 B2 LECSB2-S200 to 230 C1 LECSC1-S100 to 120 C2 LECSC2-S200 to 230 S1 LECSS1-S100 to 120 S2 LECSS2-S200 to 230 *3 When Without driver is selected for driver type, only Nil: Without cable can be selected.

LEPY/LEPS Series 2 3 LEH Series 2) 360 8 No.SFOD-OMT0009CN-B 2.3 1) PLC I/O 2) :JXC-C2-* DC24V 1) I/O ENC : LE-CP-*-* LE-CP-*-*-S USB MOT JXC-W1-1 CI 2) () 120.3 120.3 mm mm 200 200 mm/s mm/s <> 100 500 100 500 1 1 200 1000 200 1000 2 2 50 200 50 200 3 3 2) AWG20 (0.5mm USB JXC-W1-2 -USB DC24V M PWR JXC-W1 2) C PWR DC24V 2) () <> 1.5m () 2) AWG16 (1.25mm JXC-C1

Series LER Series 1) LEP Series (2 3 ) LEH Series 1) (360) -8No.JXC-OMT0001CN-C 2.3 1) PLC 5 EtherNet 2) EtherNet/IP 2) 3) P1P2 1) ENC LE-CP-*-* USB LE-CP-*-*-S MOT JXC-W1-1 CI 2) 120.3 120.3 mm mm 200 200 mm/s mm/s 100 500 100 500 1 1 200 1000 200 1000 2 2 50 200 50 200 3 3 <> 2) AWG20 (0.5mm USB JXC-W1-2 DC24V USB M PWR 2) JXC-W1 C PWR DC24V 2) 1.5m () <> JXC-C1

Actuating solenoid valve electric signal Valve opening O After a few seconds at 10-6Torr 90% 100% 90% Valve closing Operation time Responce time Conductances combined When each of the separate conductances are given as C1, C2 and Cn, the composite conductance C is expressed as: C=1/(1/C1+1/C2+...1/Cn) when in series, and C=C1+C2+...Cn, when in parallel. 39 Series XL Technical Data 5 He leakage