SMC Corporation of America
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Search Results "CDLG1FN25-400-E-M9B-C"

When the cylinder is pressurized from port B, range E can be adjusted by regulating angle adjustment screw C. When the cylinder is pressurized from port A, range F can be adjusted by regulating angle adjustment screw D.

Ventilation (H/X inlet) Ball tap Expansion TS E Circulating fluid return port valve A Level switch Expansion Fluid level gauge valve B Customer's E machine Temp. sensor (Ref. discharge (Heat load) Press. sensor (Outlet) TS PS TS Heat Temp. sensor Circulating fluid outlet port exchanger (Outlet) Press. sensor (Ref. low press.)

Plug (Prepared by customer) L N E [Accessory] Power supply connector N E Earth leakage breaker (Secondary side) L N Cable Crimped terminal (Prepared by customer) E (Earth) L Cable size : 14AWG Wire tightening torque : 0.5Nm Fig. 3-5 Power supply cable 3.3 Installation HRS Series 3-10 HRX-OM-M090 Chapter 3 Transport and Setting Up Wiring 1.

MGCM Slide bearing 350, 400, 450, 500 350, 400, 450, 500, 600 75, 100, 125, 150, 350, 400, 450, 500, 600, 700, 800 200, 250, 300 MGCL Ball bushing baering 350, 400, 450, 500, 600, 700, 800, 900, 1000 *Short stroke or intermediate stroke(except above stroke): Manufactured upon receipt of order 3.20-2 Compact Guide Cylinder Series MGC Specifications MGCll20 MGCll25 MGCll32 MGCll40 MGCll50

Applicable bore Shock absorber model ML1-A25H ML1-A32H ML1-A40H ML1C25 ML1C32 ML1C40 101 90 25 20 11 72 67.3 12 31 39.5 Max. 16.5 4.5 3 RB1412 120 107 30 25 16 93 73.2 15 38 49 Max. 20 5.5 6 RB2015 147 129 30 31 16 105.5 73.2 15 40.5 54.5 Max. 25 5.5 6 Side Support Side support A 2 x G E E F 2 x H A B Side support B 2 x J A B (mm) A B C D E F G H J Part no.

F R L T B 1 R Axial entry Right entry 200/230VAC (50/60Hz) 2 Y 0 Without motor Bottom entry Specifications Intermediate strokes 100 5.1 200 5.9 300 6.7 400 7.4 500 8.2 5 to 40 (with no condensation) 10 225 400 mm kg C kg N mm/s mm Standard stroke Strokes other than the standard strokes on the left are available by special order. Consult SMC.

B C D E F G H 148 206 246 Model MHL2-40D MHL2-40D1 MHL2-40D2 80 138 178 188 246 286 288 406 486 116 174 214 348 466 546 72 130 170 12-4-13

A B C D E F A B C D E F G H Pressure port Pressure port Right Left Left Right Left Right Right Left Left Right Right Left Left Right Operating direction Operating direction There are 9 possible reciprocating piping methods. There are 16 possible reciprocating piping methods.

Change of fluid passage Flow Characteristics Flow characteristics 1 2 (P A) C [dm 3/(sbar)] 27 38 Port size 2 3 (A R) C [dm 3/(sbar)] 27 40 2 1 (A P) C [dm 3/(sbar)] 25 40 3 2 (R A) C [dm 3/(sbar)] 26 38 b 0.38 0.30 b 0.37 0.32 b 0.36 0.22 b 0.37 0.20 Cv 7.0 9.8 Cv 7.4 9.8 Cv 7.3 9.8 Cv 6.8 9.6 1/2 3/4 N.C. N.O.

Axial 2 3 4 5 2m 3m 4m 5m F R L T B Axial entry Right entry Bottom entry Specifications Intermediate strokes 100 5.5 200 6.3 300 7.1 400 7.8 500 8.6 5 to 40 (with no condensation) 10 225 400 0.02 AC servomotor (100W) Incremental system Ground ball screw 12mm, 8mm lead High rigidity direct acting guide With coupling Standard stroke mm kg C kg N mm/s mm For manufacture of strokes other than

0 e r w o i e r w o i u y t q u y t q Component Parts No. Description Material Note Body A PBT q Body B Electroless nickel plated Brass w Needle Electroless nickel plated Brass e Spring Steel wire r U seal HNBR t Spacer POM (1) y Cassette POM, Stainless steel (2) u Seal NBR i O-ring NBR o Retaining ring for hole type C Tool steel !

IC Electroless nickel plated Dimensions VBA Caution A Model ARJ1020F-M5-04 B 10.4 C 4 D E F G H J K 21 VE 10.6 (Width across flats: 10) 1. Release the lock to adjust the pressure. After the adjustment, engage the lock. Failure to observe this procedure could damage the handle or cause the outlet pressure to fluctuate.

Nil S n 2 pcs. 1 pc. n pcs. 10 11 Relief type Vacuum suction type D 12 5 D M9B 10 C Q S B 21 C Q S B D 12 5 D M9B Auto switch (With auto switch) Nil With auto switch No D With auto switch (Built-in magnet) Without auto switch (Built-in magnet cylinder) Nil For auto switch part numbers, refer to the next page.

, 40, 50, 75, 100, 125, 150, 175, 200 20, 30, 40, 50, 75, 100, 125, 150, 175, 200 26 64 17 10 19 52 74 2 8.5 4 46 36 72 8 30 10 60 37 13 18 47 8 M5 x 0.8 13 M5 x 0.8 7 M5 x 0.8 Rc 1/8 10.5 32 76 21 10 21 62 88 2 9 2 56 42 86 8 38 12 70 37.5 14 26 47.5 9 M6 x 1.0 15 M6 x 1.0 8 M6 x 1.0 Rc 1/8 11.5 MGQM (Slide bearing) A, DB, E Dimensions MGQL (Ball bushing bearing) A, DB, E Dimensions E E

E C E E (KF flange) Fd (K flange) Fn D H B A G A Unit: mm Model A B C D E Fn Fd G H XLA-16-2 40 108 38 20 30 17 44 XLA-25-2 50 121 48 27 12 40 26 44 XLA-40-2 65 171 66 39 11 55 41 67 XLA-50-2 70 185 79 46 11 75 52 72 XLA-63-2 88 212 100 55 11 87 95 70 76 XLA-80-2 90 257 117 65 11 114 110 83 104 12 XL-OMS0001-B 6.

RSH20, 32 Graphq Graphw 1.0 RSH20 RSH32 0.9 Bore size 50, 63, 80/ = 0 Bore size 50, 63, 80/ = 0.1 Operating pressure P [MPa] 0.8 1300 1300 80 0.7 1200 1200 0.6 1100 1100 0.5 1000 1000 0.4 900 900 0.3 63 80 Load weight m [kg] Load weight m [kg] Load weight m [kg] Load weight m [kg] 0.2 800 800 50 0.1 700 700 600 600 0 500 100 200 300 400 63 Lateral load F [N] 500 500 50 400 400 RS1H50, 63,

For manifold type 31, S31, 32, S32 Body option 5 port 0: Pilot valve individual exhaust for the pilot valve 3: Common exhaust type for main and pilot valve (With gasket and screws) D: Push-turn locking slotted type M5: With M5 port sub-plate For sub-plate, manifold type 41, S41, 46, S46 R port P, E port R port P, E port Electrical entry 24, 12, 6, 5, 3 VDC 100,110, 200, 220 VAC 24, 12, 6,

No code 0 V3 L 1 H 2 4 No gauge port No pressure gauge Ports -30 in.Hg to 30 psig -30 in.Hg to 60 psig -30 in.Hg to 100 psig -30 in.Hg to 160 psig 0 to 200 psig 0 to 400 psig -0.1 to 0.2 MPa -0.1 to 0.4 MPa -0.1 to 0.7 MPa -0.1 to 1.1 MPa 0 to 1.4 MPa 0 to 3 MPa Code Ports 2 ports 3 ports 2PW 3PW Porting Configuration e w q w q 1) Other range available.

Leakage voltage Particularly when using a C-R element (surge voltage suppressor) for protection of the switching element, take note that leakage voltage will increase due to leakage current flowing through the C-R element, etc.