SMC Corporation of America
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Search Results "ISE20A-Y-N01-K"

2 @5 @4 r @3 e @6 @1 @2 #1 t y $1 u w q E' Section E-E' CYV32 t !9 $0 @1 @2 y @4 @3 u @6 #9 @5 Description Material Note Parts list Description Material Note No. No.

2 @5 @4 r @3 e @6 @1 @2 #1 t y $1 u w q E' Section E-E' CYV32 t !9 $0 @1 @2 y @4 @3 u @6 #9 @5 Description Material Note Parts list Description Material Note No. No.

Drip failure can cause damage to the components that need lubrication. 0.04 0.02 0 0 2000 4000 6000 8000 Flow rate L/min (ANR) 51 Lubricator AL10 to 60 Construction AL10 AL20 w w e q q t IN OUT IN OUT y y r u u AL30, 40 AL50, 60 w w q t q e e t IN OUT OUT IN y r i r u y u Parts list Description Material Note No.

F.S. or less Orange light is on (when energized) IP40 Operating: 0 to 50C, Stored: 20 to 70C (with no condensation and no freezing) Operating/Stored: 35 to 85%RH (with no condensation) 1000VAC or more, 50/60Hz for 1 minute between live parts and case 50M or more between live parts and case (at 500VDC) 10 to 150 Hz at whichever is smaller of 1.5mm amplitude or 100m/s2 acceleration, in X, Y,

Bore (mm) -Stroke (mm) 5~50, 75, 100, 125, 150 63-50, 75, 100, 125, 150 1 4~50, 75, 100, 125, 150, Additional symbol B-With limit switch mounting bracket D-With cam K-With special bracket N-Different rod end length Rod attachment No mark-No attachment I-Single knuckle jOint Y-Double knuckle joint 41) Construction/Parts List.

VCC 0.4 0.3 TQ 0.2 0.1 0 1 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 Operating pressure (MPa) 619 A VNC Series Construction N.C. i i o o t t r w r w Port 12(P1) Port 10(P2) u u In the case of 32A to 50A y y N.C.

extending cylinder Breathing hole for guide (with element) When the cylinder is extended 46 Port for retracting cylinder 4-M10 x 1.5 through M6: T-slot for hexagon bolt K 50 140 160 146 4 11 6-K (6 places) 73 146 8-23-11 12 Series MGF Dimensions: 100 MGF100 4-M12 x 1.75 through 170 200 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650

Note 4) VXP2130: Option C, K, Q, S only. 17-3-44 3 Series VXP21/22/23 Pilot Operated 2 Port Solenoid Valve For Air, Gas, Steam and Oil The VX series will be revised shortly. How to Order (Normally Closed) VXP21 0 VXP22 VXP23 Bracket Nil B None With bracket VC Model Thread connection sizes are available from 02 to 10.

Load rate Ea= K E max Ea=1 0.11=0.11 Work mounting coeficient K: Fig.3 Max. allowable kinetic energy Emax: Table 1 Kinetic energy (E)Allowable kinetic energy (Ea) Possible to use by E=0.0 3 3-1 Load rate of work Calculate static work Wa (N) Wa=1 X 1 X 4=4 K=1 b=1 Wmax=4 a1=1/4=0.25 Wa=K b Wmax Work mounting coeficient K: Fig.3 Allowable load coeficient b: Graph 1 Max.

Coordinates and moments Static moment z Horizontal mounting M3: Yawing M2 M1 y X x Y M1: Pitching m1 x g y x M2: Rolling Ceiling mounting Dynamic moment M2 M1 y Y X x Z M1 m2 x g Wall mounting mn x a M1E M3 M3E mn x a FE FE Y M3 a: Set acceleration degree, : Set speed M2 z X Z m3 x g x Mounting orientation Horizontal mounting Ceiling mounting Wall mounting Dynamic load (FE) Mounting orientation

Unit AC10A to 40A Dimensions AC10A, 20A A N F E P K C G G IN OUT Q B Pressure gauge (Option) K H OUT Pressure gauge port size Square embedded type pressure gauge (Option) J L Port size Lubricator M Drain Min. clearance for maintenance Filter regulator D A N F AC30A, 40A E P K C G G OUT IN Q B Pressure gauge (Option) K OUT Pressure gauge port size J L Square embedded type pressure gauge (

Y Note 2) I 10 15 J 6 7 X 233 to 244 224 to 241 Y Note 2) J 6 7 X 240 to 251 236 to 253 Y Note 2) H 298 339 H 323 352 I 10 15 15 32 15 32 15 32 589 to 614 633 to 673 564 to 589 542 to 581 579 to 605 571 to 610 MF -90 15 32 A G D Note 1) F D Note 1) D Note 1) F F Y C C C Y Y B G A 90 B 90 B G A D Note 1) 90 G A H X X X D Note 1) D Note 1) B B B F E F F E A H A G G RG RT RS B 296 305 C R310

Center of Gravity x z z y x y z MY1H Center of gravity Mass m Work piece X-axis Y-axis Z-axis Refer to page 1230 for wall mounting, ceiling mounting and vertical mounting types.

These vortexes are stable under certain conditions, and their frequency is proportional to the flow velocity, resulting the following formula. f = k x v f: Frequency of vortex v: Flow velocity k: Proportional constant (determined by the vortex generator's dimensions and shape). Therefore, the flow rate can be measured by detecting this frequency.

Mitsubishi Electric Corporation Yaskawa Electric Corporation Nil G R Y Brake 50W 100W 200W 1 2 3 None With brake Nil K Power supply voltage Stroke 100/110VAC 50/60Hz 100/115VAC 50/60Hz 200/220VAC 50/60Hz 200/230VAC 50/60Hz Without motor Lead screw lead 1 H B C F A D E 8mm 12mm 20mm 5mm 10mm 25mm 40mm 2 0 Lead screw type The tables above show the definition for each symbol only and cannot

X Y X Y LS Full stroke LG CX LZ LX 4-LD 32 57 57 71 11.2 5.8 A + Full stroke 40 64 64 78 11.2 7 CY 50 79 78 95 14.7 8 63 95 113 16.2 9 91.5 MQQ M Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com RHC Front flange style: RZQF MK(2) RS Q G Flange Style (mm) FV M Bore

through 8-L counter bore 4-K through C B + Stroke J J 8-L counter bore A + Stroke M M CHKDB20 & 25 CHKDB32 to 100 Width across flats f c a b g e h + Stroke Rod end male thread (mm) F L A B C D E G H J K M P Q R Bore size (mm) 20 M8 x 1.25 9.5 depth 5.4 51 43 8 12 10 10 6 30 5.5 43 1/8 16.5 6 25 M10 x 1.5 9.5 depth 5.4 53 45 8 14 12 12 6 36 5.5 49 1/8 17 8 32 M12 x 1.75 11 depth 6.5 61 51

H IDX-OM-W093 7.3 Port size Compressed air inlet Compressed air outlet Port size A B E D G F C P J M N O L K H mm A B C D E F G H J K L M N O P IDF60 R1 307 745 605 161 405 681 71 330 704 355 126 46 12. 94 5 IDF70 R1-1/2 342 890 825 176 480 905 68 365 849 390 81 20 IDF80 R2 438 957 863 169 480 958 219 78 100 11. 0 463 916 485 170 IDF90 13 IDF80 IDF90 mm IDF60 745 957 () () 704 916 () 355

clamping or stopping) in a rotational direction (Fig. 4). e To clamp, make sure to do so within the clamp stroke (straight-line stroke) range (Fig. 5). r Make sure that the clamping surface of the workpiece is perpendicular to the cylinder's axial line (Fig. 6). t Do not operate the cylinder in such a way that an external force causes the workpiece to move while being clamped (Fig. 7). y