SMC Corporation of America
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Search Results "ISE70-N02-L2-SA"

[mm] L2 [mm] L2 [mm] L2 [mm] LER L2 600 600 1000 1000 Y m Me 400 400 LEH 500 500 200 200 LEY -X5 0 0 0 0 0 10 5 15 20 0 10 5 15 20 30 25 0 10 40 50 20 30 0 10 40 50 20 30 60 70 80 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 11LEFS 2000 2000 1000 1000 11LEJS 800 800 1500 1500 m Me L3 [mm] L3 [mm] L3 [mm] L3 [mm] 600 600 L3 25A1000 1000 Z 400 400 500 500 LEC 200 200 0 0 0 0

L2 [mm] L2 [mm] L2 [mm] L2 [mm] 600 600 600 600 Y 400 400 400 400 Mer m 200 200 200 200 0 0 0 0 0 10 20 30 40 50 0 10 20 30 40 50 60 0 2 4 6 8 10 12 14 16 0 4 8 12 16 20 24 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 2000 2000 2000 2000 Mep 1500 1500 1500 1500 L3 [mm] L3 [mm] L3 [mm] L3 [mm] m 1000 1000 1000 1000 L3 Z 500 500 500 500 0 0 0 0 0 10 20 30 40 50 0 2 4 6 8 10

L1 M T H (Width across flats) Metric Size [mm] Model d T Uni thread H D1 D3 L1 L2 L3 L4 Note1) A Note 2) M Weight [g] Unlocked Locked Unlocked Locked AS22l1F-U01-23A 3.2 7.2 12 19.1 26.2 19.1 30.6 29.2 25.8 24.4 13.3 9 AS22l1F-U01-04A 4 8.2 AS22l1F-U01-06A 6 10.4 10 AS22l1F-U01-08A 8 13.2 22.4 29.5 14.2 11 AS22l1F-U01-10A 10 15.9 25.3 32.4 15.6 12 AS22l1F-U02-23A 3.2 1/8 13 7.2 20.9 30.2

Knuckle Pin L2 Material: Carbon steel (mm) Pivot Bracket (Order separately) Applicable bore (mm) Applicable retaining ring 20 25, 32 40 50, 63 80 100 L2 Dd9 m t d Part no.

from Top of Auto Switch CLKG CKQ CLKQ 50 Safety distance L1 (mm) CK CLK 40 Operational range 30 CKQ L1 20 L1 Dangerous range 10 0 5000 10 15000 20 Welding current (A) 50 Safety distance L2 (mm) 40 30 L2 L2 Operational range 20 10 0 5000 10 15000 20 Welding current (A) D-X 439 CK1 Series Related Products Please contact SMC for detailed dimensions, specifications and lead times.

When disassembling and reassembling the cylinder, please contact SMC or refer to the separate instruction manual. l2 l1 Approx. 0.5 or less l1 (mm) 5 5 l2 (mm) 8.4 9.5 CXSJ6 CXSJ10 Warning Piping 1. For axial piping, the side port of the standard cylinder is plugged. However, a plugged port can be switched according to the operating conditions.

Flange (mm) Without auto switch With auto switch Bore (mm) Stroke range (mm) A L1 FZ FX FV FT FD L2 M A B B 40 72 62 54 8 5.5 5 to 50 40 17 7 64 74 50 40 50 89 76 67 9 6.6 10 to 50 66.5 40.5 76.5 50.5 50 18 8 63 108 92 80 9 9 68 42 78 52 10 to 50 60 18 8 Refer to p.2.3-18 for rod end nut and optional bracket. Double rod (40, 50, 63) Change SCQ2 Bore size #7.

When disassembling and reassembling the cylinder, please contact SMC or refer to the separate instruction manual. l2 l1 Approx. 0.5 or less l1 (mm) 5 5 l2 (mm) 8.4 9.5 CXSJ6 CXSJ10 Warning Piping 1. For axial piping, the side port of the standard cylinder is plugged. However, a plugged port can be switched according to the operating conditions.

IDU22E75E-23 IDU22E75E-30 (1 phase AC230V) (3 phase AC200V) L N PE L1 L2 L3 PE Customer Connection Side Terminal connecting screw: M3 Crimping terminal width: 6.5mm and below Applicable electrical wire: 1.25mm2 or more Customer Connection Side Terminal connecting screw: M3 Crimping terminal width: 6.5mm and below Applicable electrical wire: 1.25mm2 or more IDU Series 1-1 Parts Name and

Orange Calculation of Connected Plug and Socket Dimension Overall length of connected plug and socket B = Plug (L1 L2) + Socket (L2) + 0.5 Plug Socket Example) Overall length of KK3P-01MS (plug) and KK3S-01MS (socket) when they are connected.

Cylinder: MXY8-100 Cushion: Rubber stopper Mounting: Horizontal wall mounting Average speed: Va = 300 [mm/s] Load weight: W = 0.2 [kg] L2 = 40 mm L3 = 50 mm Model to be used Type of cushion Mounting orientation Average speed Va (mm/s) Load weight W (kg) Overhang Ln (mm) W L3 + A3 L2 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650

L2 A4 K = 0.6 W Mey Mep Note) No need to consider this load factor in the case of using perpendicularly in a vertical position.

Cylinder: MXJ6-10 Cushion: Rubber stopper Mounting: Horizontal wall mounting Average speed: Va = 100 mm/s Load mass: W = 0.1 kg L2 = 40 mm L3 = 50 mm Model to be used Type of cushion Mounting orientation Average speed Va (mm/s) Load mass W (kg) Overhang (mm) MXU MXS L2 MXQ L3+A3 MXF Load Mass 2 MXW V = 1.4 Va Correction factor (Reference value) V = 1.4 x 100 = 140 Find the collision

385 VV2CS3 L2 89 127.5 166 204.5 243 281.5 320 358.5 397 L3 101 139.5 178 216.5 255 293.5 332 370.5 409 L1 83 124.5 166 207.5 249 290.5 332 373.5 415 VV2CS4 L2 95 136.5 178 219.5 261 302.5 344 385.5 427 L3 107 148.5 190 231.5 273 314.5 356 397.5 439 Manifold composition Note) Manifold base is consisted of the junction of 2 and 3 station bases. 2 stns. x 1 3 stns. x 1 2 stns. x 2 2 stns.

A3 End plate mounting MX Mp Mr W My W W MTS W L3 A6 W L1 A2 L2 A4 MY K = 0.6 W Mey Mep CY L2 A4 MG Note) No need to consider this load factor in the case of using perpendicularly in a vertical position.

L Dimension L1 = 31n + 29, L2 = 31n + 14 n: Station 2 91 76 3 122 107 4 153 138 5 184 169 6 215 200 7 246 231 8 277 262 n Symbol L1 L2 853 VEX13 Series 0 3 Precautions Be sure to read this before handling the products. Refer to back page 50 for Safety Instructions and pages 387 to 391 for Precautions on every series. Operating Fluid Caution 1.

Dynamic moment MG Va Calculation Example CX m Operating Conditions Cylinder: CYP32 Mounting: Horizontal wall mounting Maximum speed: U = 300 [mm/s] Load mass: m = 1 [kg] (excluding mass of arm section) L1 = 50 [mm] L2 = 50 [mm] D-X L2 L1 20Data Item Load factor n Note 1. Maximum load mass m 1 = m/mmax = 1/5 = 0.20 L2 Review m. L1 M2 = m g (L1 + B) 103 2.

Cylinder: MXY8-100 Cushion: Rubber stopper Mounting: Horizontal wall mounting Average speed: Va = 300 [mm/s] Load mass: W = 0.2 [kg] L2 = 40 mm L3 = 50 mm Model to be used Type of cushion Mounting orientation Average speed Va (mm/s) Load mass W (kg) Overhang Ln (mm) W L3 + A3 L2 Load Mass 2 V = 1.4 Va V = 1.4 x 300 = 420 Correction factor (Reference value) Find the collision speed

L1 L2+A5 L3 Kinetic Energy 2 Find the kinetic energy E (J) of the load. Find the allowable kinetic energy Ea (J).

A3 MXH W Mp Mr W MXU W My L3 A6 W L1 A2 L2 A4 MXS W Mey Mep MXQ Note) There is no need to consider this load factor in the case of using perpendicularly in a vertical position.