SMC Corporation of America
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Search Results "ISE76G-02-L2-ML"

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

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.

Yaw moment M3 = W4 x L2 L2 YES Is there any influence of noise? (Refer to Caution on Handling on pages 6 and 7.) Install a noise filter.

Yaw moment M3 = W4 x L2 L2 Data YES Is there any influence of noise? (Refer to Caution on Handling on pages 6 and 7.) Install a noise filter.

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.

st or less Over 100 st 50 st or less Over 50 st 100 st or less Over 100 st 12 10, 20, 30, 40, 50 75,100,125,150 36.5 53 75 36.5 39 27.5 30 6 8 0 16.5 36 7 2 16 38 58 86 38 41 28.5 31.5 8 8 0 20 45 7.5 2 20 20, 30, 40, 50, 75, 100 125, 150, 175, 200 50.5 75.5 50.5 52.5 39 41 10 10 0 25 23 9 2.5 25 50.5 77 50.5 53.5 37.5 40.5 10 14 0 26.5 23.5 10 3 Bore size [mm] G GA GB GC H HA J K L MM ML

.: GR-S-010 (10 g) D-X 511 MGPW Series 20 to 63/MGPWM Stroke Z 4 x YY depth YL Stroke Z L 4 x MM depth ML 4 x NN through DA DB H V U X T R PW 2 x P OL GA GB 4 x OA through FA FB 2 x OB counterbore Q J K C + Stroke B + Stroke E S G A + Stroke For intermediate strokes other than standard strokes, refer to Manufacture of Intermediate Strokes on page 499.

D 8 I m + mL kgm Find the gripper's moment of inertia. b a+b 12 I = m + mL kgm a Find the actual moment of inertia.

(Refer to page 338.) 348 Compact Guide Cylinder Series MGQ Bore Size 32 to 100: MGQM, MGQL 4 x YY depth YL X W + Stroke Z 4 x MM depth ML 4 x NN through 2 x P DB DA R H V T PW GB GA 2 L F C + Stroke G TB TA S Q K J B + Stroke E MGJ A + Stroke MGP MGQM, MGQL Common Dimensions (mm) P PW Bore size (mm) 32 40 50 63 80 100 Standard stroke (mm) B MGQ C DA F G GA GB H J K L MM ML NN Q R S TN TF

D 8 I m + mL kgm Find the gripper's moment of inertia. b a+b 12 I = m + mL kgm a Find the actual moment of inertia.

by installing spacers. 4 Series MLGP Dimensions 40 to 63/MLGPM, MLGPL/Retraction locking (mm) LOCK 1in = 25.4mm XAH7 depth XL T-slot dimensions 4-YY depth YL a b XB XAH7 c d e X XC XAH7 Bore size (mm) XL a b c d e 6.5 11 10.5 5.5 40 4 Section XX detail 8.5 13.5 13.5 50 7.5 4.5 WB Z WA Section XX 17.8 63 11 18.5 10 7 Bottom view Section XX L 4-NN through Section XX WA Z IA IC 4-MM depth ML

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com CX View A D-X 4-NN through 4-MM depth ML 20Data C + Stroke B + Stroke A + Stroke MGQM, MGQL Common Dimensions The intermediate strokes other than the standard strokes at left are manufactured by means of installing a spacer. (Refer to page 8-20-3.)

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

Me3 Guide central axis We W L2 A Me1 Me1 = 1/3WeL1 = 1/31680.05 = 2.8 [Nm] 4 = Me1/Me1max = 2.8/7.2 = 0.389 W We Investigate Me1.

Dynamic moment Va Calculation Example m Operating conditions Cylinder: CYV32 Mounting: Horizontal wall mounting Maximum speed: U = 300 [mm/s] Load mass: m = 1 [kg] (excluding mass of the arm section) L1 = 50 [mm] L2 = 50 [mm] L2 L1 Item Load factor n Note 1. Maximum load mass m 1 = m/m max = 1/5 = 0.20 L2 Review m. L1 2.

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

Dynamic moment Va Calculation example 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] L2 L1 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.

Dynamic moment Va Calculation example 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] L2 L1 Item Load factor n Note 1. Maximum load mass m 1 = m/mmax = 1/5 = 0.20 L2 Review m. L1 2.

Dynamic moment Va Calculation example 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] L2 L1 Item Load factor n Note 1. Maximum load mass m 1 = m/mmax = 1/5 = 0.20 L2 Review m. L1 2.