SMC Corporation of America
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Search Results "CDLA2G100-350-E"

Standard Stroke Bore size (mm) Standard stroke (mm) 25, 50, 75, 100, 125, 150, 175, 200, 250, 32 300, 350, 400, 450, 500 25, 50, 75, 100, 125, 150, 175, 200, 250, 40 300, 350, 400, 450, 500 25, 50, 75, 100, 125, 150, 175, 200, 250, 50 300, 350, 400, 450, 500, 600 25, 50, 75, 100, 125, 150, 175, 200, 250, 63 300, 350, 400, 450, 500, 600 25, 50, 75, 100, 125, 150, 175, 200, 250, 80 300, 350

Yes None (Non-polar) Nil E Note) Note) A combination of Function [N] (Negative common) and [E] is unavailable. Since [E] has no polarity, it can also be used as a negative common.

400 30 50 100 150 200 250 300 350 400 450 500 (kg) 0.580.62 0.73 0.87 0.98 1.09 1.20 1.181.25 1.42 1.68 1.86 2.03 2.21 2.382.56 2.09 2.20 2.49 2.77 3.17 3.46 3.74 4.03 4.32 4.60 4.89 LEY 16 D LEY 25 D LEY 32 D [mm] 1) 30 50 100 150 200 250 300 30 50 100 150 200 250 300 350 400 30 50 100 150 200 250 300 350 400 450 500 (kg) 0.580.62 0.73 0.87 0.98 1.09 1.20 1.17 1.24 1.41 1.67 1.85 2.02

Note 3) Bore size determination E Es NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps DNote 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

E Es Note 3) Bore size determination NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps Note 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

E Es Note 3) Bore size determination NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps Note 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

C H G F E D B A Port size Model J K 959 317 289 363 157 152 910 260 R 3/4 IDU11C/11D 571 580 30 70 1009 337 309 383 207 175 960 280 R 1 IDU15C : Power source 220 to 240VAC 7

depth 9.9 LEF 44 60 LEJ 5.5 5H9 (+0.030 0 ) depth 5 LEL 48 70 A (Table traveling distance) L 61 (62) 10 10 LEM 60 46.8 LEY (60) 32 30 LES Vacuum port Rc1/8 n x 5.5 LEPY LEPS 60 LER 150 D x 150 (= E) B 15 LEH LEY -X5 11LEFS 11LEFS Dimensions [mm] Dimensions [mm] Model L A B n D E 11-LEFG32-S-50 200 57 180 4 11-LEFG32-S-100 250 107 230 11-LEFG32-S-150 300 157 280 11-LEFG32-S-200 350 207

Air Preparation Equipment Pressure Control Equipment Flow Control Equipment Pressure Switches/ Pressure Sensors 1.5 2 x M4 DIN rail clamp screw 9 e d i s U e d i s D n 8 7 6 5 4 3 2 Stations 1 9 60 37 26 One-touch fitting [3(R), 1(P) port] Applicable tubing O.D.: 8 For top ported 4 4 4 4 4 4 4 4 3 R 7.5 13.1 29.6 (49.4) P 1 2 2 2 2 2 2 2 2 81.5 66.9 P=11.5 One-touch fitting, thread piping

V = 1.4 x Va V = 1.4 x 250 V = 350 mm/s Va M1E = 1/3 x FE x Z = 1/3 x 188.7 x 100/1000 = 6.3 [Nm] (A) M1E (z) m x g Z 3A = M1E/M1max = 6.3/17.1 = 0.37 Find the value M1Emax when Va = 350 mm/s from Graph (11) v. Va Examine M3E.

(D) Refrigerant R407C (HFC) IDF E F E G C (101) B 4 x 13 [mm] Dimensions Part no.

AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.

350 40 0 300 0 50 150 250 350 350 (1,2 [%]) (1,2 [%]) b a 1. ()30r/min100% 2. 300%350%LE-T10.1 10 3 10. 10.2 (1) 10.1 10.1 1 (1) (2) [W] 2] [m [kVA] LECSS2-T5 LE-T50.3 25 15 0.5 LE-T60.3 25 15 0.5 LECSS2-T7 LE-T70.5 25 15 0.5 LECSS2-T8 LE-T80.9 35 15 0.7 LECSS2-T9 LE-T91.3 50 15 1.0 1. . 2