SMC Corporation of America
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Search Results "CXSM10-20-Y69B"

100 P = 0.5 MPa Load weight m(kg) Load weight m(kg) D40 50 100 Larger than 75st 50st 25st Larger than 50st 30 20 -X 50 40 25, 50st 10 30 205 4 3 2 20 Data 10 20 30 40 50 100 200 300 1 1 2 3 4 5 10 20 304050 100 200300400 Eccentric distance l (mm) 10 400 Eccentric distance l (mm) MGTL100 300 200 300 MGTM100 200 P = 0.5 MPa 100 P = 0.5 MPa Load weight m(kg) Larger than 75st Load weight m(kg

MLGPL (ball bushing)/A, DB, E dimensions A E A E Bore size (mm) Bore size (mm) DB st50 5020 74 115 152 174 16 15 52 74 136 36 132 32 40 40 34.5 196 25 89 128 169 196 20 21 62 89 153 46 149 42 50 50 141.5 156 199 25 41 84 131 152 172 199 20 16 37 57 84 63 63 29.5 144.5

12.5 55.5 32 32 50 4 4.5 3 6 M8 x 1.25 16 22 97 102 140 20 6 11 49 40 40 66 5 6 4 8 M10 x 1.5 20 24 50 106.5 118 161 25 9.5 21 64 50 80 5 6 4 8 M10 x 1.5 20 24 63 106.5 118 161 25 4.5 16 59 63 End lock mechanism dimensions MGPL (ball bushing)/A, DB, E dimensions (mm) (mm) E A HN (Max.)

Particle generation has been reduced to 1/20 compared to series 12-CY1B (previous SMC product) even without vacuum suction. MX Shock-free A sine cushion is used at the end of the stroke. Smooth acceleration and deceleration are possible at 0.5 G or less.

Nil (Example) Y69B 3m . L (Example) Y69BL 5m . Z (Example) Y69BZ Note) Solid state switches marked with a "" symbol are produced upon receipt of order. Note) Plugs are installed in ports other than those indicated for the model.

(2-wire) Y69B MHY Auto switch additional symbol 2 pcs. 1 pc.

15 15 16 16 20 20 22 22 28 35 The standard stroke for 12 and 16 is 100 st.

no. a (Max.) b c (Min.) d e f H9 (Hole) f h11 (Shaft) l1 32 GKM10-20 20 10+0.5 +0.15 20 40 M10 x 1.25 10 10 52 40 GKM12-24 24 12+0.5 +0.15 24 48 M12 x 1.25 12 12 62 50, 63 GKM16-32 32 16+0.5 +0.15 32 64 M16 x 1.5 16 16 83 80, 100 GKM20-40 40 20+0.5 +0.15 40 80 M20 x 1.5 20 20 105 * Supplied with clevis pin and clevis pin bracket Rod end: KJ (ISO 8139) l l3 [mm] Bore size Part no. b1 h12

20 CNS 25 CLS 20 25 CLQ 20 MLGP RLQ 1 10 50 51 100 300 200 1 10 50 51 100 300 200 MLU Stroke (mm) Stroke (mm) ML1C (27) l2 = 50 mm V = 400 mm/s (28) l2 = 100 mm V = 400 mm/s D50 50 -X 100 100 100 100 80 80 80 2063 80 63 63 Data 63 50 50 50 50 10 10 Load weight m (kg) 40 40 40 40 32 32 32 32 25 25 25 25 20 20 20 20 1 1 0.5 10 50 51 100 300 200 0.5 10 50 51 100 300 200 Stroke (mm) Stroke (

20 CNS 25 CLS 20 25 CLQ 20 MLGP RLQ 1 10 50 51 100 300 200 1 10 50 51 100 300 200 MLU Stroke (mm) Stroke (mm) ML1C (27) l2 = 50 mm V = 400 mm/s (28) l2 = 100 mm V = 400 mm/s D50 50 -X 100 100 100 100 80 80 80 2063 80 63 63 Data 63 50 50 50 50 10 10 Load weight m (kg) 40 40 40 40 32 32 32 32 25 25 25 25 20 20 20 20 1 1 0.5 10 50 51 100 300 200 0.5 10 50 51 100 300 200 Stroke (mm) Stroke (

<18> 20 20 GA 19 17 17 13 B1 6 5.5 5.5 5 K 44 35.5 29 24 NA 9 7 7 7 RA 26 20 16.5 14 C 130 121 119 114 ZZ 14 10 8 6 KA 78 79 77 77 S 16 12 10 8 D 25 18 14 12 E 2 2 2 2 F 40 32 25 20 30 22 22 18 23 0<23> 0 0 10 0 0 0 M5 x 0.8 depth 7.5 M5 x 0.8 depth 8 M14 x 1.5 M6 x 1 depth 12 12 12 1/4 1/4 3/8 1/2 58 58 27 27 32 41 14<12> 14<12> 10 10 10 10 23 20 20 20 11 11 58 72 20<17> 20<17> 16 16 71

Bore size (mm) 32 40 50, 63 80, 100 125 GKM10-20 GKM12-24 GKM16-32 GKM20-40 GKM30-54 +0.5 +0.15 +0.5 +0.15 +0.5 +0.15 +0.5 +0.15 +0.5 +0.15 M10 x 1.25 10 40 10 10 52 20 20 12 12 62 M12 x 1.25 12 48 24 24 16 16 83 M16 x 1.5 16 64 32 32 M20 x 1.5 20 80 20 20 105 40 40 M27 x 2 30 110 30 30 148 54 55 Piston Rod Ball Joint KJ (ISO 8139) l l3 d6 (Max.) l d3 b1 h12 h d1 H9 l3 Part no.

20 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 D-A5 D-A6 (n2) 2 (n2) 2 (n2) 2 20 + 55 n = 2, 4, 6, 8 15 + 55 n = 2, 4, 6, 8 20 + 55 n = 2, 4, 6, 8 MB n (Same side) 2 (Different sides or Same side) 20 25 25 MB1 (n2) 2 (n2) 2 (n2) 2 25 + 55 n = 2, 4, 6, 8 20 +

(mm) 0.02 0.06 0.02 0.04 0.01 0.01 0.02 5 10 15 20 0 Moment (Nm) 25 25 25 5 10 15 20 0 5 10 15 20 0 Moment (Nm) Moment (Nm) CY1HT25/32 CY1HT25/32 CY1HT25/32 CY1HT25 CY1HT32 CY1HT25 CY1HT25 CY1HT32 0.05 CY3B CY3R 0.03 0.04 Deflection (mm) Deflection (mm) 0.02 CY1S 0.03 0.02 CY1HT32 CY1L 0.02 0.01 0.01 0.01 CY1H CY1H 20 40 0 60 20 40 0 60 20 40 0 60 80 CY1F Moment (Nm) Moment (Nm) Moment (

40 120.5 46.5 104.5 65 12.5 19 58.5 35 27 14 20 14 15 2063 16.5 11 18 32 9 Up to 600 90 1/4 20 45 134.5 56.5 119.5 75 17.5 23 68 35 27 14 20 14 12 80 19 13 22 37 11.5 Up to 750 30 102 1/4 45 169 72 150 95 22 33 81 40 32 22 25 20 18 Data 100 19 16 26 37 17 Up to 750 30 116 1/4 55 189 114 89 170 25 37.5 96 40 41 22 30 20 20 Bore size (mm) T V VA W ZZ L S RR U GE GF J K MM N P Q H Z 32 M10

75 1/4 40 120.5 65 46.5 104.5 12.5 19 58.5 35 27 14 20 14 15 2063 16.5 11 32 18 9 Up to 600 90 1/4 20 45 134.5 75 56.5 119.5 17.5 23 68 35 27 14 20 14 12 80 19 13 37 22 11.5 Up to 750 102 1/4 30 45 169 95 72 150 33 22 81 40 32 22 25 20 18 Data 100 19 16 26 37 17 Up to 750 30 116 1/4 55 189 114 89 170 37.5 25 96 40 41 22 30 20 20 Bore size (mm) T V VA W ZZ L S RR U GE GF J K MM N P Q H Z

20 D-A5l D-A6l n (Different surfaces) 15 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 20 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 20 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 2 (Different surfaces, same surface) 20 25 25 n (Same surface) 20 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 25 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) 25 + 55 (n 2) 2 (n = 2, 4, 6, 8) Note 1) D-A59W 1 15 25 25 2 (Different surfaces