A rodless cylinder with mechanical joining differs from a basic air cylinder in that no piston rod extends outside the cylinder body. Instead, the internal piston is connected to an external carriage. SMC's rodless cylinders are ideal for long stroke applications because they are unaffected by rod overhang, bending, piston binding, and uneven seal wear, and for use in confined areas where
Side support bracket mass (per set) 0.2 0.3 0.4 0.5 0.6 0.7 0.8 Bore size (mm) Basic mass 16 200 40 60 80 100 120 140 160 L unit H unit 25 490 98 147 196 245 294 343 392 16 40 1256 251 377 502 628 754 879 1005 0.03 1.05 0.13 0.01 Note) Theoretical output (N) = Pressure (MPa) x Piston area (mm2) 25 0.06 0.09 2.59 0.29 0.02 40 0.17 0.23 8.78 0.67 0.04 Calculation method Example: MY2C25G-300L
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MY2H25G MY2H40G PF 3.5 5.5 17 Z 160 210 330 X 6 7.5 9 XX 12 14 23 Y 5 5 8 VV 10.5 15.3 29 TT 12.5 19.3 35.4 U 4 5 6 UU 3 4.4 2 SS 9.7 14 21.5 R 5 5 8 RR 5.3 8.5 11 RW 40 50 53.5 QW 40 60 57 PC 7.2 8.2 5.5 PE 3.7 2.7 5 PG 4 6 9 PP 5.3 8 16 Q 152 198 312 QQ 16.4 20.4 25.5 PB 40 60 70 PD 2.8 6.6 8.5 PA 40 60 100 PH 5.1 7.5 9.5 Model MY2H16G MY2H25G MY2H40G P indicates cylinder supply ports.
support bracket weight (per set) 0.2 0.3 0.4 0.5 0.6 0.7 0.8 Basic weight Bore size (mm) 200 40 60 80 100 120 140 160 16 L unit H unit 490 98 147 196 245 294 343 392 25 16 1256 251 377 502 628 754 879 1005 40 0.01 0.03 1.05 0.13 Note) Theoretical output (N) = Pressure (MPa) x Piston area (mm2) 25 0.02 0.06 2.59 0.09 0.29 40 0.04 0.17 8.78 0.23 0.67 Calculation method Example: MY2C25G-300L
support bracket weight (per set) 0.2 0.3 0.4 0.5 0.6 0.7 0.8 Bore size (mm) Basic weight 16 200 40 60 80 100 120 140 160 L unit H unit 25 490 98 147 196 245 294 343 392 16 40 1256 251 377 502 628 754 879 1005 0.03 1.05 0.13 0.01 Note) Theoretical output (N) = Pressure (MPa) x Piston area (mm2) 25 0.06 0.09 2.59 0.29 0.02 40 0.17 0.23 8.78 0.67 0.04 Calculation method Example: MY2C25G-300L