SMC Corporation of America
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support A MY-SA 2 x G F 2 x H E C D A B Side support B MY-SB 2 x J MY1B MY1B MY1H E A B MY1B C D MY1M (mm) MY1C A 61 70 87 B C D E F G H J Part no.

If an instantaneous flow of 100 L/min continues for 5 minutes, the accumulated flow will be 5 x 100 = 500 L. Accumulated flow A type of output where a pulse is generated every time a predefined accumulated flow passes. It is possible to calculate the total accumulated flow by counting the pulses.

0 0 2 4 6 8 10 0 1 2 3 4 5 Work load (W) kg Work load (W) kg Work load (W) kg 300 30 150 L2 200 20 M2 100 L2 mm L2 mm L2 mm W 100 10 50 L2 M2 0 10 30 20 0 1 2 3 4 5 0 2 4 6 8 10 Work load (W) kg Work load (W)kg Work load (W) kg 30 300 150 a=500 a=500 a=500 Horizontal/Lateral a=1000 a=1000 a=1000 20 200 100 a=2000 a=2000 L3 mm L3 mm L3 mm a=2000 L3 100 10 50 W M3 a 0 1 2 3 4 5 0 10 30 20

Wiring (Including insulating material) Power pair 1.4 mm 1.5 mm Data pair 2.05 mm 1.9 mm Connection type Spring-cage connection Rated current 4 A Power supply/3 A Communication/1 A 4 A Rating/Performance Rated voltage 48 VAC/60 VDC 125 V 48 V Contact resistance 10 m or less 30 m or less 5 m or less Insulation resistance 100 M or more 1000 M or more 100 M or more Withstand voltage 1.0

The INPoutput signal is turned on from 100[mm] 1[mm]=99 [mm] Area 2[mm] j Area 1[mm] j 100 b Speed[mm/s] 0 ON AREA Output signal OFF (INPOutput condition) INP Output signal ON In posn[mm] k OFF 101 99 0 10 20 30 40 50 60 70 80 90 100 Stroke [mm] -23- Example of step data input (2) < Positioning operation Relative > a b c d e f g h i j k No.

discharge rate of 2.7 l/min, a total lifting range of 25 m, and a viscosity of 100 mPas.

1 0 1 2 3 4 5 6 Distance from cylinder shaft center Lo (cm) 7 8 9 7 8 9 10 11 12 13 14 15 Distance from cylinder shaft center Lo (cm) Given a load drive resisting force of Fn = 100 (N) and a distance from the cylinder shaft center to the load application point of Lo = 8 cm, find the intersection point by extending upward from the horizontal axis of data A where the distance from the shaft

x Depth 580 HRSE018-A-23 HRSE024-A-23 HRSE012-A-23-T 48 Height 790 x Width 470 x Depth 580 HRSE018-A-23-T HRSE024-A-23-T IDH Selection Warning 1.

Use a power source separate from large motors and AC valves, etc. 3. Run the stroke reading cylinders cable away from other power lines. 4. Install a noise filter in the 100 VAC power line, and install a varistor in the DC power supply of the sensor cable. 2. Operate the cylinder in such a way that the load is always applied in the axial direction.

Use a power source separate from large motors and AC valves, etc. 3. Run the stroke reading cylinders cable away from other power lines. 4. Install a noise filter in the 100 VAC power line, a varistor in the DC power supply of the sensor cable and a ferritic core in the signal line (sensor cable). 2.

300 400 5 10 50 100 10 50 100 Eccentric distance l (mm) Eccentric distance l (mm) Stroke (mm) Stroke (mm) How to read the graph 1) When the load weight is 70 kg, eccentric distance is 60 mm, and the maximum speed is 150 mm/s Select MGF100 from Graph (7). 2) When MGF63 is operated with a load weight 30 kg and 100 mm eccentric distance From Graph (6), the cylinder can be used at a maximum

The INPoutput signal is turned on from 100[mm] 1[mm]=99 [mm] Area 2[mm] j Area 1[mm] j 100 b Speed[mm/s] 0 ON AREA Output signal OFF (INPOutput condition) INP Output signal ON In pos[mm] k OFF 101 99 0 10 20 30 40 50 60 70 80 90 100 Stroke [mm] -19- Example of step data input (2) < Positioning operation Ralative > a b c d e f g h i j k No.

V 10 10 10 100 10 100 10 1012 Booster Regulator VBA Series VBA43A VBA11A Pulsation/Pulsation is decreased with a tank. If the outlet capacity is undersized, pulsation may occur.

Relief type A + Stroke B + Stroke Dimensions (mm) A B GB Bore size 40 63 100 58 48.5 36.5 GB 73 61.5 38 78 66.5 38 Dimensions not listed above are the same as the standard model.

A 1.MGTM63-35st is made by installing a 15 mm spacer inside a MGTM63-50st, however the overall length will be the same as the 50st. 7069 6283 5498 4712 3927 3142 2356 OUT 7854 1571 7854 100 30 6432 5718 5003 4288 3574 2859 2144 IN 7147 1429 7147 1 N: Approx. 0.102 kgf 1 MPa: Approx.1.02 kgf/cm2 Note) Theoretical output (N) = Pressure (MPa) x Piston area (mm2) Additional Bracket Weight Weight

A F F A L = 200 mm F L = 200 mm L L L L = 200 mm A MXW8, MXW12, MXW16 MXW8, MXW12, MXW16 MXW8, MXW12, MXW16 0.03 0.03 0.10 Table displacement amount (mm) Table displacement amount (mm) Table displacement amount (mm) MXW12 MXW8 MXW16 MXW12 MXW8 MXW16 0.08 MXW12 MXW8 MXW16 0.02 0.02 0.06 0.04 0.01 0.01 0.02 75 50 25 100 0 0 0 100 20 40 60 75 50 25 Load (N) Load (N) Load (N) MXW20, MXW25 MXW20

Position loop P constant A 150 100 1 to 200 B 150 100 C 90 100 H 130 140 Sets the speed loop P constant. *Please perform the actuator operation after changing this parameter setting under the responsibility of the user. Speed loop P constant A 130 140 1 to 200 B 140 100 C 130 120 H 80 100 Sets the speed loop I constant.

If an instantaneous flow of 100 L/min lasts for 5 minutes, the accumulated flow will be 5 x 100 = 500 L. Accumulated flow A type of output where a pulse is generated every time a predefined accumulated flow passes. It is possible to calculate the total accumulated flow by counting the pulses.

Size of linear motion parts Output of rotary motion parts (at 0.5 MPa) Rotating angle Linear motion stroke (mm) 5 10 15 20 25 30 40 50 75 100 80 to 100 32 1.02 Nm 170 to 190 80 to 100 40 1.91 Nm 170 to 190 A connecting port can be selected from two positions that are available on the rotation unit.

ZB1-ZSF-A (ZSE10F) 14.5 to 14.5 psi (100 to 100 kPa) 15.2 to 15.2 psi (105 to 105 kPa) Model (Refer to the standard model number for the switch unit on page 9.)