SMC Corporation of America
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Holding: 0.6 W VX Power consumption (Current value) DC voltage (without power-saving circuit) 2.9 W VX3 AC 2 VA Electrical entry Grommet, DIN terminal VXA Note 1) Use dry air to prevent condensation when operating at low temperatures.

With double locks: CBG1BN Bore size Stroke W (mm) Bore size (mm) S ZZ 20 92 129 25 92 134 32 91 133 40 101 153 50 119 179 63 119 179 S + Stroke 80 146 220 ZZ + Stroke 100 146 220 With rod boot IJ e JH 8 l f h + l JW ZZ + l + Stroke (mm) Front lock (-R) ZZ Double locks (-W) Rear lock (-H) Bore size (mm) e f h IJ JH JW l ZZ ZZ 20 30 16 55 27 (14.5) (11.5) 138 137 (145) 149 25 30 17 62 32

Cam Lever NVM121-NO1-02 = z-wayi 2 porl-lh" NPT w/One Way Cam Lever NVM131-N01-01 : 3-way; 2 porl:/e" NPT w/Std.

Dynamic moment Me3 We W L2 = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.

Dynamic moment Me3 We W L2 = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.

Motor output [W]/Size [mm] 750/80 Motor type AC servo motor200 VAC Encoder Absolute 22-bit encoderResolution4194304 p/rev Horizontal 135 Power consumption [W] *7 Vertical 150 Horizontal 15 Stnadby power consumption when operating [W] *8 Vertical 45 power [W] *9 Max.1100 Type *10 Non-magnetizing lock specifications 24 VDC Rated voltage [V] Power consumption at at20 [W] *11 Holding force [N

9 @0 No. q w e r t y u i o Rod cover Housing Piston Piston rod Plate Adjusting bolt Hexagon socket head set screw Snap ring Magnet Spring Type CR snap ring Round R type retainer Shock absorber Hexagon socket head set screw Hexagon socket head plug Hexagon socket head set screw Piston seal Rod seal Cylinder tube gasket Piston gasket Locking body Lock finger Lock piston Rod cover Steel ball

Dynamic moment Me3 L2 We W = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.

x10 12REA 50/63 0 -0.2 L NA 33 2-Rc, NPT, G 1/4 14 14 E(h8) E(h8) X D I 4-TC 14 14 Effective thread depth R 23 22 K W 23 25 2 4-M8 x 1.25 25 8-Q 14.5 C 0.1 + Effective thread depth 12 Effective thread depth R B S + Stroke 2 ZZ + Stroke Q x R S TC x R Model L 122 110 K 38 32 C 70 60 X ZZ NA E D B 72.2 58.2 I 70 60 W 12-REA63 12-REA50 100 86 66 53 30-0.033 69 55 M10 x 1.5 x 16 M8 x 1.25 x

Dynamic moment Me3 L2 We W = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.

, 500 500 85 25, 50, 75, 100, 125, 150, 175, 200, 250, 300, 350, 400, 450, 500 500 100 25, 50, 75, 100, 125, 150, 175, 200, 250, 300, 350, 400, 450, 500 500 Precautions Theoretical Output Be sure to read this before handling the products.

Press the push button to exhaust the condensate of the C3SF(-W)-A and C4SF(-W)-A. Check the element periodically and replace it with a new one if necessary. If it is found that outlet pressure drops or the flow is restricted, check the condition of the element. The manual exhaust for emergency case can be performed by counterclockwise rotation of the handle in AD17-A and AD27-A.

Press the push button to exhaust the condensate of the C3SF(-W)-A and C4SF(-W)-A. Check the element periodically and replace it with a new one if necessary. If it is found that outlet pressure drops or the flow is restricted, check the condition of the element. The manual exhaust for emergency case can be performed by counterclockwise rotation of the handle in AD17-A and AD27-A.

Dynamic moment Me3 L2 We W = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.

This is not a clean room series product. 4 MACM Series Dimensions W (Workpiece loadable range) 4 x D At maximum offset (A + 2 x S) S F DB DA C X114 X115, X116 U B W A H T H Q PB E PA PD P (Unlocking port) PE P (Locking port) P (Relief port) (Option V only) MACM4, MACM6 MACM2, MACM10 PC PC PC PC PE P (Relief port) (Option V only) PD [mm] Dimensions Model A B C D DA DB E F H P PA PB PC PD

st cylinder): Draw a line perpendicularly from the cylinder stroke of 450 to the point at which it intersects the (curve) cylinder bore size of 100, and extend it to the left to obtain the displacement of approximately 5,300 cm3.

25 4 x M8 x 1.25 Effective thread depth 12 NA CC0.1 ZZ + Stroke S + Stroke W K 25 2 TF TN Nil P (Piping port) R Model L K I D B CC ZZ X W S NA Q V 300.007 0.037 100 12-REA50 M8 x 1.25 32 58 55 180 G1/4 86 52.4 25 110 27.5 176 60 60 Rc1/4 NPT1/4 320.007 0.043 12-REA63 M10 x 1.5 38 65.4 72 26 122 69 34.5 188 70 70 192 Rc1/4 NPT1/4 G1/4 862 A Specific Product Precautions Be sure to read this

1500 25, 50, 75, 100, 125, 150 200, 250, 300 32 450 2000 CS1 Order Made 40 500 2000 Made to Order Note 1) Other intermediate strokes can be manufactured upon receipt of order.

25 25, 50, 75, 100, 125, 150 200, 250, 300 450 32 500 40 Note 1) Any intermediate stroke that is not indicated above will be produced on order.

San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com No. q w No.