SMC Corporation of America
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Series CJ2 miniature cylinders available in spring return, spring extend, or double acting offer stainless steel tubing and stainless steel rods. The series is available in bore sizes 6, 10, 16mm and stroke lengths from 1/2in. to 8in.. Mounting options include basic, foot, front flange, and double rear clevis. Series CJ2 is auto switch capable Non-rotating rod type, Bore sizes: 10 and 16

Series CJ2K-Z double acting, non-rotating single rod, stainless steel tube, air cylinders are available in 10 and 16mm bore sizes with stroke lengths from 15mm to 200mm. Available in 7 mounting types for versatility. Optional features include port location and magnet for auto-switch capability. Pivot and rod end brackets can be ordered with the cylinder under one part number.

  • Non-rotating
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B L F D Basic style CDJ2B10-45-A Example Rail mounting style Axial foot style Cushion CDJ2B16-60-B Band mounting style Rod side flange style Nil A Rubber bumper For rail mounting style, screws and nuts for 2 pcs switches come with the rail. Refer to page 123 for switch mounting brackets.

CJ2 A M9BW B Z 60 16 B CDJ2 A With auto switch q w e r t y u i o !

B A B A A B B A 1 (0) 1 (7.5) 2 (0.5) 2 (8.5) 6 CJ1 10 16 1.5 2 1.5 2 2.5 3 2.5 3 3 3.5 3 3.5 3.5 4 3.5 4 0.5 1 0.5 1 CJP Figures in parentheses for bore 6 are in the case of double rod type, (Series CJ2W).

D-C7 D-C8 D-C73C D-C80C D-H7 D-H7C D-H7W D-H7BAL D-H7F D-A7/A8 D-A79W Bore B A B A B A B A B A 2 (8.5) B 2 (0.5) A 1 (7.5) B 1 (0) A 6 0 0.5 0 0.5 3 3.5 3 3.5 3.5 4 3.5 4 7.5 8 7.5 8 0.5 1 0.5 1 10 16 2.5 3 2.5 3 1.5 2 1.5 2 ( ) in the table: In case of double rod style, series CJ2W.

L E T U B E OD 6 A P P L I C A B L E T U B E OD 6 Courtesy of Steven Engineering, Inc. !

O R E T Y P E S I D E S U P P O R T B: T H R E A D E D T H R O U G H H O L E Part No Cylinder Side Support A Side Support B A B C D E F G H J MY-S16A/B MY1C16 MY-S16A MY-S16B 61 71.6 15 26 4.9 3 6.5 3.4 M4X0.7 MY-S20A/B MY1C20 MY-S20A MY-S20B 67 79.6 25 38 6.4 4 8 4.5 M5X0.8 MY-S25A/B MY1C25 MY-S25A MY-S25B 81 95 35 50 8 5 9.5 5.5 M6X1 MY-S32A/B MY1C32 MY-S32A MY-S32B 100 118 45 64 11.7 6

Manifold overall length Manifold overall length Approx. 29% reduced SY5000 manifold SY5000 3 stations SY3000 manifold SY3000 4 stations Mixed manifold SY5000 3 stations SY3000 4 stations For serial transmission EX260 A B A B A B A B A B A B A B A B A B A 14 A B A 14 A B A 14 A B A 14 A B A 14 A B A 14 Installation space A A A A A A A A B B B B B B B B 12 B 12 B 12 B 12 B 12 B 12 B 136.7 mm

Hs Ht A B Hs A B Hs A B Hs Ht B D-P4DW D-M9 D-M9W D-M9A 12 D-A9 Hs D-B54 Note) The above drawing is the switch band mounting example for the D-P4DWS.

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.

Rotational axis B d D I m kgm I = m kgm 8 8 Gear: I a + b I = m kgm IB = I + I + I kgm 12 Substitute the moment of inertia IB for rotation around shaft B with the moment of inertia IA for rotation around shaft A. Gear: I IA = (A/B)IB [A/B: Gear tooth ratio] Find the actual moment of inertia.