Magnet: D (Built-in), Series: J2, Mounting: D (Double Clevis), Bore Size: 10mm, Stroke: 30mm, Cushion: Rubber Bumper, Head Cover Port Location: Perpendicular to Axis, Pivot Bracket: N (Pivot Bracket not Assembled), Rod End Bracket: W (Double Knuckle Joint), Auto Switch: M9N--Solid State, Gen. Purpose, 3 Wire NPN, Horizontal, Lead Wire or Prewired Connector: 0.5m (Or None in the Case of No
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 Standard double acting single rod, Bore sizes
W A A A B (mm) D-A9V D-A9 D-M9 D-M9W D-M9V D-M9WV A B A B Bore size (mm) W Hs A B W A B Hs 32 40 50 63 12 [17] 9 1 12 [17] 9 29 8 [13] 5 3 (0.5) 8 [13] 5 27 16 11.5 1.5 16 11.5 32.5 12 7.5 5.5 (3) 12 7.5 30.5 14 <19> 14.5 4.5 14 <19> 14.5 42 10 <15> 10.5 8.5 (6) 10 <15> 10.5 36.5 16.5 17.5 7.5 16.5 17.5 42 12.5 13.5 11.5 (9) 12.5 13.5 40 [ ]: Values for 5 mm stroke with 32 < >: Values for
CRQ2X MSQX MRQ Auto Switch Working Principle [Pressure is applied from the B port.] The auto switch B is turned ON by the magnet B in the state that the pressure is applied from the B port and the piston B moves to the left side. At this time, the auto switch A turns OFF . Magnet B Piston B A port B port Auto switch B Auto switch A [Pressure is applied from the A port.]
D-A59W D-Z7/Z80 D-M9/M9W D-M9A Bore size (mm) Bore size (mm) D-Z7/Z80 D-A5/A6 A B A B A B A B A B A B Ht Hs Ht Hs Ht Hs Ht Hs Ht Hs 40 50 63 80 100 40 50 63 80 100 11.5 8.5 8 5 13 10 5 2 27 28.5 27 34 35.5 28.5 29 27 13 8 9.5 4.5 14.5 9.5 6.5 1.5 33 33.5 33 38.5 39.5 34.5 33 33 4.5 0 8.5 3.5 47.5 38.5 14.5 9.5 11 6 16 11 8 3 38.5 38 38.5 43.5 45 38.5 28 37 8.5 3.5 12.5 7.5 54
Refer to page 378 for minimum stroke with auto switch. 32 is for B-series rod size only. CH2 H B B 50 100 CH D2 H B B 50 100 M9BW With Auto Switch With auto switch (built-in magnet) Port and cushion valve positions Refer to page 359.
C B A stroke A C 3) 2nd stage: B-A stroke operation Following the 1st stage, when the air pressure is supplied from the C port, the rod operates the B-A stroke. B B-A stroke B A C 4) Cylinder retraction When the air pressure is supplied from the B port, the rod retracts completely. B stroke A stroke A stroke or B stroke operation can be made individually.
Hs Auto switch 12 D-B5/B6 15 22.5 A B 33 410 Auto Switch Mounting CHA Series Auto Switch Proper Mounting Positions (mm) D-G5/K59 D-G5W/K59W D-G59F/G5BA D-G5NT D-M9/M9V D-M9W/M9WV D-M9A/M9AV D-F5/J59 D-F5W/J59W D-F59F/F5BA D-F5NT D-G39/K39D-A9/A9V D-A5/A6 D-A59W D-B5/B64 D-B59W D-A3/A44 Bore size (mm) CHQ A B A B A B A B A B A B A B A B A B A B A B CHK 40 20.5 21.5 17 18 22 23 12.5 13.5 10.5
U B A CHA B A Related Products D-F7 D-F7W D-J79 D-J79W D-A7 D-A7H D-A8 D-A8H D-F7V D-F7WV D-F7BA D-F7BAV D-F7NT D-F79F D-J79C D-A73C D-A80C 32 to 100 DApprox. U B A Approx.
CDA2 B 50 200 X1184 B31J S With built-in special magnet Number of auto switches Cylinder stroke Description 2 pcs. 1 pc.
D-X 571 B RSQ Series Auto Switch Mounting Auto Switch Proper Mounting Position (Detection at stroke end) and Mounting Height D-M9/M9V D-M9W/M9WV D-M9A/M9AV D-A9/A9V 12 Hs B B A B B A 16, 20 B A Hs B Hs B A Hs B A Hs B A 32 to 50 A A B A A B A Hs D-A7 D-A80 D-A7H D-A80H D-F7 D-J79 D-F7W D-J79W D-F79F D-F7NT D-F7BA D-A73C D-A80C D-J79C D-A79W D-F7WV D-F7V D-F7BAV 16, 20 B A Hs B A Hs
Auto switch model D-Y59m D-Y69m D-Y7P D-Y7PV D-Y7H D-Y7mW D-Y7mWV D-Y7BA D-Z7m D-Z80 D-M9m D-M9mV D-M9mW D-M9mWV D-M9mA D-M9mAV D-A9m D-A9mV D-F5m D-J59 D-F59F D-F5NTL D-A5m D-A6m D-A59W D-G39 D-K39 D-A3m D-A44 D-P3DWA D-P4DW A B A B A B A B A B A B A B A B A B A B 32 13.5 10.5 9.5 6.5 10 7 15 12 3.5 0.5 7.5 4.5 3.5 0.5 7 4 9 6 6.5 3.5 40 10.5 14 6.5 10 7 10.5 12 15.5 0.5 4 4.5 8 0.5 4 4
D-Z7m D-Z8m D-M9m D-M9mV D-M9mW D-M9mWV D-M9mA D-M9mAV D-A9m D-A9mV D-F5m D-J59 D-F59F D-F5NT D-A5m D-A6m D-A59W D-G39 D-K39 D-A3m D-A44 D-P3DWA D-P4DW Bore size A B A B A B A B A B A B A B A B A B A B 32 10 8 6 4 6.5 4.5 11.5 9.5 0 0 4 2 0 0 3.5 1.5 5.5 3.5 3 1 40 9 9 5 5 5.5 5.5 10.5 10.5 0 0 3 3 0 0 2.5 2.5 4.5 4.5 2 2 50 10 9 6 5 6.5 5.5 11.5 10.5 0 0 4 3 0 0 3.5 2.5 5.5 4.5 3 2 63 10
phase J B C D A t A COM COM COM B 12 VDC GND F.G.
A B A B A B A B A B A B A B A B A B A B 40 10 8 6 4 4 1 5.5 3.5 3.5 0.5 0.5 0 1 0 7 4 2.5 0 4.5 1.5 12 9 50 10 8 6 4 3.5 1.5 5.5 3.5 3 1 0 0 0.5 0 6.5 4.5 2 0 4 2 11.5 9.5 63 12.5 11.5 8.5 7.5 6 5 8 7 5.5 4.5 2.5 1.5 3 2 9 8 4.5 3.5 6.5 5.5 14 13 80 16 14 12 10 9.5 7.5 11.5 9.5 9 7 6 4 6.5 4.5 12.5 10.5 8 6 10 8 17.5 15.5 100 17.5 16.5 13.5 12.5 11 10 13 12 10.5 9.5 7.5 6.5 8 7 14 13 9.5
38 35 42 40.5 A 33 32.5 34 31 38 36.5 49.5 48.5 A B A B A B A B 20 25 32 40 50 63 80 100 B 24 (32) 24.5 (32.5) 25 (33) 27 (36) 32 (44) 33.5 (45.5) B 14.5 (22.5) 15 (23) 15.5 (23.5) 17.5 (26.5) 22.5 (34.5) 24 (36) 29 (43) 30 (44) B 20 (28) 20.5 (28.5) 21 (29) 23 (32) 28 (40) 29.5 (41.5) B 16 (24) 16.5 (24.5) 17 (25) 19 (28) 24 (36) 25.5 (37.5) 30.5 (44.5) 31.5 (45.5) Hs 27.5 30 33.5
L r b a = K + mL2 K: The moment of inertia around the center of gravity of the load K = m r2 12 a2 + b2 = m In case of 4. Round plate 2 4. Round plate (Including column) Position of rotational axis: Passing through the center axis 9. Gear transmission (A) (B) No. of teeth = a 1. Find the moment of inertia B for the rotation of shaft (B). 2.