SMC Corporation of America
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Search Results "CDJP2B6-25D-B-M9NZ"

Pin Cylinder/Double Acting, Single Rod Series CJP2 6, 10, 16 Replacement Procedure is P.278 Construction CJP2B10, 16 CJP2B6 !1 !0 !2 !1 !0 !2 The numbers are the same as the "Construction" of the Best Pneumatics No.2 Series CJP2. *BLUE links will lead to purchase pages. Seal Kit List Description Material Note No. Replacement Parts: Seal Kit Kit no. Contents Bore size (mm) !0 !1 !2 Piston

B 1.8 1.6 Groove position of auto switch A 10.4 12.8 Model MHK2-12 MHK2-16 A B Dimensions A and B of other models are same as standard switch grooves.

(mm) C D MHZ2-10D-X46 MHZ2-16D-X46 MHZ2-20D-X46 MHZ2-25D-X46 Model A B D9 4.5 11 5.2 7.5 7 13 5.8 2010 7 15 6 10.7 7 20 6.2 Dimensions other than the above are identical to the standard type; refer to pages 12-2-33 to 12-2-36. Reference values to establish criteria for needle adjustment.

(mm) C D MHZ2-10D-X46 MHZ2-16D-X46 MHZ2-20D-X46 MHZ2-25D-X46 Model A B D9 4.5 11 5.2 7.5 7 13 5.8 2010 7 15 6 10.7 7 20 6.2 Dimensions other than the above are identical to the standard type; refer to pages 12-2-33 to 12-2-36. Reference values to establish criteria for needle adjustment.

1-C 2-A 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 1-C 2-B 2-B 2-B 1-A 1-B 1-C 2-A 2-B 1-C 2-A 2-B 2-B 2-B 2-B 2-B 1-A 1-B 1-C 2-A 2-B 2-B 2-B 2-B 2-B 2-B Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 6 1/8, 1/4 500 1.5 0 1,000 2,000 3,000

Calculate the moment of inertia for A and B separately as shown in the figures on the right. A part B part Procedure Calculation Calculation example 1. Check the operating conditions, dimensions of attachment, etc. Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.

Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com c B part e f d 2.

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

Fittings & Tubing Air Cylinders Rotary Actuators Side tapped mounting [1/N1] Through-holes in open/close direction [2/N2] 4 x MM through Thread for mounting attachment C C B A 4 x H through Hole for mounting attachment S S O O B A (mm) (mm) MM M2.5 x 0.45 M3 x 0.5 M4 x 0.7 M5 x 0.8 C 2 2.5 4 5 H 2.9 3.4 4.5 5.5 B 5.7 7 9 12 B 5.7 7 9 12 Model A 3 4 5 6 Model A 3 4 5 6 11221122112211221 N1

B 1.8 1.6 Groove position of auto switch A 10.4 12.8 Model MHK2-12 MHK2-16 A B Dimensions A and B of other models are same as standard switch grooves. Standard switch grooves 12-6-17

B 1.8 1.6 Groove position of auto switch A 10.4 12.8 Model MHK2-12 MHK2-16 A B Dimensions A and B of other models are same as standard switch grooves. Standard switch grooves 12-6-17

M9 M9V F9W(V) B Electrical entry is in the direction C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C

M9 M9V F9W(V) B Electrical entry is in the direction C (mm) Proper mounting position Proper mounting position Proper mounting position D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV D-M9 D-F9W D-M9V D-F9WV Model Model Model A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C D E A B C

Operating equipment: MHC2-6D A part a b c d e f = 20 (mm) = 3 (mm) = 4 (mm) = 4 (mm) = 5 (mm) = 6 (mm) b c a e B part f d z f1 x.Calculate the inertial moment of the attachment. Assuming the attachment material is aluminium alloy (relative density=2.7), r1 = 16.4 (mm).

Operating equipment: MHC2-6D A part a b c d e f = 20 (mm) = 3 (mm) = 4 (mm) = 4 (mm) = 5 (mm) = 6 (mm) b c a e B part f d z f1 x.Calculate the inertial moment of the attachment. Assuming the attachment material is aluminium alloy (relative density=2.7), r1= 16.4 (mm).

Operating equipment: MHC2-6D A part a b c d e f = 20 (mm) = 3 (mm) = 4 (mm) = 4 (mm) = 5 (mm) = 6 (mm) b c a Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com e B part f d z f1 x.Calculate the inertial moment of the attachment.