Solid state switch D-F8 CUJ (As compared with SMC Series CU cylinders without magnet) Dimensions (Without magnet) Series Variations Bore size (mm) A(a) B(b) C(c) Bore size (mm) Rod end configuration Stroke (mm) Clean series 4 6 8 10 15 20 b Action Series Auto switch B Double acting Male thread Without thread None 4 10() 15() 13() 4 Single acting, Spring return 6 13(13) 19(22) 13(33) Double
In the case of mounting auto switch from B direction Step 2) Insert the auto switch into the auto switch installation groove from direction B. A B Step 3) Slide the auto switch in the direction of the arrow until the indicator light illuminates. Step 3) Slide the auto switch in the direction of the arrow until the indicator light illuminates.
50 3-5 depth 10 +0.02 0 16h9 0 0.043 (A, B, C common view) Misc.
G A A (mm) Model A 110 120 171 B 38 48 66 C 1 1 2 D 30 40 55 Fn 34 70 Fc 17 26 41 G 40 39 63 H J P.C.D L1 6 x 4.4 6 x 6.6 L2 XMC-16 XMC-25 XMC-40 40 50 65 26 28 36 P.C.D 27 P.C.D 58.7 XMC-50 to 80/Angle type C L2 D Fd Fc L1 (KF flange) Fn C (K flange) (CF flange) H J K B G A A (mm) Model A 183 209 250 B 80 100 117 C 31 39 45.5 D 75 87 114 Fn 95 110 Fd 114 Fc 52 70 83 G 77 76.5 105 H
E G H B Mounting nut width across flats C G E NN (R) NA Q N F I NA F N CC0.1 CY3B50, 63 CY3B6 to 15 (mm) G 5 5 5.5 7.5 7.5 8 11 14 14 B 17 25 35 36 46 60 70 86 100 0.007 0.043 30 32 H 13.5 12.5 13 20 20.5 22 29 33 33 CC 32 38 I 28 34 40 50 58 72 D 7.6 12 16.6 21.6 26.4 33.6 41.6 52.4 65.4 J 4.5 4.5 6 6 8 8 10 12 12 Q E 4 1.5 2 2 2 2 3 8 8 K 5 4 11 8 10 15 16 25 26 N 9.5 11 11 18 18.5 20
B side traveling parallelism to A side Refer to Graph (1).
How to Order MXW 16 100 B M9N S Number of auto switches Nil S n 2 pcs. 1 pc. n pcs.
4 x M2.5 x 0.45 thread depth 2.5 12.5 K Bottom view of MXQ6-30 13223 6.5 20 16 13 3.5 0.3 19.2 20 Z ZZ G (NN 1) x H H 10.5 5.5 10.5 5.5 A B 3H9( ) depth 2.5 +0.025 0 3.2 3.2 6.3 7 7 12 1 A B NN x M4 x 0.7 thread depth 8 4 3H9 ( ) depth 2.5 +0.025 0 HA GA A-A B-B (mm) Model F 22 25 21 26 27 N 4 4 6 6 6 G 6 13 11 21 H 23 26 28 28 NN 2 2 3 3 3 GA 13 13 29 39 49 HA 16 26 20 28 28 I 9 9 9 16
D D t D t t c e c c e e u u s u s s d i d i d i g g g o o o n n n r r r P P P A A A 1 1 9 9 9 9 9 9 w w 9 w 9 9 m I m I n n 9 9 9 u d u d a a a r u r u o s o F s tr F i e tr i e 9 9 9 D r r D r r r e e e e v v s 1 d d s 1 1 d o o i i n g n g n n n n a a H H n P n P g g r r o o i i s s d d e e u u D D c c t t d A d A r r w w a a 12-11-1 2 Courtesy of Steven Engineering, Inc.-230 Ryan Way,
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
phase J B C D A A COM COM COM B 12 VDC GND F.G.
A B A B 54 MXY6 34 59 5 MXY8 MX 39 67 MXY12 MTS 47 MY Solid State Switch D-M9B(V), D-M9N(V), D-M9P(V) Lead wire entries inside (mm) B B CY Model Mounting Switch operating range A B A B A B 50 MXY6 2 MG 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 38 55 MXY8 2.5
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).
DGripping force (N) Gripping force (N) 20Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Gripping point L (mm) Gripping point L (mm) Gripping force (N) Gripping force (N) Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Gripping point L (mm) Gripping point L (mm) 12-8-3 4 Series MHC2 Double Acting: Size 10, 16, 20, 25 MHC2-10 2-M3 x 0.5 thread depth
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.
Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa 0.5 40 8 0.5 Gripping force (N) Gripping force (N) 0.4 30 6 0.4 0.3 0.3 20 4 0.2 0.2 10 2 0.1 0.1 0 20 30 50 60 Gripping point L (mm) 40 0 30 40 60 70 Gripping point L (mm) 50 80 MHY2-16D MHY2-25D F F F F 35 100 Pressure 0.6 MPa Pressure 0.6 MPa 30 0.5 0.5 80 Gripping force (N) Gripping force (N) 25 External grip 0.4 0.4