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40 60 80 100 Load N 0 20 40 60 80 100 Load N 0 50 100 150 200 250 Data 8-9-9 9 Series MXY Table Deflection Table deflection due to pitch moment load Displacement at A when load is applied F Table deflection due to yaw moment load Displacement at A when load is applied F Table deflection due to roll moment load Displacement at A when load is applied F A A F A F F L L L L dimension mm L dimension

To spsclfy a Valva mounled on a manifold block-lnsert manifold block numbsr Into vdw numb6r, e.g. # NVS 412+21OgD ls a NVS 412i|-m(xlD valv mounted on a#21 Manilotd Btock. IO ONDER "FACIORY BUIL?' VALVE'TSANIFOLD ASSEMBLY Exlmpla 1 pce. Flve Station Manifold Ass'y oomprtstng: Slatlon t. NVS,fi2+2to9D Slatlon 2. NVS 423,t3109O Stallon 3. NVS 4434.31090 Statlon 4.

of friction between the attachment and work, select a model that can produce a holding force 10 to 20 times the work weight.

0; "50 Z r 30 100 29.3 29 \\ , , \ \ \ . :1, lJ lo: l0.2kgfcm ~ 20 a With air CUShion High ktnetic energy generated by a large lOad and high speed operatIOn can be absorbed by compressing air at the stroke end thus prevenllJl9 shock and VIbration beng transmitted Ie the machne.

[ % ] ( ) -32No.PF-OMN0009CN-F () PF3W504 PF3W520 [ M P a ] [ M P a ] PF3W540 PF3W511() [ M P a ] [ M P a ] PF3W521() [ M P a ] -33No.PF-OMN0009CN-F PF3W511(PVC ) PF3W521(PVC ) [ M P a ] [ M P a ] -34No.PF-OMN0009CN-F PF3W504/520/540 PF3W504S/520S/540S [MPa] [MPa] [ M P a ] [ M P a ] a] [MP a] [MP PF3W511() PF3W521() PF3W511/521(PVC ) [MPa] [ M P a ] [ M P a ] a] [MP [MPa

Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8 m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide Central axis of

5 CYP32 (Nm) M1 M2 Model CYP15 CYP32 M1 0.3 3 M2 0.6 4 M3 0.3 3 m m Static moment Moment generated by the work piece weight even when the cylinder is stopped Pich moment M1 = m x g x (L + B) x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYP15 CYP32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m : Load mass [kg] L : Distance

Applicable bore A 0.51 D C 1/4-28 UNF B 0.16 JM-025 0.44 3/4", 7/8" JM-03 0.50 0.19 5/16-24 UNF 0.50 1 1/16" JM-045 0.69 0.79 0.26 7/16-20 UNF 1 1/4", 1 1/2" JM-04 0.56 3/8-24 UNF 0.65 0.23 1 1/4", 1 1/2" (Non-rotating) JM-05 0.75 1/2-20 UNF 0.32 0.87 2" 6-14-20 21 Series NCM Mounting Bracket Accessory Material: Rolled steel P dia.

IDX-OM-O004-B 2010 11 B2011 6 / Series IDF15E1-10 (-A,C,K,L,M,R,S,T) IDF15E1-20 (-A,C,K,L,M,R,T) URLhttp://www.smcworld.com/ English instruction manual can be downloaded from our URLhttp://www.smcworld.com/ 2011 SMC CORPORATION All Rights Reserved.

Auto Switch Proper Mounting Position (mm) (mm) Auto Switch Mounting Height D-M9 D-M9W D-M9 D-M9W D-A9 Auto switch model Auto switch model D-A9 B A B A Bore size Bore size 20 25 32 40 Hs 30.5 59.5 34 55.5 20 25 32 40 Note) The above values are a guide in the stroke end detection of the mounting positions of the auto switch.

x g X Z Y m x g x X x m x g Vertical mounting Mounting orientation Ceiling m Wall m Vertical m Note) Static load m Horizontal m M M m x g x X m x g x X m x g x Z M Static moment z y Y m x g x Y m x g x Y m x g x Z M Z m x g x X m x g x Y m x g M Note) m is a mass movable by thrust.

GTa disassemble, hold the spanner flats of the tube COver in a vice 40 20 9,43 37,7 47.2 56,6 IN 28,3 and by holding the rod cover spanner flats with a spanner, 98,2 OUT 19,63 58,9 78.5 117.8 20 SEt IN 16,49 49,5 66.0 82.5 99.0 unscrew anti-clockwise to remove the cover.

Power cable holder (Electric wire diameter 0.71 (18) to 0.91 (23)) Drain tube for drain pan of condensed water Ventilation air inlet (with dustproof filter) Signal cable outlet (Electric wire diameter 0.67 (17) or less) Grommet with membrane Top view D E Air inlet Air outlet L K M 0.79 (20) 4 x 0.79 (20) 36.8 (935) Dimensions in (mm) Model Port size A B C D E F G H K L M P IDF125FS JIS ange

C D (KF) KF (K) KF G I H H V Fn Fd A C C U U M E V V A L E B K S H J M G A A A B C D E Fn Fd G H J K XLD-25 50 123 48 1 12 40 26 41 16 7.5 XLD-40 65 170 66 2 11 55 41 63 20 15 XLD-50 70 183 79 2 11 75 52 68 20 17.5 XLD-63 88 217 100 3 11 87 95 70 72 20 20 XLD-80 90 256 117 3 11 114 110 83 98 20 26.5 XLD-100 108 321 154 3 11 134 130 102 133 20 38 XLD-160 138 335 200 3 11 190 180 153 114

EDV PE APR IDF60/70/80/90 Series 7-5 IDX-OM-W093 7.5 IDF60/70/80/90 Series 7-6 IDX-OM-W093 A 8 A 8.1 8.2 A (10) 8.3 8.4 IDF60-20-A IDF60-30-A IDF70-20-A IDF70-30-A IDF80-20-A IDF80-30-A IDF90-20-A IDF90-30-A 50Hz 2.3 4 5.8 7.1 3/min(ANR) m 60Hz 3.2 4.8 6.5 7.9 10 1) ANR 65% 2) IDF60/70/80/90 Series 8-1 IDX-OM-W093 A 8.5 IDF60/70/80/90 Series 8-2 IDX-OM-W093 C 9 C 9.1 9.2

and M plug connectors. * Refer to page 1738 for the connector assembly with a dustproof cover for L and M plug connectors.

Never mount a switch in a place that will be used as a scaffold during piping work. Damage may occur if subjected to an excessive load. Especially when the switch supports piping, do not apply a load of 15Nm or more to the metal part of the switch. 11. Provide a section of straight pipe of at least 8 times the pipe diameter in the piping before and after a switch.

Normally open Normally closed Model Grommet Electrical entry Conduit Conduit terminal Bracket H F E D C B f M L K J A e 57 62 67 b 39 45.5 49.5 Q 39 39 41.5 Q 23 23 25.5 N 61 (68) 69 (76) 79 (89) d 47 52 57 a 34 51 58 N 69 (76) 77 (84) 87 (97) N 61 69 79 c 65 78 86 Q R 57 74 81 VXP2142 , 30 30 35 20 20 23 34 43 47 29 37 43 28 35 40 3 8 8 63 80 90 59 59 62 104 (116) 118 (136) 133 (150) 26

10 0 10 20 30 0 20 40 60 Work load (W) kg Work load (W) kg Work load (W) kg 600 600 600 L2 M2 400 400 400 L2 mm L2 mm L2 mm Rolling Yawing W 200 200 200 L2 M2 0 10 20 30 0 20 40 60 0 2 4 6 8 10 Work load (W) kg Work load (W) kg Work load (W) kg W 3000 2000 2000 a=1000 a=1000 a=1000 2000 L3 mm L3 mm L3 mm L3 1000 1000 1000 a=2000 a=2000 W a=2000 a=3000 a=3000 a=3000 M3 a 0 20 40 60 0 2 4