SMC Corporation of America
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M9P 3-wire (PNP) M9BV M9B 12 V Relay PLC 2-wire Grommet 24 V Yes F9NWV F9NW 3-wire (NPN) IC circuit 5 V, 12 V Diagnostic indication (2-color indication) F9PWV F9PW 3-wire (PNP) 2-wire F9BWV F9BW 12 V Lead wire length symbols: 0.5 m Nil (Example) M9N 3 m L (Example) M9NL 5 m Z (Example) M9NZ Solid state switches marked with are produced upon receipt of order.

Male Branch Tee: KPT Effective area mm2 Note 1) D1 Model L1 TPH TPS A H (width across flats) Applicable tubing O.D. mm Connection thread R Weight g M L2 D2 L1 2-Applicable tubing M L1 M KPT04-01 KPT04-02 KPT06-01 KPT06-02 KPT08-01 KPT08-02 KPT10-02 KPT10-03 KPT12-03 KPT12-04 1/8 1/4 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 12 14 12 23.2 27.2 24.4 28.4 26.6 29.4 32.1 33.1 34.3 38.3 24.5 26.5 27 29

/1000 Moment center position distance compensation amount An: Table (3) Find the static moment M (Nm).

P V < 2 3 . 0 C # 2 S V 2 5 . 0 C M O D E 2. Target temperature (no indication on display) Setting range : 10.0 to 60.0 C Min. increment : 0.1 C Indicated content : [SV] : Target temp.(Ex. : 25.0 C) Function : Sets target temperature P V 2 3 . 0 C # 1 S V < 2 5 . 0 C M O D E 3.

EXW1 EXW1 Up to 100 m V.1.0/V.2.0 Available*1 EXW1 EXW1+EX600 *2 V.1.0 NA EXW1 EX600 Up to 10 m V.1.0 NA EX600 EXW1 Up to 10 m V.1.0 NA Available*3 EX600 EXW1+EX600 Up to 10 m V.1.0 NA Available*3 EX600 EX600 Up to 10 m V.1.0 NA Available *1: Available in protocol V.2.0. *2: Up to 100 m between an EXW1 series Base and Remote, and up to 10 m between an EXW1 series Base and an EX600-W series

Tightening with excessive force may damage the product. 18 Multistage Ejector Max. suction flow rate: 300 L/min (ANR) Max. suction flow rate: 600 L/min (ANR) ZL3/ZL6 Series Only for the models with a valve or pressure switch RoHS How to Order ZL 3 M 06 06 06 Without valve ZL 3 M K1 5 LO Z E A M G With valve ZL 3 M K1 5 LO Z V A M Pressure switch with energy saving function q w e r u !

Cylinder Bore Sizes (in inches) Valve Type Cv Type* 34 1 118 112 2 214 212 3 314 4 6 Micro-Line 0.11 SA F S S LTV 0.18 SA,DA F F F F M M M M S S Nova 1.00 SA,DA F F F F F F F M M Duramatic 0.18 SA,DA F F F F M M M M S S Duramatic 0.63 SA,DA F F F F F M M M M Capsula 0.75 SA,DA F F F F F F M M M Capsula 3.17 SA,DA F F F FT-1, FC-1 0.13 SA F F M S 4B-1, 4W-1 0.48 SA,DA F F F F M M M S FC51,

Cylinder Bore Sizes (in inches) Valve Type Cv Type* 34 1 118 112 2 214 212 3 314 4 6 Micro-Line 0.11 SA F S S LTV 0.18 SA,DA F F F F M M M M S S Nova 1.00 SA,DA F F F F F F F M M Duramatic 0.18 SA,DA F F F F M M M M S S Duramatic 0.63 SA,DA F F F F F M M M M Capsula 0.75 SA,DA F F F F F F M M M Capsula 3.17 SA,DA F F F FT-1, FC-1 0.13 SA F F M S 4B-1, 4W-1 0.48 SA,DA F F F F M M M S FC51,

P) 3 (R2) VFR (Standard) 12V DC 24V DC 3 Position pressure center 0.7 0.9 Body Ported L plug connector (L) (A) 4 (B) 2 VP7 1 (P) 3 (R2) 5 (R1) M plug connector (M) M plug connector (M) (Option) 100V AC 200V AC 110V AC 220V AC VP4 VQZ1000 0.15 0.3 (A) 4 VQ DIN connector (YZ) Locking style (Slotted) DIN connector (Y) 1 (P) 5 (R) VQ4 Except for VQZ1000 VQZ2000 N.C.

(V) 5 1.5 0.7 3 2.5 1.3 AC125 0.1 AC250 0.8 1.5 2 0.5 1 3 DC30 4 2 3 3 0.1 DC125 0.05 0.4 0.05 0.4 Insulation Resistance 100 M@ 500V (DC) *High Inrush Circuits D I M E N S I O N S P N E U M AT I C P R E S S U R E S W I T C H: S E R I E S IS3000 H O W T O O R D E R P N E U M AT I C P R E S S U R E S W I T C H: S E R I E S IS3000 IS3 0 C O N N E C T I O N L A M P 0 Rc(PT) 1/ 4 1 Flange No

XXX (3 digits) 571 Material Body material 316L SS secondary remelt Code S Face to face dimension 2) Surface finish Face to face 2.12 inch (53.8 mm) Standard 1.75 inch (44.5 mm) Code Surface finish Ra max 15 in. (0.4 m) Standard 10 in. (0.25 m) 7 in. (0.18 m) 5 in. (0.13 m) Code No code 1.75 No code M V X 2) Only applies to S material with TW4 connections.

3/8 Supply from both sides when there are 4 or more stations 88 (M) 96 (L) n x port 2 (A): 1/4, 3/8 L Dimension n L1 = 46n + 31, L2 = 46n + 15 n: Station 2 123 107 3 169 153 4 215 199 5 261 245 6 307 291 VEX L L1 L2 1971 Series VEX3 Construction/Working Principle/Component Parts (3) 2(A) R 3(R) (1) 2(A) R 3(R) (2) Closed center 7 3 VEX3120 (Air operated) This is a 3 port switch valve in

Manifold Mounting ARP Direct mount B A Stations Symbol 1 2 3 4 5 6 7 8 9 M Symbol IR 1 station DIN rail mount How to mount 1 station 2 stations 3 stations 2 stations IRV 3 stations 4 stations VEX1 5 stations Appearance 6 stations SRH 7 stations 8 stations SRP 9 stations 10 stations SRF 4. Accessory 3.

Load mass 1 = m/mmax = 3/12 = 0.25 Investigate m. Find the value of m max. at 300 mm/s in Graph (7) for m3. m M1 = m x g x L1 = 3 x 9.8 x 0.05 = 1.47 [Nm] 2. Static moment Investigate M1. Find the value of M2 max. at 300 mm/s in Graph (1). 2a =M1/M1 max =1.47/14 =0.105 M1 L1 M3 = m x g x L2 = 3 x 9.8 x 0.04 = 1.176 [Nm] m x g Investigate M3.

M1 m x g L1 M1E FE M3E = 0.05 x a x m x L2 (FE = 1.4/100 x a x g x m) = 0.05 x 300 x 3 x 0.04 = 1.8 [Nm] Investigate M3E. a From above, find the value of M3E max. at 420 mm/s in Graph (3).

Load voltage Auto switch model Lead wire length [m] Pre-wired connector Applicable load DC AC Tie-rod mounting Band mounting 0.5 (Nil) 1 (M) 3 (L) 5 (Z) Indicator light Wiring (Output) Type Special function Electrical entry 3-wire (NPN) 24 V 5 V, 12 V M9N V V V v v IC circuit 3-wire (PNP) M9P V V V v v 2-wire 12 V M9B V V V v v Terminal conduit 3-wire (NPN) Grommet G39 2-wire 12 V

Tubing size (O.D. x I.D.) mm: 12 x 9 IDG30 IDG50 0 m 20 1 m 19 3 m 17 5 m 16 Note) In cases other than above model numbers, if the tube length is 5 m or less, an increase of the outlet air at the atmospheric pressure dew point will be 1C or less. Refer to pages 14-19-28 to 29. Construction Refer to pages 14-19-30 to 31.

WAGOJAPAN (c) CNP2 (L11L21)721-2105/026-000(WAGO) 3 CNP2 CNP2 CNP2 L11 L11 L21 L21 3 13 3 (2) Molex WAGOJAPAN 54928-0670 54927-0520 54928-0370(Molex) 721-207/026-000 721-205/026-000721-203/026-000(WAGOJAPAN) MolexWAGOJAPAN (a) 54932-0(Molex) [mm] 20.6 10 4.9 3.4 (4.9) (3) 4.7 M X J 5 4 9 3 2 6.5 (7.7) 7.7 (3.4) 231-131(WAGO) 4.9 3.4 20.3 10 3 6.5 7.6 16 17.5 1.5 1.3 3 14 3 () 3 15 3

Q1 = M L2 = L2 + (3 x P) 3. L1 + (3 x P) L2 + (3 x P) 4. L2 = Q2 = M L1 = 5. Q2 = M 6.