SMC Corporation of America
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Size: 7 [ø50(ø33)], Valve Type: 1 [NC (Operating Pressure 0.5MPa)], Sealant: A (NBR Seal), Body Material: Standard, Pilot System Option: Standard, Thread: F (G(PF)), Port Size: 50A (2), Voltage: 5 (24VDC), Lead Wire: D (DIN Terminal), Manual Override: Non-locking Push Style, Bracket: None, X200: No, CE Compliance: Q (CE Compliance)

Size: 7 [ø50(ø33)], Valve Type: 1 [NC (Operating Pressure 0.5MPa)], Sealant: NBR Seal, Body Material: Standard, Pilot System Option: Standard, Thread: G(PF), Port Size: 2, Voltage: 24VDC, Lead Wire: DIN Terminal, Manual Override: Non-locking Push Style, Bracket: None, X200: No, CE Compliance: CE Compliance

Motion controller Q series Programming Manual (COMMON) (Q173D(S)CPU/Q172D(S)CPU) (IB-0300134) "4.11.1 Connect/disconnect function of SSCNET communication" MELSEC-Q QD77MS Simple Motion Module User's Manual (IB-0300185) "14.12 Connect/disconnect function of SSCNET communication" MELSEC-L LD77MH Simple Motion Module User's Manual (IB-0300172) "14.13 Connect/disconnect function of SSCNET communication

PA01] ) [AL. 3E.1 ](J4/J3 ) 8.7 J3 J3MR-J3 (1)2 (_ _)3 (_ _._)(_ _)(._)(_ _) (2) ON/OFF /( ) Q (Q173D(S)CPU/Q172D(S)CPU) (IB-0300126) 4.11.1 SSCNET / MELSEC-Q QD77MS (IB-0300184) 14.12 SSCNET / MELSEC-L LD77MH (IB-0300162) 14.13 SSCNET / (3)J3 28 8.8 J3 PLC 8.8.1 J3 (1) .1J3 10s .1.2 .2 LEDAb.1b012 Ab. .1 () Q17_DSCPU Q17_DCPU Q17_HCPU Q170MCPU QD77MS_ QD75MH_ QD74MH

M Q Q Note) D is maximum diameter.

Rc G NPT Nil F N Port size 04 1/2 (Female thread) 14-20-51 2 Series ADH4000 Construction Component Parts q o i u !1 No.

IA8X 1 y ZPR400 40 43 29 42.5 G H G I H 15 79.5 10 ,p mm Applicable tube ZPR25D 25 28 20 35 48~ 636 25 89.5 .6 AppHcabfe'l\Jbe O.D Q R ~S Appllcabfe tube (mm) I 24.3 16.8 6 12.8 A:PPlicab~ )iJ~ 0.0 ;P Q R _ .SI 8 . 2$.,2,; 18.7 . 15.2 . 8 ;' 4 23.3 15.8 1 0.4 .6 6 24.3 '16.8 12.8 I ~8 8 26.2 18.7 15.2 18 Vacuum Entry HorizC?"

(Nr'min): o L o [ r 1 l Lr e_l r Q,Q , = Q r = S x 11.1 (N/min) o, mean suction flow of a an ejector (Ny'min) max suction flow spec for the ejector from the catalog (Nr'min), Vacuum Eiector System Circuit flow capacity tor the piping system (Nd/ min), Q, S the etfective cross-sectional area of tubing based on inside diameter and total lenoth (mm,). See graph below.

(Nr'min): o L o [ r 1 l Lr e_l r Q,Q , = Q r = S x 11.1 (N/min) o, mean suction flow of a an ejector (Ny'min max suction flow spec for the ejector from the catalog (Nr'min), Vacuum Eiector System Circuit flow capacity tor the piping system (Nd/ min), Q, S the etfective cross-sectional area of tubing based on inside diameter and total lenoth (mm,). See graph below.

Q) ~ 0.3 1 '"' l' Q. Q) Q. Cautions on Use o ~ ~ 0 0.2 I:". When the primary pressure has been released, the residual pressure (secondary pressure) cannot be removed. If removal of residual pressure is needed, please contact SMC. ---... 0.1 O.l SiHI---t-t---t--t--t--+--t,., . 7 . r" " 1 I':.

Refer to POINT of section 3.6.1 for logic of MELSEC iQ-R series/MELSEC-Q series/MELSEC-L series/MELSEC-F series.

Stations 3 2 1 D D D D How to Order Valve 10-SV 1 1 0 0 F 5 Note) q w r e t y u i Air Preparation Equipment Pressure Control Equipment Flow Control Equipment Pressure Switches/ Pressure Sensors q Series r Back pressure check valve Note) Available with manifold block for station additions.

The display of the accumulated flow will be reset to zero. q r q w LCD display/Orange Displays the measured flow rate, each setting condition, and error code. e Output (OUT1) display/Orange Displays the output condition of OUT1. Illuminates when turned ON. i Displays the selected unit.

DC+ 1 Brown q N.C. 2 Not used w DC 3 Blue e IN: 1 to 5 V 4 White r Power supply/Output connector (8P) Power supply/Output connector (accessory) i u y t r e w q Pin No. Pin no. Terminal 7 Green CH4_OUT1 8 Yellow N.C.

1 A Q a q 0 0 1 0 2 STX DC2 2 B R b r 0 0 1 1 3 ETX DC3 # 3 C S c s 0 1 0 0 4 $ 4 D T d t 0 1 0 1 5 5 E U e u 0 1 1 0 6 & 6 F V f v 0 1 1 1 7 7 G W g w 1 0 0 0 8 ( 8 H X h x 1 0 0 1 9 ) 9 I Y i y 1 0 1 0 10 : J Z j z 1 0 1 1 11 ; K [ k { 1 1 0 0 12 , L l | 1 1 0 1 13 M ] m } 1 1 1 0 14 . N ^ n 1 1 1 1 15 / ?

SLD FG FG SLD (1) (1) DG DB DA (2)CC-Link Ver.1.10 2CC-Link Ver.1.10 1. 2. (4) (4) CC-Link(CN1) (a) (b) 10mm 10mm 3 (c) (d) CC-Link ( 10 mm ) ( 10 mm ) 3 5 3CC-Link (e) ( 0.30.4Nm) CC-Link CN1 CC-Link(CN1) 0.40.6mm 2.53.5mm 0.40.6mm 2.53.5mm , , / N6L TDK B-30 H3.5 X 73L Shiro Industry Co. 3 6 3CC-Link 3.2.3 0164 (1) (a) 164 (b) 112( 1) (c) 42 {(1a)(2)(3c)(4d

t0 I Recommended Circuits I q+"'"' A,.r rr.nv . . . 1 1 I I I Construction/Parts List .12 l J l / 18-20 I nuto Switch Specif ications . .21 I nuto Switch Circuit Diagrams. .22 I Ruto Switch Dimensions/Operating Range .23 I Ruto Switch Connection . .24 I Ruto Switch MountinS. . .25 r"-"--'-""' I Annaccnriac I Pranar riinne .26 r "-"-" tri*,t l x}$x:? xxxs !

or more since balance pressule set by regulator q) is to become releasing pressure. Both Sol A and Sol B can accept directoperated type or pilot operated type. Diagram 2. veriical upward mounting (Uae Spring look-uP) g Y ; As compared with Diagram 3, this circuit employs s-port valve instead ot Sol A laving the othe( unchanged.