SMC Corporation of America
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Search Results "VCH42-6D-06G-Q"

Body material: Aluminum, C37, Stainless steel Body material: Resin q q t t w w y u i y u i e e r r o o IN OUT IN OUT !0 !0 Component Parts Component Parts No.

In the case of liquids: P Q = 53 Kv (9) G Q : Flow rate [L/min] Kv : Flow coefficient [m3/h] DP : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 232 Kv P (P2 + 0.1) (10) Q : Flow rate [kg/h] Kv : Flow coefficient [m3/h] DP : Pressure difference [MPa] P1 : Upstream pressure [MPa]: DP = P1 P2 P2 : Downstream pressure [MPa] 57 Solenoid

3 IN(P1) r OUT(P2) VXB B A OUT(P2) A B VXE IN(P1) C C IN(P1) e e q w VXP q w VXD2A VXD2B VXR !4 i VXH !4 u u !0 VXF A B !1 i VX3 !2 !0 !2 VXA o !1 t !3 o OUT (P2) w IN(P1) !3 B r OUT(P2) A r IN (P1) e C e IN(P1) C q w q VXD2E, 2F, 2G VXD2C, 2D Component Parts Operation When coil !

L Approx. 280 Q L M Approx. 300 G1/2 N f N B OUT IN 1 E C F H 2-P Port size D 2 x 8.5 a b e Conduit terminal: T d K J (Q) L A (Q) L DIN terminal: D 32 (44) N N G 1/2 G1/2 Cable 6 to 12 E R (R) (mm) Grommet Conduit DIN terminal Conduit terminal Electrical entry (DC, AC) Port size P Model N A B C D E F H J K L M Q 19.5 19.5 22.5 N 64 70.5 84.5 Q 40 40 43 N 63.5 70 84 Q 58.5 58.5 61.5 R 46.5

In the case of liquid: P Q = 53Kv (9) G Q : Flow rate [L/min] Kv : Flow coefficient [m3/h] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 232Kv P(P2 + 0.1) (10) Q : Flow rate [kg/h] Kv : Flow coefficient [m3/h] P : Pressure difference [MPa] P1 : Upstream pressure [MPa]: P = P1 P2 P2 : Downstream pressure [MPa] 230 Solenoid Valve

In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] 28 Solenoid Valve

Clip E stop ring Solenoid coil Solenoid coil q Pull out the clip horizontally in direction q. Remove the E stop ring in direction q. q When doing this, do not apply twisting or torsion to the clip. Otherwise, the clip may be deformed. If the clip is deformed by mistake, replace it with a new one.

In the case of liquid: P Q = 1.9 x 106 Av .(9) G Q : Flow rate [L/min] Av : Flow coefficient [m2] P : Pressure differential [MPa] G : Specific gravity [water = 1] In the case of saturated steam: Q = 8.3 x 106 Av P (P2 + 0.1) .(10) Q : Flow rate [kg/h] Av : Flow coefficient [m2] P : Pressure differential [MPa] P1 : Upstream pressure [MPa]: P = P1 P2 P2 : Downstream pressure [MPa] 11 Solenoid

In the case of liquids: DP Q = 1.9 x 106Av (9) G Q : Flow rate [L/min] Av : Flow coefficient [m2] DP : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av DP(P2 + 0.1) (10) Q : Flow rate [kg/h] Av : Flow coefficient [m2] DP : Pressure difference [MPa] P1 : Upstream pressure [MPa]: DP = P1 P2 P2 : Downstream pressure [MPa] 11

In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] Front matter 4

In the case of liquid: P Q = 1.9 x 106Av (9) G Q : Flow rate [l/min] Av : Flow coefficient [m2] P : Pressure difference [MPa] G : Relative density [water = 1] In the case of saturated aqueous vapor: Q = 8.3 x 106Av P(P2 + 0.1) (10) Q : Flow rate [m3/s] Av : Flow coefficient [m2] P : Pressure difference [Pa] P1 : Relative density [MPa]: P = P1 P2 P2 : Relative density [MPa] Front matter 4

* O . b 3 z o 1 0 0 6 o u o q ; N q * E 9 . " o . 5 " > 2 4 ' ;l l.:, . . o o o 2 4 6 8 1 0 1 2 1 4 1 6 1 8 2 0 TOTAL ENERGY ( nrbtc) (Tho!ends) Note: Minimum impact velocity tor PM nlodels it 4 itr/*c. 9k**k &"bs*rbers Non-Adjustable Hydraulic Series 49rc.

3 q u @9 #0 #2e y!6#1@8t!2w#3!5 !7 !8 !9 @0 @1 @6 @7 i o 80, 100 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 !1 !0 14B @2@3N@4@5 Locking at rod end Manual release non-locking type: L Material Note Component Parts No. q w e r t y u i o !0 !1 !2 !3 No. !7 !8 !

KQ2C Caps P Plugs Q Cartridge KR Fitting Boot . . . . . . . .6 .7 .7 .7 P .8 .8 .9 .9 o 't0 1 0 1 0 1 1 1 1 1 1 1 2 Spucial [nnlhunilions Page 14 IIU lrlylon lltliltg Page 15 Bmss Phe tittittg$ pase N i p p l e s . . . . . . . . . 1 7 Cdinlinars -. -14 Bushings Aalaolers 1 8 '18 1 q Ts6s .20 .20 Pftr^q 21 SAE 45" Flares . -..22-23 .24 General Assembly..,.. lmoortant Oo's and Dont's Chemical

Valve Type: 2 (N.O.), Voltage: 5 (24 VDC), Electrical Entry: D (DIN Connector), Port Size: 06 (3/4), CE Compliant Marking: Q (CE Marking)

Valve Type: 2 (N.O.), Voltage: 5 (24 VDC), Electrical Entry: DL (DIN Connector with light), Port Size: 06 (3/4), CE Compliant Marking: Q (CE Marking)

Valve Type: N.O., Voltage: 24 VDC, Electrical Entry: DIN Connector with light, Port Size: 3/4, CE Compliant Marking: CE Marking

Inlet air temperature 35C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.5MPa Air flow 1200 l/min (ANR) Inlet air temperature 55C Outlet air pressure dew point 10C Ambient temperature 35C Inlet air pressure 0.7MPa Air flow 350 l/min (ANR) Condition Condition A = 0.75 based on conditions q, w and e 1 B = 0.95 based on conditions q, w and e 1 C = 1.00 based on

I SERIES NCJ2 Standard Type: Double Acting/Single Rod %Silrc Construction/Parts List (Disassembly is not possible) T---r-l -l-l t t l -T--Tt l NCJ206-0R 6d G) \ r +iry Built in Magnet Parts Llst NCJ2010, NCJ2 016 Parts List I 4siltr SERIES NCJ2 Standard Type: Double Acting/Single Rod Basic Type (B) ruclze[6E@,]-J3@1ffi NCJ286 Head Cover , 6dz rr H t l l!