SMC Corporation of America
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Search Results "VG342-5DZ-06NA-E-Q"

OUTLET INLET Mounting hole Top view (Mounting hole on bottom) Porting Symbols OUTLET (Downstream) INLET (Upstream) 2PW 2PWA 2PWC q q q w 2 PORTS w w 3PWD 3PWE 3PWG 3 PORTS q q q e e e w w w 4PWM q e r 4 PORTS w 1114 A

O e p u t ) h c n I ( . n i M e l o h . a i d d a e r h T F N U l e d o M H ) . x e H ( D L A M . t W ) f g ( 4 / 1 1 / 5 6 8 1 0 0 7 0 E R K 1 1 / 6 1 ) 6 4 . 7 1 ( 3 6 . 0 ) 6 1 ( 2 5 . 1 ) 5 . 8 3 ( 0 6 . 0 ) 8 0 . 5 1 ( 5 7 . 0 ) 9 1 ( 8 1 . 0 ) 6 . 4 ( 5 3 8 / 3 / 1 8 4 1 0 0 1 1 E R K 1 ) 4 . 5 2 ( 0 8 . 0 ) 3 . 0 2 ( 3 8 . 1 ) 2 4 ( 1 9 . 0 ) 3 2 ( 1 9 . 0 ) 3 2 ( 8 2 . 0 ) 7 ( 3

8 o e @2 @3 @1 !3 !4 @7 @8 !6 !5 CHN CHM CHS CHS CH2 CHA !0 q w !2 !

Fluid Name and Option Option symbol and body material Fluid (Application) Brass B Stainless steel J J H H Q P M H M M P Ethyl alcohol Caustic soda (25% ) Gas oil Silicon oil Steam system (Steam) (Max. 183C) Steam system (Condensation) (Max. 99C) Medium vacuum (up to 0.1 Pa.abs) Parachloroethylene Helium Non-leak (10 6Pam 3/s) Heated water (Max. 99C) A A S E V A V V E Note 1) The leakage

Consider q Max. payload, w static moment, e dynamic moment (when stopper collides) when calculating the Max. allowable moment and payload. Evaluate q and w as a (average speed), and e as (collision speed =1.4a). Calculate q (Wmax) from the graph of Max. payload (W1, W2, W3) and calculate w and e (Mmax) from the graph of Max. allowable moment.

low load shock absorber + Adjusting bolts MY1W Bore size Stroke L TT h h E F EA h EB W F Stroke adjusting unit S (Shock absorber stroke) T MY1W16, 20 F MY1W50, 63 Shock absorber EC EY h 3.6 3.6 3.5 4.5 4.5 5.5 5.5 TT 5.4 (Max. 11) 5 (Max. 11) 5 (Max. 16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) S 40.8 40.8 46.7 67.3 67.3 73.2 73.2 E 14.6 20 24 29 35 40 52 EY 39.5 45.5 53.5 67

5 2 x M4 x 0.7 Piping port F QL 6 13.5 Prepared hole diameter 3.3 2 x M3 x 0.5 (Plug: M-3P) 170.05 6 (fitting seat surface dimension) M3 x 0.5 Vacuum suction port Stroke: S M 1 Mounting base side B D Piping port A 2 x M3 x 0.5 A 5 5.5 3.2 J 2.4 Z Section AA 3.5 depth 2 2.5 +0.030 0 7 +0.030 0 depth 2 2.5 Q QL 11-/22-MXPJ6-10 4 x M3 x 0.5 depth 3 F (mm) E F H J M Q QL S Z Model 23 25 38 27

5 2-M4 x 0.7 Piping port F QL 6 13.5 Prepared hole diameter 3.3 2-M3 x 0.5 (Plug: M-3P) 6 (fitting seat surface dimension) 170.05 M3 x 0.5 Vacuum suction port Stroke: S M 1 Mounting base side B D Piping port 2-M3 x 0.5 A 5 5.5 A 3.2 J 2.4 Z Section AA 3.5 Depth 2 2.5 +0.030 0 7 +0.030 0 Depth 2 2.5 Q QL 11-/22-MXPJ6-10 4M3 x 0.5 depth 3 F (mm) E F H J M Q QL S Z Model 23 25 38 27 37 28 8

3 o q q o !0 !1 !0 !1 !2 w !2 w !3 !4 !5 With reducer Tube extensions e t y r i u q o !1 !0 !2 w Component parts No.

U Q F 2 x 4-OB depth of counter bore RB I 22 M E Z D 11 Minimum bending radius for lead wire 10 Auto switch D-A7/A8 K L B + Stroke M E S A + Stroke J 2-cushion needle Rod end male threads H1 C1 L1 X Rod end nut Auto switch D-A9/F9 Rod end male threads mm Bore size (mm) C1 X H1 L1 32 40 50 20.5 23.5 M14 x 1.5 28.5 20.5 23.5 M14 x 1.5 28.5 26 28.5 M18 x 1.5 33.5 Standard type mm A B C D E F

Example) ZR100-K15MZ-E . 1 ZR1-RV3 . 1 13-3-37 37 Series ZR Valve Unit: ZR1-V Specifications ZR1-V Valve unit part no.

Air Preparation Equipment Pressure Control Equipment Flow Control Equipment Pressure Switches/ Pressure Sensors 1.5 2 x M4 DIN rail clamp screw 9 e d i s U e d i s D n 8 7 6 5 4 3 2 Stations 1 9 60 37 26 One-touch fitting [3(R), 1(P) port] Applicable tubing O.D.: 8 For top ported 4 4 4 4 4 4 4 4 3 R 7.5 13.1 29.6 (49.4) P 1 2 2 2 2 2 2 2 2 81.5 66.9 P=11.5 One-touch fitting, thread piping

Construction VHS20/30 VHS40/40-06/50 y i u w w t t r q IN OUT OUT IN q e o EXH. EXH. VM Component Parts No.

If the leakage volume is 30 /min (ANR), the vacuum pressure of the S type is 20 kPa q w e, and for the L type it is 33 kPa q' w' e'. If the leakage volume is 5 /min (ANR), the vacuum pressure of the S type is 80 kPa r t y, and for the L type it is 47 kPa r' t' y'.

0 e e u u r i !1 r t !1 !0 Port 1 Port 2 Port 1 Port 2 Valve element A t q q o o w Valve element B y w Port 3 3 Port valve 2 Port valve Working Principle When the pilot operated solenoid valve !2 is not energized, the valve element A t connected to the piston u is closed by the return spring i. Then valve element B y connected to the valve element A t is open.

2 q q AS y !3 w y t AS-FE w i t KE o AS-FG AS-FG i !0 u AS-FP !0 o e AS-FM !4 u Meter-in type Meter-out type AS-D e Seal method: Face seal For G thread AS-T Meter-in type Meter-out type ASP !1 ASN r !2 AQ q w ASV y t AK i VCHC o ASR ASQ !0 u !5 e Meter-out type Meter-in type Component Parts No.

1 e !3 !4 o !0 !1 !2 e !3 !4 !5 !2 q !5 q t t r u u i i r y y w !6 w Meter-in type Meter-out type Meter-out type Meter-in type Seal method: Face seal For G thread e o !3 !1 !0 !4 !2 !5 q t u i r y !7 w Meter-in type Meter-out type Component Parts No.

(NA) (NA) Q + Stroke Data d Bore size (mm) Standard stroke (mm) A PA (N) (NA) PB PW Q E F G GP H HG HN HP HT L Slide Ball bushing 32 25, 50, 75, 100 10.5 28 20 45 27 9.5 110 66 26.5 67.6 64 33.5 100 14 53 70 120 160 121 40 25, 50, 75, 100 11.5 36 25 52 31 10.5 130 78 30.5 77.6 74 40.5 136 12 51 90 140 190 159 PA dimension is the center sorted factor of the L dimension.

Clean series 10 AF 03 A 30 F J B 21 AF 03 A 30 F J B Copper, fluorine and silicone-free + Low particle generation q w e r t Air filter Option/Semi-standard: Select one each for a to e. Option/Semi-standard symbol: When more than one specification is required, indicate in alphanumeric order.