SMC Corporation of America
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Search Results "PFM511-C8-1-R"

bot U8 0 Y 0OFF(dot ) 1ON(dot ) 1826 0x0722 0 R/W Line bot U8 0 Y 1110 0x0456 0 R/W drE () U8 0 Y 0 1(1/10) 1140 0x0474 0 R/W Cut (Zero-cut) U8 0 Y 010 0 0 1.0% 1800 0x0708 0 R/W Eco () U8 0 Y 0oFF 1on Pin () U8 0 Y 0 1 1810 0x0712 0 R/W 1811 0x0713 0 R/W NPin () U16 0 Y 0999 a F32 N 2000 0x07D0 0 R (63 ) 2001 0x07D1 0 R b F32 N 2002 0x07D2 0 R U16 0 N 6163 2003 0x07D3 0 R

OFF 0.01 s 0x0x0BB8 (03000) 0.01 s 1030 0x0406 0 R/W FiL () U16 0 Y 5R.D. 0.1 1060 0x0424 0 R/W FSC () S16 0 Y -5050 -72No.PS-OMV0008CN-E () 1 3 dec hex 2 0Std 1dUAL(2 ) 2o1Lv(OUT1 ) 3o2Lv(OUT2 ) 4LinE(Line ) 5oFF() 1100 0x044C 0 R/W U8 0 Y 1101 0x044D 0 R/W Std U8 0 Y std 2 1102 0x044E 0 R/W U8 0 Y 2 2 1103 0x044F 0 R/W U8 1 Y 1820 0x071C 0 R/W Line 1 U8 0 Y Line 1 (

/min, and is suitable for use with air, nitrogen, argon or carbon dioxide. 2-color display flow switch., Sensor and monitor separation, which allows remote monitors' centralization., Integrated flow adjustment valve as an option, reducing piping and saving space (unique feature in the market)., Operation indication also on the sensor., Fast response: either 50 ms, 0.5s, 1, or 2s can be chosen

Basic type Select type Model VEX5504 06 10 VEX57-10 12 VEX59-14 20 P1 P1 VEX VEX Description Bracket (With bolt and washer) G46-10-01 VEX7-32A VEX5-32A VEX9-32A Air operated External pilot solenoid valve 3(R) 3(R) Pressure gauge 1(P) 3(R) 3(R) 1(P) P2 P2 P3 P1 P1 3(R) 3(R) 3(R) 3(R) 1(P) 1(P) P2 P2 Note) With this valve, the port 3(R) is a supply port and port 1(P) is an exhaust port. 2441

Mitsubishi Electric Corporation Yaskawa Electric Corporation Nil W F R L T B None Axial Right Left Top Bottom 100/115VAC (50/60Hz) G 1 N.C. (B contact) 2 pcs.

SYJA 2(A) 2(A) Standard VZA (P)1 3(R) (P)1 3(R) i VFA 2(A) 2(A) 2(A) 3(R) VFRA o For vacuum (P)1 3(R) (P)1 3(R) VPA4 SYJA X VZA 1(P) VTA For vacuum u y t r e w q VGA VPA VPA VPA3 i 2(A) 3(R) o X Component Parts No.

threads 8 M5 23 12 5 6 10 10 19.5 (R) 12 14 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 19.5 20 26.5 24.5 31.5 26.5 27.5 26 7 14 14 13 24 23 23 46 (R) Applicable tubing 8 14 18 26 21.5 10 17 29 41 24 19 22 M L A 12 46 58 25 H Reference dimension for R threads after installation Connection threads Male Elbow: KPQL, KPGL Applicable tubing (M5) Effective area mm D1 Model L1 TPH TPS A H (width across flats

sub-plate M5 Without sub-plate M5 D B 1 8 Without sub-plate Symbol Base mounted 2 1 8 1 4 Internal pilot VY1D0 (5) Without sub-plate 1 4 4 3 8 1 2 A (3) (3) M5 3(R) 1 8 2(A) 1(P) 1 (3) (3) 1 4 1 4 3 3 8 External pilot 1 2 Body ported 1 2 5 3 4 P1 1 1 VY1B0 (5) 7 1 1 4 1 3(R) 1 4 1 1 2 2(A) 1(P) 9 2 2 Note 3) Only bracket or foot may be mounted.

8 1/4 19.5 17 7 12 M A L H Connection threads 8 M5 23 12 5 6 10 10 19.5 (R) 12 14 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 19.5 20 26.5 24.5 31.5 26.5 27.5 26 7 14 14 13 24 23 23 46 (R) Applicable tubing 8 18 26 21.5 14 10 29 41 24 17 19 22 M 46 58 25 L A 12 H Connection threads Reference dimension for R threads after installation Male Elbow: KPQL, KPGL Applicable tubing (M5) Effective area mm

8 1/4 19.5 17 7 12 M A L H Connection threads 8 M5 23 12 5 6 10 10 19.5 (R) 12 14 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 19.5 20 26.5 24.5 31.5 26.5 27.5 26 7 14 14 13 24 23 23 46 (R) Applicable tubing 8 18 26 21.5 14 10 29 41 24 17 19 22 M 46 58 25 L A 12 H Connection threads Reference dimension for R threads after installation Male Elbow: KPQL, KPGL Applicable tubing (M5) Effective area mm

1 @1 !8 !5 w !9 !0 !7 u !7 w @1 !9 !3 @3 !2 !0 o @0 i A A MX MTS MY CY !4 !3 y e !2 q r t o !6 @0 !4 !1 q !6 i t y e !5 r u !

With gasket is provided as standard. 1/8, 1/4 standard 3/8 standard 1/2 standard Port size Symbol Cylinder side In the side of solenoid valve M5 01 M5 x 0.8 R 1/8 M5 x 0.8 Rc 1/8 Rc 1/4 Note 1) Elbow 02 R 1/4 Rc 3/8 Note 2) 03 04 F01 Rc 3/8 Rc 1/2 G 1/8 G 1/4 Note 1) R 3/8 R 1/2 R 1/8 F02 R 1/4 G 3/8 Note 2) Caution Control F03 F04 U10/32 N01 G 3/8 G 1/2 10-32 UNF NPT 1/8 NPT 1/4 Note 1)

Port size Type Symbol Cylinder side In the side of solenoid valve M5 01 02 03 04 F01 F02 F03 F04 U10/32 N01 N02 N03 N04 Elbow 2 M5 x 0.8 R 1/8 R 1/4 R 3/8 R 1/2 R 1/8 R 1/4 R 3/8 R 1/2 10-32 UNF NPT 1/8 NPT 1/4 NPT 3/8 NPT 1/2 M5 x 0.8 Rc 1/8 Rc 1/4 Rc 3/8 Rc 1/2 G 1/8 G 1/4 G 3/8 G 1/2 10-32 UNF NPT 1/8 NPT 1/4 NPT 3/8 NPT 1/2 Control 0 1 Meter-out Meter-in 15-9-89 16 Construction AS2200

1 t !1 t o y o y u IN(P1) u r IN(P1) r OUT(P2) B A OUT(P2) A B C IN(P1) IN(P1) e C e q w q w VXD23 VXD24 !2 i i !0 !2 A B !0 !1 !1 o t o u B u OUT (P2) w C IN(P1) A r r OUT(P2) IN (P1) e e C w IN(P1) q q VXD27, 28, 29 VXD25, 26 Component Parts Operation When coil !2 is energized, armature assembly !1 is attracted by core i and pilot valve A is open.

Note No. q w e r t y u i o !0 !1 !2 !3 !

l-en load,o f * t__i-r i l u i I I I l ; l 5 t 6 t i ] F ? {C $mies L)(P tleslric Actrfllor$ It|odd $slediru ltleiludl Operating conditions when LXP is used as lifter Working fange to linear bail bearing. Use within allowable thrust. Lateral load allowance zoo T---*J-rf I I T---r -tl l r ) = _ 1 ) , 4 \ t l 1 -;-) 50 to 100 stroke 75 | 2.47 1oo I zJt 125 1 5 0 ' , , e 1'rC ' "; ?

1.75 3 3/4 2.48 4 3/4 325 (3.25) 1 3/4-16 1 1/8 3.9 1 1/2 1 1/2 1/2 7/8 3/8-24 3 3/4 0 1/2 1.57 1.18 2.76 1 1 1 3/8 2.34 4 1/4 2.72 5 5/8 400 (4) 1 3/4-16 1 1/8 4.7 1 1/2 1 1/2 1/2 7/8 3/8-24 4 1/2 0 1/2 1.57 1.18 3.32 1 1 1 3/8 2.34 4 1/4 2.72 5 5/8 Center Trunnion Type NC A1T (MT4 Mounting Style) X130US (in) TD 0.001 0 Bore (in) MM KK A AA B BA C D DD E EA EE G J R TL TM TT UM UV WF Y P

Temp. upper/lower 4 Fig.9-3 limit alarm occurrence 9-1 Alarm 9.2 Alarm indication Blink E R R 1 4 T h e r m o s t a t A l a r m M O D E < S h u t o f f Fig.9-1 Alarm indication in the event ERR14 arises Blink E R R 1 4 P B R a n g e M O D E < 2 . 0 C Fig.9-2 Alarm indication in the event ERR14 arises during PB range setting input Light W R N P V < 2 6 . 6 C # 1 S V 2 5 . 0 C M O D E N

Model r e b m u N A f o t r o P l e d o M g n i t r o P e z i s t r o P B e z i s t r o P A c i r t e M " 2 3 / 5 " 4 " 4 / 1 " 6 " 6 1 / 5 " 8 t r o P A t r o P B h c n I 1 1 M K h c u o t e n O g n i t t i f g n i t t i f h c u o t e n O 0 1 , 6 6 1 / 5 8 8 / 3 0 1 2 / 1 2 1 2 1 M K h c u o t e n O g n i t t i f d a e r h t T P N 0 1 , 6 4 / 1 T P N ) T P ( c R 4 / 1 d a e r h

(Same sunace) (n =2, 4. 6, S .. ) (I = 4 , 8, 12. 1 6'~"),--,-_ "-=,-4" '::J ~".-, ..,( ", = S. 12 ' =-6._) -1 R. Different surfaces 35 110 1 ~ ~N~_~s.