SMC Corporation of America
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Search Results "CLA2D40TN-250-E"

6 @2 r y w t e t @2 u i !0 @0 !5 y !9 ZL6 Without valve or pressure switch, Silencer exhaust ZL6 With valve and pressure switch, Port exhaust @1 !2 !3 !1 !6 !8 !7 q !4 r y w t e t u i @0 !5 y !9 Component Parts No. Description Material Note No.

r e Sample Order Number Port w q w q AP2702S e r FV4 FV4 FV4 FV4 FV4 FV4 FV4 FV4 2PW 3PWQ 4PW 5PWQ MP 4PW 5PWQ 40 40 V3 V3 MPA MPA qIN wOUT eGauge port (Inlet) rGauge port (Outlet) MP=Monitoring gauge port 1) Refer to gauge guide (P.94) for gauge specifications.

'/s stl=0.44 300 (3") ]/s & 1/a st. 1/e &r/l st. 1/e & 1A st. 400 (4) 1/s &1/a st. r/s & 1/a st. 1/e &14 st. Series NCQT Dimensions Spring Extend NCQTBO-OT T Type Bore,, 9t4,F' I 60re ,b,:!

(b) 1) Vb[V] 2) (Ib) Ib = Vb R [A] 3) (E) L lb2 E = 2 [J] 4) (Vi) (Ib)(Vi)(E) (Vi)[V](Vs)[V]Vi ViVs 5) () () = E Vi lb [S] 6) ()N (Ip) (Ip)(Ib) Ip/IbN[] (4) 13 3 13. 13.1.2 ( ) () LE--B S5 S6 S7 S8 50W 100W 200W 400W (1) () (4) DC 24 V 0 -10% [W] at 20 6.3 7.9 (6) [] 91.0 73.0 (6) [H] 0.15 0.18 [N m] 0.32 1.3 (2) [s] 0.03 0.03 (2) [s] 0.01 0.02 1 [J] 5.6 22 [J] 56 220 (5

With control unit Centralized wiring/Supply port left Individual wiring/Supply port right Centralized wiring air catch sensor ISA2-HE41P Terminal box Individual wiring air catch sensor 2 port solenoid valve 2 port solenoid valve ISA2-GE41 Regulator 3 0 3 0 3 0 3 0 3 0 3 0 Supply port Supply port P P P P P P T T T T T T U U U U U U E E E E E E L L L L L L S S S L L L S S S L L L 6 9 6 9 6

EZ VFS1320-E/EZ VFS1420-E/EZ VFS1520-E/EZ Lead wire O.D.

OUT IN OUT IN e q r r w w AR50, 60 AR30, 40 t q t q e e IN OUT IN OUT r w w r Parts list Material Color No.

AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.

Refer to gauge guide (P.94,95). 2P 3P t r t Sample Order Number Port t AK1510S e q 4 4 4 4 w 4 4 4 4 r w w q q 2P 3P 4PL 5PC MPA MPA MPA 1 1 1 0 0 40 e e 4PL 5PC qIN wOUT eExtra bottom port (Outlet) rGauge port (Inlet) tGauge port (Outlet) Specifications AK1502 1 to 30 psig (0.007 to 0.2 MPa) AK1515 5 to 150 psig (0.034 to 1.0 MPa) Select compatible materials of construction for the gas AK1506

F E E F B C Cross interface E: 4-Rc E A F: Without thread D Model Port size A B C D Applicable model Y14-M5 M5 23 16 14 25 AC10 Y24-01 1/8 40 40 22 40 AC20 Y24-02 1/4 Y34-01 1/8 49 43 28 48 AC25, AC30 Y34-02 1/4 Y44-02 1/4 60 48 36 54 AC40 Y44-03 3/8 Cautions in Mounting When mounting a cross interface directly on the IN side of the lubricator, be sure to use a series AKM check valve between

M N C D 4-O T Q 2-P S U W E B K L AA A R X AB I AP Y + Stroke Z + Stroke J V 8-AF AC AD AE 100 piston rod end connection For standard strokes (mm) Bore size (mm) Stroke range (mm) AC G H AB AF AA AE AD F N M D L C K B J AP I A E 63 80 100 75, 100 125, 150 200, 250 300 15 20 depth 14.5 M16 x 2 depth 28 25 25 50 170 13.5 100 66 140 180 30 135 M12 x 1.75 depth 24 228 117 60 65 200 200 15 20

Determination of kinetic energy of load (E) E > Es E Es Bore size determination Tentative determination of L type W V 2 E = () 2 1000 Note 2) E > Es Determination of pressure (P) when making intermediate stop P > Ps P Ps Consider made-to-order products, depending on an operating condition. Tentative determination of L type (For intermediate stops, refer to page 1515.)

E Es Note 3) Bore size determination NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps Note 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

E Es Note 3) Bore size determination NG Determination of allowable stroke (W + WB) V 2 E = x ( ) 2 1000 E Es Note 2) OK Determination of pressure (P) when making intermediate stop Review of order made products based on operating conditions P Ps Note 1) This cylinder cannot perform an intermediate stop using an air pressure circuit in vertical operation.

O F , < F , Q r '=r, @ r,> r, Pressure Raies (P1 =Primary Pressure) (P2=Secondary Pressure) NVEP3l2O-2 NVEP314O-'r -04 Primary Pressure P1 = 45 PSIG (3 KSI/cmr) E t2 I { t r S F g t o o E 28 (r. a ( 1 ) E a E a NVEHtl4O-1 E t ^ *t 6 S (0.15) (0.s) t . 5 ( 0 1 ) F 5 (0.05) NVEE NVEP CONSTRUCTION DETAIL Flow Raie'lvpo: VEF212O (2 Pdts) NVEF:112O (3 Porb) Pressuro llrp: NVEP3I2O (3 Porb) l l

o 0.62 322 1.28 14 oaa {4) 250 u-24 0.50 .621 .621 0.25 0.93 0.38 1t-1E .251 .250 0.75 0.25 0.34 0.75 o.75 o.1a cts16 0.75 120 o.62 3.19 3.8:t 343 t06 {17-l _312 6t-21 0.50 .621 .621 0.38 1 . 1 2 0.38 5t-i E .25r .250 0.75 0.25 o.3a 3.97 o.8a o_aao.24 qi-14 o.75 1.30 0.62 334 1.25 125 t 2 5 t 1 k ) 375 \-24 o.aE .749 .749 o.11 r.32 0.50 .251 o.25 0.41 rt.4 1.06 r.06 0.25 sa-l6 0.46 r.62 0.78

O F , < F , Q r '=r, @ r,> r, Pressure Raies (P1 =Primary Pressure) (P2=Secondary Pressure) NVEP3l2O-2 NVEP314O-'r -04 Primary Pressure P1 = 45 PSIG (3 KSI/cmr) E t2 I { t r S F g t o o E 28 (r. a ( 1 ) E a E a NVEHtl4O-1 E t ^ *t 6 S (0.15) (0.s) t . 5 ( 0 1 ) F 5 (0.05) NVEE NVEP CONSTRUCTION DETAIL Flow Raie'lvpo: VEF212O (2 Pdts) NVEF:112O (3 Porb) Pressuro llrp: NVEP3I2O (3 Porb) l