SMC Corporation of America
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Search Results "LQ3E2A-S-3"

) Graph (5) V = 1000 mm/s 3 CXSM CXSL 32 2 Weight m (kg) 25 1 20 0.6 5 10 20 30 40 50 100 Overhang l (mm) 8-28-16 16 Model Selection Series CXS Horizontal Mounting Graph (6) V = Up to 800 mm/s; Up to 10 st Graph (7) V = Up to 1000 mm/s; Up to 10 st 3 3 CXSM CXSL CXSM CXSL 1 1 Weight m (kg) Weight m (kg) 32 32 MX 25 25 MTS 0.1 0.1 20 20 0 0.06 MY 0 20 40 60 80 100 20 40 60 80 100 Overhang

(3) V = 600 mm/s 6 5 3 32 2 Weight m (kg) Weight m (kg) 32 25 25 1 1 20 20 CXSM CXSL CXSM CXSL 0.6 10 20 30 40 50 100 5 0.6 10 20 30 40 50 100 5 Overhang l (mm) Overhang l (mm) Graph (5) V = 1000 mm/s 3 CXSM CXSL 32 2 Weight m (kg) 25 1 20 0.6 5 10 20 30 40 50 100 Overhang l (mm) 8-28-16 16 Model Selection Series CXS Horizontal Mounting Graph (6) V = Up to 800 mm/s; Up to 10 st Graph (7)

Selecting Conditions/Table 1 Vertical Upward facing Downward facing Horizontal l = Eccentric distance l = Distance between the plate and load center of gravity m Mounting orientation m m l = Eccentric distance Maximum load speed V Graph (Slide bearing type) Graph (Ball bushing type) 50 to 200mm/s 201 to 400mm/s 50 to 200mm/s 201 to 400mm/s 50 to 200mm/s 201 to 400mm/s 1 , 2 3 , 4 1 3, 1 4

Selecting Conditions/Table 1 Vertical Upward facing Downward facing Horizontal l = Eccentric distance l = Distance between the plate and load center of gravity m Mounting orientation m m l = Eccentric distance Maximum load speed V Graph (Slide bearing type) Graph (Ball bushing type) 50 to 200mm/s 201 to 400mm/s 50 to 200mm/s 201 to 400mm/s 50 to 200mm/s 201 to 400mm/s 1 , 2 3 , 4 1 3, 1 4

43 44 2 11 9 9 3 11 Conduit terminal DIN terminal Size Port size P Q R S Q R S T 1 1/8 1/8 1/4 3/8 1/8 1/4 3/8 64.5 67 67 67 69.5 69.5 69.5 36 46 44 45 50 48.5 49.5 52.5 55 55 55 57.5 57.5 57.5 99.5 38 47.5 46 47 52 50.5 51.5 68.5 71 71 71 73.5 73.5 73.5 78.5 88.5 87 90 93 91.5 94.5 102 102 102 104.5 104.5 104.5 2 3 12 Direct Operated 2 Port Solenoid Valve Series VXN Air Air Medium vacuum

x 6.525 = 179.1 (N) MY1B 1.4 100 1.4 100 FE M1E MY1H M1E: Moment Z M1Emax (from 4 of graph MY1MW: M1 where 1.4a = 280 mm/s) = 42.1 (Nm) MY1B M1 1 3 1 3 M1E = x FE x Z = x 179.1 x 37.4 x 10 3 = 2.23 (Nm) MY1M Load factor 4 = M1E/M1Emax = 2.23/42.1 = 0.05 M3 MY1C M3E: Moment Y M3Emax (from 5 of graph MY1MW: M3 where 1.4a = 280 mm/s) = 5.7 (Nm) MY1H FE M3E 1 3 1 3 M3E = x FE x Y = x 179.1

at P1 = 0.7 MPa, P2 = 0.5 MPa Effective area at supply side (mm2) S at P1 = 0.7 MPa, P2 = 0.5 MPa Note 3) 5.1 1.9 PA 5.8 2.1 PB Note 3) 12.6 4.5 AEA 12.6 4.5 BEB 1-5-80

Collision speed (mm/s) Collision speed (mm/s) L unit 1000 1000 Air cushion 500 400 300 500 400 300 L unit Air cushion 200 200 1002 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 400 50 Caution Load weight (kg) Load weight (kg) 1.

graph MY1MW: M3 where 1.4a = 280 mm/s) = 5.7 (Nm) FE -X M3E 1 3 1 3 M3E = x FE x Y = x 179.1 x 29.6 x 10 3 = 1.77 (Nm) 20Load factor 5 = M3E/M3Emax = 1.77/5.7 = 0.31 Data 6.

5 4 3 MNB 2 2 CNA 1 100 200 300 400 500 1000 1 100 200 300 400 500 1000 CNS Maximum speed: V (mm/s) Maximum speed: V (mm/s) CLS Graph (6) Graph (3) 0.4 MPa P < 0.5 MPa 0.4 MPa P < 0.5 MPa 1000 1000 CLQ 100 500 400 300 500 400 300 80 MLGP 100 63 200 200 50 40 80 RLQ Load weight: m (kg) Load weight: m (kg) 100 100 63 50 MLU 50 40 30 50 40 30 40 ML1C 20 20 [Example] D10 10 5 4 3 5 4 3 -X 202

Pressure center ON ON OFF Backward OFF OFF OFF Locked stop SOL.A SOL.C SOL.B 0.5 s or more ON OFF OFF Unlocked 0 to 0.5 s ON ON OFF Backward 2) [Vertical] [Load in the direction of rod extension] [Load in the direction of rod retraction] W SOL.C SOL.B SOL.A W SOL.C SOL.B SOL.A 9-7-3 4 Series CNA Specific Product Precautions 3 Be sure to read before handling.

/Vibration resistance 150/30 m/s (45.7/9.1 in/s) Note2) Enclosure Dust proof (IP65 type available) Rated coil voltage 12VDC, 24VDC, 100VAC, 110VAC, 200VAC, 220VAC (50/60Hz) 1 (P) 5 (R1) 3 (R2) 10% of rated voltage Allowable voltage fluctuation 3 position pressure center (A) 4 (B) 2 Coil insulation type Class B equivalent DC1W (42mA), Note 3) DC0.5W (21mA) 24VDC DC1W (83mA), Note 3) DC0.5W

10m 1.5 1 1.5 1 A A m 1000 10 00 mm 1000 15m 15m 3m 3 3 B B 3 20m 20m 5 5m 5 C C 5m 100 100 200 200 300 300 500 500 600 600 700 700 400 400 800 800 900 900 1000 1000 LEFS16 LEFS16 LEFS25 LEFS25 ( R R LEFS32 LEFS32 S S LEFS 40 LEFS 40 LEFB 25 T 6N 1 1 5 00 DIN /O 16 16 25 25 32 1.5m 1 32 1 3 3m 3 5 5 5m ( DC24V ( DC24V A A NPN NPN 6N LECP6/LECA6 6N LECP6/LECA6 ( PNP

NPTF PodLocallon P A B EA EB sP0101/sP01r r 1/B s S sPot0zsP0112 S sP01m/sP0113 1/6 9B S/B S/B s/B S/B sPoto4/sP0114 1/. B B B sPor05/sP011s la S S S Electrictl Conncllons: Class 1 suFplates provide access of alectri(El solenoid leads from the vatue bass inlothe conduitcavitywithinthe sub-platediecasting.

VXS VXB VXE (3) Formula for flow rate When P2 + 0.1 0.5, choked flow P1 + 0.1 293 Q = 120 x S (P1 + 0.1) (3) 273 + T When P2 + 0.1 > 0.5, subsonic flow P1 + 0.1 293 Q = 240 x S (P2 + 0.1) (P1 P2) (4) 273 + T Conversion with sonic conductance C: VXP VXR VXH VXF VX3 VXA S = 5.0 x C(5) Q : Air flow rate[L/min(ANR)] S : Effective area [mm2] P1 : Upstream pressure [MPa] P2 : Downstream pressure

8 / 3 S 3 0 7 0 T 2 Q K 7 1 5 . 9 2 0 3 5 3 8 / 1 S 1 0 9 0 T 2 Q K 2 1 2 . 5 1 2 1 3 2 5 . 4 2 8 2 5 . 8 1 6 6 1 6 1 / 5 4 / 1 S 2 0 9 0 T 2 Q K 4 1 5 . 8 2 0 3 4 2 8 / 3 S 3 0 9 0 T 2 Q K 7 1 5 . 0 3 5 . 1 3 6 3 4 / 1 S 2 0 1 1 T 2 Q K 7 1 9 . 7 1 7 1 5 . 5 2 5 . 9 2 5 . 2 3 1 2 7 9 2 8 / 3 8 / 3 S 3 0 1 1 T 2 Q K 5 . 1 3 5 . 4 3 8 3 2 / 1 S 4 0 1 1 T 2 Q K 2 2 5 . 5 3 5 . 6 3 4 6 4 /

3 Mounting screw Finger assembly MHZL2-D MHZL2-S MHZL2-C MHZL-A1003 MHZL-A1603 MHZL-A2003 MHZL-A2503 Piston assembly wo!0!2!

3 Mounting screw Finger assembly MHZL2-D MHZL2-S MHZL2-C MHZL-A1003 MHZL-A1603 MHZL-A2003 MHZL-A2503 Piston assembly wo!0!2!