SMC Corporation of America
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Search Results "LEMHT25LT-300-S3"

This allows for space saving , weight reduction , and a large flow rate . 1 The cylinder speed is 300 mm/s.

T3 = V/a2 = 300/3000 = 0.1 [s] L 0.5 V (T1 + T3) V Time while the actuator is operating at a constant speed T3: Deceleration time [s] T2 = Time from the beginning of the constant speed operation to stop T4: Settling time [s] Time until positioning is completed T5: Resting time [s] Time the product is not running T6: Total time [s] Total time from T1 to T5 300 0.5 300 (0.1 + 0.1) 300

0 100 200 300 0 100 200 300 0 Detection distance (m) Detection distance (m) Detection distance (m) Example 1) When requiring 300m detection, select the detection nozzle of 1.0 with supply pressure 0.2MPa.

m 400 1 m 350 Displayed value 300 5 m 250 200 150 100 50 0 0.5 0.4 0.3 0.2 0.1 0 Actual distance [mm] Nozzle Shape Internal Circuit and Wiring Example ISA3-N NPN (1 output) The nozzle shape must be similar to Fig. 1.

750 20 to 550 10 to 300 Actuator specifications 451 to 500 10 to 600 5 to 300 20 to 900 12 to 600 6 to 300 24 to 800 16 to 650 8 to 325 30 to 750 20 to 550 10 to 300 501 to 600 20 to 900 12 to 540 6 to 270 24 to 800 16 to 650 8 to 325 30 to 750 20 to 550 10 to 300 601 to 700 20 to 630 12 to 420 6 to 230 24 to 800 16 to 620 8 to 310 30 to 750 20 to 550 10 to 300 Parallel Stroke range

0 50 15 0 250 350 40 0 300 0 50 150 250 350 350 (1,2 [%]) (1,2 [%]) b a 1. ()30r/min100% 2. 300%350%LE-T10.1 10 3 10. 10.2 (1) 10.1 10.1 1 (1) (2) [W] 2] [m [kVA] LECSS2-T5 LE-T50.3 25 15 0.5 LE-T60.3 25 15 0.5 LECSS2-T7 LE-T70.5 25 15 0.5 LECSS2-T8 LE-T80.9 35 15 0.7 LECSS2-T9 LE-T91.3 50 15 1.0 1. . 2

A Controller type Motor type Power supply voltage Symbol Type AC servo motor (S2) Capacity Encoder LECSA1-S1 LECSA1-S3 LECSA2-S1 LECSA2-S3 LECSA2-S4 LECSB1-S5 LECSB1-S7 LECSB2-S5 LECSB2-S7 LECSB2-S8 AC servo motor (S2) 100 to 120 VAC 50/60 Hz S1 S3 S4 S5 S7 S8 100 W B Pulse input type (For absolute encoder) AC servo motor (S3) Pulse input type (For incremental encoder) Incremental AC servo

Metal Seal, Rubber Seal 3 port solenoid valve Series VQZ200/300 Piping specifications Solenoid valve Port size Effective area (mm2) (Cv) Flow characteristics C (dm3/(sbar)) VQZ215 VQZ235 VQZ225 VQZ245 VQZ315 VQZ335 VQZ325 VQZ345 1.7 2.3 1.7 2.5 3.0 4.5 2.9 4.4 VQZ 200 1 8 1 4 , Base mounted (With sub-plate) VQZ 300 , 1 4 3 8 Base mounted 3 port solenoid valve Series VK Compact size: Width

EX300-TMB1For models of Mitsubishi Electric Corporation EX300-TTA1For OMRON EX300-TFU1For Fuji Electric EX300-T001General purpose T units have 32 control points per unit No. of output points, 16 points Master station PLC made by Mitsubishi Electric Corporation Series MELSEC-A AJ71PT32-S3, AJ71T32-S3 A1SJ71PT32-S3 Max. 64 stations, connected to remote I/O stations (Max. 512 points).

Master station PLC made by Mitsubishi Electric Corporation Series MELSEC-A AJ71PT32-S3, AJ71T32-S3 A1SJ71PT32-S3 Max. 64 stations, connected to remote I/O stations (Max. 512 points). No. of output points, 16 points. No. of sta. occupied, 2 stations T unit Can be connected with PLC I/O card for serial transmission.

Terminal name Details 1 L+ +24 V 2 NC N/A 3 L 0 V 4 C/Q IO-Link signal 145 DIN rail mounting adapter LEC-3-D0 * With 2 mounting screws Conversion cable P5062-5 (Cable length: 300 mm) This should be used when a DIN rail mounting adapter is mounted onto a screw mounting type controller afterwards. 300 DIN rail AXT100-DR* For , enter a number from the No. line in the table on page 603-8.

Station Address S1 S2 00H to 02H: Disabled 0 0 to 2 (Do not use these addresses.) 03H (Factory setting) 0 3 04H 0 4 EFH E F F0H to FFH: Disabled F 0 to F (Do not use these addresses.) (2) Settings of the DIP Switch S3 The following table shows the settings of the DIP switch (S3). Switch No.

*Refer to the table of Applicable stroke 6mm 6mm 8mm 8mm 10mm 10mm B B Cable type *Applicable stroke Standard produced upon receipt of order Without cable Nil Without cable Nil 100 100 200 200 300 300 400 400 500 500 600 600 700 700 800 800 900 900 1000 1000 Robotic type cable R Robotic type cable R 11-LEFS25 11-LEFS25 Standard cable S Standard cable S 11-LEFS32 11-LEFS32 Motor cable

P1 Sensor S1 S3 S2 S4 P2 S1, S2: Fix orifice S3: Variable orifice (adjusted by setting dial) S4: Detection nozzle 16-8-6 7 Series ISA2 Air Catch Sensor Internal Circuit and Wiring Circuit and Wiring for 2 Port Solenoid Valve NPN open collector output DC (+) Without indicator light DC circuit Without display light AC Circuit OUT Main circuit of switch Main circuit of switch Load 1 DC (+) 1

EXH port P1 SUP port Sensor S1 S3 S2 S4 P2 Detection port S1, S2: Fix orifice S3: Variable orifice (adjusted by setting dial) S4: Detection nozzle 868 A Air Catch Sensor Series ISA2 Wiring Individual wiring Centralized wiring Terminal block 1: Brown 2: NC 3 0 1 2 3 4 Brown Blue Black DC (+) NC DC () OUT ZSE30 ISE30 OUT 1 OUT 2 OUT 3 OUT 4 OUT 5 6 9 3: Blue DC () NC DC (+) OUT 6 ZSE40 ISE40

200 100 1500 1000 500 400 300 200 100 1500 1000 500 400 300 200 100 MY3B max.

(Lead wire length) Approx. 300 33.1 48.5[55.5] Refer to page 563 for dimensions with connector cable.

D. *2 (4) S troke [mm] Standard Produced upon receipt of order 300 200 400 500 600 700 800 900 1000 1200 1500 Str o k e (m m ) Ty pe LEJS40 LEJS63 *2Strok es other than standard and produced up o n receipt o f order are available as special orders, so plea s e contact with our com pany . (9) Driver type *4 (7) Cable type *4 *5 *6 Com patible driv er P owe r supply v oltage [V ] Without

Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.

Threaded porb Builtln onelouch fttina r @Actuation Lerge bore sire Double acting Single rodl 0 lo 300 Double rod 101o 300 Long sbgke Double acdng Single rod125lo300 Ar i.latral load Dorrble acling Singls rod o32 to 040/5 io 100 050 to otoofi0 b 1m of auto switches Hffi l{on.roiating rod Doubleactng Single rod o12, 016/5lo 30 a2O, 025/5Io aA aP., o4A5 b 1O0 o50, 06?