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Search Results "53-SY5420-L3-N3-F2"

W W Mey Mep We We L3 A3 L2 A2 Note) Static moment : Moment by gravity Kinetic moment : Moment by stopper collision Max.allowable load:W max.

IEC 11-2 AC200V / 2A DC24V / 2A ( 20V / 3mA) 11-3 ON ON/OFF 3 3 5 ( ) 11-1 IDU Series 11 1 IDX-OM-W029 11 T 11-4 1) 2) 3) 4) 1 2 3 PE L.N: PE: L2 1 2 3 PE L3 L1 LN Alarm Running LN PE PE:Ground LN L1,L2,L3: PE PE M3 6.5mm 2 :1.25mm :17 11-5 3 5-2 IDU55E/75E-23 11-4 IDU Series 11 2 IDX-OM-W029 11 T 11-6 IDU22E-23-T IDU37E-23-T GFCI For Option R GFCI R Operation

San=a1+a2+a31 3.11-10 Air Slide Table Series MXS Allowable load: W (N) Fig.1 Overhang: Ln (mm), Correction value for moment center distance An (mm) Fig.2 Pitch moment Yaw moment Roll moment W My Mp Mr W W W Static moment Dynamic moment L1 A1 L3 A5 L2 A3 CL W Mp Mr My W W MLGC L3 A6 W L1 A2 L2 A4 CNA W Mey Mep CB L2 A4 CV/MVG A2 L3 Work mounting coefficient: K Fig.3 CXW Table mounting CXS

Note 2) ( ): Denotes without sub-plate. 5-2-6 5 5 Port Air Operated Valve Series SYA3000/5000/7000 Series SYA3000: Body Ported Foot bracket SYA3120-F1 C4, N3 C6, N7 2 position single SYA3120(-F2) C4, N3 C6, N7 One-touch fitting (A, B port) M5 x 8 (Pilot port) Applicable tubing O.D.: 4, 1/4" 6, 5/32" Manual override (Non-locking) SA VA 2 2.2 (For manifold mounting) SA 2 3.2 (For mounting

108 M8 connector 51 74 Grommet C [dm 3/(sbar)] b b Cv C [dm 3/(sbar)] Cv Single 46 64 0.47 0.41 0.41 0.13 0.13 0.47 2 position Double M5 x 0.8 M5 x 0.8 0.49 0.46 0.49 [0.39] 0.40 0.44 0.37 0.13 0.12 0.12 0.44 0.47 [0.39] 0.45 Closed center SYJ520--M5 77 119 85 0.43 [0.35] 0.42 0.13 [0.10] 0.12 Exhaust center 75 3 position 0.51 [0.38] 0.14 [0.10] Pressure center 54 73 75 115 58 81 Single 53

VK300-37-2-01 VK300-37-2-02 VK300-37-2-07 VK300-37-4-51 VK300-37-4-06 VK300-37-3-05 VK300-37-3-53 A1 A2 A3 LW06 LW2 LD4 LD8 100 VAC 200 VAC 240 VAC 6 VDC 12 VDC 24 VDC 48 VDC 4-13-3 4 For details about the applicable products conforming to international standards, visit us at www.smcworld.com. 3 Port Direct Operated Poppet Solenoid Valve Series VKF300 How to Order Valves Electrical entry

=L410.5 L5=L111.2 Dotted line: DIN rail mounting (-D) Dimensions n: Station (Max. 20) L n 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 389 759 352 722 315 685 278 648 L1 L2 L3 L4 L5 241 611 204 574 167 537 130 500 93 463 56 426 379 749 342 712 305 675 268 638 231 601 194 564 157 527 120 490 83 453 46 416 412.5 775 375 737.5 337.5 700 300 662.5 261.5 625 225 587.5 187.5 562.5 150 525

VK300-37-2-01 VK300-37-2-02 VK300-37-2-07 VK300-37-4-51 VK300-37-4-06 VK300-37-3-05 VK300-37-3-53 Rated voltage 100VAC 200VAC 240VAC 6VDC 12VDC 24VDC 48VDC Rating symbol A1 A2 A3 LW06 LW2 LD4 LD8 DIN terminal Circuit diagram for connector with light The bushing may be damaged if the tightening torque of 0.8Nm is exceeded.

F2: The force that is ceated by the port A pressure (PA) that passes through the feedback passage and acts on the spool surface, and the spring force. OFF state { A R1 (Exhaust air) P B (Supply air) F1 < F2 condition: See figure q. ON state { { Immediately after turning on F1 > F2: See figure e.

Parameter setting (PLC side) . 53 7.1 SSCNET Setting .53 7.2 Movement amount per pulse .54 7.3 Stroke limit .55 7.4 Operating conditions .56 8. Home position return (PLC) . 57 8.1 Returning to home position .57 9. Positioning operation (PLC) . 58 9.1 Setting of Operation data .58 9.2 Movement MOD .62 10.

-X 20m2 m3 Data Moment (Nm) M1 = F1 x L1 F1 F2 M3 = F3 x L3 F3 M2 = F2 x L2 L1 L2 L3 Maximum Load Weight Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3 1.

Load weight (kg) m1 m2 m3 Moment (Nm) M1=F1 x L1 F1 F2 M3=F3 x L3 F3 M2=F2 x L2 L1 L2 L3 Maximum load weight 1. Maximum allowable load (1), static moment (2), and dynamic moment (at the time of acceleration/deceleration) (3) must be examined for the selection calculations.

Load (kg) m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3 1. Maximum allowable load (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. To evaluate, use a (average speed) for (1) and (2), and (impact speed = 1.4a) for (3).

-X 20m2 m3 Data Moment (Nm) M1 = F1 x L1 F1 F2 M3 = F3 x L3 F3 M2 = F2 x L2 L1 L2 L3 Maximum Load Weight Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.

MY1 HT m2 m3 MY1 W MY1 W Moment (Nm) M3=F3 x L3 F3 F2 M1=F1 x L1 F1 M2=F2 x L2 MY2C L2 L1 L3 Maximum Load Mass MY2 H/HT Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.

L1=(14 x n)+36 10 16 14 10 14 Y W Pressure gauge (Accessory) V X 2 x 4.3 L3=50+R+V L4=50+T+X H H L L S S O O M4 thread hole U U C C P P K K 50 SMC 25 S T R L2=(14 x n)+29 29 55 (Max. 58) Note) U IN IN IN 33 15 14 Note) Max. dimension is the size when the knob is unlocked.

determination F3 D 1.6 x P WB Inclined operation W + WB WV P PV W + WB WV P PV Allowable driving force table (Fn) (n=1,2,3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (COS + SIN) Inclined (Refer to page 5 for vertical operation.)

determination F3 D 1.6 x P WB Inclined operation W + WB WV P PV W + WB WV P PV Allowable driving force table (Fn) (n=1,2,3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (COS + SIN) Inclined (Refer to page 5 for vertical operation.)