SMC Corporation of America
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Search Results "LEFS40S4B-1000-S2"

Crean class Amount of Type Speed recommended vacuum (mm/s) ISO 14644-1 Fed.Std.209D aspiration 6 1000 10 5 100 20 4 10 30 6 1000 50 5 100 60 4 10 70 6 1000 20 5 100 30 4 10 50 6 1000 30 5 100 70 4 10 90 600 11-LEJS40 1200 600 *Please aspirate it from the port on both sides when aspirating 50/min(ANR). Please select "D" about the type. 11-LEJS63 1200 * Based on SMC test condition.

(Between lead wire and the case) 1000 m/s2 300 m/s2 Impact resistance 50 M or more at 500 M VDC (Between lead wire and case) Insulation resistance 1500 VAC for 1 minute 1) (Between lead wire and case) 1000 VAC for 1 minute (Between lead wire and case) Withstand voltage Except magnetic resistant 2-color indication type solid state switch (DP5DWL/P5DWSC).

(with no condensation) Withstand voltage 1000 VAC for 1 min. between whole charging part and case 50 M or more (500 VDC Mega) between whole charging part and case Insulation resistance Vibration resistance 10 to 150 Hz with a 1.5 mm amplitude, max. 98 m/s2, in each X, Y, Z direction for 2 hrs (De-energized) Impact resistance 980 m/s2 in X, Y, Z directions 3 times each (De-energized) Port

50% Stroke 1000 mm Average speed Series (mm/s) 6 10 16 20 25 32 40 40 50 63 80 100 125 140 160 180 200 1000 Perpendicular, upward actuation Horizontal actuation 800 600 400 200 VF3140-03 0 1000 800 600 400 200 VF5144-04 0 With : when using steel piping Front matter 1 Cylinder Speed Chart @ Use as a guide for selection.

Auto Switches Common Specifications Type Reed auto switch Solid state auto switch Leakage current 3-wire: 100 A or less, 2-wire: 0.8 mA or less None Operating time 1 ms or less (3) 1.2 ms Impact resistance 1000 m/s2 (4) 300 m/s2 Insulation resistance 50 M or more at 500 VDC Mega (Between lead wire and case) 1000 VAC for 1 minute (Between lead wire and case) 1500 VAC for 1 minute (1) (Between

Do not drop, bump or apply excessive impacts (300m/s2 or more for reed switches and 1000m/s2 or more for solid state switches) while handling. Although the body of the switch may not be damaged, the inside of the switch could be damaged and cause a malfunction. All models of PNP output type switches do not have built-in short circuit protection circuits.

(Values at the initial period) Vibration resistance: No malfunction occurred in a one-sweep test between 45 and 1000 Hz. Test was performed at both energized and deenergized states in the axial direction and at the right angles to the main valve and armature.

Do not drop, bump or apply excessive impacts (300 m/s2 or more for reed auto switches and 1000 m/s2 or more for solid state auto switches) while handling. Although the body of the auto switch may not be damaged, the inside of the auto switch could be damaged and cause malfunction. 2. Observe the proper tightening torque for mounting an auto switch.

Assuming that the tube I.D. is 2 mm, the piping capacity is as follows: V = p/4 x D2 x L x 1/1000 = p/4 x 22 x 1 x 1/1000 = 0.0031 L (2) Assuming that leakage (QL) during adsorption is 0, find the average suction flow rate to meet the adsorption response time using the formula on page 392.

Impact resistance 100 m/s2 in X, Y, Z directions 3 times each (De-energized) +24 VDC Valve (+) 1 5 Main circuit Material Front case: PBT, Rear case: Denaturated PPE Valve () Not connected 6 2 Weight 50 g OUT 0 V 7 3 *1 Do not use a load that generates surge voltage.

(OUT1: Green, OUT2: Red) IP40 Operating: 0 to 50C, Stored: 10 to 60C (No freezing or condensation) Operating/Stored: 35 to 85% RH (No condensation) 1000 VAC for 1 minute between live parts and case 50 M or more between live parts and case (at 500 VDC Mega) 10 to 150 Hz at whichever is smaller of 1.5 mm amplitude or 20 m/s2 acceleration, in X, Y, Z directions, for 2 hours each 100 m/s2, in

Position data Speed Dwell Auxiliary Model adaptive control 1 1000 1000 80 80 0 0 Speed control 2 2000 2000 100 100 0 0 3 4000 2000 70 60 500 1 4 500 2000 60 70 1000 1 5 2000 80 80 0 0 1000 6 2000 1000 80 80 0 0 Position 7 1000 1000 80 80 0 0 control 8 1000 1000 100 100 0 0 LEC-MR-J3BAT MR-J3BAT 1000 1000 100 100 0 0 (Note 3) CN4 255 2000 2000 80 80 0 0 Position Optional battery (for absolute

V: Power supply voltage Power consumption P: 1000 [W] Q = P = 1000 [W] P Cooling capacity = Considering a safety factor of 20%, Power consumption 1000 [W] x 1.2 = 1200 [W] e Derive the heat generation amount from the output. w Derive the heat generation amount from the power supply output. Output (shaft power, etc.)

Position data Speed Dwell Auxiliary Model adaptive control 1 1000 1000 80 80 0 0 Speed control 2 2000 2000 100 100 0 0 3 4000 2000 70 60 500 1 4 500 2000 60 70 1000 1 5 2000 80 80 0 0 1000 6 2000 1000 80 80 0 0 Position 7 1000 1000 80 80 0 0 control LEC-MR-J3BAT 8 1000 1000 100 100 0 0 MR-J3BAT 1000 1000 100 100 0 0 (Note 3) CN4 255 2000 2000 80 80 0 0 Position Optional battery (for absolute

The product may be damaged or malfunction if it is dropped, bumped or applied with excessive impact (the sensor: 980 m/s2, the amplifier: 98 m/s2). Observe the required tightening torque for mounting a product. If a product is tightened beyond the specified tightening torque, the product, mounting screws, or mounting bracket may be damaged.

(between lead wire and case) 1000 VAC for 1 min.

VAC for 1 min. between live parts and enclosure 50 M or more between live parts and enclosure (at 500 VDC Mega) Insulation resistance 10 to 500 Hz, 1.5 mm or 98 m/s2 amplitude in X, Y, Z directions for 2 hours each Vibration resistance 980 m/s2 in X, Y, Z directions 3 times each (Non energized) Impact resistance Temperature characteristics 2%F.S. or less (Based on 25C: Operating temperature

Note) White (Gray) [Gray]: B side solenoid () White: B side solenoid (+) Example) Lead wire length 1000 mm Example) Lead wire length 1000 mm VQ1170-5LO-C6 AXT661-14A-10 3 pcs. 3 pcs. 3 pcs. 3 pcs. VQ1170N-5LO-C6 AXT661-14AN-10 Connector Assembly Part No. (For DC) Connector Assembly Part No. (For DC) Double solenoid part no.

3280 ft/s2 Insulation resistance 50 M or more at 500 VDC (between lead wire and case) 1000 VAC for 1 min.

1 100 200 300 400500 1000 1500 100 200 300 400500 1000 1500 100 200 300 400500 1000 1500 Piston speed mm/s Piston speed mm/s Piston speed mm/s Load Mass/MY2H (Single axis) MY2H/m1 MY2H/m2 MY2H/m3 60 50 60 60 50 50 30 30 30 20 20 20 Load mass kg Load mass kg Load mass kg MY2H40 MY2H40 MY2H40 10 10 10 MY2H25 MY2H25 MY2H25 5 5 5 4 4 4 3 3 3 MY2H16 MY2H16 MY2H16 2 2 2 1 100 200 300 400500 1000