P16 S1 S1 S1 S1 S2 S2 S2 S2 ... ... ... ... S32 S32 S32 S32 0.5mm) 1 2 2. 3.
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.
Caution Do not drop, bump or apply excessive impacts (300m/s2 or more for reed auto switches and 1000m/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.
Do not drop, bump or apply excessive impacts (300m/s2 or more for reed auto switches and 1000m/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. Do not carry a cylinder by the auto switch lead wires. Never carry a cylinder by its lead wires.
Do not drop, bump or apply excessive impacts (300m/s2 or more for reed auto switches and 1000m/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. Do not carry a cylinder by the auto switch lead wires. Never carry a cylinder by its lead wires.
Do not drop, bump or apply excessive impacts (300m/s2 or more for reed auto switches and 1000m/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. Do not carry a cylinder by the auto switch lead wires. Never carry a cylinder by its lead wires.
Warning Do not drop, bump or apply excessive impacts (300m/s2 or more for reed auto switches and 1000m/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.
Warning Do not drop, bump or apply excessive impacts (300m/s2 or more for reed auto switches and 1000m/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. Observe the proper tightening torque for mounting an auto switch.
. -3No.LEY*-OMZ0010 1Rod type / LEY Series 1.1 Specification Model LEY 25E-X8 LEY 32E-X8 LEY 40E-X8 (3000 [mm/s2]) 20 40 60 30 45 60 50 60 80 Horizontal Work load [kg] Note1) (2000 [mm/s2]) 30 55 70 40 60 80 60 70 90 Vertical (3000 [mm/s2]) 7 15 29 10 21 42 12 26 52 Pushing force [N] Note2) Note 3) Note 4) 63 to 122 126 to 238 232 to 452 80 to 189 156 to 370 296 to 707 132 to 283 266 to 553
/s2 (Without pressure sensor and pressure switch, With pressure sensor) Impact resistance Note 2,3) 100m/s2 (With pressure switch) Standard CE, RoHS Note 1) The characteristics are satisfied when tested for 2 hours in each of the X, Y and Z directions at 10 to 500 Hz without energization.
switch) 150m/s2 (Without pressure sensor and pressure switch, With pressure sensor) Impact resistance Note 2,3) 100m/s2 (With pressure switch) Standard CE, RoHS Note 1) The characteristics are satisfied when tested for 2 hours in each of the X, Y and Z directions at 10 to 500 Hz without energization.
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. 2. Do not carry a cylinder by the auto switch lead wires. Never carry a cylinder by its lead wires.
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.
Do not drop, or apply excessive impact (980m/s2) while handing. Although the body of the sensor may not be damaged, the internal parts of the sensor could be damaged and lead to a malfunction. 2. The tensile strength of the cord is 49N. Applying a greater pulling force on it can cause a malfunction. When handling, hold the body of the sensor do not dangle it from the cord. 3.
Do not drop, bump, or apply excessive impact (100 m/s2) while handling. Although the body of the controller case may not be damaged, the inside of the controller could be damaged and cause malfunction. 2. The tensile strength of the power supply/output connection cable is 50 N; that of the pressure sensor lead wire with connector is 25 N.
Note 4) Kit/Electrical entry/Cable length F P kit (D-sub connector) kit (Flat ribbon cable connector) Note 1) 26P 26P Note 1) Note 1) 25P Side entry Top entry Side entry Top entry Note 1) 25P Connector entry direction Top entry Side entry Connector entry direction Top entry Side entry U0 U1 U2 U3 P. 2-4-76 P. 2-4-78 U0 U1 U2 U3 S0 S1 S2 S3 S0 S1 S2 S3 Without cable With cable (1.5 m) With
Refer to page 4-18-4.) 15 or less Max. operating frequency (Hz) 10 Non-locking push type, push-turn locking slotted type, push-turn locking lever type Manual override (Manual operation) Individual exhaust for the pilot valve, common exhaust for the pilot and main valve Pilot exhaust method Body ported Lubrication Mounting orientation Shock/Vibration resistance (m/s2) Note 2) Not required
Auto Switches Common Specifications Type Reed auto switch Solid state auto switch 1 ms or less 1.2 ms Operating time 300 m/s2 1000 m/s2 Impact resistance 50 M or more at 500 VDC Mega (Between lead wire and case) Insulation resistance 1500 VAC for 1 minute (Between lead wire and case) 1000 VAC for 1 minute (Between lead wire and case) Withstand voltage 10 to 60C Ambient temperature IEC60529
in X, Y, Z directions for 2 hrs. each (De-energized) 100 m/s2 in X, Y, Z directions 3 times each (De-energized) 2% F.S.
Conversion example for a 8[mm] lead actuator driven at an acceleration of 3000 [mm/sec2] Acceleration/Deceleration time constant (ms) = {3000 (r/min) 60 (S) } 8 (mm) 1000 3000 (mm/s2) Rated Motor Rotation Speed (mm/s) Acceleration time constant/deceleration time constant (ms) = {Rated rotation speed (r/min) 60 (S) } x screw lead (mm) x 1000 Acceleration/deceleration speed (mm/s2) *Note)