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.
Static torque calculation Tf = F x L (Nm) Load . g = 9.8m/s2 F: Pressing force (N) : Angular acceleration Load .
Do not drop, bump, or apply excessive impacts (300 m/s2 or more for reed switches and 1000 m/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.
Movement Load : Angular acceleration F: Pressing force (N) T f = F x l (Nm) . 2 = (rad/s 2) Load Static torque calculation t 2 g = 9.8 m/s2 Ts = F x l (Nm) l : Rotation angle (rad) Lever t : Rotation time (S) Axis Rotary actuator Axis Allowable Load Application of the load on the axial direction is tolerated if no dynamic load is generated and the values are within what is shown in the
Movement Load : Angular acceleration F: Pressing force (N) T f = F x l (Nm) . 2 = (rad/s 2) Load Static torque calculation t 2 g = 9.8 m/s2 Ts = F x l (Nm) l : Rotation angle (rad) Lever t : Rotation time (S) Axis Rotary actuator Axis Allowable Load Application of the load on the axial direction is tolerated if no dynamic load is generated and the values are within what is shown in the
Do not drop, bump, or apply excessive impacts (300 m/s2 or more for reed switches and 1000 m/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 switches and 1000 m/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 switches and 1000 m/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 switches and 1000 m/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 switches and 1000 m/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 switches and 1000 m/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 switches and 1000 m/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.
Program P1 P2 P3 P16 S1 S1 S1 S1 S2 S2 S2 S2 Step S32 S32 S32 S32 Following are CEU2s special feature: 1. Predictive Control & Learning Function (Allow High Repeatability and Precision. 0.5mm) With learning function, after every execution, brake point will be amended, according to the deviation of stopping position from setting position.
ON/OFF / / 2 3 3 2 1 2 / -20- 3.3. [] LEC LEC / P.32 5.3 <> NPNPNP LEFS16A-100 NPN <> INPIN []INP ON ON INP ON OFF -21- <> No.1 01 a b c d e f g h i j k a ABSINC No. 1 2 mm/s mm mm/s2 mm/s2 % % mm/s % mm mm mm 0 ABS 250 50.00 3000 3000 0 0 0 100 48.00 50.00 0.50 1 ABS 250 0.00 3000 3000 0 0 0 100 0.00 2.00 0.50 ABS()/ / INC()// b c d e f 00 g h i 100%DC24V 250% j 12
The operating time for D-J51 is 2 ms or less and for D-P4DWL is 40 ms or less. 4) 980 m/s2 for the trimmer type sensor section, 98 m/s2 for the amplifier section.
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.
P4 is selected by the ON/OFF combination of S1 and S2.
Indicator light Standard Conforming to CE Standards Lead wire Oilproof heavy-duty vinyl cable, 6, 0.5 mm2, 2 cores, 300 mm Impact resistance Switch: 1000 m/s2, Connector: 300 m/s2 Insulation resistance 50 Mor more at 500 VDC Mega (between lead wire and case) Withstand voltage 1000 VAC for 1 minute (between lead wire and case) Ambient temperature 10 to 60C Enclosure IEC529 standard
(Error number 5) Blue S1 White Vs Black S2 Set Pressure Range Vs: Power supply 24 VDC 12 to 15 VDC The regulating pressure range, by unit of standard measured pressure, is shown in the table below. One of the preset pressures P1 through P4 is selected by the ON/OFF combination of S1 and S2.
S1 S2 Effective area ratio 2.3 : 1 Pressure loss: Large K M 3 Without nozzle 3 H Pressure Loss of Air Gun Only Effective area (mm2) Upstream side S1: 15 Nozzle side S2: 6.4 D S1 : S2 = 2.3 : 1 Effective area ratio Nozzle size (mm) Number of nozzles Supply pressure Regulator pressure Outlet pressure Pressure loss 3 MS Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco,