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SI Unit (Safety Communication) EX260 PS1 F Series Part no.

P/E port entry on one side or Top ported Plug wEX260 SI unit EX260 Note) It can be selected only if no symbol or S or V or B is selected for the pilot and the piping.

<EX260-SEC1/-SEC2/-SEC3/-SEC4> Fieldbus interface connector layout 6 RUN L/A IN L/A OUT PWR(V) PWR BUS OUT: M12 4-pole Socket D-coded 1 No.

Calculating Acceleration/deceleration conversion example using an actuator with a 8 [mm] lead with an acceleration of 3000[mm/sec2].

Calculating Acceleration/deceleration conversion example using an actuator with a 8 [mm] lead with an acceleration of 3000[mm/sec2].

Calculating Acceleration/deceleration conversion example using an actuator with a 8 [mm] lead with an acceleration of 3000[mm/sec2].

Type: Wireless System, Communication Protocol: EtherCAT, Output Format: NPN (Positive Common), Type: SI Unit, Number of Inputs/Outputs: -, Disconnection Detection: -, Connector: -, Mounting Method: -, Dimension: -, Option: -

common) Number of outputs 32 outputs (8/16/24/32 outputs selectable) Load Solenoid valve with surge voltage suppressor 24 VDC, 1.5 W or less (SMC) Power supply 24 VDC, 2 A Fail safe HOLD/CLEAR/Forced power ON Protection Short-circuit protection Enclosure IP67 (Manifold assembly) Standards CE marking, UL (CSA), RoHS recognition Weight 0.6 lbs (300 g) SI Unit (EX600-SECl) EX600-SEC1 EX600-SEC2

ALF900 ALT-5 ALT-5-ISALT-9 ALD 1 2 ALT-9-IS1 2 4 1 2 1 1 1 1 2 4 1 4 3 2 1 4 1 4 3 AIR: OIL : Port size ALB 8 3 8 3 1 Fluid Proof pressure Max. operating pressure Air 1.5 MPa LMU 0.7 MPa 1.0 MPa ALIP Operating pressure differential range (Difference between tank pressure and line pressure) (Note 1) 0.1 to 0.6 MPa AEP HEP Vibration resistance (Pressure differential 0.3 MPa) 1 G (9.81 m/sec2

AP1602 1 to 30 psig (0.007 to 0.2 MPa) AP1606 2 to 60 psig (0.014 to 0.4 MPa) Operating Parameters Delivery pressure Gas Vacuum to 100 psig (0.7 MPa) Vacuum to 3500 psig (24.1 MPa) Source pressure Proof pressure (Inlet) Burst pressure Ambient and operating temperature Cv 4000 psig (27.6 MPa) 8000 psig (55.2 MPa) 40 to 160F (40 to 71 C) (No freezing)1) 0.13 2 x 10-11 Pam3/sec 2 x 10-10 Pam3/sec2

End plate bracket (EX600-ZMA2) 6 12 EX600-SEC1 / EX600-SEC2 Displays the status of the power supply voltage for control and input. PWR Displays the status of the power supply voltage for outputs. Wiring PWR(V) Thank you for purchasing an SMC EX600 Series Fieldbus system.

pressureOperating pressure differential range(1) (Difference between tank pressure and line pressure)Vibration resistance(Pressure differential 0.3 MPa)Min. operating flow(2)(l/min (ANR))(3)Bowl capacity (cm3)(Capacity between levels)Recommended lubricantAmbient and fluid temperatureBowl materialWeight (kg)Accessory (Standard)Auto feed lubeALF4001 43 81 2Air1.5 MPa0.7 MPa0.1 to 0.6 MPa1 G (9.81 m/sec2

pressureOperating pressure differential range(1) (Difference between tank pressure and line pressure)Vibration resistance(Pressure differential 0.3 MPa)Min. operating flow(2)(l/min (ANR))(3)Bowl capacity (cm3)(Capacity between levels)Recommended lubricantAmbient and fluid temperatureBowl materialWeight (kg)Accessory (Standard)Auto feed lubeALF5003/41Air1.5 MPa0.7 MPa0.1 to 0.6 MPa1 G (9.81 m/sec2

pressureOperating pressure differential range(1) (Difference between tank pressure and line pressure)Vibration resistance(Pressure differential 0.3 MPa)Min. operating flow(2)(l/min (ANR))(3)Bowl capacity (cm3)(Capacity between levels)Recommended lubricantAmbient and fluid temperatureBowl materialWeight (kg)Accessory (Standard)Auto feed lubeALF6001Air1.5 MPa0.7 MPa0.1 to 0.6 MPa1 G (9.81 m/sec2

Stoppage Figurc 2 ,aQgrc' Dury latio = (l+3)/(1+0:+3+2) X 100.76% tlEDlri0 [C[At0n$ lfi[stic th|iHlAll0|lnm0 / AflE 00ll0di0[ W: Applicable load weighl (kg) L1, L2: Overhang digtance to the center of gravity of work (mm) ar Acceleraiion ot wofk (mm/sec2) Me: Kinetic momenl Rolling to center ot range shown Table receives moment from each direction according gravity of work.

Calculating Acceleration/deceleration conversion example using an actuator with a 8 [mm] lead with an acceleration of 3000[mm/sec2].

Calculating Acceleration/deceleration conversion example using an actuator with 8 [mm] lead with an acceleration of 3000[mm/sec2]. Speed at a rated motor rotation of 3000rpm Accel.

Calculating Acceleration/deceleration conversion example using an actuator with a 8 [mm] lead with an acceleration of 3000[mm/sec2].

Calculating Acceleration/deceleration conversion example using an actuator with a 8 [mm] lead with an acceleration of 3000[mm/sec2].