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Item Description 15 4.5.1 AC Input Wiring Diagram 4.5 AC Input Wiring PneuAlpha Wiring 4 Table 4.2: AC Input Typical Wiring 6 Circuit Protection Device Limit to 1.0 Amps 5 Digital Input Switches 4 Input Terminals 3 Unused Terminals 2 AC Power Terminals 1 AC Power Supply, 100 240V AC~ 50 60 Hz Ref.

Please contact SMC when the AC welding current exceeds 16000 A.

Latching style Latching style AC () () (+) 100V AC, 200V AC 100V AC, 200V AC Reset B C Set Yellow Yellow Blue Red A A Single solenoid (AC) Latching solenoid (AC) COM. Blue Red Blue Red SOL. C C A set A SOL. Reset Gray Gray Single style B C COM SOL. SOL.

24 V, 48 V, 100 V, 110 V, 120 V, 200 V, 220 V, 230 V, 240 V DC 12 V, 24 V Allowable voltage fluctuation 10% of the rated voltage Allowable leakage voltage AC 5% or less of the rated voltage DC 2% or less of the rated voltage Apparent power*4, *5 AC 4.5 VA 8 VA 9.5 VA Power consumption*4 DC 4 W 6 W 8 W Temperature rise*6 AC/DC 70/65C Glossary of Terms Coil specifications *1 Leakage: The value

Auto Switch Specifications PLC: Programmable Logic Controller D-Z80L-900 (Without indicator light) D-Z80L-900 Auto switch model Applicable load Relay, PLC, IC circuit 24 V or less AC DC 100 V AC DC 48 V AC DC Load voltage Maximum load current 40 mA 50 mA 20 mA Contact protection circuit None 1 or less (Including 3 m lead wire) Internal resistance Standard CE marking Lead wiresOilproof heavy-duty

motor (S3) 200 W AC servo motor (S2) 200 to 230 VAC 50/60 Hz AC servo motor (S4) 400 W AC servo motor (S3) Power supply voltage AC servo motor (S6) 100 W AC servo motor (S4) 1 2 100 to 120 VAC, 50/60 Hz 200 to 230 VAC, 50/60 Hz Absolute AC servo motor (S7) 200 W AC servo motor (S6) 100 to 120 VAC 50/60 Hz AC servo motor (S8) 400 W AC servo motor (S7) Pulse input type (For absolute encoder

Changing coils from AC to DC and vice versa is impossible, because of different core shapes. VXP21 0, 22 0, 23 0 are possible to exchange coil from AC to DC, but impossible from DC to AC. (Hum sound may generate because of no shading coil for DC.

A B C D Maximum Speeds for Each Transfer Load Unit (mm/s) Transfer load (kg) 15 20 25 30 1000 1000 930 740 600 500 Model Note LJ1H202PC-500LJ1H202PC-600LJ1H202PC-700LJ1H202PC-800LJ1H202PC-900LJ1H202PC-1000700 700 600 600 500 500 500 500 500 500 500 500 500 500 500 500 500 500 Power supply: 100/110(V)AC 10% Compatible controller: LC1-1B2H1Power supply: 200/220(V)AC 10% Compatible controller

W) High-pressure type (1.0 MPa) K Note 1) Refer to page 381 for power consumption of AC type.

3 e r t r Motor type* Nil Basic type H High precision type Symbol Type Output [W] Actuator size Compatible driver S2 AC servo motor (Incremental encoder) 100 25 LECSA-S1 w Size e Motor mounting position S3 AC servo motor (Incremental encoder) 200 32 LECSA-S3 Nil Top mounting D In-line 25 32 S6 AC servo motor (Absolute encoder) 100 25 LECSB-S5 LECSC-S5 LECSS-S5 S7 AC servo motor (Absolute

(0.4 W) Note 1) Nil Standard (0.95 W) High-speed response type B Note 1) Refer to page 522 for power consumption of AC type.

(0.4 W) Note 1) Nil Standard (0.95 W) High-speed response type B Note 1) Refer to page 522 for power consumption of AC type.

Series AC Modular F.R.L. Unit Series AC Reduction Space-saving design The use of compact spacer with bracket reduces the total assembling space.

(M) VFN 31.7 (For AC) 30.4 (For DC) 15.6 39.1 (For DC) 45.6 (For AC) 40 (Light/Surge voltage suppressor) (Light/Surge voltage suppressor) 26.4 Other dimensions are same as grommet type.

Series AC Modular F.R.L. Unit Series AC Space-saving design Reduction The use of compact spacer with bracket reduces the total assembling space.

NO position Nil position The100V AC, 200V AC, 220V AC, 24V DC, or air pilot type specification can be applied to the control signal.