G13G02ADM63K4TS KEB
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The KEB G13G02ADM63K4TS is part of the SM Synchronous Servo Motors series and is designed for continuous S1 duty. It has a rated power of 0.12 kW, a rated current of 0.47 A at 400V 50Hz, and operates with an efficiency of 59.1 percent at that voltage and frequency. The servo motor features a protection class of IP54 and supports a maximum ambient temperature of 40 degrees Celsius.
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Product Description:
The G13G02ADM63K4TS is a synchronous servo motor built by KEB for the SM Synchronous Servo Motors series. As a compact AC machine, it provides closed-loop position and velocity control for packaging stations, pick-and-place gantries, indexing tables, and small conveyor sections. The motor converts electrical energy into rotary motion with tight speed regulation, making it suitable for light-duty automation where precise synchronization with sensors and actuators is required. Its mechanical frame, thermal rating, and electrical constants align with KEB servo inverters, allowing straightforward integration into multi-axis drives used in machine tools and assembly cells.
During continuous S1 duty, the motor delivers 0.12 kW of power while drawing 0.47 A from a 400 V, 50 Hz source. Its nominal speed is 3000 rpm, and it has a breakdown torque ratio of 2.4. Starting torque reaches 2.1 times the nominal value, while starting current reaches three times the steady-state value. The laminated rotor limits inertia to 2.1 kg·cm², enabling rapid reversals during short positioning cycles. The aluminum housing has an IP54 protection rating, guarding the internal components against limited dust ingress and water spray. A keyed steel shaft measuring 11 × 23 mm transmits torque to couplings or gearheads.
At nominal operating conditions, the motor has an efficiency of 59.1% and a power factor of 0.61. These values assist with sizing upstream converters and calculating heat dissipation inside control cabinets. Continuous operation is permitted at ambient temperatures up to +40 °C, and the unit can be installed at elevations as high as 1,000 m without derating. Its internal cooling path removes heat generated during operation without requiring an external cooling circuit. A thermal relay disconnects power if the winding temperature rises beyond the permitted level, protecting the motor when load conditions fluctuate.