10.F5.C1D-3B0A KEB
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The KEB 10.F5.C1D-3B0A is part of the F5 Combivert Axis Drives series and supports 3-phase 400 V AC input with a rated output power of 4.0 kVA. This drive features conformal coated and standard cooling, a housing type D, and includes a braking transistor with a max braking current of 10 A. It delivers a rated output current of 4.8 A and peak current of 10.4 A for 30 seconds.
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Product Description:
The 10.F5.C1D-3B0A is an axis inverter from KEB that belongs to the F5 Combivert Axis Drives series. It supplies controlled voltage and frequency to a connected motor, enabling speed and torque regulation in industrial automation systems such as conveyors, feed rollers, and gantries. The module mounts directly in a control cabinet and provides the connection points required for line power, motor leads, and control signals without increasing panel depth. Its cabinet-mounted design keeps power and control wiring accessible while separating the inverter from moving machine components.
The drive accepts three input phases and a nominal supply of three-phase 400 V AC. Under this line condition, it draws 6.7 A and delivers a continuous output current of 4.8 A to the motor terminals. That output corresponds to a power capability of 4.0 kVA, matching motors up to 3 HP when efficiency and power factor are within typical ranges. Pulse-width modulation operates at 16 kHz, placing the primary switching tone above the range most people can hear while providing smooth motor-current control. The inverter uses size code 10 and housing type D, which determine its mounting-hole pattern and internal busbar spacing.
Dynamic stopping energy is routed through the integrated braking transistor, and the circuit permits a discharge current of 10 A when the external resistor has a resistance of at least 82 ohms. To prevent damage, the current sensor triggers an overcurrent trip at 12.5 A, while the drive tolerates short overloads up to 10.4 A for 30 seconds to support acceleration peaks. The heat sink can operate at temperatures up to 90 °C, after which derating or shutdown is required. Because no feedback interface is installed, the unit is intended for open-loop V/f or sensorless vector control. The conformally coated electronics are protected against conductive contaminants, and heat is removed through the standard cooling path under typical cabinet airflow.