07.F5.M1D-3BDA KEB
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The KEB 07.F5.M1D-3BDA is part of the F5 Combivert Axis Drives series and is designed for use with 3-phase asynchronous motors. It features a 3-phase 400V AC/DC input supply, a rated power of 0.75 kW, and supports closed loop field-oriented control. This drive has a maximum current of 4.7 Amps, a rated current of 2.6 Amps, and includes an LCD operator interface with Serial and CAN communications.
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Product Description:
The 07.F5.M1D-3BDA axis drive is produced by KEB and belongs to the F5 Combivert Axis Drives series. It is intended for integration into industrial automation cells. The drive modulates the voltage and frequency supplied to three-phase induction motors, enabling precise speed and torque regulation for conveyors, extruders, and positioning modules. Its closed-loop control provides the responsive motor operation required for applications with changing speeds, loads, or motion commands.
The inverter is powered by a 3-phase 400 V AC/DC supply, and its power stage provides a continuous motor output of 0.75 kW. Under nominal load, the controller delivers a motor line current of 2.6 A, while the power stage can supply up to 4.7 A for limited periods to overcome inertia or friction. A carrier frequency of 16 kHz reduces motor noise and improves current resolution during speed and torque regulation. The controller translates torque commands into the electrical signals required by a three-phase asynchronous motor. Version D includes an internal braking transistor that directs regenerated energy to an external resistor during rapid deceleration. An LCD operator panel provides local access to operating values and drive settings. Serial and CAN connections support communication with compatible control equipment, while a peak output display shows maximum operating values. The standard air-cooling arrangement removes heat from the power electronics without requiring a liquid cooling circuit. Conformal varnish protects the power section against moisture and airborne contaminants commonly present in industrial enclosures.
Field-oriented vector control remains active during short-term overload conditions, allowing the drive to sustain current at 180% of the rated value. A separate protective trip activates when current reaches 216% of the rated value, safeguarding the power semiconductors against prolonged faults or excessive loading. These current thresholds permit brief acceleration demands while preventing damaging thermal stress within the inverter. Feedback is accepted through an encoder interface with incremental input and output channels. The interface allows differential encoder signals to reach the drive for closed-loop regulation and to be forwarded to a supervisory controller. This arrangement supports coordinated motion systems that require both local motor feedback and access to position or speed signals at a higher control level.