07.F5.EDD-YM00 KEB
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The KEB 07.F5.EDD-YM00 is part of the F5 Combivert Axis Drives series and operates with a sensorless closed loop control mode. It supports three input phases and has a rated input voltage of 400 V AC with a rated output power of 1.8 kVA. This drive offers a peak output current of 4.7 Amps and can handle a maximum motor power of 0.75 kW.
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Product Description:
The 07.F5.EDD-YM00 is an axis drive from the F5 Combivert Axis Drives series manufactured by KEB. It is used in industrial automation to regulate three-phase induction or synchronous motors without an encoder, employing a sensorless closed-loop control mode to maintain speed and torque accuracy. This method allows the drive to estimate motor behavior from electrical values, which supports stable operation in applications that do not require direct position feedback. The housing is size D, and the unit connects through a 1.5 mm² motor cable and three input phases so it can integrate with standard 400 V distribution networks that feed motion axes on packaging lines, material-handling stations, and similar machinery.
The drive accepts a nominal supply of 400 V AC while drawing a rated input current of 3.6 A. Under these conditions, it delivers a continuous output current of 2.6 A, providing up to 1.8 kVA of apparent power to the connected motor. For short acceleration bursts, the inverter can supply a peak output current of 4.7 A, and an overcurrent trip is set at 5.6 A to protect the semiconductors. Motor operation is supported down to a minimum full-load frequency of 6 Hz, so low-speed conveying tasks remain controllable without feedback. The drive does not include an encoder feedback card, which keeps the wiring arrangement simpler when absolute position information is not required.
The drive permits a maximum heat-sink temperature of 90 °C, and it dissipates 90 W as heat while operating within that limit. Motor ratings up to 0.75 kW are supported when proper cooling airflow is maintained. A main line fuse no larger than 16 A should be fitted to safeguard upstream cabling, and instantaneous trips coordinate with the drive’s electronic monitoring. Switching devices inside the inverter operate at a carrier frequency of 16 kHz, which minimizes audible noise and improves current waveform quality for the motor. This also helps the connected motor run more smoothly during variable-speed operation.