09.56.30B-1229 KEB
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The KEB 09.56.30B-1229 is part of the F5 Combivert Axis Drives series and has a rated output capacity of 2.8 kVA with a maximum motor output of 1.5 kW. It accepts an input frequency of 50 or 60 Hz, features a TTL auxiliary signal output type, and supports a UVW encoder interface. This drive has an IP00 protection rating and can be operated up to a site altitude of 3000 meters.
Internal Product Review
The 09.56.30B-1229 is a KEB F5 Combivert axis drive with 3-phase output and a rated output capacity of 2.8 kVA. TTL auxiliary signaling and the UVW encoder interface support clean feedback integration in motion applications. With support for motor output up to 1.5 kW, this drive is a well-balanced option for precise axis control.
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Product Description:
The 09.56.30B-1229 axis drive is produced by KEB within the F5 Combivert Axis Drives series. Designed for closed-loop speed and torque regulation of three-phase induction or synchronous motors, the unit serves as an integral component in industrial automation systems such as conveyors, winders, and process lines. By converting fixed mains power into variable-frequency, variable-voltage output, the drive enables precise motor control for a wide range of machine duties. In closed-loop operation, it can adjust output parameters quickly as load conditions change, helping maintain commanded speed and torque.
This model is rated for a continuous apparent power of 2.8 kVA, meaning the inverter section can supply that volt-ampere load to the motor terminals without thermal derating at nominal conditions. It accepts a supply frequency of 50/60 Hz with a tolerance of ±2 Hz, so the control electronics remain synchronized even when plant mains drift slightly. When paired with two- or four-pole machines, the inverter can deliver up to 1.5 kW of mechanical output, matching small- to medium-frame motors. The power bridge feeds a three-phase output, while the open chassis construction carries a protection level of IP00, which means the unit must be installed in an enclosed panel. Internal measurement circuits monitor phase currents and support vector control algorithms that rely on encoder feedback.
Feedback and auxiliary signaling are handled through a TTL level output that transmits index and fault states, while the primary position data arrive through the UVW incremental channels. The drive supplies these signals to the controller without additional converters, which helps simplify wiring. Site planning must account for thermal performance: continuous operation above 1000 m requires a derate of 1% per 100 m, and functional altitude is limited to 3000 m. This arrangement supports motion systems that depend on consistent position tracking and responsive correction during acceleration, deceleration, and steady-state running.