09.F0.R01-0000 KEB
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The KEB 09.F0.R01-0000 is part of the F0 Combivert Control Cabinets series and features a rated output power of 2.8 kVA with a maximum motor power of 1.5 kW. This unit has a protection rating of IP20 and can be installed at mounting altitudes up to 3000 meters. It weighs 3 kilograms and supports a maximum relative humidity of 95 percent.
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Product Description:
The 09.F0.R01-0000 is a control cabinet produced by KEB in the F0 Combivert Control Cabinets series. It packages a rectifier, DC link, and inverter to drive a single small AC motor from the plant mains. Screw terminals and shield clamps organize field wiring. In an automation line, the unit acts as a decentralized power module, accepting analog speed references from a PLC and returning ready, fault, and enable signals for coordinated motion.
At full operating load, the cabinet delivers 2.8 kVA of apparent power to the motor terminals, while the internal drive section limits mechanical output to 1.5 kW so that machine sizing stays within its thermal envelope. A panel-mounted 0.4 A time-lag fuse protects the 24 V control circuit against inrush and ground faults, and the enclosure carries an IP20 protection grade, indicating finger-safe live parts but requiring installation inside another housing. Despite the integrated filter boards and bus capacitors, the complete assembly weighs only 3 kg, easing overhead installation on machine frames. The reference inputs present high impedances of 500 Ω for current mode and 56 kΩ for voltage mode, which helps minimize sensor loading.
For dependable service in diverse environments, the controller can operate up to 3000 m above sea level and in relative humidity up to 95 % without condensation. Stored energy in the DC link bleeds to a safe level within 5 min, and the required protective earth uses a conductor with a cross-section of 10 mm² to keep touch voltages low during faults. Installation guidelines specify 50 mm of clearance at the front and sides, 100 mm above and below, and a vertical mounting orientation to maintain convection paths. When these spacing rules are observed, heat dissipation stays within limits and reference accuracy on the control inputs remains stable.