10.Z1.F04-1010 KEB
Wake Industrial LLC is not an authorized distributor of this product.
The KEB 10.Z1.F04-1010 is part of the Z1 Sine Wave EMC Filters series, designed for use in 3-phase systems with a rated current of 5.8 Amps and a rated voltage of 400 VAC. It supports a maximum operating voltage of 550 V, offers an inductance of 2.06 mH, and has a conductor size of 4 mm². The unit has an output frequency range of 0 to 100 Hz, a switching frequency of 2 kHz, and weighs 1.4 kilograms.
Internal Product Review
The 10.Z1.F04-1010 is a KEB sine wave EMC filter built for improving output quality in inverter-driven systems. The 400 VAC rating and 5.8 A current capacity make the filter well matched for smaller drive installations. A 2.06 mH inductance supports smooth waveform conditioning, and the 0 to 100 Hz output range is a strong fit for controlled industrial operation.
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Product Description:
The 10.Z1.F04-1010 sine-wave electromagnetic compatibility filter is produced by KEB as part of the Z1 Sine Wave EMC Filters series. Installed between a pulse-width-modulated drive and its motor, the unit converts the steep switching waveform into a near-sinusoidal voltage, reducing motor insulation stress and cable-borne emissions in automated machinery. This waveform conditioning also helps limit voltage peaks at the motor terminals and supports cleaner electrical operation on longer motor leads.
For cabling, the filter accepts conductors up to 4 mm², which supports common low-current wiring used between drives and motor circuits in compact panels. Its winding set presents an inductance of 2.06 mH; this reactance smooths the high-frequency components generated by inverter edge rates. The product is rated for continuous operation at 400 VAC, matching the common line-to-line voltage of standard European three-phase supplies, and it carries a nominal load of 5.8 A. Downstream equipment can be driven across an output window of 0–100 Hz, so motors running at base speed or at low-frequency creeping speeds still receive a cleaner voltage shape. Compatibility with inverter carriers up to 2 kHz helps the inductive core operate properly at typical switching rates and at higher carrier settings used to reduce audible motor noise.
The electrical margin extends to a maximum operating potential of 550 V, providing headroom for regenerative overshoots or normal supply tolerance. Core losses and copper dissipation sum to 17 W under rated conditions, and this heat value helps determine the amount of ventilation needed inside the enclosure. Designed for 3-phase systems, the coil topology maintains balanced impedance across all conductors, which helps reduce both differential and common-mode noise. The assembly weighs 1.4 kg, making it suitable for direct DIN-rail or back-panel mounting without additional structural reinforcement.