05.Z1.F04-1010
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The 05.Z1.F04-1010 EMC filter includes a power loss of 8 watts, an inductance of 11.3 millihenries, and a current capacity of 1.3 amps. Part of the Z1 Sine Wave EMC Filter series by KEB, it has a maximum operating voltage of 550 volts and weighs a total of 0.8 kilograms.
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Product Description:
The KEB EMC filter 05.Z1.F04-1010 is a dependable component for three-phase systems operating at 400 V AC, a maximum voltage of 550 V, and a frequency of 100 Hz. KEB's precise engineering is well-known in industries requiring dependable performance, such as industrial robotics.
The 05.Z1.F04-1010 EMC filter is capable of operating smoothly in challenging conditions, thanks to its minimum current of 1.3 A. The inductance of 11.3 mH effectively reduces harmonic distortions in the power system. The filter is constructed with a wire thickness of 4 mm, which ensures that the current flows smoothly. It is designed to operate efficiently with energy, consuming only 8 W of power during operation. The EMC filter is compact and measures 100 mm in width, 55 mm in height, and 121 mm in thickness. The filter is designed to be easily installed in a variety of settings, thanks to additional measurements such as 80 mm for a1 and 40 mm for a3. Access holes with diameters of 8 mm and 0.2 mm simplify the fitting process.
The KEB EMC filter 05.Z1.F04-1010 is a 0.2 kg copper weight that adds to its overall 0.8 kg weight and makes it stronger and easier to handle. The filter was carefully designed to conform to stringent industry standards. The filter's high reliability and precise specifications ensure that it functions in a consistent manner, that in turn makes industrial automation systems more effective. As a result, KEB makes sure that the product meets the needs of current factories. Worldwide shipping is available, and we offer a one-year replacement guarantee to make sure our customers are happy.
Frequently Asked Questions about 05.Z1.F04-1010:
Q: Why does 05.Z1.F04-1010 have 11.3 mH inductance?
A: The 11.3 mH inductance minimizes harmonic distortions in the power supply. It ensures smoother operation in three-phase systems.
Q: Why is the wire diameter 4 mm² in 05.Z1.F04-1010?
A: The 4 mm² wire diameter ensures durability and efficient current handling. It prevents overheating during continuous operation under load.
Q: How does 05.Z1.F04-1010 reduce power loss to 8 W?
A: The design optimizes energy efficiency with minimal power dissipation. It helps reduce unnecessary energy consumption in connected systems.
Q: Do the compact dimensions of 05.Z1.F04-1010 improve usability?
A: Yes, dimensions like 100 mm width and 121 mm thickness allow easy integration. They save space in confined installations.
Q: Why is 05.Z1.F04-1010 built with 0.2 kg copper weight?
A: The 0.2 kg copper enhances performance through better conductivity. It ensures reliable electrical performance and long-term durability.