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25.Z1.F04-1010

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The 25.Z1.F04-1010 by KEB is a motor choke that reduces electromagnetic interference (EMI) and smooths current in motor-driven systems. With 57 µH inductance, it supports a maximum frequency of 100 Hz for efficient operation.

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Product Description

The 25.Z1.F04-1010 is a motor choke applied to improve motor-driven systems’ performance and energy efficiency. It is commonly used in industrial automation applications. It was designed by KEB which is an automation and drive technology producing company. It is used to eliminate electrical noise and stabilize current so as not to harm the motor and other equipment. This choke model is rated for 0.37 A and is designed to work at 400V standard industrial power systems. It features 57µH of inductance which considerably attenuates high frequency interferences.

This 25.Z1.F04-1010 motor choke has been designed for a maximum motor frequency of up to 100Hz. This allows for stable operation even under varying motor speeds. Measuring 76 x 191 x 144 mm in dimensions the 25.Z1.F04-1010 motor choke can fit into control panels or motor circuits conveniently. The protection class IP00 means that the filter is suitable for use only in indoor conditions and only if it will not be in contact with water. The motor is rated at an operating current of 210A. It can manage the power currents of all motor-driven systems without affecting their efficiency or reliability. Convection air cooling is employed in the unit which further minimizes the requirement for external cooling mechanisms. This basic cooling system plays a part in the longevity of the filter and prevents overheating especially when in use for a long time.

The 25.Z1.F04-1010 motor choke works in a temperature range of -10 + 45°C, thus being suitable for normal working conditions. The choke may be stored at -25°C to 70°C which shows that it may be used in different environments without being affected.  For reduced interference with other electrical equipment, this motor choke is specifically designed to be free from electromagnetic interference (EMI). This makes it possible to operate seamlessly in industrial automation applications.

25.Z1.F04-1010 Technical Specifications

Filter Type: EMC Line Filter
Operational Temp.: -10 ...45 °C
Storage temp.: -25 ...70 °C
Cooling : Convection air
Voltage Class: 200V
Rated Capacity: 0.37 A
Dimensions: 76 x 191 x 144 mm
Enclosure Size: A
protection class: IP00
Max. Motor frequency: 100 Hz
Rating Inductance: 57 µH
Operating Current: 210 A

Frequently Asked Questions about 25.Z1.F04-1010


Q: What is the role of inductance in KEB 25.Z1.F04-1010?

A: The 57 µH inductance in the KEB 25.Z1.F04-1010 helps filter high-frequency disturbances, improving motor system stability and reducing electromagnetic interference (EMI).

Q: How does convection cooling benefit the KEB 25.Z1.F04-1010?

A: The KEB 25.Z1.F04-1010 utilizes convection cooling, eliminating the need for external cooling systems, improving reliability, and reducing maintenance costs.

Q: Why is the protection class IP00 used in KEB 25.Z1.F04-1010?

A: The IP00 protection class of the KEB 25.Z1.F04-1010 indicates it is designed for dry, indoor environments, ensuring safe operation in controlled industrial settings.

Q: How does the KEB 25.Z1.F04-1010 handle motor frequency variations?

A: With a maximum motor frequency of 100 Hz, the KEB 25.Z1.F04-1010 ensures stable operation under variable motor speeds, providing consistent performance across applications.

Q: Why is a temperature range of -10°C to 45°C important?

A: The KEB 25.Z1.F04-1010’s temperature range of -10°C to 45°C ensures reliable operation in typical industrial environments, maintaining performance under varied ambient temperatures.

Internal Product Review

  • ‘‘The KEB 25.Z1.F04-1010 motor choke is an excellent choice for industrial applications. It features a rated operating current of 210 A with a 57 µH inductance and an efficient temperature range of -10°C to 45°C. The choke's simple convection cooling ensures reliability which makes it ideal for automation systems.’’

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