FC-202N132T7135N4881

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This Danfoss drive integrates a Class A1 RFI filter that minimizes electromagnetic interference. The filter ensures clear signal transmission and stable performance in complex environments. Designed for optimal operation, the FC-202N132T7135N4881 enhances system reliability while supporting compliance with industry standards. Its advanced design contributes to overall operational excellence and longevity.

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Product Description:

FC-202N132T7135N4881 is a specialized drive controller from a leading supplier Danfoss. It belongs to the top-reviewed VLT FC 202 AQUA Drives series which is mainly designed for water pump applications. This component delivers reliable performance through a sturdy design intended for continuous commercial use. The unit operates on a 3‑Phase power supply and accepts an input voltage of 230 V, ensuring steady power delivery. This Aqua drive variant is developed for precise regulation and smooth integration into contemporary automated systems. Every feature of this Danfoss module is engineered with care and tested for standard quality.

This component features a rated load> of <<2 HP that enables efficient operation for small water pumps. As a frequency inverter drive, it adjusts motor speeds accurately to meet varying load demands. Its back-channel cooling system actively dissipates heat during extended periods of use. With a robust power rating of 132 kW (150 HP), the controller module supports heavy-duty industrial tasks. Additionally, a continuous current of 131 AMP delivers ample energy during peak operation. This technology optimizes energy consumption while reducing system stress.

The FC-202N132T7135N4881 model delivers advanced electromagnetic interference protection with a Class A1 RFI filter that ensure clear signal transmission. The drive incorporates a Graphical Local Control Panel that simplifies adjustments and diagnostics elements. Its IP20 chassis enclosure offers dependable safeguarding against dust and minor impacts in controlled settings. Each feature is crafted to enhance performance while reducing downtime. The integration of these elements supports seamless system connectivity and operational consistency, resulting in exceptional overall performance during continuous operation.

Control Panel
Graphical Local Control Panel (LCP)
Cooling Type
Back-channel cooling
Current
131 AMP
Enclosure
IP20 / Chassis
Input Voltage
230 V
Number Of Phases
3-Phase
Power Rating
132 kW / 150 HP
Rated Load
2 HP
RFI Filter
Class A1
Type
Frequency Inverter Drive

Frequently Asked Questions about FC-202N132T7135N4881:

Q: Does the drive automatically adjust to voltage fluctuations without manual recalibration?

A: The drive is engineered to automatically compensate for voltage changes which minimizes the need for frequent recalibration. FC-202N132T7135N4881 exhibits stable performance even under varying electrical conditions.

Q: How does FC-202N132T7135N4881’s rated load impact its energy consumption?

A: The rated load of 2 HP enables the drive to operate within an efficient energy window, reducing unnecessary power draw.

Q: Does the 3‑Phase configuration contribute to smoother power distribution?

A: The design of FC-202N132T7135N4881 ensures that electrical loads are evenly managed which leads to consistent performance and minimizes the risk of system instability during intensive industrial operations.

Q: What role does frequency inverter technology play in controlling FC-202N132T7135N4881 speed?

A: The frequency inverter technology dynamically adjusts motor speed based on load requirements, resulting in precise control over pump operations.

Q: How does the back-channel cooling system affect the FC-202N132T7135N4881’s thermal management?

A: This effective thermal management prevents overheating and reduces downtime, ensuring that the drive performs reliably even during prolonged periods of continuous operation in industrial environments.


Internal Product Review

  • ‘‘FC-202N132T7135N4881 uses back-channel cooling to dissipate heat under heavy loads. This innovative cooling approach maintains optimal temperature, reduces downtime and supports smooth operation in industrial settings, boosting system efficiency further.’’

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