134N6258

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The 134N6258 is a three-phase VLT FC 302 Automation Drive featuring a rated power output of 5.5 kW and an integrated brake chopper. Manufactured by Danfoss, it comes from the VLT FC 302 Automation Drives series. This drive includes a Graphical Local Control Panel and operates on 380-500 VAC input voltage.

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Product Description:

The VLT drive 134N6258 is produced by Danfoss with the specification code FC-302P5K5T5E20H1BGXXXXSXXXXA6BRCXXXXDX for automation machines. It operates efficiently with a displacement power factor of more than 0.98 and possess a high efficiency of up to 99%. The drive’s output voltage is adjustable from 0 to 100% of the input to allow precise control.

The 134N6258 drive features an input current rating of 11.7 A and its output current range is up to 20.8 A, along with a shaft output of 5500 W. Its inrush current is limited to 2-3 times the rated value to ensure smooth startup and it needs a supply source of 380 - 500 V AC for standard configurations. The unit’s output frequency range is 0 - 590 Hz under normal conditions and 0 - 300 Hz in flux mode for optimized motor performance, while its overload frequency range is 600 Hz to 1000 Hz. For safety, it comes with safe torque mode that is compliant with ISO 13849-1 PL d and SIL 2 standards. Its motor control supports encoder-less operation as well and its automatic adaptation feature improves efficiency as well as motor performance. This 134N6258 drive possess built-in harmonic mitigation with optional advanced harmonic filters for reducing distortion level to below 5 - 10%. Its back-channel cooling system manages thermal condition of the enclosure and it features an IP20 rating for basic protection.

The 134N6258 drive supports fieldbus communication options of PROFINET, Ether-Net/IP and Modbus TCP. It includes real-time monitoring and diagnostics through an integrated web server that offers remote access and troubleshooting. The drive’s motion control capabilities allow for precise positioning and synchronization in applications such as conveyors and pumps. It comes with ramp time adjustment from 0.01 to 60 minutes and supports NPN/PNP logic configurable inputs up to 6.

Brake Chopper
Integrated
Control Panel
Graphical Local Control Panel
Enclosure
IP20 / Chassis
Frame Size
A3
Gross Weight
7.726 kg
Horsepower Output
7.5 HP
Input Voltage
380-500 VAC
Net Weight
6.72 kg
Output Frequency (Flux Mode)
0–300 Hz.
Output Frequency (Normal Mode)
0–590 Hz.
Overload Capacity
110% for 60 seconds, 160% for 1 second.
Pcb Coating
Not Coated
Phases
Three Phase
Rated Power Output
5.5 kW
Rfi Filter Class
A1/B (C1)

Frequently Asked Questions about 134N6258:

Q: Why is harmonic mitigation important in the 134N6258 model?

A: It minimizes electrical distortion that can damage sensitive equipment. Optional harmonic filters keep total harmonic distortion (THD) below 5–10% in demanding installations.

Q: How does the safe torque off (STO) function in 134N6258 enhance safety?

A: Its STO ensures that motor torque is immediately cut without disconnecting power. This prevents accidental restart and meets ISO 13849-1 PL d and SIL 2 standards.

Q: Why is ramp time adjustment (0.01 to 60 minutes) a valuable feature in this drive?

A: It allows soft acceleration or deceleration according to load type. This helps avoid mechanical stress on belts, couplings, and motor shafts.

Q: What is the role of fieldbus support like PROFINET and EtherNet/IP in 134N6258?

A: It integrates the drive seamlessly into modern automation networks. This enables synchronized motion, real-time data exchange, and efficient system-level diagnostics.

Q: Why does the 134N6258 include both NPN and PNP configurable inputs?

A: The supporting of both logic types ensures compatibility with different PLC brands. It gives flexibility in system design and simplifies integration across industries.


Internal Product Review

  • ‘‘The VLT drive 134N6258 is a high-performance automation drive. It features safe torque off (ISO 13849-1 PL d, SIL 2), encoder-less motor control and integrated web diagnostics. This model is widely applied in conveyor systems, process pumps and industrial HVAC setups requiring precise frequency control.’’

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