134F2993

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The 134F2993 automation drive has a power rating of 11 kW and features an IP20 chassis enclosure for protection. Designed by Danfoss, it is part of the VLT FC 360 Automation Drives series and operates on a mains voltage of 3 x 380-480 V AC. The unit provides 7 digital inputs, 2 analog inputs, and achieves 98% efficiency.

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Product Description:

Danfoss manufactures the product 134F2993 VLT FC 360 Automation Drives. Danfoss is a global company recognized specializing in durable motor and drive technologies across industries. The drive FC-360H1K1T4E20H2BXCDXXSXXXXA0BX has the ordering code 134F2993. This version is intended to operate precisely and effectively in demanding automation situations.

The 134F2993 VLT FC 360 Automation Drives operates on a three-phase system. The supply frequency is 50 Hz which ensures stable and reliable motor control. The system maintains a maximum imbalance temporarily between mains phases of 3.0 % of the rated supply voltage. It provides a true power factor ≥0.9 nominal at rated load for efficient energy use. The displacement power factor remains near unity (>0.98) which minimizes reactive power losses. During operation, the integrated RFI Filter Class A2 lowers electromagnetic interference. The drive is suitable for an aggressive environment (IEC 60068-2-43) H2S test Class Kd which confirms durability in harsh conditions. It can withstand a vibration test of 1.0 g for it robust in mechanical stability. Ramp times range from 0.01–3600 s which allows flexible motor acceleration and deceleration control. The voltage class it provides, 380–480V, allows it to be compatible with industrial supply standards.

The 134F2993 VLT FC 360 Automation Drives delivers a rated power output of 1.1 kW. The overload rating is heavy-duty duty which supports high-demand applications. The maximum switching on the input supply is 2 times/minute. It achieves an energy efficiency class IE2 which reduces operational energy costs. The mass of the drive is 2.3 kg which ensures lightweight installation. The ambient temperature range is -40 to 158 °F for adaptability in extreme climates. The maximum temperature at housing reaches 572 °F which reflects high thermal endurance.

Aggressive environment (IEC 60068-2-43) H2S test
Class Kd
Ambient temperature range
-40 to 158 °F
Displacement power factor
Near unity (>0.98)
Maximum temperature at housing
572 °F
Number of phases
3
Power
1.1 kW
Ramp times
0.01–3600 s
RFI Filter
Class A2
Supply frequency
50 Hz
Switching on input supply
Maximum 2 times/minute
True power factor
≥0.9 nominal at rated load

Frequently Asked Questions about 134F2993:

Q: How does the ramp time range of 0.01–3600 s help in 134F2993 VLT FC 360 Drives?

A: The ramp time allows precise control of acceleration and deceleration phases. This reduces mechanical stress on motors and extends equipment lifespan.

Q: Why is the displacement power factor >0.98 important in the 134F2993 drive?

A: The high displacement factor minimizes reactive power. This improves grid stability and lowers overall energy consumption.

Q: What is the role of the H2S test Class Kd compliance in the 134F2993 drive?

A: The H2S resistance ensures durability in environments with corrosive gases. It makes the drive reliable for petrochemical and harsh industrial applications.

Q: How does heavy-duty overload support improve operational safety?

A: The overload rating allows the drive to handle sudden load spikes. This prevents trips and ensures consistent motor operation in demanding applications.

Q: Why is a vibration test of 1.0 g critical for the 134F2993 drive?

A: The vibration endurance enhances structural stability. This prevents internal damage during high mechanical stress or installation on heavy machinery.


Internal Product Review

  • ‘‘The Danfoss 134F2993 VLT FC 360 Drive delivers dependable motor control with displacement power factor >0.98 and heavy-duty overload capacity. Its design optimizes motor acceleration with 0.01–3600 s ramp control. This drive is vital for minimizing reactive power losses in automation systems.’’

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