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DC-Link Choke N CNW 892

DC-link chokes (2 lines)

Description

Compact & efficient

Reduce grid disturbances – save energy costs.

The DC-link reactor is used for smoothing the DC link current and to reduce mains harmonics in voltage source inverters.

The typical combinations of rectifiers and capacitors strains the supply network significantly. For functional reasons, the current consumption of the power supply or the inverter is not sinusoidal but pulsed at the moment of maximum voltage. DC-link reactor reduce the harmonics and relieve the supply network similar to the mains choke. In addition, the DC-link reactor attenuates charging current peak surges of the DC-link capacitors. By using a DC-link reactor the supply network is less burdened with harmonic reactive power.

Improvement of the efficiency of a converter (Power Factor Correction). Starting currents and current peak are attenuated up to 70%. Line reactors help to comply with international power quality standards IEEE 519 or EN 61000-3-2.

Advantages

  • Reduction of harmonics waves
  • Attenuation of current spikes of up to 70%
  • Compact design
  • Advantages over line reactor:
    • Smaller size
    • Lower cost of materials / Price
    • Smaller power loss
  • Production possible according to UL insulation system E251513

TYPICAL APPLICATIONS

Drive systems for motor drives, Mechanical engineering, Elevators / escalators, Pipes, Conveyor technology, Ventilation and air conditioning, Robotics, Automation technology, Power supplies, Wind turbines

Technical Data

  • Rated voltage: U ≤ 800 V
  • According to: EN 60289 / EN 61558
  • Test voltage: L-PE 4000 V, AC/50Hz, 60s
  • Insulation class: T40/F
  • Protection rating: IP00
  • Climatic category: DIN IEC 60068-1
  • Overload: 1,5 x INenn 1 min / h
  • Design: standing on foot angle
Type Nominal voltage
U [V]
Nominal current
I [A]
Inductance
L [mH]
Losses
P [W]
Mass
[kg]
Mass
Cu [kg]
N CNW 892 / 8 600
50 / 60 Hz
8 9,4 30 1,4 0,6
N CNW 892 / 11 600
50 / 60 Hz
11 6,2 30 2,0 0,6
N CNW 892 / 15 600
50 / 60 Hz
15 4,8 40 2,4 0,8
N CNW 892 / 20 800
50 / 60 Hz
20 3,3 30 3,0 1,2
N CNW 892 / 28 800
50 / 60 Hz
28 2,4 40 3,8 2,1
N CNW 892 / 34 800
50 / 60 Hz
34 2,0 40 4,0 1,3
N CNW 892 / 40 800
50 / 60 Hz
40 1,6 70 5,0 1,2
N CNW 892 / 55 800
50 / 60 Hz
55 1,2 80 6,0 1,4
N CNW 892 / 70 800
50 / 60 Hz
70 0,98 80 8,0 2,3
N CNW 892 / 85 800
50 / 60 Hz
85 0,81 90 11,0 2,0
N CNW 892 / 100 800
50 / 60 Hz
100 0,67 120 13,0 1,8
Type Dimensions L (mm) Dimensions B (mm) Dimensions H (mm) Mounting N1 (mm) Attachment N2 (mm) Mounting D1 (mm) Terminal connection/
Cable lug
[mm²]
Connection PE Connection A1 (mm) Design
N CNW 892 / 8 80 53 135 50 39 4,8 x 9 4,0 M4 1
N CNW 892 / 11 80 63 135 50 49 4,8 x 9 4,0 M4 1
N CNW 892 / 15 100 66 155 63 49 6 x 10 4,0 M4 1
N CNW 892 / 20 100 66 140 63 49 6 x 10 10 (M4) M4 35 2
N CNW 892 / 28 100 81 140 63 64 6 x 10 10 (M5) M4 35 2
N CNW 892 / 34 100 81 140 63 64 6 x 10 16 (M5) M4 35 2
N CNW 892 / 40 120 87,5 165 76 68,5 7 x 13 10 (M6) M6 40 3
N CNW 892 / 55 120 97,5 165 76 78,5 7 x 13 16 (M6) M6 40 3
N CNW 892 / 70 152 92 205 100 73 7 x 13 25 (M8) M8 45 3
N CNW 892 / 85 152 112 205 100 93 7 x 13 25 (M8) M8 45 3
N CNW 892 / 100 160 127 215 100 103 7 x 13 25 (M8) M8 45 3

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