





500 Amp 3 Phase AC Magnetic Contactor, 24V/110V/220V Coil
from
$749.59
Ex Tax: $749.59
- Stock: In Stock
- Model: RDDLZ-ACCON-500A
- Weight: 1.00
- SKU: RDDLZ-ACCON-500A
Available Options
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AC magnetic contactor relay with rated current up 500 amps, is mainly used for breaking circuit and frequently starting and controlling AC electrical motors, different contact forms and coils voltage are optional.
Specification
Model | RDDLZ-CJX2-F500 | |
Rated Current | le max AC-3 (Ue≤440V) | 500A |
le max AC-1 (θ≤40°C) | 700A | |
Coil Rated Voltage (Optional) | 110V AC, 220V AC, 380V AC | |
Contact Form | 3NO | |
Auxiliary Contact (Optional) | 2NO, 2NC, 1NO+1NC, 2NO+2NC, 1NC+3NO, 4NO, 4NC | |
Frequency | 50Hz/ 60Hz | |
Rated Insulated Voltage (Ui) | 1000V | |
Rated Impulse Withstand Voltage (Uimp) | 8kV | |
Rated Operational Voltage | 1000V | |
Conventional Thermal Current (θ≤40°C) | 700A | |
Operation Frequency | AC-1, AC-2, AC-3 | 600 times/h |
AC-4 | 300A | |
Rated Power (AC-3) | 220/240V | 147kW |
380/400V | 250kW | |
415V | 280kW | |
440V | 295kW | |
500V | 355kW | |
660/690V | 335kW | |
1000V | 335kW | |
Connection/ Wiring | Number of Lines | 2 |
Line Size | 40x5mm2 | |
Cable with Splicing | 2x240mm2 | |
Screw Diameter | φ10 | |
Tightening Torque | 35N.m | |
Standards-Compliant | IEC60947-4-1, GB14048.4, EN60947-4-1 | |
Dimensions | 238 x 233 x 232mm | |
Weight | 25kg |
Details
Tips: Reasons for AC magnetic contractor noise
- The over travel of the AC contactor contact is too large, resulting in insufficient contact pressure between the moving and static iron cores.
- The contact springs share the pressure or the release reaction spring force is too large, causing a certain gap between the moving and static iron cores during operation.
- The clamping screws of the moving and static iron cores are loose, the movable parts are not properly matched, the moving and static iron cores are misaligned when they are sucked in, and the entire surface cannot be contacted.
- The short-circuit ring is broken or missing. Because the dynamic and static iron cores collide too violently during the pull-in, or the mechanical life ends, the short-circuit ring is broken or lost, resulting in excessive noise.
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