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65 amp 3/4 Pole DC Contactor, 12V/24V/48V/220V Coil


$74.99
Low cost 65A DC contactor is an electrical switching device to control electric motors, lighting and other electrical loads a
SKU: CHN-DCCON-65A
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Delivery date: 6-12 days

65A 12V ~ 220V DC contactor works to connect and break of the circuit load, which can fully meet the special demand of electric locomotive, diesel locomotive and electric motor car group. It is widely used in the control system of DC electric control, storage battery circuit and capacitance circuit.

Specification

ModelCHN-CJX2-65ZCHN-CJX2-65008Z
Rated Current65A
Coil Rated Voltage (Optional)12V DC, 24V DC, 36V DC, 48V DC, 110V DC, 220V DC
Contact Form (Optional)3 Pole (3NO)+1NO, 3 Pole (3NO)+1NC4 Pole (2NO+2NC)
Frequency50Hz/ 60Hz
Rated Power (AC-3)200-240V18.5kW (25HP)
380-440V30kW (40HP)
500-550V37kW (50HP)
600-690V37kW (50HP)
Conventional Thermal Current80A
Operating Temperature-40℃~85℃
Operating Humidity5~95% RH
Dimensions77 x 129 x 172mm84 x 129 x 184mm
Weight1.5kg

Circuits Diagram

65 amp DC Contactor Circuit Diagram

Tips: Functions of the parallel capacitance of the contactor coils

  1. The voltage at both ends of the capacitor cannot be specially changed, and after the capacitor is connected, the reverse electromotive force of the coil can be delayed and reduced, interference is reduced, and the life of the contact is prolonged.
  2. A proper resistor in series with the capacitor can dampen the oscillation, reduce the time of over-voltage, and achieve better results. This is the resistance-capacitance absorber.
  3. The larger the capacitance, the smaller the impedance and the higher the passing frequency. But in fact, most of the capacitors over 1μF are electrolytic capacitors, which have a large inductance component, so the impedance will increase when the frequency is high.
  4. The key is that there is parasitic inductance on the capacitor, and the capacitor discharge circuit will resonate at a certain frequency. At the resonance point, the impedance of the capacitor is small. Therefore, the impedance of the discharge circuit is the smallest, and the effect of supplementing energy is also the best. For capacitors of the same capacity, the more small capacitors in parallel, the better. Voltage resistance value, temperature resistance value, capacitance value and ESR are several important parameters of the capacitor, and the lower the ESR, the better.