• CY-LRSGD filter reactor

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    CY-LRSGD filter reactor

    Filter capacitors are suitable for reactive power compensation and harmonic management in strong harmonic power supply systems. Filter capacitors are connected to reactors to improve the power factor of the power supply system while filtering, effectively improving the power quality of the power grid.

    Product Overview
    The CY-LRSGD filter reactor is suitable for reactive power compensation and harmonic management systems. The filter reactor is connected to the capacitor and uses LC resonance physical characteristics to generate the minimum or maximum impedance. It absorbs or blocks the harmonic voltage and current at the corresponding frequency in the power grid, achieving the goal of harmonic filtering and maintaining the optimal value of the system power factor, effectively improving the power quality of the power grid.

    Usage conditions

    Environmental temperature: -25~+40 ℃; Relative temperature ≤ 90% RH

    Altitude: not exceeding 2000m

    No severe vibration and impact, no flammable and explosive hazardous materials, no conductive dust

    There should be good ventilation conditions around, such as ventilation facilities inside the loading cabinet

    Temperature resistance level H (180 ℃) or above

    Technical parameter

    Can be used in systems such as 400V, 660V, 690V, etc

    Tune frequency points: different frequencies such as 150Hz, 250Hz, 350Hz, 550Hz, etc

    Rated insulation level 3kV/min

    The maximum temperature rise of each part of the reactor, with the winding not exceeding 80K and the iron core not exceeding 95K

    The noise of the reactor shall not exceed 45dB

    The difference in reactance values between any two phases of a three-phase reactor shall not exceed 3%

    Capable of long-term operation at power frequency and harmonics greater than 1.35 times the rated current

    Application occasions
    The strong current harmonic power supply system can filter out higher-order harmonics and compensate for system power factor.

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