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IBYZG Over-voltage Suppression Cabinet

IBYZG overvoltage suppression cabinet adopts advanced multi-core technology, which enables each monitoring unit to operate independently. This design ensures a clear division of labor between each unit, and can judge voltage levels and potential faults faster and more accurately. The cabinet has powerful functions, including overvoltage suppression, arc monitoring and core resonance elimination. These functions work together to provide comprehensive protection against various electrical anomalies and ensure the integrity of the power supply system.It is suitable for indoor use, has an operating temperature range of -15°C to +60°C, and can be customized for special applications requiring temperatures as low as -30°C. In addition, the cabinet can still maintain optimal operation in areas with an altitude of up to 2000 meters, and in some cases can even operate in areas with an altitude of up to 4000 meters. This versatility makes the YNYZG cabinet an ideal choice for a variety of industrial environments, ensuring that it can withstand the challenges of different geographical and climatic conditions.

    Usage Environment

    Place of use: used in power plants, power supply companies, industrial and mining enterprises 3-35kv power supply system, can replace PT cabinets, lightning arrester cabinets, etc.

    Ambient temperature: Indoor type -15℃~+60℃, special can be -30℃-+60℃.

    Altitude: ≤ 2000m, up to 4000m in special cases.

    Use environment: No explosive mixtures such as dust, gas, smoke, etc.

    Features

    1.Using multi-core technology, each monitoring unit works independently, with clear division of labor, making judgments faster and more accurate.
    2.Powerful functions, overvoltage suppression, arc monitoring, and ferromagnetic resonance elimination. Loss of voltage, undervoltage, overvoltage, PT disconnection, ground fault line selection alarm function.
    3.When the single-phase grounding fault is cleared and the three-phase voltage is restored to balance, the impact of capacitive current on the PT is suppressed, reducing the problem of PT burning and wire fusing.