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Bridgold In Industrial Machinery & Equipment Clusters

Digital & Modern Factory Overview

Bridgold's new Phase II facility (15,000 m²), commissioned in October 2023, integrates digital management and intelligent production systems, ensuring full traceability, high precision, and consistent quality. This robust capability supports high-volume deliveries for industrial machinery and equipment clusters.

    Deep Experience in Industrial Machinery & Equipment Clusters

    With over 40 years of expertise in copper busbars and braided wires, we possess in-depth knowledge of the challenges posed by heavy-load start-ups, sustained high currents, high-frequency vibration, and harsh environments (high temperature, dust, etc.) in industrial machinery. From material selection and structural design to insulation withstand and temperature-rise validation, we offer customized solutions throughout the entire design cycle, ensuring high reliability and long service life of interconnection systems.

    Product Display

    Bridgold In Superconducting Technology Applications (1)
    Bridgold In Superconducting Technology Applications (2)
    Bridgold In Superconducting Technology Applications (3)

    Product Details (Core Functions of Copper Busbars)

    Copper busbars deliver three core functions in industrial machinery:

    High-current transmission – connecting frequency converters, servo drives, transformers, and distribution cabinets for stable power delivery under heavy loads;

    Equipotential bonding and grounding – equalizing enclosure and structural potentials while providing safe protection paths;

    Absorbing vibration and thermal expansion – preventing rigid connections from fatigue failure due to equipment vibration and temperature changes.

    Laminated Busbars: Low parasitic inductance effectively suppresses switching overvoltage, protecting power devices; flat profile saves control cabinet space and increases power density; custom L/Z shapes fit compact layouts.

    Braided Busbars: Ultimate flexibility with an extremely small bending radius, effectively absorbing equipment vibration and thermal expansion displacement; the braided structure distributes stress to resist high-frequency fatigue; open surface enhances heat dissipation; high tolerance simplifies on-site assembly.

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