



DBBT
Low Voltage Busbar Conduit


BTM's Low Voltage Busbar is an efficient solution for transmitting high currents in low voltage systems, connecting transformers to panels and other electrical equipment. Designed for organized and compact installation, this duct reduces voltage drop and minimizes energy losses, ensuring efficient operation in diverse environments.
Its robust and modular structure allows for customization according to the needs of each project, offering high reliability and the ability to withstand short circuits, making it ideal for critical installations.
Record
Technique
Features
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Option of copper or aluminum conductors.
Busbar ducts can be supplied with copper or aluminum conductors, providing flexibility to meet specific project needs and customer budget. -
Modules up to 2 meters
The ducts are supplied in modules of up to 2 meters, facilitating transport and installation, as well as ensuring greater flexibility in projects with space restrictions. -
Direct access to the heating element.
The duct design allows direct access to the heating element, facilitating maintenance. -
Coupling box sized according to the transformer (optional)
The coupling box is designed according to the transformer specifications, ensuring compatibility and facilitating installation. -
Connection via flexible mesh cables (optional)
The connections are made using flexible mesh cables, which offer greater flexibility and resistance to vibrations, extending the system's lifespan. -
Insulation of joints with heat-shrink tubing and insulating screws (optional)
The joints are insulated with heat-shrinkable materials and insulating screws, which provides extra protection against electrical discharges, improving the reliability of the system. -
Access for thermography
The duct has easy access for thermography, allowing monitoring of conductor temperature and detection of potential thermal faults in the system. -
Sheltered or outdoor use (optional)
The duct can be installed in protected environments or outdoors, offering versatility for different operating conditions and resistance to weathering.
Benefits
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Greater efficiency in energy distribution.
The optimized design ensures that energy losses are minimized, resulting in greater efficiency and operational savings. -
Organized and compact installation
The design facilitates installation in confined spaces, offering a clean and organized solution for transmitting high currents. -
Safety in high-demand operations
The high capacity to withstand short circuits ensures the protection of systems in critical conditions, maintaining safe and continuous operation.

Applications
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Substations
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Hydroelectric power plants

Electric power centers
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Industries
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Mining
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Oil/Gas (Offshore)
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