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High Strength Enclosed Intensive Copper High Voltage Bus Duct for Power Plants
Product Description
Electrical busducts are typically made from copper or aluminum, which are highly conductive metals that can transmit large amounts of electrical power.
The bus bars inside an electrical busduct are usually insulated with a layer of heat-resistant material, such as epoxy or silicone, to protect against heat and electrical arcing.
Electrical busducts can be designed for different voltage levels, ranging from low voltage (LV) to high voltage (HV). LV busducts typically transmit power at voltages of 600 volts or less, while HV busducts can transmit power at much higher voltages, such as 10,000 volts or more.
In addition to carrying electrical power, some electrical busducts may also include communication cables or other auxiliary systems, such as lighting or HVAC controls.
When designing an electrical busduct system, it is important to consider factors such as the maximum current capacity, the ambient temperature, and the layout of the facility. These factors can influence the size and shape of the busduct enclosure, as well as the type and thickness of insulation used.
Electrical busducts can be a safer and more reliable alternative to traditional cabling systems, as they are less prone to voltage drops, electrical interference, and other issues that can affect the quality and stability of the electrical power supply.
However, it is important to note that electrical busducts can also pose certain risks, particularly if they are not installed or maintained properly. For example, electrical faults or arcing can cause fires or explosions, which can be extremely dangerous in industrial or commercial settings. Therefore, it is critical to follow appropriate safety procedures and standards when designing, installing, and maintaining electrical busduct systems.
Specification
Conductor Material | Copper or Aluminum Bar |
Rated Working Voltage | 415V or 690V |
Rated Frequency | 50/60Hz |
Protection Class | IP54/IP65/IP66 |
Rated Operating Current | 250~6300A |
Configuration | 3P3W, 3P4W, 3P5W |
Surface treatment | Powder Coating Spray |
Insulation | Mylar or Epoxy |
Material
1.The cabinet door adopts a double beveled edge process, which increases the structural strength of the same material by 50%.
2.The installation holes are all made using a multi-layer stamping and stretching process, which reduces the sliding wire situation by more than 80%.
3.The inlet and outlet holes adopt a composite structure of knockdown holes and square holes, which can be flexibly selected during on-site installation.
4.The box adopts a double folding process, which increases the structural strength of the same material by 50%
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Advantages
1.Excellent quality
2.24 hour service
3.Professional design
4.Advanced technique
5.Rapid delivery
Production Facilities