Sandwich Busbar Flange End
Sandwich Busbar Flange End

Sandwich Busbar Flange End

Price 3148-3523 INR/ Kilograms

MOQ : 500 Kilograms

Sandwich Busbar Flange End Specification

  • Shape
  • Rectangular
  • Efficiency
  • 99%
  • Surface Finish
  • Smooth Epoxy Coated
  • Power Factor
  • >0.95
  • Humidity %
  • 95%
  • Insulation Material
  • Epoxy Resin
  • Mounting Type
  • Panel Mounted
  • IP Rating
  • IP55
  • Overheating Protection
  • YES
  • Operating Temperature
  • -20C to +85C
  • Feature
  • Fire Retardant, High Mechanical Strength
  • Connector Type
  • Bolted Terminal
  • Product Type
  • Sandwich Busbar Flange End
  • Application
  • Power Distribution Systems
  • Protection Level
  • High
  • Frequency (MHz)
  • 50/60 Hz
  • Rated Voltage
  • 690 V
  • Energy Consumption
  • Low
  • Output Type
  • Electrical Power
  • Color
  • Red & Copper
  • Dimension (L*W*H)
  • 160mm x 70mm x 30mm
  • Weight
  • 2.8 kg
  • Size
  • Standard
  • Phase
  • Three Phase
  • Input Voltage
  • 400~690 V
  • Material
  • Copper & Epoxy Resin
  • Connection Type
  • Flanged
  • No Of Poles
  • 3/4 Poles
 

Sandwich Busbar Flange End Trade Information

  • Minimum Order Quantity
  • 500 Kilograms
  • Supply Ability
  • 15000 Kilograms Per Month
  • Delivery Time
  • 1 Months
 

About Sandwich Busbar Flange End

Ganpati Electricals Pvt. Ltd. is a business partner of Larsen & Toubro for Bus Bar Trunking System, which is used in hotels, data centers, hospitals, airports, industries, factories, apartments etc. Electrical busbar systems are a modular approach to electrical wiring.

Busbar Trunking System is a prefabricated electrical distribution system consisting of busbars in a protective enclosure, including straight lengths, fittings, devices and accessories.  These are mainly of two types namely Air-Insulated Trunking Busbar System and Sandwich Trunking Busbar System.

Sandwich Busbar Trunking System is epoxy insulated and used for transferring 400A to 6300A current for up to a maximum of 1000V.  Compaired to this Conventional Busbar Trunking System is air insulated and is used for 100-400A current for upto a maximum of 415V.  Besides these two, there comes also air-insulated Medium Voltage Busbar Trunking System for 100A to 6300A current for up to a maximum load of 33 kV.

Busbar Trunking System of L&T comes in a metal enclosure and is quite compact in size.  It requires no maintenance and can easily last for more than 20 years. Compared to normal cabling, it requires much less space and can be installed within a very short time. 

Sandwich Busbar Trunking System has a high tolerance to heavy voltage drop.  It has single bolted copper or alumium busbars meant for 400A to 6300A current for a load of maximum 1000V.

Compared to Sandwich Busbar Trunking System, Conventional Busbar Trunking System is air-insulated.  It has multi-bolted copper busbars housed  in a 1.6 mm thick GI container having epoxy coating. Conventional Busbar Trunking System is meant for 100A to 400A current for an operating voltage upto 415V.

Larsen & Toubro has also Medium Voltage Busbar Trunking System for 400A to 5000A current for a load of 3.6 kV to 24kV.   The enclosure is made of GI, Stainless Steel or Aluminium and is epoxy coated.   The Busbars are made of Copper or Aluminium having multiple bolted splice plate joints.

All types of L&T Busbar Trunking Systems are ISO approved for their quality and for fire safety.



Exceptional Durability and Safety

Built with premium copper and smooth epoxy resin coating, this busbar system excels in corrosion and flame resistance. The V-0 fire-retardant rating and high IP55 protection ensure safety in diverse electrical installations, while the robust design meets IEC 61439 standards for added peace of mind.


Versatile Installation and Minimal Maintenance

With flexibility for both horizontal and vertical panel mounting, this flange end busbar adapts easily to standard power distribution configurations. Minimal maintenance, lasting efficiency, and an operational lifespan beyond three decades make it the reliable choice for any industrial or commercial setting.

FAQs of Sandwich Busbar Flange End:


Q: How is the Sandwich Busbar Flange End typically installed?

A: The Sandwich Busbar Flange End can be installed both horizontally and vertically, panel-mounted using bolted terminals. It is supplied in standard sizes and packaged securely in either a carton or wooden box for safe transportation and handling.

Q: What benefits does the epoxy resin coating provide?

A: Epoxy resin ensures excellent electrical insulation, a smooth surface finish, and superior corrosion resistance. This enhances both the safety and longevity of the busbar, maintaining efficiency and reliability even in high-humidity or corrosive environments.

Q: When should this busbar be used in power distribution systems?

A: This busbar is recommended for demanding power distribution applications where high short-circuit capacity, flame resistance, and long lifespan are essential. It is ideal in industrial and commercial installations requiring IP55-level protection and operation within temperatures from -20C to +85C.

Q: Where can the Sandwich Busbar Flange End be deployed?

A: It is engineered for use in indoor power distribution systems across industrial sites, commercial buildings, and infrastructure projects throughout India, particularly where high mechanical strength and minimal maintenance are prerequisites.

Q: What is the process for connecting the Sandwich Busbar Flange End?

A: Connection is straightforward, using flanged, bolted terminals designed to ensure a secure and reliable electrical interface. Installers can easily access and mount the unit in panel systems, facilitating quick integration into new or existing setups without extensive downtime.

Q: How does the product ensure low energy consumption and high efficiency?

A: Thanks to its high-quality copper conductors and precise engineering, the busbar system operates at 99% efficiency, with a power factor greater than 0.95. This minimizes energy loss and supports sustainable, cost-effective operations in demanding power environments.

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