Copper Busbars for AI BBU and Energy Storage Racks

Designed for high-density AI data center racks, this copper busbar is compatible with 12–48VDC power systems and supports 18–100kW rack power applications. Featuring a compact 1U form factor and epoxy powder-coated insulation, it provides high dielectric strength, low electrical resistance, and efficient thermal performance with optimized copper structures. Developed for OCP Open Rack platforms, the insulated power busbar ensures reliable high-current distribution for Power Shelf, BBU Shelf, and PCS rack systems in next-generation AI infrastructure.

  • Edge Type:
  • Plating: Tin plating, nickel plating
  • MOQ: 100
  • Size: Customized
  • Conductor Material: C11000 copper
  • Insulation: Epoxy powder coating

Developed for next-generation AI data center power architectures, the copper busbar supports 12–48VDC distribution systems and rack power levels from 18kW to over 100kW. Designed with a compact 1U form factor, epoxy powder-coated insulation, and optimized copper structures, it delivers low electrical resistance, high dielectric strength, and efficient thermal management for high-current applications. Compatible with OCP Open Rack platforms, the busbar enables reliable power distribution across Power Shelf, BBU Shelf, and PCS rack systems, providing a robust interconnect solution for high-density AI computing infrastructure.

RHI – Copper and Aluminum Busbar Experts

Key Features 

  • Compatible with 12–48VDC power distribution architectures

  • Supports 18–100kW rated power applications

  • Designed for high-temperature operation up to 150°C

  • Available in custom 1U low-profile configurations

  • Features high dielectric insulation, low contact resistance, and reliable electrical performance

  • Applications include OCP Power Racks, BBU Shelves, and PCS Rack Systems


ParameterRated    PowerRoHSInsulation    Material

Dielectric

Strength

Insulation Thickness Conductor Material
Values18kW-100kW QualifiedEpoxy powder coating20KV0.4-0.8mmT2Y2 copper


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