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Hammond Rackmount Copper Ground Busbar

• Height: 0.75in
• Width: 19in
• Depth: 0.19in
• Solid 0.188” Copper Bar
• Includes Ten (10) 10-32 Drilled And Tapped Holes Spaced At One (1) Inch.
• Includes Two (2) Ø 0.31 Ground Lug Holes.
• Mounts Directly To Eia Mounting Rails.

SKU: HAMM-GRDBAR19

$100.00

Out of stock

Product Description

Hammond Rackmount Copper Ground Busbar

The Hammond Rackmount Copper Ground Busbar (GRDBAR Series) is a professional-grade grounding solution designed to centralize and simplify equipment bonding within server racks, cabinets, and network enclosures. Built from solid copper, this busbar provides a low-resistance grounding path essential for protecting sensitive equipment and maintaining electrical safety in IT, telecom, and industrial environments.

Designed to mount directly to standard 19″ EIA rack rails, this horizontal busbar includes multiple pre-drilled and tapped 10-32 grounding points, allowing you to bond patch panels, switches, PDUs, and other rack-mounted equipment to a single grounding location.

The GRDBAR Series is constructed from heavy-gauge copper (up to 0.188″), ensuring excellent conductivity and long-term reliability. It also includes dedicated ground lug holes for connecting the busbar to your facility ground system, creating a complete and compliant grounding infrastructure.

Key Features

  • Rack-mount design (19″ or 23″) for standard server racks
  • Solid copper construction for superior conductivity
  • Multiple 10-32 tapped grounding points for equipment bonding
  • Includes ground lug connection points for facility grounding
  • Mounts directly to rack rails for easy installation
  • Helps reduce electrical noise, voltage differences, and fault risk
  • Ideal for data centers, telecom racks, and industrial IT systems

The Hammond Rackmount Copper Ground Busbar is a must-have grounding backbone for any professional rack build. It improves safety, reduces electrical interference, and creates a clean, centralized grounding point—exactly what high-performance network environments demand.