Ensure code-compliant, inspectable terminations with the Burndy WBG Stainless Steel W-Type Die (Index BG). Precision-machined from high-grade stainless steel to deliver superior long-term corrosion resistance in harsh industrial environments, this premium W-style compression die is engineered specifically for 8 AWG electrical cable sizes. The advanced mechanical profile features an integrated Index BG die code that embosses the terminal barrel during compression, providing instant, permanent visual verification for safety inspectors and quality management teams. Part of Burndy's color-coded system to ensure rapid tool-to-lug matching in the field, this professional-grade component is fully compatible with standard MD6 and MD7 manual lineman tools, as well as OUR840 and D1D6 mechanical crimpers. Measuring a compact 0.75 inches deep by 1.38 inches high for swift tool slot installation, this rugged die is fully RoHS compliant and built to support the rigorous reliability standards of the industrial electrical and energy sectors.
| Premium W-style compression die engineered specifically for uniform terminations on 8 AWG cable sizes.
Features the distinct Index BG code stamp to emboss the connector barrel for immediate quality inspection. Fabricated from high-grade, durable stainless steel to deliver exceptional field life and corrosion resistance. Fully integrated into Burndy's color-coded system for fast, error-free matching between die and lug. Designed to create robust, highly controllable, and reliable low-resistance electrical connection points. | Universally compatible with industry-standard Burndy MD6 and MD7 mechanical lineman crimping tools.
Operates seamlessly alongside OUR840 and D1D6 manual tools for versatile multi-tool field applications. Ultra-compact dimensions of 0.75 in. D by 1.38 in. H allow for easy, snap-in tool jaw installation. Professional-grade accessory is fully RoHS compliant to meet strict environmental and workplace safety standards. Authentic Burndy utility component precision-manufactured to withstand demanding energy sector requirements under model WBG. |