2 Gauge Copper Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 2 Gauge Battery Cable & 5/16" (M8) Stud.
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2 Gauge Copper Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 2 Gauge Battery Cable & 5/16" (M8) Stud.
1 Gauge Tinned Lugs are made from 99.9% pure annealed tinned copper, providing a high degree of conductivity for maximum current flow. This particular variant is generally suitable for use with 1 Gauge Battery Cable & 1/4" (M6) Stud.
6 AWG Wire Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 6 Gauge Battery Cable & 1/4" (M6) Stud.
Tinned Copper Cable Lugs are made from 99.9% pure annealed tinned copper, providing a high degree of conductivity for maximum current flow. This particular variant is generally suitable for use with 6 Gauge Battery Cable & 5/16" (M8) Stud.
250 MCM Lug is made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 250 MCM Battery Cable & 1/2" (M12) Stud.
Heat shrink tubing is a versatile protective solution used to insulate wires, provide abrasion resistance, and create environmental seals. Ideal for electrical, automotive, and industrial applications, it shrinks when heated, offering a secure, professional finish that enhances durability and safety.
4 Gauge Copper Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 4 Gauge Battery Cable & 1/4" (M6) Stud.
1 Gauge Wire Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant comes with a wider pad offering a larger clamping surface and is suitable for use with 1 Gauge Battery Cable & 3/8" (M10) Stud.
Bare Copper Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 2 Gauge Battery Cable & 1/4" (M6) Stud.
4 AWG Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 4 Gauge Battery Cable & 5/16" (M8) Stud.
1/0 Gauge Wire Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 1/0 or 0 Gauge Battery Cable & 1/2" (M12) Stud.
4 AWG Wire Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 4 Gauge Battery Cable & #10 (M5) Stud.
0 Gauge Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 1/0 or 0 Gauge Battery Cable & 1/4" (M6) Stud.
Heavy Duty Battery Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 6 Gauge Battery Cable & #10 (M5) Stud.
4 AWG Tinned Copper Lugs are made from 99.9% pure annealed tinned copper, providing a high degree of conductivity for maximum current flow. This particular variant is generally suitable for use with 4 Gauge Battery Cable & 1/2" (M12) Stud.
Copper Battery Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 2/0 or 00 Gauge Battery Cable & 3/8" (M10) Stud.
6 AWG Lugs are made from 99.9% pure annealed copper, providing a high degree of conductivity for maximum current flow. This particular variant is suitable for use with 6 Gauge Battery Cable & 1/4" (M6) Stud.