Create a firm mechanical connection for compatible copper conductors. This copper split bolt connector uses a threaded body and clamping nut to join, splice, or tap properly sized wires. Copper construction supports efficient conductivity, while the split design allows the main conductor to remain continuous in suitable tap applications. This electrical wire connector is intended for qualified electricians, technicians, and electrical maintenance work.
Key Features
- Copper body provides conductive contact between compatible wires.
- Split-bolt design supports splice and tap configurations.
- Threaded nut applies mechanical clamping pressure.
- Compact form suits properly enclosed electrical installations.
Why Choose Our Copper Split Bolt Wire Connector
Compared with temporary twisting methods, this cable splice connector provides a purpose-built mechanical clamp for compatible conductors. Correct sizing and tightening are essential for maintaining stable contact and reducing the risk of overheating.
Perfect For
Suitable as a copper cable clamp for approved grounding, bonding, tapping, and conductor-splicing applications. Use only where the connector size, wire type, enclosure, insulation method, and local electrical code permit.
Installation and Safety
Disconnect and verify all power is off before installation. Match the connector to both conductor sizes, prepare the wire without damaging its strands, position it for full contact, and tighten to the manufacturer’s specified torque. Properly insulate and enclose the completed joint. Installation by a qualified electrician is strongly recommended.
Compatibility Note
Do not assume compatibility from appearance alone. Confirm the supported wire range, conductor material, current application, torque requirement, certification, and package size before ordering. Do not use with aluminum conductors unless the selected connector is specifically rated for them.
Make Every Connection Count
Choose the correct connector size for a secure, professional electrical installation.
