Ring terminal | Electrical installation
C-RCI 6/M5 Ring Terminal, Cross Section: 4mm²-6mm², Hole Ø: 5.30 mm, Partially Insulated, Color: Yellow, Pack of 50
C-RCI 6/M5 Ring Lug for 4-6mm² Copper Conductor; Phoenix Contact 3240028 Ring Terminal, Max. Cross Section 6mm², Hole Ø 5.30mm, Partially Insulated, Yellow Color, Quantity: 50 Pieces.
Klauke 585R8 Terminal Cable Lug Punched 25-35qmm M8, 4 Screws, Not Insulated, Metal, Max Cross Section: 35 mm², Hole Ø: 8.5 mm,
Klauke 585R8 Ring terminal cable lug with 4 screws, max cross section: 35mm², hole diameter: 8.5mm, not insulated, metal.
Phoenix Contact 3240083 Non-Isolated Silver Ring Terminal Max Cross Section 6 mm² Hole Diameter 4.3 mm, Pack of 50
Silver ring terminal with 6mm² max cross section and 4.3mm hole diameter, non-insulated, pack of 50
LAPP 63204245 Non-insulated Metal Ring Terminal, Max Cross Section 10 mm², Hole Diameter 6.5 mm, Pack of 100
High-quality LAPP 63204245 non-insulated metal ring terminals designed for copper conductors with a maximum cross-section of 10 mm² and hole diameter of 6.5 mm. Available in packs of 100 pieces, ensuring reliable electrical connections.
Sealey YT18 Easy-Entry Ring Terminal Ø5.3mm (2BA) Yellow Pack of 100
The Sealey YT18 is an easy-entry ring terminal with a diameter of 5.3mm and compatible with 2BA threads, available in a convenient pack of 100 pieces, designed for efficient wiring connections in various applications.
Phoenix Contact C-RC 6/M5 DIN Ring Lug for Copper Conductor, Cross Section Max. 6 mm², Hole Ø 5.3 mm, Not Insulated, Silver Finish, Pack of 50 Pieces
Phoenix Contact 3240084 Ring terminal with silver finish for copper conductors up to 6mm² cross-section and 5.3mm hole diameter. Uninsulated, not including store names or promotions, pack of 50 pieces.
TE Connectivity 34148 Partially Insulated Red Ring Terminal Max Cross Section 1.60 mm² Hole Ø 4.3 mm
A robust, partially insulated red ring terminal with a maximum cross‑section of 1.60 mm² and a 4.3 mm hole diameter, ideal for secure cable termination in high‑current applications.
