AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – Green

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.

AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – Light Green

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.

AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – Orange

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.

AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – Pink

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.

AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – Red

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.

AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – White

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.

AMC 20 Ga. 0.75mm² 24/0.20mm Thinwall Cable 100m – Yellow

High temperature thin wall low voltage wiring cables suitable for use in the automotive, marine and allied industries. These cables are specified as standard by manufacturers throughout Europe due to their high performance characteristics.