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Wire harness BLOW 73-008# — single conductor 0.22 mm², violet
Wire harness BLOW 73-008# — single conductor 0.22 mm², violet
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Wire harness BLOW 73-008# — single conductor 0.22 mm², violet
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Wire harness BLOW 73-008# — single conductor 0.22 mm², violet
Wire harness BLOW 73-008# — single conductor 0.22 mm², violet
Single-conductor electrical wire BLOW model 73-008# is a violet-insulated conductor with a cross-sectional area of 0.22 mm². It is intended for low-current wiring, signal connections and electronic assemblies where a thin, flexible conductor with clear color identification is required. The product is produced to meet typical small-signal and control wiring needs in appliances, control panels, prototype circuits and repair works.
The 0.22 mm² conductor offers a balance of flexibility and mechanical strength appropriate for tight routing and repeated bending in compact installations. Violet insulation provides clear color coding for easier identification during assembly and maintenance. The single-core construction simplifies termination with crimped ferrules or soldering and enables neat, space-saving harnesses in electronic enclosures.
Strip an appropriate length of insulation from the conductor, taking care not to nick the copper core. For reliable mechanical and electrical connection, use crimp ferrules when connecting to screw terminals or terminal blocks; for permanent joints on PCBs or wires, soldering is suitable provided heat is applied carefully to avoid damaging insulation. Route the wire following recommended bend radii and secure it with cable ties or adhesive mounts to prevent strain on terminations.
Verify compatibility with your circuit voltage and current requirements before installation. Use correct gauge matching and proper termination methods; avoid exposing the insulation to excessive heat or chemical solvents. For installations subject to vibration or movement, use strain relief and consider multicore alternatives where higher mechanical durability is required.
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