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| Type of conductor or core | Nominal cross-sectional area mm² (Core) | Number of wires min. | Resistance at 20 °C Ω/km Max. | Dia. of Conductor | Breaking force (N) | Thickness of dielectric mm | Outside diameter mm | |||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| MIN | MAX | MIN | MAX | |||||||||
| Phase or neutral (aluminium) | 16 (2/4) | 6 | 1.91 | 4.5 | 4.8 | 2200 | 1.3 | 7.1 | 7.9 | |||
| 25 (2/3/4) | 6 | 1.20 | 5.8 | 6.1 | 3500 | 1.3 | 8.4 | 9.2 | ||||
| 35 (2/3/4) | 6 | 0.868 | 6.8 | 7.2 | 4900 | 1.3 | 9.4 | 10.3 | ||||
| 50 (2/3/4) | 6 | 0.641 | 8.0 | 8.4 | 7000 | 1.5 | 11.0 | 11.9 | ||||
| 70 (4) | 12 | 0.443 | 9.6 | 10.1 | 9800 | 1.5 | 12.6 | 13.6 | ||||
| 95 (2/4) | 15 | 0.320 | 11.3 | 11.9 | 13300 | 1.7 | 14.7 | 15.9 | ||||
| 120 (4) | 15 | 0.253 | 12.8 | 13.5 | 16800 | 1.7 | 16.2 | 17.5 | ||||
| 150 (4) | 15 | 0.206 | 14.1 | 14.9 | 21000 | 1.7 | 17.5 | 18.9 | ||||
What is the maximum resistance for a 50 mm² aluminum conductor at 20 °C?
The maximum electrical resistance for a 50 mm² phase or neutral aluminum conductor at 20 °C is 0.641 Ω/km.
What is the minimum number of wires required for a 16 mm² to 50 mm² conductor?
For conductor sizes ranging from 16 mm² to 50 mm², the specification requires a minimum of 6 wires.
How does the dielectric thickness vary across different conductor sizes?
The thickness of the dielectric is 1.3 mm for sizes 16 mm² to 35 mm², increases to 1.5 mm for 50 mm² and 70 mm², and reaches 1.7 mm for larger sizes from 95 mm² up to 150 mm².
What is the breaking force of a 95 mm² aluminum conductor?
A 95 mm² nominal cross-sectional area aluminum conductor has a rated minimum breaking force of 13,300 Newtons (N).
What are the outside diameter limits for a 120 mm² conductor?
For a 120 mm² nominal cross-sectional area conductor, the outside diameter is designed to be between a minimum of 16.2 mm and a maximum of 17.5 mm.
Why is the conductor resistance specified at exactly 20 °C?
20 °C is the standard reference temperature used globally in electrical engineering to measure and compare the electrical resistance of conductors consistently, as resistance changes with temperature.
















