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High-Quality AAAC ASTM B399 All Aluminum Alloy Conductor from China Suppliers and Factory for Reliable Electrical Solutions
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| Code Word | Conductor Size | Stranding | Sectional Area | Diameter of Conductor | Linear Mass | Rated Strength | Max. D.C. Resistance at 20℃ | |
|---|---|---|---|---|---|---|---|---|
| cmil (AWG) | mm | No. | mm² | mm | kg/km | kN | Ω/km | |
| - | 26 240 (6AWG) | 1.55 | 7 | 13.2 | 4.65 | 36 | 4.22 | 2.536 |
| Akron | 30 580 | 1.68 | 7 | 15.5 | 5.04 | 42 | 4.92 | 2.159 |
| - | 41 740 (4AWG) | 1.96 | 7 | 21.12 | 5.88 | 58 | 6.72 | 1.586 |
| Alton | 48 690 | 2.12 | 7 | 24.71 | 6.36 | 68 | 7.84 | 1.3557 |
| - | 66 360 (2AWG) | 2.47 | 7 | 33.54 | 7.41 | 92 | 10.70 | 0.9987 |
| Ames | 77 470 | 2.67 | 7 | 39.19 | 8.01 | 107 | 12.50 | 0.8547 |
| - | 105 600 (1/0AWG) | 3.12 | 7 | 53.52 | 9.36 | 147 | 17.00 | 0.6259 |
| Azusa | 123 300 | 3.37 | 7 | 62.44 | 10.11 | 171 | 19.00 | 0.5365 |
| - | 133 100 (2/0AWG) | 3.50 | 7 | 67.35 | 10.5 | 184 | 20.50 | 0.4974 |
| Anaheim | 155 400 | 3.78 | 7 | 78.55 | 11.34 | 215 | 24.00 | 0.4264 |
| - | 167 800 (3/0AWG) | 3.93 | 7 | 84.91 | 11.79 | 233 | 25.90 | 0.3945 |
| Amherst | 195 700 | 4.25 | 7 | 99.30 | 12.75 | 272 | 30.20 | 0.3373 |
| - | 211 600 (4/0AWG) | 4.42 | 7 | 107.41 | 13.26 | 294 | 32.70 | 0.3119 |
| Alliance | 246 900 | 4.77 | 7 | 125.09 | 14.31 | 343 | 38.10 | 0.2678 |
| - | 250 000 | 2.91 | 19 | 126.37 | 14.55 | 348 | 39.00 | 0.2651 |
| - | 300 000 | 3.19 | 19 | 151.85 | 15.95 | 418 | 46.80 | 0.2206 |
| Butte | 312 800 | 3.26 | 19 | 158.59 | 16.3 | 436 | 46.70 | 0.2112 |
| - | 350 000 | 3.45 | 19 | 177.62 | 17.25 | 489 | 52.30 | 0.1886 |
| Canton | 394 500 | 3.66 | 19 | 199.90 | 18.3 | 550 | 59.00 | 0.1676 |
| - | 400 000 | 3.69 | 19 | 203.19 | 18.45 | 559 | 59.80 | 0.1649 |
| - | 450 000 | 3.91 | 19 | 228.14 | 19.55 | 628 | 67.30 | 0.1468 |
| Calro | 465 400 | 3.98 | 19 | 236.38 | 19.9 | 650 | 69.60 | 0.1431 |
| - | 500 000 | 4.12 | 19 | 253.30 | 20.6 | 697 | 74.70 | 0.1322 |
| - | 550 000 | 3.10 | 37 | 279.26 | 21.7 | 770 | 83.90 | 0.12 |
| Darien | 559 500 | 4.36 | 19 | 283.67 | 21.8 | 781 | 83.60 | 0.1181 |
| - | 600 000 | 3.23 | 37 | 303.18 | 22.61 | 836 | 91.50 | 0.1105 |
| - | 650 000 | 3.37 | 37 | 330.03 | 23.59 | 910 | 95.00 | 0.1015 |
| Elgin | 652 400 | 4.71 | 19 | 331.04 | 23.55 | 911 | 97.50 | 0.1012 |
| - | 700 000 | 3.49 | 37 | 353.95 | 24.43 | 976 | 102.00 | 0.09464 |
| Flint | 740 800 | 3.59 | 37 | 374.53 | 25.13 | 1033 | 108.00 | 0.08944 |
| - | 750 000 | 3.62 | 37 | 380.81 | 25.34 | 1050 | 110.00 | 0.08976 |
| - | 800 000 | 3.73 | 37 | 404.3 | 26.11 | 1115 | 117.00 | 0.08285 |
| - | 900 000 | 3.96 | 37 | 455.70 | 27.72 | 1257 | 132.00 | 0.07351 |
| Greeley | 927 200 | 4.02 | 37 | 469.62 | 28.14 | 1295 | 136.00 | 0.07133 |
| - | 1 000 000 | 4.18 | 37 | 507.74 | 29.26 | 1400 | 146.00 | 0.06597 |
| - | 1 077 400 | 3.38 | 61 | 547.34 | 30.42 | 1512 | 156.00 | 0.0612 |
| - | 1 165 100 | 3.51 | 61 | 590.25 | 31.59 | 1630 | 169.00 | 0.05675 |
| - | 1 250 000 | 3.63 | 61 | 631.30 | 32.67 | 1744 | 180.00 | 0.05306 |
| - | 1 259 600 | 3.65 | 61 | 638.27 | 32.85 | 1763 | 182.00 | 0.05248 |
| - | 1 348 800 | 3.78 | 61 | 684.55 | 34.02 | 1891 | 195.00 | 0.04893 |
| - | 1 439 200 | 3.90 | 61 | 728.70 | 35.1 | 2013 | 208.00 | 0.04597 |
| - | 1 500 000 | 3.98 | 61 | 758.90 | 35.82 | 2096 | 217.00 | 0.04414 |
| - | 1 750 000 | 4.30 | 61 | 885.84 | 38.7 | 2447 | 253.00 | 0.03781 |
Frequently Asked Questions (FAQ)
What do the code words like "Akron", "Alton", and "Azusa" represent?
These code words are standardized names used in the electrical industry to identify specific sizes and configurations of All Aluminum Conductors (AAC). They simplify referencing, ordering, and designing systems by representing a unique set of technical specifications.
What does "cmil" mean in the conductor size column?
"cmil" stands for circular mil, which is a unit of area equal to the area of a circle with a diameter of one mil (1/1000 of an inch). It is commonly used in North America to specify the cross-sectional area of large electrical conductors.
How does the stranding configuration affect the conductor's properties?
The stranding configuration shows the number of wires and their individual diameter (e.g., 7, 19, 37, or 61 wires). A higher number of strands for a given size increases the flexibility of the conductor, making it easier to handle and install, though it may slightly affect the overall diameter.
Why is the maximum D.C. resistance specified specifically at 20℃?
Electrical resistance changes with temperature. Specifying the D.C. resistance at a standard baseline temperature of 20℃ allows engineers to make accurate comparisons and calculations for line losses and voltage drop under consistent conditions.
What is the relationship between linear mass and rated strength?
Linear mass (kg/km) represents the weight of the conductor per unit length, which is crucial for structural load calculations on poles and towers. Rated strength (kN) is the mechanical tensile strength indicating the maximum tension the conductor can withstand without breaking.

















