N2XSB(AL)Y/NA2XSB(AL)Y
3.6KV-35KV XLPE Isolamento Nastro in alluminio Cavo di alimentazione con rivestimento in PVC e corazzato
- Conduttore: Rame o alluminio (Classe 2 secondo IEC 60502-2).
- Isolamento :XLPE
- Schermo Metallizzato : Nastro di rame
- Strato Separazione : Nastro non igroscopico.
- Guaina Interna : PVC
- Tappeto : Aluminum Tape Armor (ATA).
- Guaina esterna : PVC
- Colore : Solitamente rosso o nero.
- Elaborazione rapida dei campioni con soluzioni personalizzate
- Materiali di alta qualità
- Opzioni di prezzo convenienti
- Consegna globale
- Per una migliore protezione dei dati, assicurati che tutti i caricamenti siano sicuri
Risparmia almeno 30% in media
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Descrizione del prodotto
N2XSB(AL)Y/NA2XSB(AL)Y : Product Description and Specifications
The N2XSB(AL)Y series is a dedicated Medium Voltage (3.6kV–35kV) cable for power transmission. It combines a high-conductivity Copper conductor with XLPE insulation. Crucially, the mechanical protection uses Aluminum Tape Armor (ATA) rather than steel. Since Aluminum is non-magnetic, this design eliminates the risk of eddy current overheating in single-core circuits while still providing the crush resistance required for direct underground burial. The assembly is finished with a weather-resistant PVC sheath, suitable for industrial grids and renewable energy infrastructure.
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Vantaggi
N2XSB(AL)Y/NA2XSB(AL)Y : Benefits and Features
90°C Rated: XLPE handles the heat. It runs hotter and harder than standard PVC cables.
Aluminum Tape Armor: A physical shield. It stops crushing rocks and keeps hungry rodents from chewing through.
Weatherproof: Sun, rain, or mud? No problem. The jacket shrugs it off.
25-Year Life: TUV certified. Install it and forget about it for a quarter-century.
Install Anywhere: Direct burial, trenches, or even floating solar rigs. It handles it all.
Dimensioni/Parametri
| Nom. Cross Sect. (mm²) | DC Resistance at 20°C Max (Ω/km) | AC Resistance at 90°C Max (Ω/km) | Inductance Trefoil formation (mH/km) | Inductance Flat formation (mH/km) | Current Capacity Trefoil - in air (A) | Current Capacity Trefoil - in ground (A) | Current Capacity Flat - in air (A) | Current Capacity Flat - in ground (A) | Short circuit current at 1 sec - Conductor Max (kA) | Short circuit current at 1 sec - Screen Max (kA) |
|---|---|---|---|---|---|---|---|---|---|---|
| 25 | 0.727 | 0.927 | 0.454 | 0.500 | 166 | 153 | 170 | 156 | 3.58 | 1.14 |
| 35 | 0.524 | 0.668 | 0.431 | 0.477 | 201 | 183 | 206 | 187 | 5.01 | 1.14 |
| 50 | 0.387 | 0.494 | 0.413 | 0.459 | 240 | 216 | 246 | 221 | 7.15 | 1.14 |
| 70 | 0.268 | 0.342 | 0.389 | 0.435 | 299 | 264 | 307 | 270 | 10.01 | 1.14 |
| 95 | 0.193 | 0.247 | 0.373 | 0.419 | 363 | 315 | 372 | 322 | 13.59 | 1.14 |
| 120 | 0.153 | 0.196 | 0.358 | 0.404 | 418 | 358 | 428 | 365 | 17.16 | 1.14 |
| 150 | 0.124 | 0.159 | 0.347 | 0.393 | 476 | 401 | 487 | 410 | 21.45 | 1.14 |
| 185 | 0.0991 | 0.128 | 0.338 | 0.385 | 545 | 452 | 557 | 461 | 26.46 | 1.14 |
| 240 | 0.0754 | 0.098 | 0.326 | 0.372 | 642 | 523 | 657 | 532 | 34.32 | 1.14 |
| 300 | 0.0601 | 0.079 | 0.316 | 0.362 | 734 | 588 | 750 | 598 | 42.90 | 1.14 |
| 400 | 0.0470 | 0.063 | 0.305 | 0.351 | 852 | 666 | 869 | 677 | 57.20 | 1.14 |
| 500 | 0.0366 | 0.051 | 0.297 | 0.343 | 980 | 750 | 997 | 760 | 71.50 | 1.14 |
| 630 | 0.0283 | 0.041 | 0.289 | 0.335 | 1120 | 840 | 1137 | 848 | 90.09 | 1.14 |
| Nom. Cross Sect. (mm²) | DC Resistance at 20°C Max (Ω/km) | AC Resistance at 90°C Max (Ω/km) | Inductance Trefoil formation (mH/km) | Inductance Flat formation (mH/km) | Current Capacity Trefoil - in air (A) | Current Capacity Trefoil - in ground (A) | Current Capacity Flat - in air (A) | Current Capacity Flat - in ground (A) | Short circuit current at 1 sec - Conductor Max (kA) | Short circuit current at 1 sec - Screen Max (kA) |
|---|---|---|---|---|---|---|---|---|---|---|
| 25 | 0.727 | 0.927 | 0.437 | 0.484 | 164 | 153 | 168 | 157 | 3.58 | 1.14 |
| 35 | 0.524 | 0.668 | 0.415 | 0.461 | 199 | 183 | 204 | 188 | 5.01 | 1.14 |
| 50 | 0.387 | 0.494 | 0.398 | 0.444 | 237 | 216 | 243 | 221 | 7.15 | 1.14 |
| 70 | 0.268 | 0.342 | 0.374 | 0.421 | 296 | 264 | 304 | 270 | 10.01 | 1.14 |
| 95 | 0.193 | 0.247 | 0.358 | 0.404 | 360 | 316 | 369 | 323 | 13.59 | 1.14 |
| 120 | 0.153 | 0.196 | 0.346 | 0.392 | 416 | 358 | 426 | 366 | 17.16 | 1.14 |
| 150 | 0.124 | 0.159 | 0.334 | 0.380 | 473 | 402 | 484 | 410 | 21.45 | 1.14 |
| 185 | 0.0991 | 0.128 | 0.325 | 0.371 | 541 | 453 | 554 | 462 | 26.46 | 1.14 |
| 240 | 0.0754 | 0.098 | 0.316 | 0.362 | 639 | 523 | 654 | 533 | 34.32 | 1.14 |
| 300 | 0.0601 | 0.079 | 0.309 | 0.356 | 733 | 588 | 748 | 598 | 42.90 | 1.14 |
| 400 | 0.0470 | 0.063 | 0.300 | 0.346 | 851 | 667 | 868 | 677 | 57.20 | 1.14 |
| 500 | 0.0366 | 0.051 | 0.294 | 0.341 | 979 | 751 | 997 | 760 | 71.50 | 1.14 |
| 630 | 0.0283 | 0.041 | 0.286 | 0.332 | 1120 | 840 | 1136 | 848 | 90.09 | 1.14 |
| Nom. Cross Sect. (mm²) | DC Resistance at 20°C Max (Ω/km) | AC Resistance at 90°C Max (Ω/km) | Inductance Trefoil formation (mH/km) | Inductance Flat formation (mH/km) | Current Capacity Trefoil - in air (A) | Current Capacity Trefoil - in ground (A) | Current Capacity Flat - in air (A) | Current Capacity Flat - in ground (A) | Short circuit current at 1 sec - Conductor Max (kA) | Short circuit current at 1 sec - Screen Max (kA) |
|---|---|---|---|---|---|---|---|---|---|---|
| 25 | 0.727 | 0.927 | 0.473 | 0.519 | 168 | 153 | 172 | 156 | 3.58 | 1.14 |
| 35 | 0.524 | 0.668 | 0.448 | 0.495 | 203 | 183 | 208 | 187 | 5.01 | 1.14 |
| 50 | 0.387 | 0.494 | 0.430 | 0.476 | 242 | 216 | 248 | 220 | 7.15 | 1.14 |
| 70 | 0.268 | 0.342 | 0.405 | 0.451 | 302 | 263 | 309 | 269 | 10.01 | 1.14 |
| 95 | 0.193 | 0.247 | 0.387 | 0.433 | 366 | 315 | 374 | 321 | 13.59 | 1.14 |
| 120 | 0.153 | 0.196 | 0.376 | 0.422 | 422 | 357 | 431 | 364 | 17.16 | 1.14 |
| 150 | 0.124 | 0.159 | 0.363 | 0.409 | 479 | 401 | 490 | 409 | 21.45 | 1.14 |
| 185 | 0.0991 | 0.128 | 0.352 | 0.399 | 548 | 452 | 560 | 460 | 26.46 | 1.14 |
| 240 | 0.0754 | 0.098 | 0.338 | 0.385 | 645 | 522 | 659 | 532 | 34.32 | 1.14 |
| 300 | 0.0601 | 0.079 | 0.327 | 0.374 | 738 | 588 | 753 | 598 | 42.90 | 1.14 |
| 400 | 0.0470 | 0.063 | 0.317 | 0.363 | 855 | 667 | 871 | 676 | 57.20 | 1.14 |
| 500 | 0.0366 | 0.050 | 0.307 | 0.353 | 984 | 752 | 1000 | 761 | 71.50 | 1.14 |
| 630 | 0.0283 | 0.041 | 0.297 | 0.344 | 1125 | 842 | 1141 | 850 | 90.09 | 1.14 |
| Nom. Cross Sect. (mm²) | DC Resistance at 20°C Max (Ω/km) | AC Resistance at 90°C Max (Ω/km) | Inductance Trefoil formation (mH/km) | Inductance Flat formation (mH/km) | Current Capacity Trefoil - in air (A) | Current Capacity Trefoil - in ground (A) | Current Capacity Flat - in air (A) | Current Capacity Flat - in ground (A) | Short circuit current at 1 sec - Conductor Max (kA) | Short circuit current at 1 sec - Screen Max (kA) |
|---|---|---|---|---|---|---|---|---|---|---|
| 35 | 0.524 | 0.668 | 0.465 | 0.511 | 205 | 183 | 210 | 187 | 5.01 | 1.14 |
| 50 | 0.387 | 0.494 | 0.445 | 0.491 | 244 | 215 | 249 | 220 | 7.15 | 1.14 |
| 70 | 0.268 | 0.342 | 0.420 | 0.466 | 304 | 263 | 311 | 269 | 10.01 | 1.14 |
| 95 | 0.193 | 0.247 | 0.404 | 0.450 | 368 | 314 | 376 | 320 | 13.59 | 1.14 |
| 120 | 0.153 | 0.196 | 0.389 | 0.435 | 424 | 357 | 433 | 364 | 17.16 | 1.14 |
| 150 | 0.124 | 0.159 | 0.376 | 0.422 | 482 | 400 | 492 | 408 | 21.45 | 1.14 |
| 185 | 0.0991 | 0.127 | 0.364 | 0.410 | 550 | 451 | 562 | 460 | 26.46 | 1.14 |
| 240 | 0.0754 | 0.098 | 0.349 | 0.395 | 648 | 522 | 661 | 532 | 34.32 | 1.14 |
| 300 | 0.0601 | 0.079 | 0.338 | 0.384 | 740 | 588 | 755 | 597 | 42.90 | 1.14 |
| 400 | 0.0470 | 0.063 | 0.327 | 0.373 | 858 | 667 | 873 | 676 | 57.20 | 1.14 |
| 500 | 0.0366 | 0.050 | 0.316 | 0.362 | 986 | 752 | 1002 | 761 | 71.50 | 1.14 |
| 630 | 0.0283 | 0.041 | 0.306 | 0.352 | 1128 | 843 | 1143 | 850 | 90.09 | 1.14 |
| Nom. Cross Sect. (mm²) | DC Resistance at 20°C Max (Ω/km) | AC Resistance at 90°C Max (Ω/km) | Inductance Trefoil formation (mH/km) | Inductance Flat formation (mH/km) | Current Capacity Trefoil - in air (A) | Current Capacity Trefoil - in ground (A) | Current Capacity Flat - in air (A) | Current Capacity Flat - in ground (A) | Short circuit current at 1 sec - Conductor Max (kA) | Short circuit current at 1 sec - Screen Max (kA) |
|---|---|---|---|---|---|---|---|---|---|---|
| 50 | 0.387 | 0.494 | 0.481 | 0.528 | 248 | 214 | 253 | 219 | 7.15 | 1.14 |
| 70 | 0.268 | 0.342 | 0.453 | 0.500 | 308 | 262 | 314 | 268 | 10.01 | 1.14 |
| 95 | 0.193 | 0.247 | 0.434 | 0.480 | 372 | 313 | 380 | 319 | 13.59 | 1.14 |
| 120 | 0.153 | 0.196 | 0.417 | 0.463 | 428 | 356 | 437 | 363 | 17.16 | 1.14 |
| 150 | 0.124 | 0.159 | 0.403 | 0.449 | 486 | 399 | 496 | 407 | 21.45 | 1.14 |
| 185 | 0.0991 | 0.127 | 0.391 | 0.438 | 554 | 450 | 565 | 459 | 26.46 | 1.14 |
| 240 | 0.0754 | 0.098 | 0.376 | 0.422 | 652 | 521 | 664 | 530 | 34.32 | 1.14 |
| 300 | 0.0601 | 0.078 | 0.364 | 0.410 | 744 | 587 | 757 | 596 | 42.90 | 1.14 |
| 400 | 0.0470 | 0.062 | 0.349 | 0.395 | 861 | 666 | 876 | 676 | 57.20 | 1.14 |
| 500 | 0.0366 | 0.050 | 0.337 | 0.383 | 990 | 753 | 1005 | 761 | 71.50 | 1.14 |
| 630 | 0.0283 | 0.040 | 0.327 | 0.373 | 1132 | 845 | 1145 | 852 | 90.09 | 1.14 |
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Processi di produzione del cavo elettrico
Per garantire una qualità superiore, JOCA opera linee di produzione completamente digitalizzate e automatizzate per cavi alimentazione. Specificatamente, questo flusso di lavoro completo coperture trefolo conduttore, estrusione isolante, vagliatura metallica e guaina finale. Inoltre, sistemi intelligenti monitorare attivamente ogni fase per garantire prestazioni stabili e qualità del prodotto costante. In aggiunta, la fabbrica non c'è bisogno di strutture di prova avanzate, come prove di scarica parziale, prove di trazione e prove di scintilla. Di conseguenza, queste misure rigorose garanzia che ogni cavo consegnato soddisfa rigorosamente gli standard internazionali.
Imballaggio per la spedizione
Per soddisfare le varie esigenze di trasporto, ci sono molti metodi di imballaggio che possono essere utilizzati.
Hai altre domande?
Q: Voltage range?
A: It handles the full Medium Voltage spread: 3.6kV all the way to 35kV.
Q: Materiale di isolamento?
A: XLPE. It beats PVC hands down because it can run hotter (90 °C) without degrading.
Q: Why use Aluminum Tape Armor?
A: Protection without the weight. It stops rats from chewing the core and protects against light impact. Plus, since it’s aluminum, it won’t overheat magnetically like steel does on single-core cables.
Q: Can I bury it?
A: Go for it. That’s what the armor is for. Dig the trench, drop it in, and cover it up.
Q: Max temp?
A: It runs happily at 90 °C continuous. No sweat.
Q: Where can I install it?
A: Pretty much anywhere. Solar farms, rooftops, or even floating PV rigs. It’s built for the outdoors.
Q: Conductor type?
A: High-grade Rame incagliato. We don’t skimp on the metal.
Q: How long will it last?
A: It’s certified for 25 anni. Install it properly, and you won’t have to touch it for decades.
















