Brief: 신뢰할 수 있는 전력 분배를 위해 설계된 프리미엄 중전압 전력 케이블 6/10KV 알루미늄 아머 300-450M 드럼을 만나보세요. PVC, LSZH 또는 PE 외피를 특징으로 하는 이 케이블은 내구성과 유연성을 제공합니다. 6.35/11 KV 정격으로 안전하고 효율적인 전력 전송을 보장합니다. 맞춤형 드럼 길이와 금속 스크린은 성능을 향상시킵니다.
Related Product Features:
Rated for medium voltage operation at 6.35/11 KV with a test voltage of 21 KV for 6/10 KV cables.
Features a metallic screen made of longitude aluminum plastic tape for effective electromagnetic shielding.
Available with PVC, LSZH, or PE sheath options for flexibility, durability, and environmental resistance.
Supplied on wooden or wooden with steel drums with a standard packing length of 300 to 450 meters per drum.
Armored with aluminum wire for enhanced protection against mechanical stress and environmental factors.
UV resistant construction makes these cables suitable for both indoor and outdoor installations.
Certified to international standards including IEC 60502-2 and SNI for quality assurance.
Designed for power distribution, industrial use, and underground installation applications.
질문과대답:
What sheath material options are available for these medium voltage power cables?
The cables are available with PVC, LSZH (Low Smoke Zero Halogen), or PE (Polyethylene) sheath options, each offering unique benefits in flexibility, durability, and resistance to environmental factors.
What is the delivery time and minimum order quantity for these cables?
The delivery time is 15 days, and the minimum order quantity is 500 meters, with pricing and packaging details being negotiable based on your specific requirements.
What certifications do these medium voltage power cables hold?
These cables are certified by TUV, IEC, and SNI, ensuring they meet high quality standards and comply with international requirements for medium voltage power distribution applications.
What type of armor and metallic screen do these cables feature?
The cables feature aluminum wire armor for mechanical protection and a metallic screen made of longitude aluminum plastic tape that provides effective shielding against electromagnetic interference.