Time: 2025-09-22 15:18:04 Source: Henan Province Jianyun Cable Co., Ltd.
Medium voltage power cables (6–35 kV) are designed for efficient power transmission in applications requiring higher capacity than low voltage systems. The insulation material is a key factor in determining performance, durability, and safety. PVC (polyvinyl chloride) and XLPE (cross-linked polyethylene) are two common insulation materials for MV cables. PVC is cost-effective and widely used, while XLPE offers superior electrical and thermal properties. Both are paired with conductors (copper or aluminum), shielding, and armoring for MV applications. Henan Province Jianyun Cable Co., Ltd. provides TUV- and CCC-certified PVC and XLPE MV cables, ensuring reliability for diverse projects.
The differences between PVC and XLPE insulation in MV cables influence their performance and suitability:
Feature | PVC MV Cables | XLPE MV Cables |
---|---|---|
Thermal Resistance | Lower; max operating temperature 70°C. | Higher; max operating temperature 90°C. |
Dielectric Strength | Moderate; ~15–20 kV/mm. | High; ≥20 kV/mm, better resistance to electrical stress. |
Current Capacity | Lower; e.g., 180 A for 50 mm² copper at 11 kV. | Higher; e.g., 200 A for 50 mm² copper at 11 kV due to better thermal performance. |
Moisture Resistance | Moderate; requires additional sealing in wet environments. | Excellent; inherently resistant to moisture ingress. |
Flexibility | More flexible; suitable for tight spaces. | Less flexible; requires larger bending radius (6–10D). |
Cost | Lower; e.g., $10–40/m for 11 kV, 50 mm². | Higher; e.g., $15–50/m for 11 kV, 50 mm². |
Durability | Moderate; susceptible to aging and UV degradation. | High; resistant to aging, UV, and chemical degradation. |
Environmental Impact | Higher; emits toxic fumes when burned unless LSZH-modified. | Lower; can be paired with LSZH sheathing for low smoke/toxicity. |
Example Product | Jianyun Cable’s 11 kV PVC-insulated, SWA-armored cable. | Jianyun Cable’s 11 kV XLPE-insulated, SWA-armored cable. |
Both PVC and XLPE MV cables must meet rigorous standards for safety and performance:
Specification | PVC MV Cables | XLPE MV Cables |
---|---|---|
Conductor | Copper/aluminum, Class 2, <0.017 Ω/km (copper). | Copper/aluminum, Class 2, <0.017 Ω/km (copper). |
Insulation | PVC, 70°C, 2.5–8 mm, ~15–20 kV/mm. | XLPE, 90°C, 2.5–8 mm, ≥20 kV/mm. |
Shielding | Copper tape/wire, <10 pC partial discharge. | Copper tape/wire, <10 pC partial discharge. |
Sheathing | PVC, PE, LSZH, or PUR; SWA or tape armoring. | PVC, PE, LSZH, or PUR; SWA or tape armoring. |
Voltage Rating | 6–35 kV. | 6–35 kV. |
Standards | IEC 60502-2, IEC 60038, IEC 60332-3. | IEC 60502-2, IEC 60038, IEC 60332-3. |
Choosing between PVC and XLPE MV cables depends on project-specific factors:
Challenge | Solution |
---|---|
PVC Thermal Limitations | Use XLPE for high-current or high-temperature applications; apply derating (e.g., 0.91 at 40°C per IEC 60364). |
PVC Environmental Degradation | Use XLPE or LSZH-modified PVC for outdoor or harsh environments; add UV-resistant sheathing. |
XLPE Higher Cost | Use PVC for budget-constrained, indoor projects with moderate electrical demands. |
Counterfeit Products | Source from Jianyun Cable with TUV/CCC certifications; verify via official databases. |
Installation Complexity | Use PVC for flexible routing; ensure proper jointing and termination for XLPE (e.g., heat-shrink kits). |
PVC and XLPE medium voltage power cables (6–35 kV) serve distinct roles in power distribution, with PVC offering cost-effectiveness and flexibility for indoor, moderate-load applications, and XLPE providing superior thermal, electrical, and environmental performance for demanding outdoor or high-power projects. Both comply with standards like IEC 60502-2 and IEC 60038, ensuring safety and reliability. Henan Province Jianyun Cable Co., Ltd. offers TUV- and CCC-certified PVC and XLPE MV cables, tailored for industrial, utility, and infrastructure applications. By evaluating electrical, environmental, and budgetary factors, and partnering with trusted suppliers, users can select the optimal insulation material for safe, efficient, and durable power distribution systems lasting 20–30 years.
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