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Copper Core PVC Insulated Aerial Insulated Cable (0.6/1kv)

Insulated Aerial Cable-JKV

Copper core PVC insulated overhead cable is a high-quality cable product designed by Shenxing Cable Group for outdoor power transmission. The cable has excellent electrical conductivity, good weather resistance and strong environmental adaptability. As a professional cable manufacturer, we provide a variety of overhead cable models to global customers to meet various power distribution and energy transmission needs.

Widely Use:

Overhead power distribution: 

Overhead power lines in cities and rural areas to meet the needs of power distribution, urban infrastructure power supply, etc. 

Photovoltaic power system: 

Suitable for cable connection in solar photovoltaic systems to ensure efficient connection and power transmission between photovoltaic modules and inverters and batteries.

Industrial and commercial power systems:

Provide efficient and safe power supply in large-scale power transmission needs such as industrial parks and commercial buildings.

Advantage:

High-efficiency conductive performance, copper core design

Using pure copper conductor, it has extremely low resistivity (the resistivity of copper is about 1.68×10^-8 Ω·m), ensuring minimal energy loss during power transmission.

PVC insulation, strong anti-aging and weather resistance

The use of PVC ensures that the cable has high weather resistance, which can effectively extend the service life of the cable even when exposed to sunlight and extreme weather for a long time.

High voltage resistance, safe and reliable

The excellent insulation and voltage resistance of copper core cables can effectively avoid the interference of external voltage fluctuations on the power system, ensuring the safety and stability of power transmission.

Multiple models to choose from to meet customized needs

Shenxing Cable Group provides copper core PVC insulated overhead cables of multiple models including low voltage, medium voltage and high voltage to meet different power needs.

Technical Data

Number of ConductorsConductor Diameter
Nominal AreaInsulation Thickness
Cable Outer Diameter
Cable Weight
Cable Breaking Force
Maximum Resistance of Conductor(20℃)Current Carrying Capacity

 (mm) (mm²)(mm)(mm)( kg/km)(N)(Ω/km)(A)







Hard copperSoft copperPVCPEXLPE
Single Core3.81015.811434711.9061.83656585
4.8161.27.218154861.1981.158990122
6.2251.28.426084650.7490.727120124166
7.2351.49.8377117310.540.524148152204
8.5501.411.1485165020.3990.387182188252
10.2701.412.8668234610.2760.268231239320
11.8951.614.9941317590.1990.193289299400
13.21201.616.21174399110.1580.153334348467
14.81501.817.71477495050.1280.124385399633
16.4185220.21768618460.10210.0991448466622
18.6240222.82305798230.07770.0754535558746
20.63002.424.42946998980.06190.0601615630865
Two Cores3.810111.622868901.9061.83606078
4.8161.214.4362109721.1981.158283112
6.2251.216.8521169300.7490.727110114153
7.2351.419.6733234620.540.524136140188
8.5501.422.2969330040.3990.387167173232
10.2701.425.21336469220.2760.268213220194
11.8951.629.41882635180.1990.193266275368
13.21201.632.22348798220.1580.153307320430
14.81501.836.22954990100.1280.124354367490
16.418524035361236920.10210.0991412429572
18.6240245.446091596460.07770.0754492513686
20.63002.450.658911995760.06190.0601566580730
Three Cores3.810112.5






4.8161.215.5






6.2251.218.1






7.2351.421.1






8.5501.423.9






10.2701.427.1






11.8951.631.7






13.21201.634.7






14.81501.839






16.4185243.1






18.6240248.9






20.63002.454.5






Four Cores3.810113456133841.9061.83535370
4.8161.216.2721219441.1981.157374100
6.2251.219.61040338600.7490.72798102136
7.2351.422.71464469240.540.524121125167
8.5501.425.91936660080.3990.387149154207
10.2701.4302669938440.2760.268189196262
11.8951.634.637611270360.1990.193237245328
13.21201.63846921596440.1580.153274285383
14.81501.842.659031980200.1280.124316327437
16.4185247.270652476840.10210.0991367382505
18.6240252.692103192920.07770.0754439458612
20.63002.458.9117703991520.06190.0601504517710

Expand all

Only some product parameters are displayed. For more product information, please contact us.

The above parameters are for reference only.

Cable Structure

Copper Core PVC Insulated Aerial Insulated Cable (0.6/1kV)


Copper Core PVC Insulated Aerial Insulated Cable (0.6/1kv)

Features

Laying Installation

Cable laying should use special tools, such as pay-off frame, guide roller etc., to prevent mechanical damage during the process of laying, away from heat source. When cable wearing tube and laying, the pipe diameter is not less than 1.5 times the cable diameter, multiple cable wearing tube to prohibit cable extrusion, the total area of the cable does not exceed 40% of the total area of the tube.

Experimental Performance

The rated power frequency UO / U: 0.6 / 1KV.

Operating temperature: 

Long-term working temperature does not exceed 70 ℃,the laying temperature is not lower than 0 ℃; 

When a short-circuit (the longest duration of no more than 5s) 

cable conductor allows the maximum temperature is 160 ℃ Cable laying ambient temperature should not be lower than 0 ℃.

Allowed bending radius: not less than 10 times the cable diameter.


Production

Projects

COMMON QUESTIONS

SHENXING Cable Service FAQs

Want to learn more? Check out our electrical cable most frequently asked questions.

What are the application scenarios of copper core PVC insulated overhead cables?

Copper core PVC insulated overhead cables are widely used in low-voltage and medium-voltage overhead power transmission, especially suitable for urban power distribution systems, rural power lines, photovoltaic power systems and street lighting systems. It is also used in building power systems, industrial power distribution and traffic lighting systems, and can provide long-term stable power supply under severe weather conditions.

How can copper core PVC insulated overhead cables ensure long-term weather resistance and durability?

The PVC insulation layer of copper core PVC insulated overhead cables has excellent resistance to UV, high temperature and chemical corrosion. PVC materials can still maintain excellent physical and electrical properties under long-term exposure to solar UV, wind and rain and chemical erosion. In addition, the high conductivity and oxidation resistance of copper conductors further improve the stability and durability of the cable.

What is the maximum operating temperature and use environment of this cable?

The temperature range of copper core PVC insulated overhead cables is typically **-20°C to +70°C**. It is suitable for both hot and cold environments and can work normally in various extreme weather conditions, including high temperature, severe cold, rain, snow and stormy weather. PVC insulation materials perform well in these temperature ranges, ensuring long-term and stable operation of the cable.

How high a voltage can a copper core PVC insulated overhead cable withstand?

The rated voltage of a copper core PVC insulated overhead cable is usually 0.6/1kV, which is suitable for low-voltage and medium-voltage power transmission systems. This cable is widely used in medium and low-voltage power systems such as overhead power lines and photovoltaic power access to ensure safe and reliable power transmission.

What are the advantages of copper core PVC insulated overhead cables compared with aluminum core cables?

Copper core cables have significantly higher conductivity than aluminum core cables. Copper has a lower resistivity than aluminum, so copper core cables have stronger conductivity, can reduce energy loss at the same current, and have higher transmission efficiency. In addition, copper conductors are also more resistant to oxidation than aluminum conductors, which makes copper core cables have a longer service life in long-term use.

What are the installation requirements for copper core PVC insulated overhead cables?

The installation of copper core PVC insulated overhead cable is very simple and convenient, with good flexibility, suitable for wiring in complex environments. It can be laid overhead without additional protective pipes. During installation, ensure that the support points and spacing of the cables meet relevant specifications to avoid damage to the cables due to excessive load. For long-term operation, it is recommended to regularly check whether the cables have signs of damage or aging to ensure the safety and stability of the power system.

More Frequently Asked Questions.

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