IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable

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Product Details
Customization: Available
Application: Construction, Overhead, Underground, Industrial, Power Station
Voltage: 0.6/1kv
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  • IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
  • IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
  • IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
  • IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
  • IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
  • IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
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  • Overview
  • Product Description
  • Specification
  • Certifications
  • Packaging & Shipping
  • Company Profile
Overview

Basic Info.

Model NO.
YJV22/YJLV22/YJV32/YJLV32/YJV33/YJLV33
Current
DC & AC
Insulation Material
XLPE
Sheath Material
PVC
Material Shape
Round Wire
Wire Core Material
Copper/Aluminum/Aluminum Alloy
Certification
ISO, CCC, CE, RoHS, SGS
Model
Yjv/Yjlv/Yjv22/Yjlv22/Yjv32/Yjlv32/VV/Vlv/
Brand
Jinchao
Warranty
100% Qualified
Number of Cores
1 2 3 4 5 3+1 3+2 4+1
Rated Voltage
0.6/1kv
Service
OEM
Transport Package
Optional
Specification
Cu Al 1.5mm2-630mm2
Trademark
JINCHAO
Origin
China
HS Code
8544492100
Production Capacity
50000km/Month

Product Description

Product Description
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Low voltage aluminum core cable
        Low voltage aluminum core cable refers to a power cable with a rated voltage of 1kV (1000 volts) and below, using aluminum material as the conductor. It is the fundamental component used for transmitting and distributing electrical energy in the power system, widely applied in various links from substations to user terminals.
        Low voltage aluminum core cable is an economical and efficient power transmission solution, especially suitable for fixed installation, long-distance, and large cross-section application scenarios. The key to its successful application lies in the correct selection and extremely reliable connection process. With the advancement of connection technology and material processes, its original shortcomings are constantly being overcome, playing an indispensable role in modern power systems.
Basic structure:
Common models and meanings:
Conductor: Made of high-purity electrical aluminum (usually rare earth aluminum), mostly in the form of multiple stranded strands to improve the flexibility and bending performance of the cable.
Insulation layer: wrapped around the conductor to provide insulation. Common materials include:
Polyvinyl chloride (PVC): code V, low cost, corrosion-resistant, but with a lower temperature resistance level (70 ℃).
Cross linked polyethylene (XLPE): code YJ, with better mechanical properties and heat resistance (long-term allowable working temperature of 90 ℃), higher current carrying capacity, is currently the mainstream choice.
Filler layer: In multi-core cables, it is used to fill the gaps between conductors, keeping the cable round and structurally stable.
Inner sheath/armor layer (optional):
Armor: such as steel tape armor (code 22), used to enhance the compressive and impact resistance of cables, suitable for direct burial or situations prone to external damage.
 Outer sheath: The outermost protective layer, usually made of polyvinyl chloride (PVC) or polyethylene (PE), which serves to protect the internal structure of the cable from mechanical damage, chemical corrosion, and environmental influences.
Chinese cable models usually use pinyin letters to represent materials and structures.
 VLV: Aluminum core PVC insulated PVC sheathed power cable.
 YJLV: Aluminum core cross-linked polyethylene insulated polyvinyl chloride sheathed power cable.
 VLV22: Aluminum core PVC insulated steel tape armored PVC sheathed power cable.
 YJLV22: Aluminum core cross-linked polyethylene insulated steel tape armored polyvinyl chloride sheathed power cable.
Main application scenarios:
Fixed wiring power backbone lines: such as vertical backbone lines inside buildings and incoming lines to floor distribution boxes.
 Long distance power transmission and distribution: such as urban power grid, rural power grid renovation in towns and villages.
 Temporary power supply: such as temporary power supply for construction sites and large-scale events.
 Specific industrial sectors: cost sensitive and difficult to move after installation, such as fixed lines in some factories.
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Low voltage copper core cable
        Low voltage copper core cable refers to the wire used for transmitting and distributing electrical energy in power systems with AC rated voltage of 0.6/1kV and below (some standards can be extended to 3.6/6kV). Its conductor is made of high-purity oxygen free copper, which has excellent conductivity and stability, and is one of the most widely used and core basic materials in the field of power transmission today.
        Low voltage copper core cables have become an indispensable component of modern power systems due to their excellent electrical, mechanical, and safety performance. When designing and selecting, comprehensive consideration should be given to application scenarios, technical requirements, and economic benefits to choose the most suitable product, in order to ensure the long-term, stable, and efficient operation of the power system.
Basic structure:
Advantages of Copper Core Cables
Conductor:using annealed soft copper with a purity of over 99.99%, ensuring low resistance and high conductivity.Divided into single core (single strand) and multi-core (twisted). Twisted conductors have better flexibility, making them easier to bend and install.
Insulation layer:PVC: commonly represented by "V" in the model. Low cost, good flame retardancy (divided into flame retardant and non flame retardant), and the most widely used.XLPE: commonly represented by "YJ" in the model. Heat resistance, mechanical strength, and chemical corrosion resistance are superior to PVC, allowing for higher operating temperatures (90 ° C).
Steel belt armor: commonly represented by "22" in the model (such as VV22), with good pressure resistance.
Steel wire armor: commonly represented by "32" in the model, it has good tensile strength and is commonly used in load-bearing situations such as vertical shafts and underwater.
Outer sheath material: usually polyvinyl chloride or polyethylene, with characteristics such as weather resistance and flame retardancy.
High conductivity: Copper's conductivity is second only to silver and about 1.68 times higher than aluminum. Under the same current carrying capacity, copper core cables have smaller cross-sections and are more space saving.
Low resistance and low energy consumption: Due to its low resistance, copper core cables have lower power loss (line loss) and are more energy-efficient when transmitting the same amount of electrical energy.
High strength and fatigue resistance: Copper has higher mechanical strength, good ductility, and is less prone to creep and fracture at the connection point. It has excellent connection stability and high safety and reliability.
Corrosion resistance and oxidation resistance: Copper is not easily oxidized at room temperature, has strong corrosion resistance, and has a longer service life (up to 30-40 years or even longer).
Good flexibility: With a small bending radius, it is easy to thread and lay pipes, making construction convenient.
Specification
type 
Insulation Thickness
Sheath Thickness
outer diameter
Cable weight
Resistance at 20 ℃
(mm²)
(mm)
(mm)
(mm)
copper(kg/km)
aluminum(kg/km)
copper
aluminum
2x4
0.7
1.8
16.8
447
397
4.61
7.41
2x6
0.7
1.8
17.8
520
444
3.08
4.61
2x10
0.7
1.8
21.3
835
708
1.83
3.08
2x16
0.7
1.8
23.3
1024
823
1.15
1.91
2x25
0.9
1.8
27.4
1512
1195
0.727
1.20
2x35
0.9
1.8
28.6
1740
1307
0.524
0.868
2x50
1.0
1.8
31.6
2136
1550
0.387
0.641
2x70
1.1
2.0
35.4
2735
1886
0.268
0.443
2x95
1.1
2.1
39.8
3697
2518
0.193
0.320
2x120
1.2
2.2
43.4
4396
2909
0.153
0.253
2x150
1.4
2.3
47.4
5208
3374
0.124
0.206
2x185
1.6
2.5
53.2
6747
4451
0.0991
0.164
2x240
1.7
2.7
58.6
8278
5261
0.0754
0.125
2x300
1.8
2.8
64.0
9912
6127
0.0601
0.100
2x400
2.0
3.1
71.2
12168
7328
0.0470
0.0778
3x4
0.7
1.8
17.4
505
430
4.61
7.41
3x6
0.7
1.8
18.5
598
485
3.08
4.61
3x10
0.7
1.8
22.2
966
776
1.83
3.08
3x16
0.7
1.8
24.3
1220
918
1.15
1.91
3x25
0.9
1.8
28.7
1803
1328
0.727
1.20
3x35
0.9
1.8
30.0
2133
1483
0.524
0.868
3x50
1.0
1.9
33.4
2658
1779
0.387
0.641
3x70
1.1
2.0
38.1
3716
2442
0.268
0.443
3x95
1.1
2.2
42.2
4692
2924
0.193
0.320
3x120
1.2
2.3
46.1
5649
3418
0.153
0.253
3x150
1.4
2.5
52.0
7239
4487
0.124
0.206
3x185
1.6
2.6
56.5
8634
5191
0.0991
0.164
3x240
1.7
2.8
62.7
10790
6265
0.0754
0.125
3x300
1.8
3.0
68.3
13016
7338
0.0601
0.100
3x400
2.0
3.2
75.8
16028
8768
0.0470
0.0778
4x4
0.7
1.8
18.4
580
480
4.61
7.41
4x6
0.7
1.8
20.5
839
688
3.08
4.61
4x10
0.7
1.8
23.6
1119
866
1.83
3.08
4x16
0.7
1.8
26.7
1599
1196
1.15
1.91
4x25
0.9
1.8
30.8
2151
1518
0.727
1.20
4x35
0.9
1.9
32.5
2584
1718
0.524
0.868
4x50
1.0
2.0
36.3
3254
2081
0.387
0.641
4x70
1.1
2.2
41.6
4558
2860
0.268
0.443
4x95
1.1
2.3
46.0
5827
3469
0.193
0.320
4x120
1.2
2.5
51.9
7540
4566
0.153
0.253
4x150
1.4
2.6
56.7
8993
5324
0.124
0.206
4x185
1.6
2.8
62.3
10871
6281
0.0991
0.164
4x240
1.7
3.0
68.8
13552
7519
0.0754
0.125
4x300
1.8
3.2
75.0
16379
8809
0.0601
0.100
4x400
2.0
3.5
85.3
21416
11736
0.0470
0.0778








IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Certifications
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Part of the company's testing equipment
In the pulse of power transmission and data interconnection, the health of cables is the core to ensure safety and efficiency. We are well aware that every malfunction may mean huge economic losses and safety hazards. Therefore, we have introduced the industry-leading complete set of advanced cable testing equipment to provide you with precise protection throughout the entire lifecycle from manufacturing to operation and maintenance.
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Partial workshop production equipment
Our workshop is equipped with an internationally leading complete cable production line, covering the manufacturing capabilities of special cables such as high-voltage cross-linked polyethylene (XLPE) insulated wires and mineral insulated fire-resistant cables. Through integrated linked production lines and full online monitoring systems, we ensure that our products have high consistency, excellent electrical performance, and absolute safety and reliability.
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Packaging & Shipping
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
Company Profile
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
IEC CCC CE 0.6/1kv Control Cable with Armored Protection and Aluminium/Copper/Cu/Al/XLPE/PVC/Swa/Sta Conductor Insulation Insulated Sheath Power Cable
FAQ
Q: What's the lead time for orders?
A: Standard models ship in 10–30 days; customized units require 30–45 days.
 
Q: Do you provide after-sales service overseas?
A: Yes, we have partnered service centers in key regions.
 
Q: what is our payment term?
A: Our payment term is usually T/T 30% in advanced, the balance before picking up the goods or L/C at sight.
 
Q: what is the package of the cable?
A: The package is usually wooden drum or steel wooden drum or coil.also according to customer's requirment.
 
Q: How do I place an order?
A: Contact us via email/phone for a quote, then confirm with a PO.

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