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LiHCH LSZH Screened Control Cable
LiHCH LSZH Screened Control Cable
LiHCH LSZH Screened Control Cable
LiHCH LSZH Screened Control Cable
LiHCH LSZH Screened Control Cable
LiHCH LSZH Screened Control Cable

LiHCH LSZH Screened Control Cable - 300/500V Halogen-Free Flexible Cable

The LiHCH Control Cable is a halogen-free screened flexible control cable engineered for modern safety-critical applications. It consists of finely stranded copper conductors with LSZH insulation, twisted cores, a tinned copper braid screen for effective EMI protection, and an LSZH outer sheath. This design combines high flexibility, reliable signal transmission, superior fire safety, and minimal smoke and toxic gas emission during combustion. Rated 300/500V, the LiHCH LSZH Screened Control Cable is particularly suitable for public infrastructure, transportation hubs, hospitals, and industrial facilities where fire safety regulations are strict. Manufactured under strict quality control from raw materials to finished product, it meets international standards and provides a safe, reliable solution for control and signal circuits.
Standard IEC 60227, VDE 0812, IEC 60332-1
Voltage Rating 300/500V
Conductor Stranded copper (Class 5)
Bending Radius 6× outer diameter
Smoke Density Very low (IEC 61034)
Construction
Technical Specifications
Quality Control
Application

Construction

LiHCH LSZH Screened Control Cable
LiHCH LSZH Screened Control Cable Construction

Key Product Features

Low-smoke zero-halogen (LSZH) throughout
Tinned copper braid for excellent EMI shielding
Highly flexible Class 5 copper conductors
Outstanding flame retardant properties
Minimal toxic gas and smoke emission

Conductor

Stranded copper (Class 5)

Insulation

LSZH

Sheath

LSZH

Core Identification

Numbered cores

Operating Temp

-20°C to +70°C

Screening

Tinned copper braid (≥80% coverage)

Technical Specifications

LiHCH LSZH Screened Control Cable - 300/500V Halogen-Free Flexible Cable
LiHCH LSZH Screened Control Cable
NUMBER OF CORE AND OVERALL DIAMETER COPPER WEIGHT APPROX. CABLE WEIGHT STANDARD LENGTH
CROSS SECTION (mm2) (mm) (kg/km) (kg/km) (mt)
2 x 0,22 4,20 11 26 100/500/1000
3 x 0,22 4,30 13 29 100/500/1000
4 x 0,22 4,70 15 39 100/500/1000
5 x 0,22 5,00 17 44 100/500/1000
6 x 0,22 5,30 22 50 100/500/1000
8 x 0,22 5,60 25 61 100/500/1000
10 x 0,22 6,70 30 79 100/500/1000
12 x 0,22 7,10 35 90 100/500/1000
14 x 0,22 7,40 40 100 100/500/1000
16 x 0,22 7,70 45 104 100/500/1000
18 x 0,22 8,00 50 110 100/500/1000
20 x 0,22 8,30 52 121 100/500/1000
2 x 0,34 4,60 17 30 100/500/1000
3 x 0,34 4,80 20 36 100/500/1000
4 x 0,34 5,20 25 46 100/500/1000
5 x 0,34 5,60 31 56 100/500/1000
6 x 0,34 5,90 34 63 100/500/1000
8 x 0,34 6,20 38 76 100/500/1000
10 x 0,34 7,60 43 96 100/500/1000
12 x 0,34 7,90 51 109 100/500/1000
14 x 0,34 8,20 60 120 100/500/1000
16 x 0,34 8,70 68 132 100/500/1000
18 x 0,34 9,20 75 144 100/500/1000
20 x 0,34 9,60 84 161 100/500/1000
2 x 0,50 5,40 17 33 100/500/1000
3 x 0,50 5,60 21 54 100/500/1000
4 x 0,50 6,20 27 67 100/500/1000
5 x 0,50 6,90 31 78 100/500/1000
6 x 0,50 7,40 36 90 100/500/1000
7 x 0,50 7,40 42 98 100/500/1000
8 x 0,50 7,70 45 104 100/500/1000
10 x 0,50 9,60 56 135 100/500/1000
12 x 0,50 9,70 68 150 100/500/1000
14 x 0,50 10,10 75 164 100/500/1000
16 x 0,50 10,70 83 185 100/500/1000
18 x 0,50 11,20 95 203 100/500/1000
20 x 0,50 11,60 102 217 100/500/1000
2 x 0,75 5,80 18 56 100/500/1000
3 x 0,75 6,10 30 67 100/500/1000
4 x 0,75 6,70 35 81 100/500/1000
5 x 0,75 7,40 43 99 100/500/1000
6 x 0,75 8,00 51 109 100/500/1000
7 x 0,75 8,00 56 115 100/500/1000
8 x 0,75 8,40 64 128 100/500/1000
10 x 0,75 10,20 80 162 100/500/1000
12 x 0,75 10,50 94 184 100/500/1000
14 x 0,75 11,00 107 206 100/500/1000
16 x 0,75 11,60 120 230 100/500/1000
18 x 0,75 12,60 143 267 100/500/1000
20 x 0,75 13,00 155 285 100/500/1000
2 x 1 6,20 28 64 100/500/1000
3 x 1 6,70 37 80 100/500/1000
4 x 1 7,20 46 95 100/500/1000
5 x 1 7,90 56 114 100/500/1000
6 x 1 8,50 66 131 100/500/1000
7 x 1 8,50 74 140 100/500/1000
8 x 1 9,20 83 160 100/500/1000
10 x 1 10,90 104 195 100/500/1000
12 x 1 11,30 121 222 100/500/1000
14 x 1 12,20 139 262 100/500/1000
16 x 1 12,40 156 291 100/500/1000
18 x 1 13,60 175 326 100/500/1000
20 x 1 14,00 195 350 100/500/1000
2 x 1,5 6,80 34 76 100/500/1000
3 x 1,5 7,10 48 93 100/500/1000
4 x 1,5 7,70 61 111 100/500/1000
5 x 1,5 8,50 75 136 100/500/1000
6 x 1,5 8,70 88 158 100/500/1000
7 x 1,5 8,70 100 170 100/500/1000
8 x 1,5 9,80 113 194 100/500/1000
10 x 1,5 12,20 151 248 100/500/1000
12 x 1,5 12,50 166 283 100/500/1000
14 x 1,5 13,10 191 321 100/500/1000
16 x 1,5 13,90 216 363 100/500/1000
18 x 1,5 14,50 245 402 100/500/1000
20 x 1,5 15,50 268 437 100/500/1000

Quality Control

LiHCH LSZH Screened Control Cable - 300/500V Halogen-Free Flexible Cable
Raw Material Test

Raw Material Test

Raw Material Test is the foundational quality step in manufacturing the LiHCH Control Cable. Incoming copper rods undergo detailed chemical composition analysis to ensure high purity and conductivity. Mechanical testing verifies tensile strength and elongation for Class 5 flexible conductors. LSZH insulation and sheath compounds are rigorously tested for thermal stability, flame retardancy, low smoke emission, zero halogen content, and mechanical properties. Tinned copper braid material is inspected for uniform tinning and shielding capability. Surface quality inspection and dimensional checks detect any defects in raw materials. Only materials that fully pass every stringent criterion are approved for wire drawing, stranding, and extrusion in the production of the LiHCH Control Cable. This thorough incoming inspection guarantees consistent electrical performance, mechanical flexibility, EMI shielding effectiveness, and full compliance with halogen-free and low-smoke safety standards.

 

Process inspection

Process inspection

Process Inspection during manufacturing of the LiHCH Control Cable maintains tight control at every stage. After drawing copper wires to precise diameters, continuous monitoring verifies dimensional tolerances and surface quality. The twisting and stranding process uses real-time tension control to ensure uniform core lay. LSZH insulation extrusion is controlled for consistent thickness and concentricity. The copper braid screening process is carefully monitored to achieve high coverage and uniform shielding. Final sheath extrusion ensures proper thickness and strong adhesion. Online diameter measurement systems and frequent visual checks prevent defects. Key process parameters including temperature and speed are strictly logged. Mid-process sampling includes partial electrical, mechanical, and smoke tests. Any deviation triggers immediate corrective action. These rigorous in-process controls safeguard the structural integrity, electrical properties, and fire safety performance of the LiHCH Control Cable.

 

Finished Product

Finished Product

 

Finished Product testing ensures every reel of LiHCH Control Cable meets the highest quality standards. Comprehensive dimensional verification confirms overall diameter, insulation thickness, and sheath uniformity. High-voltage, insulation resistance, and conductor resistance tests validate electrical performance. Shielding effectiveness and crosstalk tests confirm EMI protection. Mechanical tests assess flexibility and tensile strength. Flame retardancy, smoke density, and acidity tests verify halogen-free and low-smoke properties. Full visual and tactile inspections check for surface defects or braid irregularities. All examinations follow VDE 0812, IEC 60227, and related standards with detailed records for full traceability. Packaging and marking accuracy are also verified. Only the LiHCH Control Cable that successfully passes 100% of these final inspections receives approval for shipment. This rigorous final quality gate assures customers of reliable, safe, and high-performance halogen-free screened control cables.

Application

The LiHCH Control Cable is ideal for airports, railway stations, hospitals, schools, data centers, tunnels, and industrial automation systems where halogen-free, low-smoke, screened flexible control cables with EMI protection are required.

Technical Advantages

● 30+ years of manufacturing experience
● ISO and UL certified production
● Customized cable and transformer solutions

Product Packaging

Wires and Cables packaging (1)
Wires and Cables packaging (1)
Wires and Cables packaging (2)
Wires and Cables packaging (2)
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Wires and Cables packaging (3)
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Wires and Cables packaging (4)
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Wires and Cables packaging (5)
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Wires and Cables packaging (6)
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Wires and Cables packaging (7)
Wires and Cables packaging (8)
Wires and Cables packaging (8)

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FAQ From Customers

What are the advantages of power cables and overhead lines?
(1) Reliable operation, because it is installed in a hidden place such as underground, it is less damaged by external forces, has less chance of failure, and the power supply is safe, and it will not cause harm to people;
(2) The maintenance workload is small and frequent inspections are not required;
(3) No need to erect towers;
(4) Help improve power factor.
Which aspects should be considered when choosing the cross section of a power cable?
(1) The long-term allowable working current of the cable;
(2) Thermal stability once short circuited;
(3) The voltage drop on the line cannot exceed the allowable working range.
What are the measures for cable fire prevention?
(1) Use flame-retardant cables;
(2) Use fireproof cable tray;
(3) Use fireproof paint;
(4) Fire partition walls and fire baffles are installed at cable tunnels, mezzanine exits, etc.;
(5) Overhead cables should avoid oil pipelines and explosion-proof doors, otherwise local pipes or heat insulation and fire prevention measures should be taken.
What should be paid attention to during the transportation and handling of cables?
(1) During transportation, loading and unloading, cables and cable reels should not be damaged. It is strictly forbidden to push the cable reels directly from the vehicle. Generally, cables should not be transported and stored flat.
(2) Before transporting or rolling the cable reel, ensure that the cable reel is firm, the cable is wound tightly, the oil pipe between the oil-filled cable and the pressure oil tank should be fixed without damage, the pressure oil tank should be firm, and the pressure indication should meet the requirements.
What inspections should be carried out for the acceptance of cable lines?
(1) The cable specifications should meet the regulations, the arrangement should be neat, no damage, and the signs should be complete, correct and clear;
(2) The fixed bending radius of the cable, the related distance and the wiring of the metal sheath of the single-core power cable should meet the requirements;
(3) The cable terminal and the middle head should not leak oil, and the installation should be firm. The oil pressure of the oil-filled cable and the meter setting should meet the requirements;
(4) Good grounding;
(5) The color of the cable terminal is correct, and the metal parts such as the bracket are completely painted;
(6) There should be no debris in the cable trench, tunnel, and bridge, and the cover should be complete.

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