Factory-Direct Supply of Certified Wires and Conductors for Diverse Industrial Applications

Control Cable
Close-up cross-section of 12 core SWA (Steel Wire Armoured) control cable with 1.5mm / 2.5mm conductor size options

1.5mm 2.5mm 12 Core Steel Wire Armoured SWA Cable

SWA Armoured Control Cable 1.5mm 2.5mm | 5 to 48 Core | MS 2103 IEC 60502 | 0.6/1kV

Standard: MS 2103 / IEC 60502-1

Rated Voltage: 600/1000V (0.6/1kV)

Conductor: Plain annealed stranded copper, Class 2 (IEC 60228)

Insulation: PVC Type PVC/A (white with black numbering)

Inner Bedding: PVC Type ST1

Armour: Galvanised steel wire (SWA)

Outer Sheath: PVC Type ST1, black

Conductor Sizes: 1.5 / 2.5 / 4 mm²

Core Counts: 5 / 7 / 9 / 12 / 19 / 27 / 37 / 48 cores

Max. Conductor Temperature: +70°C

Operating Temperature: −30°C to +70°C (fixed); −5°C to +70°C (flexing)

Product Overview

Steel Wire Armoured (SWA) Control Cable — 1.5mm² & 2.5mm², 5 to 48 Cores is a multi-core PVC insulated, PVC bedded, steel wire armoured, PVC sheathed control cable rated at 600/1000V (0.6/1kV), manufactured to MS 2103 (Malaysian Standard for Armoured Control Cables) and IEC 60502-1. It is designed for fixed installation in control, instrumentation, signalling, and low-voltage power distribution circuits where the steel wire armour provides mechanical protection against impact, compression, and rodent attack — enabling direct burial, installation in concrete, and routing through areas with high mechanical hazard risk.

Each core consists of a plain annealed stranded copper conductor (Class 2 per IEC 60228) individually insulated with PVC (Type PVC/A) and colour-coded white with black numbering for core identification. The assembled cores are laid up over an inner PVC bedding layer, then armoured with a single layer of galvanised steel wires, and finished with a black PVC outer sheath (Type ST1). The steel wire armour also serves as a Circuit Protective Conductor (CPC) — it can be used as the earth for the circuit, providing mechanical protection and earth continuity in a single armour layer. Available in conductor sizes 1.5 mm², 2.5 mm², and 4 mm², with core counts from 5 to 48 cores.

1

Steel Wire Armour — Dual Function

The galvanised steel wire armour layer serves two purposes simultaneously: mechanical protection (impact, compression, rodent resistance) and earthing (the armour can be bonded as a CPC — Circuit Protective Conductor), eliminating the need for a separate earth conductor in many installation configurations.

2

MS 2103 / IEC 60502-1 Compliance

Dual standard certification — MS 2103 for Malaysian utility and industrial procurement compliance, and IEC 60502-1 for international project specifications. Accepted across Southeast Asian, South Asian, Middle Eastern, and African markets where either standard is referenced.

3

5 to 48 Cores — Full Control System Coverage

A single cable family covers the full range of control circuit core counts: 5-core for simple motor starter circuits, through 12-core and 19-core for PLC I/O marshalling, to 27/37/48-core for complex multi-point control and instrumentation terminations — minimising cable route congestion in control rooms and marshalling panels.

4

White Numbered Core Identification

All cores are white PVC insulated with sequential black numbering — providing unambiguous core identification throughout installation, testing, and maintenance. Numbered cores eliminate the colour-code ambiguity of power cables when more than 6 cores are required, and remain legible after years in service.

5

Direct Burial & Concrete Encasement Suitable

Steel wire armour provides the mechanical protection required for direct burial in ground and routing through concrete without additional conduit — reducing installation cost versus unarmoured cable in duct. The armour also protects against accidental damage from excavation equipment in underground cable routes.

6

−30°C to +70°C Operating Range

PVC insulation and sheath maintain rated dielectric properties from −30°C (fixed installation minimum) to +70°C (continuous maximum conductor temperature) — covering outdoor installations in cold climates and industrial environments with elevated ambient temperatures around machinery and process equipment.

Technical Specifications

Construction & Electrical Parameters

StandardMS 2103 / IEC 60502-1
Rated Voltage600/1000V (U₀/U = 0.6/1kV)
ConductorPlain annealed stranded copper, Class 2 (IEC 60228)
InsulationPVC Type PVC/A
Core IdentificationWhite insulation with sequential black numbering
Inner BeddingPVC Type ST1
ArmourGalvanised steel wire (SWA — Steel Wire Armour)
Outer SheathPVC Type ST1, black
Conductor Sizes1.5 mm² / 2.5 mm² / 4 mm²
Core Counts5 / 7 / 9 / 12 / 19 / 27 / 37 / 48 cores
Max. Conductor Temperature+70 °C (continuous)
Operating Temperature−30 °C to +70 °C (fixed installation); −5 °C to +70 °C (flexing)
Min. Bending Radius4 × OD (fixed installation); 15 × OD (flexing)
Insulation ResistanceMin. 20 GΩ·cm
Test Voltage4,000 V AC
Breakdown VoltageMin. 8,000 V
SWA as CPCYes — steel wire armour may be used as Circuit Protective Conductor (earth)
PackagingExport wooden drum; standard lengths 500 m / 1000 m; custom lengths available

Full Parameter Table — SWA Armoured Control Cable (1.5 / 2.5 / 4 mm²)

CoresCross-Section (mm²)Conductor (No./mm)Insulation Thickness (mm)Bedding Thickness (mm)Steel Wire Ø (mm)Sheath Thickness (mm)Overall Ø (mm)Net Weight (kg/km)
51.57/0.530.60.80.91.414.0456
71.57/0.530.60.80.91.414.9467
91.57/0.530.60.81.251.518.1693
121.57/0.530.60.81.251.519.1784
191.57/0.530.60.81.251.621.81027
271.57/0.530.61.01.61.726.41512
371.57/0.530.61.01.61.830.11848
481.57/0.530.61.01.61.934.62246
52.57/0.670.70.80.91.515.9516
72.57/0.670.70.81.251.517.6707
92.57/0.670.70.81.251.620.6887
122.57/0.670.70.81.251.621.91019
192.57/0.670.71.01.61.726.21550
272.57/0.670.71.01.61.830.41994
372.57/0.670.71.21.61.935.02508
482.57/0.670.71.22.02.141.23365
547/0.850.80.81.251.518.5766
747/0.850.80.81.251.620.0915
947/0.850.81.01.61.724.61329
1247/0.850.81.01.61.726.21535
1947/0.850.81.01.61.830.02052
Steel wire diameter increases with overall cable diameter to maintain adequate armour mechanical protection: 0.9 mm for smaller cables (OD ≤ 16 mm), 1.25 mm for medium cables, 1.6 mm for larger cables, and 2.0 mm for the largest 48-core 2.5 mm² size. Bedding thickness also increases with cable size (0.8 mm → 1.0 mm → 1.2 mm) to maintain concentric layup stability. Current ratings for control cable are application-dependent and governed by the number of simultaneously loaded cores — consult IEC 60364-5-52 for derating factors when more than 3 cores are loaded simultaneously.

Key Features & Technical Advantages

1

Steel Wire Armour as CPC

The steel wire armour can be connected at both ends to the protective earth system, serving as the Circuit Protective Conductor (earth) for the cable circuit. This dual function eliminates the need for a separate earth core in many control circuit applications — simplifying termination, reducing conductor count, and lowering cable cost without compromising protection.

2

Numbered Core Identification — Termination Efficiency

Sequential black numbering on white insulation provides unambiguous core identification from installation through the full service life of the cable. Unlike colour-coded systems that become ambiguous beyond 6 or 7 cores, numbered identification scales to 48 cores without confusion — dramatically reducing termination errors and maintenance rework in large marshalling panels.

3

Mechanical Protection for Exposed Routes

The SWA layer provides impact resistance, crush resistance, and rodent protection — enabling cable routing in areas where PVC unarmoured cable would be damaged: under floors, through concrete, in cable trenches with soil backfill, along external building walls, and in industrial environments with heavy mechanical traffic or rodent populations.

4

High Insulation Resistance — Min. 20 GΩ·cm

The high insulation resistance (minimum 20 GΩ·cm per MS 2103/IEC 60502-1) ensures negligible leakage current between cores in control circuits — critical for low-level analogue signals where cross-talk or earth leakage from adjacent energised cores would cause measurement errors or spurious relay operation.

5

4kV Test / 8kV Breakdown Voltage

The 4,000V AC test voltage and minimum 8,000V breakdown voltage provide a substantial safety margin above the rated 1,000V working voltage — ensuring insulation integrity is maintained even in conditions of moisture ingress, partial discharge, or voltage surges from switching transients in motor control and distribution circuits.

6

Flexible Installation Options

Suitable for fixed installation (min. bend radius 4×OD, temperature range −30°C to +70°C) and limited flexing (min. bend radius 15×OD, −5°C to +70°C). Fixed installation range covers the vast majority of control cable applications; the flexing range accommodates connection to retractable panels, sliding trays, and hinged enclosure doors.

Certifications & Standards

MS 2103IEC 60502-10.6/1kVSteel Wire ArmouredPlain Annealed CopperPVC Insulation & Sheath

Typical Applications

🏭

Industrial Motor Control

Multi-core SWA cable for motor starter, VFD, and soft-starter control wiring — armour protection in industrial environments with mechanical hazard and rodent risk.

Switchgear & Panel Control

Control wiring between HV/MV switchgear cubicles and local control panels — armour provides mechanical protection for critical protection and interlock circuits.

🔋

Substation Control & Protection

Secondary control, protection relay, and metering circuits in HV substations — SWA cable in direct burial cable routes between outdoor equipment and control buildings.

🏗️

Building Services Control

BMS (Building Management System) control wiring, fire alarm circuits, access control, and HVAC control — armoured cable in building service shafts and under-floor routes.

🌾

Direct Burial Control Runs

Underground control cable between outdoor equipment (pumps, valves, sensors) and control buildings — SWA eliminates the need for conduit in direct burial applications.

🏙️

Utility Distribution Control

Control, protection, and SCADA communication wiring for distribution substations and ring main units in urban distribution networks across Southeast Asia and Commonwealth markets.

Oil & Gas Facilities

Process control and instrumentation wiring in onshore oil and gas facilities — SWA mechanical protection essential in pipe rack environments where cable damage risk is high.

🚉

Railway & Infrastructure

Signalling and control cable for railway trackside equipment, tunnel lighting control, and road tunnel ventilation and safety systems — direct burial and mechanical protection required.

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Frequently Asked Questions

As a factory, we offer flexible MOQ depending on the cable type. For standard stock items, MOQ is low; for customized specifications, please contact our sales team for a detailed quote.

Yes, Qiangli cables are manufactured in compliance with international standards such as UL, CE, TUV, and VDE. We provide full test reports and certificates upon request.

Absolutely. We have a dedicated R&D team that can customize cable structure, material, color, and printing to meet your specific project needs.

For standard products, lead time is usually 7-15 days. For large-scale project orders or customized products, it typically ranges from 20 to 30 days.

Yes, we provide free samples for most standard cables. You only need to cover the international courier costs. Contact us to arrange your sample shipment.

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