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Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable
Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable

The Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable is a flexible, low-voltage power and control cable designed for use with frequency-controlled drives. Built to DIN VDE 0250 standards, it features low capacitance, enhanced EMC shielding with aluminium-foil and tinned copper braid, and PVC outer sheath for durability. It provides excellent electromagnetic compatibility, oil and grease resistance, and reliable performance under medium mechanical stress. Ideal for connecting motors to inverters, this cable supports fixed and temporary installations in both indoor and outdoor environments (excluding direct burial).
Voltage Rating Uo/U 0.6/1kV
Temperature Rating Fixed: -30°C to +70°C
Flexed: -5°C to +70°C
Minimum Bending Radius Fixed: 10 x overall diameter
Flexed: 25 x overall diameter
Construction
Technical Specifications
Quality Control
Application

Construction

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable Constrution
Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable

Conductor

Class 5 flexible copper conductor

Insulation

PE (Polyethylene)

Screen

Aluminium-Foil

Braid

TCWB (Tinned Copper Wire Braid)

Sheath

PVC (Polyvinyl Chloride)

Sheath Colour

Red

Manufacturer Standard

Standard:VDE 0250

Flame Retardant

IEC/EN 60332-1-2

Core Identification

3 core + earth: ● Grey ● Brown ● Black ● Green/Yellow
4 core: Grey Brown Black Green/Yellow

Application

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable is used to connect motors to inverters while ensuring EMC compliance. It is suitable for fixed or temporary installations under medium mechanical stress, offering good oil and grease resistance for outdoor use (excluding direct burial).

Technical Specifications

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable
Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable 0.6/1kV

No. Of Cores

Nominal Cross Sectional Area
mm²

NOMINAL  OVERALL  DIAMETER

NOMINAL WEIGHT

Phase

Conductor

Earth

Conductor

mm kg/km
3 + 3 earth 1.5 0.25 10.2 140
3 + 3 earth 2.5 0.5 11.4 220
3 + 3 earth 4 0.75 13.1 323
3 + 3 earth 6 1 14.9 420
3 + 3 earth 10 1.5 18.4 615
3 + 3 earth 16 2.5 21.6 819
3 + 3 earth 25 4 25.3 1402
3 + 3 earth 35 6 27.8 1718
3 + 3 earth 50 10 32.6 2399
3 + 3 earth 70 10 38.9 3173
3 + 3 earth 95 16 44.3 4162
3 + 3 earth 120 16 46.8 5253
3 + 3 earth 150 25 53.5 6128
3 + 3 earth 185 35 59.5 7450
3 + 3 earth 240 50 70 10800
4 1.5 - 10.4 154
4 2.5 - 12.3 229
4 4 - 14.5 339
4 6 - 16.8 451
4 10 - 19.7 667
4 16 - 22 892
4 25 - 27 1440
4 35 - 30.3 1861
4 50 - 35 2547
4 70 - 39.4 3404
4 95 - 46 4888
4 120 - 51.4 5703
4 150 - 58.8 7040
4 185 - 61.1 9150
4 240 - 70 12500

Quality Control

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable
Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable Raw Material Test

Raw Material Test

Raw Material Test for Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable focuses on EMC shielding quality. Steps include: Certification Verification: Tinned copper conductors and PVC compounds meet IEC standards; foil and braid certified for shielding performance. Conductor Testing: Tensile, elongation, conductivity, tin coating analysis. Insulation & Semi-Conductive Check: PVC tensile/elongation/dielectric strength; semi-conductive layer resistivity/adhesion. Shielding Material Evaluation: Aluminum foil thickness/adhesion/coverage; tinned copper braid optical coverage (>85%), braid angle, and conductivity. Sheath Testing: Oil/UV/abrasion resistance, flame retardancy. Batch Rejection: Non-compliant quarantined. Approved materials ensure the Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable's EMC effectiveness and durability.

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable Process inspection

Process inspection

Process Inspection for Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable upholds double-shielding precision. The procedure features: Stranding Control: Uniform tinned copper stranding. Insulation Extrusion: PVC applied with defect sensors. Shielding Application: Foil with 100% overlap + high-coverage braid monitored. Sheath Extrusion: PVC sheath thickness/adhesion checked. Ongoing Checks: Resistance, capacitance, shielding continuity. Correction: Immediate fixes. This guarantees the Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable excels in EMC suppression and VFD performance.

Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable Finished Product

Finished Product

Finished Product Test validates the Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable for market. Steps include: Inspection: Visual/dimensional/marking verification. Electrical: Resistance, insulation, high-voltage withstand, capacitance. EMC Testing: Transfer impedance, screening attenuation, emission tests. Mechanical: Bending, tensile, abrasion resistance. Environmental: Oil/flame/UV aging checks. Release: Only passing Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable approved for reliable VFD motor use.

Application

The Variable Frequency Drive (VFD) EMC 2YSL(st)CY Cable suits VFD motor connections in automation systems, pumps, fans, compressors, cranes, textile machines, and production lines where long cable runs, strong EMC suppression, low bearing currents, and reliable motor operation are required.

Technical Advantages

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

Product Packaging

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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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