
NSSHCGEOEU Low-Tensile Coal Cutter Cable 0.6/1kV
NSSHCGEOEU low-tensile coal cutter cable, 0.6/1 kV to DIN VDE 0250 Part 812, for coal-cutting machines on routes with extreme bending and low tensile stress.
- Conductor: particularly fine stranded tinned copper, special flexible design.
- Insulation: heat-resistant 3GI3 EPR compound, coloured.
- Earth conductor: reinforced concentric spiral of copper and steel wires.
- Outer sheath: yellow chlorinated rubber 5GM5.
- Bending radius: 1.5 × D static, 2.5 × D flexing.
Send machine type, route geometry, control and monitoring core count and termination details for RFQ review.
NSSHCGEOEU Low-Tensile Coal Cutter Cable
This page covers the low-tensile NSSHCGEOEU build: a 0.6/1 kV screened and monitored coal cutter cable to DIN VDE 0250 Part 812, designed for machine routes that impose extreme bending on the cable but only low tensile stress. Its defining feature is the bending radius, 1.5 × D static and 2.5 × D flexing, which is markedly tighter than the high-tensile version of the same designation.
The difference is in the earth path. This build uses a reinforced concentric earth conductor formed as a spiral of copper and steel wires, which tolerates very tight repeated bending. The high-tensile build instead uses a copper-steel tensile braid, which carries pull but will not follow the same radius. Choosing between them by designation alone is the most common specification error on coal cutter routes.
- Rated voltage: 0.6/1 kV.
- Bending radius: 1.5 × D static, 2.5 × D flexing.
- Duty: extreme bending under low tensile stress.
- Monitoring: phase-concentric monitoring screen plus common concentric earth conductor.
The phase-concentric monitoring shield and the common concentric earth conductor, used with suitable monitoring equipment, allow the cable to be watched for insulation faults and for damage caused by external influences. For routes that pull the cable, use the high-tensile NSSHCGEOEU coal cutter cable instead; for saddle-earth constructions see NSSHKCGEOEU.
NSSHCGEOEU Low-Tensile Cable Construction
The layer sequence below is the low-tensile build. The spiral copper-steel concentric earth conductor in position 6 is what permits the 1.5 × D static radius; it is not the tensile braid used in the high-tensile construction.

| No. | Layer | Construction |
|---|---|---|
| 1 | Working conductor | Particularly fine stranded tinned copper wires in a special flexible design |
| 2 | Core insulation | Coloured heat-resistant 3GI3 rubber compound on EPR basis with particularly high mechanical strength; cores wrapped with rubberized textile tape |
| 3 | Semi-conducting layer | Layer of conductive rubber mixture |
| 4 | Inner sheath | GM1b rubber compound of high mechanical strength |
| 5 | Wrapping | Film wrapping |
| 6 | Concentric earth conductor | Reinforced version, helix of copper and steel wires |
| 7 | Outer sheath | Chlorinated rubber compound 5GM5, yellow, abrasion- and tear-resistant, oil-resistant, self-extinguishing |
| A | Working core | Power core as above |
| B | Signalling cores (ST) | Copper-steel conductors capable of expansion and compression, 3GI3 EPR-based insulation, laid in the outer interstices of the twisted cores |
| C | Monitoring conductor (ÜL) | Conductor as the control core, covered with conductive rubber compound, laid in an outer interstice |
Designation elements
KON is the concentric earth conductor, ST a signalling or control core, and ÜL the monitoring conductor. A build written 3 × 25/16 KON + 2 ST + ÜL therefore has three 25 mm² working cores, a 16 mm² concentric earth, two signalling cores and one monitoring conductor.
Alternative construction
The cable can also be supplied with three control cores. In that case the monitoring conductor is inductively balanced and executed as a wrapping of tinned copper wires over the insulation of the control cores.
NSSHCGEOEU Low-Tensile Applications
The low-tensile build connects mobile machines under very high mechanical load, predominantly in mining, and is particularly suited to extreme bending stress at low tensile stress. Coal-cutting machines are the primary application.

- Coal-cutting machines on routes with repeated tight deflection.
- Machine loops and festoon-like paths where the cable bends hard but is not pulled.
- Installations requiring insulation-fault and external-damage monitoring through the concentric monitoring screen.
- Routes where a tensile-braided cable would not achieve the required radius.
Application boundaries
This construction is not a substitute for a tensile-braided cable. Where the route pulls the cable, over guide pulleys, on a reel or behind an LHD, select the high-tensile build or an armoured construction instead.
Related coal cutter references
Compare NSSHCGEOEU high-tensile coal cutter cable for pulled routes, NSSHKCGEOEU for the saddle-earth construction and NSSHKCGERLOEU for steel-wire-braid armour. None is an automatic substitute for another.
Reference note: enquiries arriving marked SCHRÄM-TENAX-V or TENAX-V are handled on this page; TEBAOFLEX manufactures to the NSSHCGEOEU designation and the low-tensile construction shown, and is not affiliated with the trademark holder.
Reference designation cross-reference
This coal cutter cable is catalogued under two reference names that mark the same low-tensile build.
| Reference designation | TEBAOFLEX designation and build | Rated voltage | What the reference name marks |
|---|---|---|---|
| TENAX-V / NSSHCGEOEU | NSSHCGEOEU low-tensile coal cutter cable | 0.6/1 kV | The low-tensile build, 1.5 × D static bending radius |
| SCHRÄM-TENAX-V / NSSHCGEOEU | NSSHCGEOEU low-tensile coal cutter cable | 0.6/1 kV | The same build listed for coal cutting machines |
For the full list of reference designations and the TEBAOFLEX build each one maps to, see the mining cable designation cross-reference.
Trademark note: TENAX®, TROMMELFLEX®, FELTOFLEX® and SCHRÄM® are trademarks of their respective owners, and TEBAOFLEX is neither affiliated with those companies nor reselling their cable. What we supply is the equivalent construction: we manufacture to the same VDE type designation and published construction, and every designation listed here can be quoted and supplied as a TEBAOFLEX build. The names appear so that an enquiry written in those terms reaches the matching construction, which is made to the standards and construction confirmed for the order.
NSSHCGEOEU Low-Tensile Specifications
| Rated voltage U₀/U | 0.6/1 kV |
|---|---|
| Standard | DIN VDE 0250 Part 812 |
| Cable-surface temperature, fixed installation | -40 °C to +80 °C |
| Cable-surface temperature, flexing | -25 °C to +80 °C |
| Minimum bending radius, fixed installation | 1.5 × D |
| Minimum bending radius, flexing | 2.5 × D |
| Outer sheath colour | Yellow |
| Diameter notation | D = cable diameter |
NSSHCGEOEU low-tensile size table, two signalling cores
| Code and cross-section | Outer diameter | Weight approx. | Inductive reactance at 50 Hz | Monitoring-core capacitance |
|---|---|---|---|---|
| NSSHCGEOEU 3 × 16/16 KON + 2 ST + ÜL | 35.0-38.0 mm | 2130 kg/km | 0.105 Ω/km | 0.30 µF/km |
| NSSHCGEOEU 3 × 25/16 KON + 2 ST + ÜL | 38.0-41.0 mm | 2790 kg/km | 0.097 Ω/km | 0.38 µF/km |
| NSSHCGEOEU 3 × 35/16 KON + 2 ST + ÜL | 41.5-45.0 mm | 3390 kg/km | 0.093 Ω/km | 0.42 µF/km |
| NSSHCGEOEU 3 × 50/25 KON + 2 ST + ÜL | 47.5-51.0 mm | 4340 kg/km | 0.090 Ω/km | 0.47 µF/km |
| NSSHCGEOEU 3 × 70/35 KON + 2 ST + ÜL | 52.0-56.0 mm | 5680 kg/km | 0.087 Ω/km | 0.54 µF/km |
| NSSHCGEOEU 3 × 95/50 KON + 2 ST + ÜL | 58.0-62.0 mm | 7180 kg/km | 0.086 Ω/km | 0.55 µF/km |
NSSHCGEOEU low-tensile size table, three signalling cores
| Code and cross-section | Outer diameter | Weight approx. | Inductive reactance at 50 Hz | Monitoring-core capacitance |
|---|---|---|---|---|
| NSSHCGEOEU 3 × 35/16 KON + 3 ST + 3 ÜL | 41.5-45.0 mm | 3630 kg/km | 0.093 Ω/km | 0.42 µF/km |
| NSSHCGEOEU 3 × 50/25 KON + 3 ST + 3 ÜL | 47.5-51.0 mm | 4585 kg/km | 0.090 Ω/km | 0.47 µF/km |
| NSSHCGEOEU 3 × 70/35 KON + 3 ST + 3 ÜL | 52.0-56.0 mm | 5925 kg/km | 0.087 Ω/km | 0.54 µF/km |
| NSSHCGEOEU 3 × 95/50 KON + 3 ST + 3 ÜL | 58.0-62.0 mm | 7430 kg/km | 0.086 Ω/km | 0.55 µF/km |
All listed builds are available to order in both the two-core and three-core signalling arrangements. Dimensions and weights are nominal values.
NSSHCGEOEU Low-Tensile Standards, Approvals and Order Documentation
| Reference | Scope | Order confirmation |
|---|---|---|
| DIN VDE 0250 Part 812 | Rubber-insulated flexible cables, cable standard | State the required edition with the full designation. |
| DIN VDE 0207 Part 20 | 3GI3 EPR insulating compound | Insulation compound type is fixed at 3GI3. |
| DIN VDE 0207 Part 21 | 5GM5 chlorinated rubber sheathing compound | Sheath compound type is fixed at 5GM5. |
Approvals
| Approval | Status |
|---|---|
| Manufacturing conformity, DIN VDE 0250 Part 812 | Held |
| Underground mining machine cable approval | Held |
Order package
State the machine and its cable route, the minimum bending radius actually reached, working cross-section and concentric earth size, whether two or three signalling cores are required, the monitoring equipment and its interface, drum lengths, termination design and any project inspection or documentation scope.
Related cable options
Compare these cable options by service combination, movement, load, voltage and transmission requirement.
NSSHCGEOEU 0.6/1kV Coal Cutter Cable – High Tensile
A related cable option for a different application or duty profile.
View productNSSHKCGEOEU 0.6/1kV Coal Cutter Trailing Cable
A related cable option for a different application or duty profile.
View productNSSHKCGERLOEU 0.6/1kV Armoured Coal Cutter Cable
A related cable option for a different application or duty profile.
View productRequest a cable recommendation and quotation
Send the required services, cable length, mechanical duty, environment, termination and quantity. Our team will review the application before quoting.
- Include the product name or SKU plus the required cable length and quantity.
- Attach a specification, drawing or data sheet when available.

