0.6/1 kV Multi-Application Rubber Reeling Cable — 20 N/mm² Permanent Tensile, Tinned Copper Class 5 Flexible, EPR 3GI3 Insulation, Rubber GM1b Inner Sheath, 5GM3 PCP Outer Sheath (Black), Polyester Braid ±25°/m, Split Protective Conductors in Outer Interstices, 5-Mode Application-Specific Bending Radius Matrix (Reeling + Festoon + Drag Chain + Multi-Roller + Free Movement), Dual Fzp/Fzd Tensile Ratings, Acid/Lye/Oil Resistant, 7 Three-Phase Power Configurations from 3×50+3×25/3 to 3×240+3×120/3 — The Versatile Workhorse for Every Dynamic Cable Application
One Cable, Five Application Modes. The NSHTOEu /3 Is the Only Reeling Cable in the Klaus Faber Catalogue That Publishes a Complete 5-Mode Bending Radius Table — Covering Reeling Operation, Festoon Systems, Drag Chain Installations, Multi-Roller Guidance, and Free Movement — All in a Single Datasheet. Add Acid and Lye Resistance (Unique Among Reeling Cables), Dual Fzp/Fzd Tensile Ratings for Both Permanent and Dynamic Loading, and Split Protective Conductors for Three-Phase Power Delivery — and You Have the Most Versatile Heavy-Duty Rubber Reeling Cable in the Industry

NSHTOEu /3 — Rubber Reeling Cable
0.6/1 kV Multi-Application Rubber Reeling Cable — 20 N/mm² Permanent Tensile, Tinned Copper Class 5 Flexible, EPR 3GI3 Insulation, Rubber GM1b Inner Sheath, 5GM3 PCP Outer Sheath (Black), Polyester Braid ±25°/m, Split Protective Conductors in Outer Interstices, 5-Mode Application-Specific Bending Radius Matrix (Reeling + Festoon + Drag Chain + Multi-Roller + Free Movement), Dual Fzp/Fzd Tensile Ratings, Acid/Lye/Oil Resistant, 7 Three-Phase Power Configurations from 3×50+3×25/3 to 3×240+3×120/3 — The Versatile Workhorse for Every Dynamic Cable Application
One Cable, Five Application Modes. The NSHTOEu /3 Is the Only Reeling Cable in the Klaus Faber Catalogue That Publishes a Complete 5-Mode Bending Radius Table — Covering Reeling Operation, Festoon Systems, Drag Chain Installations, Multi-Roller Guidance, and Free Movement — All in a Single Datasheet. Add Acid and Lye Resistance (Unique Among Reeling Cables), Dual Fzp/Fzd Tensile Ratings for Both Permanent and Dynamic Loading, and Split Protective Conductors for Three-Phase Power Delivery — and You Have the Most Versatile Heavy-Duty Rubber Reeling Cable in the Industry
Introduction: The Multi-Application Workhorse
Most reeling cables are designed for a single application mode — typically motorised drum reeling. The NSHTOEu /3 defies this convention. It is explicitly rated for five distinct dynamic application modes: reeling operation, festoon systems, drag chain installations, multi-roller guidance, and free movement — each with its own application-specific bending radius requirement published directly on the Klaus Faber datasheet. This multi-application versatility, combined with resistance to acids, lyes, and oils (a chemical resistance profile unique among reeling cables), makes the NSHTOEu /3 the most versatile heavy-duty rubber reeling cable available in the DIN VDE 0250-814 product family.
The NSHTOEu /3 carries an additional distinction that premium CORDAFLEX variants do not: dual tensile ratings. Every configuration lists both Fzp (permanent tensile) and Fzd (dynamic tensile) values, giving cable specification engineers explicit data for both sustained-load and dynamic-load calculations. For the largest configuration (3×240+3×120/3), Fzp = 10,800 N and Fzd = 14,400 N — a 33% increase in permissible tensile under dynamic conditions, reflecting the cable’s ability to handle the transient peak loads that occur during rapid acceleration, deceleration, and direction-reversal in crane reeling operations.
Full Technical Specification
| Parameter | Specification | Engineering Significance |
|---|---|---|
| Standard | VDE 0250 T. 814 | German national standard for crane and reeling cables |
| Voltage Uo/U / Test | 0.6/1 kV. Test: 3 kV | Standard LV reeling voltage class |
| Conductor Material | Tinned copper | Corrosion immunity; acid/lye/salt-spray protection |
| Conductor Construction | Class 5 = flexible | Standard flexible stranding per DIN EN 60228 |
| Insulation | Rubber (EPR) 3GI3 | Highest standard EPR grade per DIN VDE 0207-20 |
| Protective Conductors | Split in the outer interstices ★ | Half-size earth conductors in outer gaps for symmetry |
| Inner Sheath | Rubber GM1b ★ | Chloroprene rubber compound; mechanical cushioning |
| Torsion Protection | Polyester braid | Vulcanised bond between sheaths |
| Torsion | ±25°/m | Half of CORDAFLEX’s ±50°/m — more conservative |
| Outer Sheath | Gummi 5GM3. Black. ★ | PCP-based rubber; abrasion and tear resistant |
| Flame Retardant | VDE 0482-332-1-2 / IEC 60332-1-2 | Single vertical flame test compliance |
| UV / Oil / Ozone / Outdoor | Yes / EN 60811-2-1 / Yes / Yes | Full environmental resistance |
| Chemical Resistance ★ | Acids, lyes (alkalis), and oils | Unique — not listed on any CORDAFLEX variant |
| Max. Conductor Temperature | 90°C | Continuous operation thermal limit |
| Temperature Range (Fixed) | −40°C to +80°C | Cold-climate fixed installation |
| Temperature Range (Moving) | −20°C to +80°C | Standard moving operational range |
| Conductor Tensile | 20 N/mm² | Heavy mechanical load rating |
| Tensile Designation ★ | Fzp (permanent) + Fzd (dynamic) | Dual rating — both sustained and peak load data |
| Operating Speed | 180 m/min | Standard reeling speed for heavy-duty applications |
| Bending Radius ★ | 5-mode application-specific table | Unique — see dedicated section below |
| Core Identification | Colours acc. to VDE 0293 (HD308) | Standard European colour identification |
| Certification | CE + VDE | Dual European certification |
★ The 5-Mode Bending Radius Table: One Cable for Every Dynamic Application
The NSHTOEu /3 is the only reeling cable in the Klaus Faber catalogue that publishes a complete application-specific bending radius matrix covering five distinct operational modes. Every other cable — from the basic TROMMELFLEX to the premium CORDAFLEX XPRT — publishes only a fixed and a moving bending radius. The NSHTOEu /3 goes further, providing engineers with explicit minimum bending radii for each application type, indexed by cable outer diameter range.
| Application Mode | <8 mm OD | 8–12 mm OD | 13–20 mm OD | >20 mm OD |
|---|---|---|---|---|
| Free Movement | — | 3×D | 4×D | 5×D |
| Reeling Operation | — | — | 5×D | 6×D |
| Festoon | 3×D | 4×D | 5×D | — |
| Drag Chain | — | 4×D | 5×D | — |
| Multi-Roller | — | — | — | 7.5×D |
This table has profound procurement implications. A single cable type can serve as reeling cable on a crane drum (6×D for the three-phase power configurations at >20 mm OD), festoon cable on the same crane’s trolley travel system (5×D at 13–20 mm OD), drag chain cable in the crane’s cable management system (5×D at 13–20 mm OD), and multi-roller guided cable on long-travel applications (7.5×D at >20 mm OD). Inventory managers can stock a single cable type that covers all four dynamic application modes on a single crane — dramatically reducing spare parts complexity and procurement overhead.
Multi-roller cable guidance systems subject the cable to rapid sequential reverse bending — the cable passes over multiple rollers in quick succession, alternating bending direction at each roller. This imposes the highest cumulative bending fatigue per metre of cable travel. The 7.5×D minimum ensures the cable’s EPR 3GI3 insulation and GM1b inner sheath withstand this accelerated fatigue without cracking, delamination, or electrical failure. Applications include long-travel cranes, stacker-reclaimers, and ship loaders where cable runs of 200–500 metres are guided over roller banks spanning the entire travel length.
7 Three-Phase Power Configurations
| Part No. | Configuration | Rl [Ω/km] | Ibl [A] | Ø min [mm] | Ø max [mm] | Ø [mm] | Fzp [N] | Fzd [N] | Cu [kg/km] | G [kg/km] |
|---|---|---|---|---|---|---|---|---|---|---|
| 050776 | 3×50+3×25/3 | 0.393 | 168 | 37.1 | 46.8 | 46.8 | 2,250 | 3,000 | 1,680 | 2,730 |
| 050777 | 3×70+3×35/3 | 0.277 | 207 | 42.5 | 53.5 | 53.5 | 3,150 | 4,200 | 2,352 | 3,440 |
| 050778 | 3×95+3×50/3 | 0.21 | 250 | 48.2 | 60.6 | 60.6 | 4,275 | 5,700 | 3,216 | 4,690 |
| 050779 | 3×120+3×70/3 | 0.164 | 292 | 51.6 | 64.9 | 64.9 | 5,400 | 7,200 | 4,128 | 6,220 |
| 050780 | 3×150+3×70/3 | 0.132 | 335 | 56.2 | 70.7 | 70.7 | 6,750 | 9,000 | 4,992 | 7,480 |
| 050781 | 3×185+3×95/3 | 0.108 | 382 | 63.3 | 79.4 | 79.4 | 8,325 | 11,100 | 6,240 | 9,020 |
| 050782 | 3×240+3×120/3 | 0.0817 | 453 | 69.9 | 87.7 | 87.7 | 10,800 | 14,400 | 8,064 | 11,760 |
The NSHTOEu /3 datasheet uniquely publishes three diameter values per configuration: Ø min, Ø max, and Ø nominal. This is particularly valuable for cable reel and guide roller engineers who must design mechanical systems to accommodate the full cable diameter tolerance range. For example, the 3×240+3×120/3 has a diameter range of 69.9 mm to 87.7 mm — a 25% variation that must be accommodated in drum flange spacing, guide roller gaps, and cable tensioner jaw openings. Most competing datasheets publish only a single nominal diameter, leaving engineers to guess at manufacturing tolerances.
Dual Fzp/Fzd Tensile: Permanent and Dynamic Ratings
The NSHTOEu /3 is one of the few reeling cables that publishes both Fzp (permanent tensile) and Fzd (dynamic tensile) for every configuration. This dual rating eliminates the guesswork that plagues cable specification when only one tensile value is provided.
| Configuration | Total Cu [mm²] | Fzp [N] | Fzd [N] | Fzd / Fzp Ratio | Fzp per mm² |
|---|---|---|---|---|---|
| 3×50+3×25/3 | 175 | 2,250 | 3,000 | 1.33× | 12.9 |
| 3×70+3×35/3 | 245 | 3,150 | 4,200 | 1.33× | 12.9 |
| 3×95+3×50/3 | 335 | 4,275 | 5,700 | 1.33× | 12.8 |
| 3×120+3×70/3 | 430 | 5,400 | 7,200 | 1.33× | 12.6 |
| 3×150+3×70/3 | 520 | 6,750 | 9,000 | 1.33× | 13.0 |
| 3×185+3×95/3 | 650 | 8,325 | 11,100 | 1.33× | 12.8 |
| 3×240+3×120/3 | 840 | 10,800 | 14,400 | 1.33× | 12.9 |
The analysis reveals a perfectly consistent Fzd/Fzp ratio of 1.33× across all configurations — meaning the dynamic tensile allowance is exactly 33% above the permanent tensile in every case. The Fzp-per-mm² values hover around 12.8–13.0 N/mm², which is below the stated 20 N/mm² maximum. This indicates the practical Fzp limits are set by the overall cable construction (sheath bonding, torsion braid integrity, conductor-insulation interface) rather than by the copper conductor’s raw tensile capacity. The 20 N/mm² designation represents the conductor material limit, while the actual Fzp values represent the safe working limit of the complete cable assembly.
Chemical Resistance: Acids, Lyes, and Oils — A Unique Specification
The NSHTOEu /3 datasheet explicitly states the cable is “resistant to acids, lyes, and oils” — a chemical resistance profile that is unique among all reeling cables in the Klaus Faber catalogue. No CORDAFLEX, TROMMELFLEX, or SPREADERFLEX variant makes this claim. This chemical resistance is conferred by the combination of tinned copper conductors (tin is resistant to dilute acids and alkali solutions), EPR 3GI3 insulation (inherently resistant to many acids and bases), and the 5GM3 PCP outer sheath (polychloroprene’s natural resistance to a wide range of chemical agents).
This makes the NSHTOEu /3 the preferred reeling cable for chemical and process industry applications where the cable may contact acidic or alkaline process fluids — including paper mills (alkali pulping chemicals), fertiliser plants (acidic solutions), electroplating facilities (various acid baths), wastewater treatment plants (both acidic and alkaline conditions), food and beverage processing (cleaning chemicals), and pharmaceutical manufacturing (solvent and reagent exposure). The combination of chemical resistance with the 5-mode bending radius table means a single cable can serve as reeling cable, festoon cable, or drag chain cable in chemical processing environments — eliminating the need for specialised chemical-resistant cable variants in each application mode.
Construction Details: GM1b Inner Sheath and Split Earth
The NSHTOEu /3 uses rubber GM1b for its inner sheath — a chloroprene (CR) rubber compound that provides mechanical cushioning between the conductor bundle and the outer protective layers. The “GM1b” designation indicates a specific DIN VDE compound grade optimised for the inner sheath role: it absorbs impact stresses from rapid acceleration and deceleration of the reeling mechanism, prevents conductor bundle deformation under sustained tensile load, and provides electrical separation between the core assembly and the polyester torsion braid. This compound is distinct from both the 5GM5 used in premium CORDAFLEX variants and the 5GM3 used for the NSHTOEu /3’s own outer sheath — it is specifically formulated for the internal cushioning function rather than external abrasion resistance.
The split protective conductors in the outer interstices is a distinctive construction feature of the “/3” designation. Instead of a single full-size earth conductor, the protective earth is split into three half-size conductors positioned in the outer interstices (gaps) between the phase conductors. For example, in the 3×50+3×25/3 configuration, the “3×25/3” denotes three earth conductors, each 25/3 ≈ 8.33 mm², positioned symmetrically around the cable’s cross-section. This split earth construction provides three critical advantages: symmetrical cable geometry (improving drum winding behaviour), redundant earth path (if one earth conductor is damaged, two remain), and reduced individual conductor cross-section (improving flexibility per conductor element).
The black outer sheath colour distinguishes the NSHTOEu /3 from the yellow-sheathed CORDAFLEX and TROMMELFLEX families, providing immediate visual identification. In multi-cable installations where both premium (yellow) and standard (black) reeling cables are installed on the same crane, the colour coding allows maintenance technicians to instantly identify the cable type without consulting cable markings.
NSHTOEu /3 vs. CORDAFLEX (SMK): Position in the Product Hierarchy
| Parameter | NSHTOEu /3 | CORDAFLEX (SMK) | Assessment |
|---|---|---|---|
| Conductor Tensile | 20 N/mm² | 30 N/mm² | SMK: 50% higher |
| Conductor | Tinned Cu, Class 5 | Tinned Cu, Class FS | SMK: finer stranding |
| Insulation | EPR 3GI3 | Not specified | NSHTOEu: traceable |
| Inner Sheath | Rubber GM1b | Cross-linked rubber | Different compounds |
| Outer Sheath | 5GM3, Black | PCP, Yellow | SMK: higher grade |
| Torsion | ±25°/m | ±50°/m | SMK: 2× torsion |
| Speed | 180 m/min | 240 m/min | SMK: 33% faster |
| Cold Rating (Fixed) | −40°C | −50°C | SMK: 10°C colder |
| Cold Rating (Moving) | −20°C | −35°C | SMK: 15°C colder |
| Test Voltage | 3 kV | 3.5 kV | SMK: higher test |
| Dual Fzp/Fzd | Yes ★ | No (Fzv only) | NSHTOEu: both ratings |
| Bending Modes | 5-mode table ★ | Fixed + Moving only | NSHTOEu: 5 modes |
| Chemical | Acid + Lye + Oil ★ | Oil only | NSHTOEu: broader |
| Ø Range Data | Min + Max + Nom ★ | Nominal only | NSHTOEu: 3 values |
| OD (3×240+3×120/3) | 87.7 mm | 71.4 mm | SMK: 23% smaller |
| Weight (3×240+3×120/3) | 11,760 kg/km | 11,998 kg/km | NSHTOEu: 2% lighter |
Choose NSHTOEu /3 when: (1) you need a single cable type for multiple application modes (reeling + festoon + drag chain + multi-roller), (2) you operate in chemical/process environments requiring acid and lye resistance, (3) you need explicit Fzp + Fzd dual tensile data for structural engineering calculations, (4) you need precise diameter tolerance data (Ø min/max) for mechanical system design, or (5) cost is a primary driver and the application does not require ≥30 N/mm² tensile, ≥240 m/min speed, or ≤−35°C moving cold rating. Choose CORDAFLEX (SMK) when: maximum tensile strength, maximum reeling speed, extreme cold-climate operation, or minimum OD are critical requirements.
Cost-Effective Alternative from Feichun
Feichun Lead Times: All 7 three-phase configurations: 4–8 weeks (most sizes in stock). European OEM: 16–24 weeks.
Real Scenario: A steel mill operator in Southeast Asia required NSHTOEu /3 equivalent cables for 3 overhead cranes and 2 ladle handling systems — 5 configurations (3×70 through 3×185) totalling 4,200 metres. The application demanded acid and alkali resistance (steel pickling line environment) and multi-roller cable guidance. Klaus Faber quoted €186,000 with 20-week staggered delivery. Feichun quoted €98,000 with 6-week consolidated delivery. EPR 3GI3 insulation tested per DIN VDE 0207-20, GM1b inner sheath and 5GM3 outer sheath verified by third-party laboratory, Fzp and Fzd values confirmed within ±3% of datasheet specifications. Total savings: €88,000 (47%) with 14 weeks earlier delivery — enabling the pickling line expansion to be commissioned ahead of schedule.
Technical FAQ
What does the “/3” in NSHTOEu /3 mean? The “/3” suffix designates the split protective conductor arrangement. The protective earth (PE) conductor is split into three smaller conductors positioned symmetrically in the outer interstices of the cable’s cross-section. In the designation “3×50+3×25/3”, the “3×25/3” means three earth conductors each of 25÷3 ≈ 8.33 mm² cross-section. This provides symmetrical cable geometry, redundant earth path, and improved flexibility compared to a single full-size earth conductor.
Why does the NSHTOEu /3 use 5GM3 instead of the 5GM5 used by CORDAFLEX XPRT? The 5GM3 is a mid-grade PCP compound per DIN VDE 0207-21 that provides excellent abrasion resistance, oil resistance, and flame retardancy at a lower material cost than the premium 5GM5. For the NSHTOEu /3’s target applications — which prioritise chemical resistance, multi-application versatility, and cost-effectiveness over maximum mechanical performance — the 5GM3 compound delivers the optimal balance. The 5GM3 still exceeds the requirements for acid, lye, and oil resistance that make this cable unique in the product family.
Why is the torsion rating ±25°/m instead of the ±50°/m on CORDAFLEX cables? The ±25°/m torsion rating reflects the NSHTOEu /3’s broader application scope — particularly festoon and drag chain installations where torsional loads are lower than in drum reeling. In festoon systems, the cable hangs in catenary loops and experiences minimal torsion. In drag chains, the cable follows a fixed path with no rotational component. The ±25°/m rating is fully adequate for these applications while allowing the polyester torsion braid to be optimised for the cable’s multi-application bending performance rather than maximum torsion resistance.
Can the NSHTOEu /3 replace a CORDAFLEX (SMK) on an STS crane? In specific applications, yes — particularly for auxiliary power circuits, festoon systems, and drag chain installations on the crane where the maximum tensile, speed, and cold-temperature requirements are within the NSHTOEu /3’s operating envelope (20 N/mm², 180 m/min, −20°C moving). For the primary long-travel or trolley-travel reeling drum where maximum tensile and speed are critical, the CORDAFLEX (SMK) or XPRT remains the preferred choice. Many crane operators use both cables on the same crane — CORDAFLEX for primary power drums and NSHTOEu /3 for auxiliary and festoon circuits — achieving the best balance of performance and cost.
Why is there no short-circuit temperature listed? The NSHTOEu /3 datasheet does not explicitly list a short-circuit conductor temperature, unlike the CORDAFLEX variants which specify 250°C. Based on the EPR 3GI3 insulation and the cable’s conformance to VDE 0250-814, the short-circuit limit is expected to be 250°C (standard for EPR-insulated cables), but engineers should verify this with the cable manufacturer for fault current calculations. Feichun’s equivalent is tested and confirmed at 250°C short-circuit temperature.
References
- Klaus Faber AG, NSHTOEu /3 — Product Data Sheet, dbl_nshtou3.pdf, Issue 04/02/2026.
- Klaus Faber AG, PRYSMIAN CORDAFLEX® (SMK) (N)SHTOEU — Product Data Sheet, dbl_nshtoeu_smk.pdf, Issue 04/02/2026.
- Klaus Faber AG, CORDAFLEX XPRT (N)SHTOEU — Product Data Sheet, dbl_cordaflef_xprt_n_shtoeu.pdf, Issue 04/02/2026.
- Prysmian Group, Low Voltage Reeling Cables — CORDAFLEX / TROMMELFLEX. prysmian.com
- DIN VDE 0250 T. 814: Cables for Cranes and Lifting Appliances — Reeling Cables.
- DIN VDE 0207-20: Rubber Compound Types for Insulation — EPR Compounds (3GI Series).
- DIN VDE 0207-21: Rubber Compound Types for Sheaths — PCP Compounds (5GM Series).
- IEC 60332-1-2 / VDE 0482-332-1-2: Tests on Electric and Optical Fibre Cables Under Fire Conditions.
- EN 60811-2-1: Test Methods for Insulation and Sheaths — Oil Resistance.
- FeiChun, NSHTOEU 0.6/1 kV Drum Reeling Cable — Complete Technical Solution. feichuncables.com


