European standard equivalent

Engineered for Ship-to-Shore Cranes, RTG/RMG Gantry Cranes, Grab Unloaders, Tunnel Boring Machines, and Smart Port Electrification Systems Demanding Maximum Power and Data Density in the Smallest Possible Cable Diameter

BUFLEX® SEM OFE

Engineered for Ship-to-Shore Cranes, RTG/RMG Gantry Cranes, Grab Unloaders, Tunnel Boring Machines, and Smart Port Electrification Systems Demanding Maximum Power and Data Density in the Smallest Possible Cable Diameter
Engineered for Ship-to-Shore Cranes, Bucket-Wheel Excavators, Tunnel Boring Machines, and Heavy-Duty Industrial Applications Requiring Bulletproof Power Delivery Under Extreme Mechanical Stress

RHEYFIRM®(RTS) (N)TSCGEWTOEUS

RHEYFIRM®(RTS) (N)TSCGEWTOEUS OFE is a breakthrough composite reeling cable engineered by Anhui Feichun Special Cable Co., Ltd. to meet the DIN VDE 0250-813 German industrial standard. It is the engineering world’s answer to a seemingly impossible challenge: simultaneously carrying massive amounts of high-voltage power (up to 30 kV) and zero-latency, high-bandwidth fiber optic data streams, while being relentlessly spooled onto a motorized drum under extreme mechanical tension and bending stress.
Modern container ports operate Ship-to-Shore (STS) cranes and massive gantry systems that demand unprecedented electrical power delivery. A typical STS trolley requires 18 kV to 30 kV of main power to lift 65-ton containers at speeds exceeding 600 meters per minute. This power must flow through a festoon cable system—a continuous loop of cable that unwinds and rewinds thousands of times per day as the trolley travels back and forth along the boom. Traditional round cables cannot solve this problem efficiently. A round medium voltage cable, rated for 18/30 kV, becomes rigid and difficult to bend. It occupies excessive space in the festoon track, requiring long parking lengths and increasing the footprint of the crane's electrical infrastructure. By contrast, a flat cable lays its massive phase cores side-by-side in a single plane, allowing for an incredibly tight bending radius—sometimes as small as 10 to 15 centimeters—while maintaining full electrical power delivery. This single geometric advantage reduces festoon track length by up to 40 percent, enabling faster crane acceleration and dramatically improving container terminal throughput.

RHEYFIRM®(RS)-FLAT (N)TSFLCGCWOEUS DIN VDE 0250 Medium Voltage Flat Festoon Cable: Premium Power Delivery for Ship-to-Shore Crane Trolleys, Heavy Gantry Systems, and High-Speed Container Port Automation

Modern container ports operate Ship-to-Shore (STS) cranes and massive gantry systems that demand unprecedented electrical power delivery. A typical STS trolley requires 18 kV to 30 kV of main power to lift 65-ton containers at speeds exceeding 600 meters per minute. This power must flow through a festoon cable system—a continuous loop of cable that unwinds and rewinds thousands of times per day as the trolley travels back and forth along the boom. Traditional round cables cannot solve this problem efficiently. A round medium voltage cable, rated for 18/30 kV, becomes rigid and difficult to bend. It occupies excessive space in the festoon track, requiring long parking lengths and increasing the footprint of the crane’s electrical infrastructure. By contrast, a flat cable lays its massive phase cores side-by-side in a single plane, allowing for an incredibly tight bending radius—sometimes as small as 10 to 15 centimeters—while maintaining full electrical power delivery. This single geometric advantage reduces festoon track length by up to 40 percent, enabling faster crane acceleration and dramatically improving container terminal throughput.
RHEYCORD®-OFE SR composite spreader reeling cable solves this engineering paradox by combining heavy-duty electrical power delivery with fragile glass fiber optics into a single unified conductor. The result is a cable that can plunge vertically into a ship's hold at industrial speeds while maintaining perfect optical signal clarity and electrical power delivery to every control device on the spreader basket.

RHEYCORD®-OFE SR DIN VDE 0250-814 Composite Spreader Reeling Cable: Premium Hybrid Fiber Optic Solution for Modern Ship-to-Shore Cranes, HD Video Transmission, and Real-Time PLC Control

RHEYCORD®-OFE SR composite spreader reeling cable solves this engineering paradox by combining heavy-duty electrical power delivery with fragile glass fiber optics into a single unified conductor. The result is a cable that can plunge vertically into a ship’s hold at industrial speeds while maintaining perfect optical signal clarity and electrical power delivery to every control device on the spreader basket.
A comprehensive technical guide to DIN VDE 0250 German industrial standards, central support core engineering, mechanical load distribution, real-time control reliability, and factory-floor deployment strategies for Feichun's heavy-duty round pendant cable system across crane, hoist, and elevator electrification networks.

BOITALYON®R DIN VDE 0250 Round Pendant Control Cable: Premium Heavy-Duty Vertical Suspension for Cranes, Hoists, Elevators, and Industrial Control Stations

A comprehensive technical guide to DIN VDE 0250 German industrial standards, central support core engineering, mechanical load distribution, real-time control reliability, and factory-floor deployment strategies for Feichun’s heavy-duty round pendant cable system across crane, hoist, and elevator electrification networks.
A comprehensive technical guide to the engineering, mechanical properties, material science, and real-world deployment of Feichun's industrial-grade RHEYFIRM® flexible reeling cable system across the 3–30 kV voltage spectrum.

RHEYFIRM® (RTS) (N)TSCGEWTOEUS Reeling Cables 3–30 kV: Premium Flexible Energy Supply for Industrial Container Cranes and Heavy Mobile Equipment

A comprehensive technical guide to the engineering, mechanical properties, material science, and real-world deployment of Feichun’s industrial-grade RHEYFIRM® flexible reeling cable system across the 3–30 kV voltage spectrum.
Complete Technical Guide to Heavy-Duty Reeling Cables for Stacker-Reclaimer Systems in Coal, Iron Ore, Limestone, and Bauxite Stockyards. Comprehensive Analysis of Long-Distance Horizontal Cable Dragging Mechanics, Extreme Abrasion Resistance Engineering, Continuous Outdoor UV Degradation, Extended Tensile Stress Analysis, EPR Insulation Design for Thermal Cycling, 5GM5 Extra-Heavy-Duty Neoprene Sheath Development, Anti-Torsion Architecture for Motorized Reeling. VDE 0250-813 (Medium-Voltage Power) and VDE 0250-814 (Low-Voltage Control) Standards, Material Selection Strategies, Failure Mode Analysis, Real-World Bulk Terminal Deployment Scenarios, Lifecycle Cost Optimization, and Factory-Direct Procurement Without European Brand Premiums.

Stacker Reclaimer Reeling Cable Design Guide: Long-Travel Abrasion Resistance, Extreme-Duty Engineering, and Supply Chain Optimization for Bulk Material Terminals

Complete Technical Guide to Heavy-Duty Reeling Cables for Stacker-Reclaimer Systems in Coal, Iron Ore, Limestone, and Bauxite Stockyards. Comprehensive Analysis of Long-Distance Horizontal Cable Dragging Mechanics, Extreme Abrasion Resistance Engineering, Continuous Outdoor UV Degradation, Extended Tensile Stress Analysis, EPR Insulation Design for Thermal Cycling, 5GM5 Extra-Heavy-Duty Neoprene Sheath Development, Anti-Torsion Architecture for Motorized Reeling. VDE 0250-813 (Medium-Voltage Power) and VDE 0250-814 (Low-Voltage Control) Standards, Material Selection Strategies, Failure Mode Analysis, Real-World Bulk Terminal Deployment Scenarios, Lifecycle Cost Optimization, and Factory-Direct Procurement Without European Brand Premiums.
Complete Technical Guide to Specialized Vertical Reeling Cable Systems for Container Spreaders on Ship-to-Shore (STS) and Rubber-Tired Gantry (RTG) Cranes. Deep Analysis of Aramid (Kevlar) Core Strain-Relief Engineering, Gravity Suspension Load Physics, Dynamic Tension Management, Multi-Core Control Cable Architecture (24G2.5 through 48G2.5), Twist-Lock Sensor Integration, Flipper Control Circuits, High-Definition Camera Feed Transmission. VDE 0250-814 Standards, Vertical Reeling System Physics, Acceleration/Deceleration Shock Analysis, Material Selection (Rubber vs. Polyurethane), Real-World Deployment Scenarios, and Factory-Direct Procurement Strategy for Spreader Cable Replacement in High-Utilization Port Terminals.

Spreader Cable Reel Engineering Guide: Vertical Reeling Systems, Aramid Core Strain Relief, and Gravity Stress Management for Modern STS and RTG Container Cranes

Complete Technical Guide to Specialized Vertical Reeling Cable Systems for Container Spreaders on Ship-to-Shore (STS) and Rubber-Tired Gantry (RTG) Cranes. Deep Analysis of Aramid (Kevlar) Core Strain-Relief Engineering, Gravity Suspension Load Physics, Dynamic Tension Management, Multi-Core Control Cable Architecture (24G2.5 through 48G2.5), Twist-Lock Sensor Integration, Flipper Control Circuits, High-Definition Camera Feed Transmission. VDE 0250-814 Standards, Vertical Reeling System Physics, Acceleration/Deceleration Shock Analysis, Material Selection (Rubber vs. Polyurethane), Real-World Deployment Scenarios, and Factory-Direct Procurement Strategy for Spreader Cable Replacement in High-Utilization Port Terminals.
Complete Technical Guide to 0.6/1kV Low Voltage Reeling Cables for Industrial Automation and Port Equipment. Comprehensive Material Comparison: Polychloroprene Rubber (NSHTÖU / 5GM5) vs. Polyurethane (PUR) Jacket Systems. VDE 0250-814 and VDE 0250-818 Standards Framework, Anti-Torsion Engineering for Transfer Cars and Grab Buckets, EPR 3GI3 Insulation Systems, Environmental Resilience Analysis, Real-World Application Decision Logic, and Factory-Direct Procurement Strategy for STS Cranes, RTG Systems, and Automated Material Handling Equipment.

Low Voltage Reeling Cable Selection Guide: 0.6/1kV Rubber vs. Polyurethane Engineering and Application Decision Framework

Complete Technical Guide to 0.6/1kV Low Voltage Reeling Cables for Industrial Automation and Port Equipment. Comprehensive Material Comparison: Polychloroprene Rubber (NSHTÖU / 5GM5) vs. Polyurethane (PUR) Jacket Systems. VDE 0250-814 and VDE 0250-818 Standards Framework, Anti-Torsion Engineering for Transfer Cars and Grab Buckets, EPR 3GI3 Insulation Systems, Environmental Resilience Analysis, Real-World Application Decision Logic, and Factory-Direct Procurement Strategy for STS Cranes, RTG Systems, and Automated Material Handling Equipment.
Complete Technical Guide to Heavy-Duty Reeling Cables for Ship-to-Shore (STS) Container Cranes, Rubber-Tired Gantry (RTG/RMG) Systems, and Mining Bucket Wheel Excavators. VDE 0250-813/814 Standards, Anti-Torsion Engineering Strategy, EPR 3GI3 Insulation, 5GM5 Neoprene Heavy-Duty Sheath, Tensile Strength Analysis, High-Speed Reeling Operation, Dynamic Load Management, Global Supply Chain Procurement, and Factory-Direct Equivalence to Premium European Brands. 港口集装箱起重机、轮胎式门式起重机(RTG/RMG)系统和采矿铲斗轮挖掘机重型卷筒电缆的完整技术指南。VDE 0250-813/814标准、防扭转工程策略、EPR 3GI3绝缘、5GM5氯丁橡胶重型护套、拉伸强度分析、高速卷筒操作、动态负荷管理、全球供应链采购和与高端欧洲品牌的工厂直接等效。

Crane Reeling Cables for Port and Mining Equipment: VDE Engineering, Mechanical Stress Performance, and Supply Chain Optimization

Complete Technical Guide to Heavy-Duty Reeling Cables for Ship-to-Shore (STS) Container Cranes, Rubber-Tired Gantry (RTG/RMG) Systems, and Mining Bucket Wheel Excavators. VDE 0250-813/814 Standards, Anti-Torsion Engineering Strategy, EPR 3GI3 Insulation, 5GM5 Neoprene Heavy-Duty Sheath, Tensile Strength Analysis, High-Speed Reeling Operation, Dynamic Load Management, Global Supply Chain Procurement, and Factory-Direct Equivalence to Premium European Brands. 港口集装箱起重机、轮胎式门式起重机(RTG/RMG)系统和采矿铲斗轮挖掘机重型卷筒电缆的完整技术指南。VDE 0250-813/814标准、防扭转工程策略、EPR 3GI3绝缘、5GM5氯丁橡胶重型护套、拉伸强度分析、高速卷筒操作、动态负荷管理、全球供应链采购和与高端欧洲品牌的工厂直接等效。
4x120 reeling cable, 4G120 drum cable, NSHTOU 4x120, bulk handling power cable, stacker reclaimer cable, ship loader cable, bucket wheel excavator cable, heavy duty reeling cable, motorized drum cable, Feichun reeling cable, Feichun crane cable, Chinese premium reeling cable, import substitution cable, VDE 0250-814, NSHTOU-J equivalent, anti torsion cable, torsion resistant reeling, EPR insulation 3GI3, 5GM5 outer sheath, neoprene trailing cable, continuous flexing cable, dynamic load LV cable, high tensile strength reel, corkscrew resistant cable, flame retardant drum cable, oil resistant reeling cable, UV resistant crane cable, weather resistant reeling, ship unloader cable, port terminal electrification, tinned copper class 5, 4 core 120mm2 cable, heavy machinery wiring, industrial heavy flex, European standard equivalent, Prysmian NSHTOU alternative, Nexans RHEYFIRM equivalent, Lapp crane alternative, sanction free crane cable, direct factory reeling cable, thick rubber sheath cable, mechanical stress cable, offshore crane power, mobile substation reeling, high speed winding cable, Feichun special cable, flexible power cable 120mm2, dragline reeling cable, mining reel electrification, coal terminal power cable

4×120 mm² Drum Reeling Power Cable for Bulk Handling: NSHTÖU-J 4G120, VDE 0250-814, Anti-Torsion Braid Under 7,200 N Dynamic Tension, Abrasion-Grade 5GM5 Neoprene for Coal & Iron Ore Terminals — Stacker Reclaimer, Ship Loader, and Bucket-Wheel Excavator Applications

4×120 reeling cable, 4G120 drum cable, NSHTOU 4×120, bulk handling power cable, stacker reclaimer cable, ship loader cable, bucket wheel excavator cable, heavy duty reeling cable, motorized drum cable, Feichun reeling cable, Feichun crane cable, Chinese premium reeling cable, import substitution cable, VDE 0250-814, NSHTOU-J equivalent, anti torsion cable, torsion resistant reeling, EPR insulation 3GI3, 5GM5 outer sheath, neoprene trailing cable, continuous flexing cable, dynamic load LV cable, high tensile strength reel, corkscrew resistant cable, flame retardant drum cable, oil resistant reeling cable, UV resistant crane cable, weather resistant reeling, ship unloader cable, port terminal electrification, tinned copper class 5, 4 core 120mm2 cable, heavy machinery wiring, industrial heavy flex, European standard equivalent, Prysmian NSHTOU alternative, Nexans RHEYFIRM equivalent, Lapp crane alternative, sanction free crane cable, direct factory reeling cable, thick rubber sheath cable, mechanical stress cable, offshore crane power, mobile substation reeling, high speed winding cable, Feichun special cable, flexible power cable 120mm2, dragline reeling cable, mining reel electrification, coal terminal power cable
A definitive engineering specification guide for port electrical engineers, crane automation integrators, and terminal procurement teams who need to specify, source, or replace the 24G2.5 (24×2.5 mm²) multi-core control reeling cable — the critical signal backbone of modern container crane automation systems. This document covers every layer of the cable's construction from the inside out: Class 5 and Class 6 tinned copper stranding options per IEC 60228, the precisely optimised stranding pitch (lay length) that equalises tensile stress across all 24 cores during dynamic bending, 3GI3 EPR versus TPE insulation selection criteria for signal integrity under continuous flexing, the vulcanised anti-torsion braid that prevents the catastrophic "corkscrewing" failure mode unique to high-core-count reeling cables, and the outer sheath decision between 5GM5 polychloroprene (neoprene) for maximum ozone/UV/saltwater resistance and polyurethane (PUR) for extreme mechanical abrasion environments. VDE compliance is mapped to both DIN VDE 0250-814 (rubber-sheathed reeling cables) and DIN VDE 0250-818 (PUR-sheathed reeling cables). Core identification follows IEC 60227 conventions: 23 black cores with white printed numbers plus one green/yellow earth core. Typical applications include PLC I/O signal transmission, twist-lock sensor feedback, limit switch circuits, anti-collision radar interfaces, load-cell data, and 24 VDC auxiliary power distribution on STS (Ship-to-Shore), RTG (Rubber-Tyred Gantry), RMG (Rail-Mounted Gantry), and heavy industrial overhead cranes.

24G2.5 Crane Reeling Cable Specification Guide: 24×2.5 mm² Multi-Core Control Cable for STS, RTG & RMG Cranes — NSHTÖU-J / PUR, VDE 0250-814 / 0250-818, Anti-Torsion Braid, Stranding Pitch Engineering, and FeiChun Drop-In Equivalent

A definitive engineering specification guide for port electrical engineers, crane automation integrators, and terminal procurement teams who need to specify, source, or replace the 24G2.5 (24×2.5 mm²) multi-core control reeling cable — the critical signal backbone of modern container crane automation systems. This document covers every layer of the cable’s construction from the inside out: Class 5 and Class 6 tinned copper stranding options per IEC 60228, the precisely optimised stranding pitch (lay length) that equalises tensile stress across all 24 cores during dynamic bending, 3GI3 EPR versus TPE insulation selection criteria for signal integrity under continuous flexing, the vulcanised anti-torsion braid that prevents the catastrophic “corkscrewing” failure mode unique to high-core-count reeling cables, and the outer sheath decision between 5GM5 polychloroprene (neoprene) for maximum ozone/UV/saltwater resistance and polyurethane (PUR) for extreme mechanical abrasion environments. VDE compliance is mapped to both DIN VDE 0250-814 (rubber-sheathed reeling cables) and DIN VDE 0250-818 (PUR-sheathed reeling cables). Core identification follows IEC 60227 conventions: 23 black cores with white printed numbers plus one green/yellow earth core. Typical applications include PLC I/O signal transmission, twist-lock sensor feedback, limit switch circuits, anti-collision radar interfaces, load-cell data, and 24 VDC auxiliary power distribution on STS (Ship-to-Shore), RTG (Rubber-Tyred Gantry), RMG (Rail-Mounted Gantry), and heavy industrial overhead cranes.
TFCrane replacement, TF Kable TFCrane alternative, Tele-Fonika crane cable, STS crane reeling cable, RTG crane power cable, motorized drum cable, heavy duty reeling cable, Feichun reeling cable, Feichun crane cable, Chinese premium crane cable, import substitution crane, VDE 0250-814 cable, NSHTOU equivalent, NTSCGEWOU equivalent, anti torsion cable, torsion resistant reeling, EPR insulation 3GI3, 5GM5 outer sheath, neoprene trailing cable, continuous flexing cable, dynamic load reeling, high tensile strength reel, corkscrew resistant cable, flame retardant drum cable, oil resistant reeling cable, UV resistant crane cable, weather resistant reeling, ship unloader cable, RMG crane cable, tinned copper class 5, multi core reeling cable, heavy machinery wiring, industrial heavy flex, European standard equivalent, Prysmian PROTOMONT alternative, Nexans RHEYFIRM equivalent, Lapp crane alternative, sanction free crane cable, direct factory reeling cable, port terminal electrification, thick rubber sheath cable, mechanical stress cable, offshore crane power, mobile substation reeling, high speed winding cable, Feichun special cable, flexible power cable, dragline reeling cable, port equipment electrification, container handling cable

TFCrane Equivalent Reeling Cable for STS and RTG Cranes: TF Kable (Tele-Fonika) to FeiChun Drop-In Replacement — VDE 0250-814 / 0250-813, Anti-Torsion Braid Engineering, High-Speed Motorised Drum Compatibility

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PROTOMONT replacement, Prysmian PROTOMONT alternative, PROTOMONT crane cable, PROTOMONT NSHTOU, PROTOMONT NTSCGEWOU, motorized drum cable, heavy duty reeling cable, Feichun reeling cable, Feichun crane cable, Chinese premium crane cable, import substitution crane, VDE 0250-814 cable, VDE 0250-813 cable, STS crane reeling, RMG crane cable, RTG crane wiring, anti torsion cable, torsion resistant reeling, EPR insulation 3GI3, 5GM5 outer sheath, neoprene trailing cable, continuous flexing cable, dynamic load MV cable, high tensile strength reel, corkscrew resistant cable, flame retardant drum cable, oil resistant reeling cable, UV resistant crane cable, weather resistant reeling, ship unloader cable, stacker reclaimer cable, tinned copper class 5, multi core reeling cable, heavy machinery wiring, industrial heavy flex, European standard equivalent, Nexans reeling equivalent, Lapp crane alternative, sanction free crane cable, direct factory reeling cable, port terminal electrification, thick rubber sheath cable, mechanical stress cable, offshore crane power, mobile substation reeling, high speed winding cable, Feichun special cable, flexible power cable, dragline reeling cable, mining reel electrification

NSHTOU Heavy-Duty Reeling Cable Manufacturer: Complete Guide to Direct Factory Sourcing, Manufacturing Capabilities, and VDE 0250-814 Certification for Port and Mining Operations

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Complete technical analysis of NSHTOEU 0.6/1 kV low-voltage drum reeling cable for STS/RMG/RTG container cranes and port equipment: anti-torsion synthetic braid prevents helical copper core collapse during 120 m/min reeling, EPR 3GI3 micro-filtered insulation resists thermal cycling and flexing stress, 5GM5 neoprene sheath withstands marine UV/ozone/salt-spray exposure, Class 5 tinned copper maintains flexibility at -40°C. FeiChun NSHTOEU — VDE 0250-814 certified direct European equivalent with 30–35% cost savings, 45–60 day lead time, seamless compatibility with existing motorized drums. Replaces Prysmian/Nexans/Lapp for global container terminals under import-substitution programs.

NSHTOEU 0.6/1 kV Drum Reeling Cable Alternative: Complete Technical Solution for STS, RMG, and RTG Container Cranes — Direct European Equivalent Without Supply Chain Delays

Complete technical analysis of NSHTOEU 0.6/1 kV low-voltage drum reeling cable for STS/RMG/RTG container cranes and port equipment: anti-torsion synthetic braid prevents helical copper core collapse during 120 m/min reeling, EPR 3GI3 micro-filtered insulation resists thermal cycling and flexing stress, 5GM5 neoprene sheath withstands marine UV/ozone/salt-spray exposure, Class 5 tinned copper maintains flexibility at -40°C. FeiChun NSHTOEU — VDE 0250-814 certified direct European equivalent with 30–35% cost savings, 45–60 day lead time, seamless compatibility with existing motorized drums. Replaces Prysmian/Nexans/Lapp for global container terminals under import-substitution programs.
Complete technical analysis of Prysmian CORDAFLEX SMK-V 0.6/1 kV low-voltage vertical reeling cable for STS cranes, spreader bar systems, container handlers: central Kevlar aramid core absorbs 20+ kN tensile load preventing copper core elongation under gravity, anti-torsion polyester braid prevents helical collapse during 240 m/min vertical operation, yellow neoprene PROTOFIRM sheath resists marine UV/ozone/salt-spray, Class FS tinned copper conductors maintain flexibility at -35°C. FeiChun NSHTOU-V — VDE 0250-814 certified direct equivalent with triple-extrusion process, 30–35% cost savings, 45–60 day lead time. Replaces CORDAFLEX SMK-V for global port terminals under import-substitution programs without equipment recalibration.

CORDAFLEX SMK-V Vertical Reeling Cable Replacement: Complete Engineering Analysis and Drop-In Solution for High-Speed STS Crane Spreader Hoists, Container Handlers, and Port Electrification Systems

Complete technical analysis of Prysmian CORDAFLEX SMK-V 0.6/1 kV low-voltage vertical reeling cable for STS cranes, spreader bar systems, container handlers: central Kevlar aramid core absorbs 20+ kN tensile load preventing copper core elongation under gravity, anti-torsion polyester braid prevents helical collapse during 240 m/min vertical operation, yellow neoprene PROTOFIRM sheath resists marine UV/ozone/salt-spray, Class FS tinned copper conductors maintain flexibility at -35°C. FeiChun NSHTOU-V — VDE 0250-814 certified direct equivalent with triple-extrusion process, 30–35% cost savings, 45–60 day lead time. Replaces CORDAFLEX SMK-V for global port terminals under import-substitution programs without equipment recalibration.