High-Strength Towed Cable for Marine and Underwater Systems
High-strength marine towed cable is designed for underwater towing, tethered detection equipment, and composite transmission systems requiring power, control, communication, signal, and optical fiber functions in one cable. With aramid or steel wire armor reinforcement options, abrasion-resistant sheath materials, and tensile strength up to 300kN, it supports demanding marine, underwater, and offshore applications.
Up to 300kN Tensile Strength
Power / Signal / Fiber
Aramid or Steel Armor
Overview
High-Strength Towed Cable for Marine and Underwater Systems is designed for underwater towing, tethered detection equipment, and composite transmission systems requiring mechanical strength and reliable electrical, signal, and optical performance.
This product family integrates towing, tethering, power transmission, control, communication, signal transmission, and optical fiber functions into one cable construction. It is suitable for demanding marine and underwater applications where repeated deployment and recovery, abrasion resistance, tensile strength, and long-term reliability are critical.
This page is intended for product selection. Exact specifications should be confirmed by tensile strength requirement, transmission function, armor material, sheath material, insulation system, cable outside diameter, weight, water exposure, and project drawing before ordering.
Series Options
The table below helps buyers understand the main high-strength towed cable options before reviewing detailed drawings, technical specifications, or project requirements.
| Series Option | Product Positioning | Typical Selection Scenario |
|---|---|---|
| Aramid-Armored Towed Cable | High-strength towed cable with aramid armor reinforcement | For applications requiring high tensile strength, lower weight, repeated deployment, and composite power, signal, or fiber transmission. |
| Steel Wire Armored Towed Cable | High-strength towed cable with steel wire armor reinforcement | For heavy-duty towing, tethering, and underwater use where stronger mechanical reinforcement is required. |
| Composite Power / Signal Towed Cable | Integrated cable with power, control, signal, and communication functions | For tethered equipment that requires multiple transmission functions in one towed cable. |
| Optical Fiber Composite Towed Cable | Composite towed cable with optical fiber elements | For underwater systems requiring optical fiber communication together with power or signal transmission. |
| BYC Custom | Custom high-strength towed cable construction | For projects requiring custom tensile strength, conductor count, signal pairs, fiber count, armor material, sheath, outside diameter, weight, or documentation support. |
Features
High Tensile Strength
Representative constructions support tensile strength up to 300kN, approximately 30.6 metric tons of force, for demanding towing and tethering applications.
Towed and Tethered System Use
Designed for towed detection equipment, tethered underwater systems, and marine equipment requiring repeated deployment and recovery.
Composite Transmission
Available constructions can combine power conductors, control lines, signal pairs, communication wires, and optical fibers in one cable.
Armor Reinforcement Options
Aramid armor and steel wire armor reinforcement options are available depending on tensile strength, weight, and operating requirements.
Marine Sheath Materials
Sheath options may include chlorosulfonated polyethylene or polyurethane, selected according to abrasion resistance, flexibility, and underwater environment.
Project-Based Custom Design
BYC Cables can review drawings, tensile load, transmission functions, armor structure, sheath material, and test requirements for custom marine projects.
Construction & Materials
High-strength towed cables are project-specific composite cables. Final construction should be selected according to tensile strength, towing load, transmission function, conductor count, signal pair count, fiber count, armor reinforcement, sheath material, cable outside diameter, and deployment environment.
Construction Options
| Component | Available Options | Selection Notes |
|---|---|---|
| Transmission Function | Power, control, signal, communication, optical fiber, or integrated composite transmission | The required functions determine conductor count, signal pair design, fiber count, shielding, cable size, and testing requirements. |
| Power Conductors | Custom power conductor count and cross-section based on load requirement | Power conductor selection should be confirmed by voltage withstand, current load, cable length, and voltage drop requirement. |
| Signal Pairs | Single signal wires, twisted signal pairs, or data signal pairs | Signal structure should be selected according to communication protocol, interference environment, and transmission distance. |
| Optical Fibers | Optical fiber elements can be integrated depending on selected model | Fiber count and fiber type should be confirmed by communication requirement and system design. |
| Armor Reinforcement | Aramid armor or steel wire armor reinforcement | Aramid reinforcement supports high strength with lower weight. Steel wire armor supports heavy-duty mechanical reinforcement. |
| Sheath Material | Chlorosulfonated polyethylene, polyurethane, or project-specified sheath materials | Sheath selection should consider abrasion resistance, seawater exposure, flexibility, repeated deployment, and mechanical protection. |
| Insulation Material | Fluoroplastic, polyethylene, or project-specified insulation options | Insulation should be selected according to voltage withstand, signal performance, flexibility, and marine environment. |
| Weight and Diameter | Varies by tensile strength, armor structure, conductor layout, and transmission function | Outside diameter and weight should be confirmed by selected construction and project drawing. |
Construction Differences
| Cable Type | Construction Focus | Confirmed Information | When to Choose |
|---|---|---|---|
| Light to Medium Towed Cable | Composite power and signal transmission with moderate tensile strength | Representative tensile strength values include 10kN, 15kN, 25kN, 30kN, 60kN, and 100kN depending on selected model. | Choose when the system requires towing or tethering with moderate load and integrated electrical or signal transmission. |
| Heavy-Duty Towed Cable | High-tensile marine cable for demanding towing and underwater use | Representative high-tensile models include 200kN, 250kN, and 300kN options depending on cable construction. | Choose when the application requires high breaking strength, heavier equipment towing, or harsh underwater deployment. |
| Optical Fiber Composite Cable | Towed cable with integrated optical fibers and electrical conductors | Selected models integrate power conductors, signal pairs, and optical fibers in one cable. | Choose when underwater systems require both power transmission and high-speed optical communication. |
| BYC Custom | Custom towed cable construction based on project drawings | Tensile strength, conductor layout, signal pairs, optical fibers, armor, sheath, weight, and diameter can be reviewed by project requirement. | Choose when existing representative models do not fully match towing load, equipment interface, transmission function, or deployment condition. |
Specifications
The specifications below are intended for preliminary product selection. Final values should be confirmed according to tensile load, armor structure, conductor layout, transmission function, insulation system, sheath material, and project drawing.
| Product Family | High-Strength Towed Cable for Marine and Underwater Systems |
|---|---|
| Main Applications | Underwater towing, tethered detection equipment, marine systems, offshore devices, power transmission, control, communication, signal transmission, and optical fiber communication |
| Transmission Functions | Power conductors, control lines, signal wires, twisted signal pairs, RS422 data line, coaxial elements, and optical fibers depending on selected model |
| Tensile Strength | Representative tensile strength values range from 10kN to 300kN. 300kN is approximately 30.6 metric tons of force. |
| Voltage Withstand | Representative values include 1.0kV, 2.0kV, 2.5kV, and 10.0kV AC depending on selected model. |
| Armor Reinforcement | Aramid armor or steel wire armor reinforcement options are available depending on project requirements. |
| Sheath Materials | Chlorosulfonated polyethylene, polyurethane, or project-specified sheath material options |
| Insulation Materials | Fluoroplastic, polyethylene, or project-specified insulation options |
| Operating Temperature | Operating temperature should be confirmed by selected sheath material, insulation system, armor structure, and project requirements. |
| Outside Diameter | Representative cable outside diameter ranges from approximately 13.0mm to 37.0mm depending on selected construction. |
| Weight | Representative weights range from approximately 160g/m to 3000g/m, or may be specified by ratio depending on model. |
| Reference Standards | Reference standards may include GJB774-1989, GJB1916, GJB1994, and MIL-DTL-24643C depending on selected cable type. These should be treated as reference standards, not third-party certifications. |
| Customization | Available based on drawings, samples, tensile strength requirements, transmission functions, armor structure, sheath material, and documentation needs |
For accurate quotation, please provide the required tensile strength, cable function, power conductor count, signal pair count, fiber count, armor material, sheath material, outside diameter or weight target, operating environment, and applicable drawings or specifications.
Representative Technical Specifications
| Model | Cable OD | Voltage Withstand | Tensile Strength | Transmission Function | Weight |
|---|---|---|---|---|---|
| HYTYU-13-2.5T | 18.5±0.3mm | 2.5kV AC | 25kN | Power wires: 3; coaxial cables: 4; twisted signal pairs: 3 pairs | 350g/m |
| HYTMF46U-12-1.5T | 13.5±0.3mm | 1.0kV AC | 15kN | Power wires: 4; signal twisted pairs: 2 pairs; RS422 data line: 1 | 160g/m |
| HYTYUS-17-6A1 | 37.0±0.5mm | 2.0kV AC | 300kN | Power wires: 13; signal wires: 4; optical fibers: 6 | 3000g/m |
| HYTMYU-6 | 30.5±0.5mm | 10.0kV AC | 250kN | Power wires: 3; signal wires: 3 | 600g/m |
| HYTYJU-4-4B1 | 23.0±0.3mm | 2.0kV AC | 200kN | Power wires: 4; optical fibers: 4 | 1.35 ratio |
| HYTF46U-16-4A1 | 18.0±0.3mm | 1.0kV AC | 60kN | Power wires: 4; twisted signal pairs: 6 pairs; optical fibers: 4 | 360g/m |
| HYTYY-16 | 23.0±0.5mm | 1.0kV AC | 30kN | Power wires: 4; twisted signal pairs: 6 pairs | 0.99 ratio |
Applications
High-strength marine towed cables are suitable for systems requiring mechanical towing strength and integrated transmission of power, control, signal, communication, or optical data in marine and underwater environments.
Underwater Towed Systems
For underwater equipment that must be towed while maintaining power, control, signal, or communication transmission.
Tethered Detection Equipment
For tethered detection, sensing, or monitoring equipment requiring high tensile strength and reliable electrical performance.
Marine Survey and Offshore Systems
For marine survey devices, offshore equipment, and underwater systems requiring repeated deployment and recovery.
Power and Control Transmission
For applications requiring power conductors and control wires integrated into one reinforced towed cable.
Signal and Data Transmission
For underwater systems requiring signal wires, twisted signal pairs, RS422 data lines, or other communication elements.
Optical Fiber Composite Systems
For marine systems requiring optical fiber communication together with power and signal transmission in one cable.
Selection Guide
Use this guide as a starting point. Final selection should be confirmed by towing load, tensile strength, transmission function, armor type, sheath material, outside diameter, weight, and deployment environment.
| Requirement | Recommended Option | Selection Reason |
|---|---|---|
| Light to medium towed equipment | 10–60kN | Suitable for smaller tethered systems requiring integrated power, control, or signal transmission. |
| Heavy-duty underwater towing | 100–300kN | Recommended for higher towing loads, heavier underwater systems, and stronger mechanical reinforcement requirements. |
| Lower weight with high strength | Aramid Armor | Aramid reinforcement is suitable when tensile strength and reduced cable weight are both important. |
| Maximum mechanical reinforcement | Steel Wire Armor | Steel wire reinforcement can be selected for heavy-duty towing and demanding mechanical conditions. |
| Power and signal integration | Composite Cable | Composite construction can integrate power wires, signal wires, twisted pairs, coaxial elements, or RS422 data lines. |
| Optical communication | Fiber Composite | Optical fibers can be integrated when the system requires optical communication in addition to electrical transmission. |
| Project-specific towing system | BYC Custom | BYC Cables can review tensile load, cable layout, armor, sheath, diameter, weight, and test requirements based on drawings. |
Customization Options
BYC Cables can support custom high-strength towed cable requirements based on drawings, samples, towing load, transmission functions, and project documentation needs.
Tensile Strength
Representative tensile strength options range from 10kN to 300kN, with project-specific tensile requirements available for review.
Armor Structure
Aramid armor or steel wire armor can be selected according to tensile load, cable weight, flexibility, and deployment conditions.
Transmission Layout
Power wires, control wires, signal pairs, coaxial elements, RS422 data lines, and optical fibers can be integrated based on system needs.
Sheath and Insulation
Chlorosulfonated polyethylene, polyurethane, fluoroplastic, polyethylene, or project-specific materials can be reviewed.
Diameter and Weight
Cable outside diameter and weight can be optimized according to towing equipment, winch system, and deployment requirements.
Testing and Documentation
Tensile testing, voltage withstand, transmission testing, datasheets, drawings, and inspection documents can be reviewed based on project requirements.
Request a Quote
Please provide the required tensile strength, towing depth or use environment, power conductor count, signal pair count, fiber count, armor material, sheath material, outside diameter or weight target, and applicable drawings or specifications.
FAQ
What is a high-strength marine towed cable used for?
It is used for underwater towing, tethered detection equipment, marine survey systems, and composite transmission applications requiring power, control, signal, communication, or optical fiber functions.
What is the maximum tensile strength available?
Representative constructions can support tensile strength up to 300kN, approximately 30.6 metric tons of force. Final tensile rating should be confirmed by selected construction.
Can this cable include optical fibers?
Yes. Selected constructions can integrate optical fibers together with power conductors, signal wires, twisted signal pairs, or data lines.
What armor materials are available?
Aramid armor and steel wire armor reinforcement options are available depending on tensile strength, cable weight, and operating requirements.
What is the operating temperature range?
The operating temperature should be confirmed by selected sheath material, insulation system, armor structure, and project requirements. It should not be assumed as a single fixed value for all constructions.
Can BYC Cables customize high-strength towed cables?
Yes. BYC Cables can review custom requirements for tensile strength, armor, power conductors, signal pairs, optical fibers, sheath material, outside diameter, weight, testing, and documentation.
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