High Flexible and High Tensile Underwater Power +Signal + Optic Fiber Hybrid Cable

High Flexible and High Tensile Underwater Power +Signal + Optic Fiber Hybrid Cable — subsea electro-optical hybrid cable combining single-mode or multi-mode optical fibres with power conductors. Depth-rated construction, SS tube or Xtreme-Light fibre elements, Kevlar strength. Supports ROV, AUV, drone tether, and offshore EO systems.

Subsea Electro-Optical Hybrid Cable — High-Bandwidth Data + Power to Full Ocean Depth

This High Flexible and High Tensile Underwater Power +Signal + Optic Fiber Hybrid Cable combines optical fibres and copper power conductors in a single ruggedised subsea cable assembly. By transmitting data via optical fibres, the cable achieves bandwidth and latency performance impossible with copper-only designs — supporting 4K HD video streaming, real-time sensor fusion, and fibre-optic gyroscope (FOG) navigation data at any operational depth.

Fibre elements are protected in either precision stainless steel (SS) buffer tubes for maximum crush resistance, or ultra-compact 4.6 mm diameter Xtreme-Light® simplex constructions for minimum diameter and weight. Power conductors range from 22 AWG signal levels to 10 AWG / 3.6 kV for high-voltage umbilical applications. Strength members of Kevlar®, Twaron®, or Vectran® provide tensile load capacity matched to the deployment scenario.

SM / MM Optical Fibres 600V to 3,600V Power Full Ocean Depth Capable SS-Tube or Simplex Fibre Kevlar Strength Member ROV / AUV / Drone Tether

Key Design Features

  • Single-mode (SM) and multi-mode (MM) fibres — SM for long-distance low-loss HD transmission; MM for short-range high-bandwidth sensor data; mixed SM+MM in one cable available
  • SS-tube fibre protection — precision stainless steel loose-tube buffer for crush resistance in armoured umbilicals and high-pressure deployments
  • Xtreme-Light simplex elements — 1 to 6 fibres per element; OD as small as 4.6 mm; ultra-compact for micro ROV and drone tether applications
  • High-voltage power integration — 300V, 600V, 1.0 kV, or 3.6 kV power conductors (6 AWG to 22 AWG) alongside fibre elements in a single cable
  • Kevlar / Vectran strength members — 2,700 to 4,000+ lbs break strength; safe working load configurations for dynamic tether applications
  • Full-ocean-depth Xtreme-grade PUR jacket — 90°C rated; hot-mould compatible; maintains flexibility at 2°C seafloor temperatures
  • Steel-ring armoured variants — double-served galvanised or SS armour wire for abrasion protection and heavy umbilical tow applications
  • Flat and round profile options — flat subsea profiles reduce hydrodynamic drag for towed sensor arrays; round for standard deployment

Electrical, Optical & Mechanical Specifications

ParameterSpecification
Fibre TypesSingle-mode (SMF-28e), Multi-mode (OM1/OM2/OM3), or mixed
Fibre Count1 to 6 per element; multiple elements combinable (1–24 total fibres)
Fibre Element OD4.6 mm (Xtreme-Light simplex); SS-tube per design
Attenuation (SM)<0.35 dB/km @ 1,310 nm; <0.20 dB/km @ 1,550 nm
Power Voltage300V / 600V / 1,000V / 3,600V
Power Conductor AWG22 AWG to 6 AWG (10 AWG standard for 3.6 kV)
Break Strength2,700 lbs (Kevlar light tether) to 4,000+ lbs; steel armour to 180,000 lbs
JacketXtreme-grade PUR 90°C; or Hytrel® / HDPE for tow cables
Temperature-25°C to +90°C operating
Depth RatingStandard: 6,000 m; deep armoured: full ocean depth (11,000 m custom)
OD Range7 mm (micro-tether) to 45 mm (heavy umbilical)

Typical Applications

  • Work-class ROV tethers — 3 SM fibres + 3× 10 AWG 3.6 kV power for heavy hydraulic manipulator vehicles
  • Observation ROV and micro-ROV — ultra-compact simplex fibre tether; neutral buoyancy; 500–2,000 lbs BS
  • Underwater drone (UUV/AUV) tether — single SM fibre + 4C signal for high-bandwidth optical uplink
  • Subsea power and communications umbilical — offshore oil and gas tie-back from topside to subsea control module
  • Towed sonar array — flat-profile composite with optical fibres for sonar data link and coaxial for acoustic transducer
  • Offshore wind power monitoring — fibre backbone connecting subsea turbine instrumentation to platform
  • Scientific ocean bottom seismometers — long-duration fibre link for seismic and hydro-acoustic sensor networks
  • Military mine countermeasure vehicles — fibre tether providing encrypted HD video and command data

Why Fibre-Optic Hybrids Outperform All-Copper Subsea Cables

Bandwidth at Any Depth

Copper Ethernet cables suffer capacitance increase under pressure, limiting practical data rates and cable lengths. Single-mode optical fibre is immune to pressure effects — attenuation and bandwidth remain constant from the surface to full ocean depth, supporting 10 Gbps and beyond regardless of cable length or depth.

Electrical Isolation Between Power and Data

High-voltage ROV thrusters, powerful LED lighting systems, and electric manipulators generate significant EMI that degrades copper Ethernet performance. Optical fibres carry photons, not electrons — they are completely immune to electromagnetic interference and ground loops, ensuring clean data even adjacent to 3.6 kV motor cables.

Weight and Diameter Advantage

A 3 SM fibre + 3× 10 AWG EO hybrid cable achieves 2,700 lbs break strength at an OD of under 16 mm (0.63") — far more compact than an equivalent all-copper design carrying the same data and power payload. Reduced diameter means lower hydrodynamic drag and longer tether operability in currents.

3.6 kV High-Voltage Power Delivery

As ROVs grow in capability and power demand, 24V and 48V tether systems give way to medium-voltage umbilicals. Our 3.6 kV rated EO cables enable efficient power transmission over long tether lengths with minimised I²R losses — the same approach used in full-scale offshore umbilical systems, now available in compact tether diameters.

SS-Tube vs Simplex Fibre Protection

Stainless steel buffer tubes provide maximum crush resistance for armoured tow cables and heavy umbilicals where external mechanical stress is high. Xtreme-Light simplex elements save weight and OD in dynamic tether applications where the cable undergoes continuous bending on the ROV drum.


Available EO Hybrid Cable Configurations

ConfigurationFibresPowerVoltageBS (lbs)OD (in)
EO Hybrid Light3× SMF simplex6× 22AWG600V2,7000.292
EO Hybrid Medium3× SMF simplex3× 14AWG600V2,7000.595
EO Hybrid HV3× SMF simplex3× 10AWG3,600V4,0000.640
EO Hybrid HV-8AWG3× SMF simplex3× 8AWG3,600V4,0000.670
Armoured umbilical6× MM SS-tube6× 18AWG + 4× 12–14AWG600V18,0001.025
Flat composite1–4× SM2–4 Cu pairs600V2,000+Flat profile
Micro tether1–2× SM simplex2–4× 20AWG300V1,000+0.350–0.550

Installation and Maintenance Guidelines

Fibre Handling During Termination

Optical fibres require a minimum bend radius of 30 mm (short-term) and 50 mm (long-term permanent installation). During cable preparation for connector termination, protect bare fibre from mechanical shock, contamination, and contact with cutting tools. Use appropriate fibre cleavers and fusion splicers for low-loss permanent joints; use factory-polished field-installable connectors for surface deployments only.

Drum and Deployment Systems

EO hybrid cables require level-wind spooling mechanisms to prevent point-loading of fibre elements during fast deployment. Drum flanges must clear the cable OD by a minimum of 3× to prevent edge crush. Rotary optical joints (ROJ) or fibre swivels are recommended for continuously rotating drum systems — standard slip-rings are for copper only and will break optical fibres.

Pressure Testing and Fault Location

Before deep deployment, conduct an OTDR (Optical Time Domain Reflectometry) baseline measurement on all fibre elements. Record the trace for comparison after each major deployment. Any increase in reflectance events or step-losses indicates fibre damage from mechanical stress. Electrical Hi-Pot testing of power conductors at 1.5× rated voltage verifies insulation integrity before submersion.

Configure Your Subsea Electro-Optical Cable

Specify fibre count and type (SM/MM), power voltage and AWG, break strength, depth rating, OD target, and deployment method — we engineer the exact EO hybrid cable for your ROV, AUV, or offshore application.

Custom designs | SM/MM/mixed | 600V to 3,600V | Global delivery

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Underwater Fiber Optic Hybrid Cable

Request a Quote