Lander Flatpack systems integrate multiple control and monitoring lines into a compact, reliable structure designed for deepwater, unconventional, and high-deviation wells.
Our Flatpack lines ensure stable signal transmission, mechanical protection, and long-term performance under extreme downhole conditions.
Hybrid Optical Cable for High-Bandwidth Downhole Data
Combining metal-tube protection with fiber-optic performance, Fiber TEC enables high-bandwidth measurement and real-time downhole communication.
Superior optical transmission quality
Enhanced crush, tension, and corrosion resistance
Suitable for deepwater monitoring, permanent reservoir surveillance (PRS), and intelligent completion systems
Power & Signal Transmission for Downhole Tools
Copper TEC delivers stable electrical performance in demanding wells, ensuring secure connectivity for gauges, sensors, and control devices.
High-conductivity copper conductors
Robust insulation and metal-tube protection
Reliable signal integrity under vibration, pressure, and thermal cycling
Optical Sensing Line for Real-Time Well Monitoring
Engineered for harsh downhole environments, FIMT provides high-accuracy distributed sensing (DTS/DTSS) while maintaining excellent mechanical protection.
High-temperature and high-pressure resistance
Corrosion-protected stainless steel or alloy tubing
Ideal for optical monitoring, seismic acquisition, and well integrity evaluation
Flatpack provides protected signal and power pathways during CT interventions, ensuring stable data transmission and tool functionality under continuous bending, pressure cycling, and dynamic loading.
Engineered for long-term deployment, Flatpack ensures reliable fiber-optic or electrical communication with gauges and sensors, supporting temperature, pressure, and flow monitoring in HP/HT and deviated wells.
Flatpack enhances real-time data acquisition by protecting optical and electrical elements during logging, perforating, and intervention operations — reducing mechanical risk and maintaining consistent signal integrity.
Designed for extreme temperature, corrosive media, and long vertical depths, Flatpack supports long-term monitoring of CO₂ injection wells and geothermal reservoirs, providing continuous thermal and structural surveillance.
Flatpack enables distributed leak detection, structural monitoring, and vibration sensing along long-distance pipelines — offering reliable protection for optical sensing cables in harsh, remote environments.
Flatpack provides protected signal and power pathways during CT interventions, ensuring stable data transmission and tool functionality under continuous bending, pressure cycling, and dynamic loading.



Annealed single wires are stranded into conductors to achieve the required current capacity, flexibility, and mechanical strength.



Insulation materials are extruded over the stranded conductor under controlled conditions to provide electrical insulation and thermal protection.



Metal armor is applied to enhance mechanical strength and resistance to external impact and downhole stresses.



Cables are carefully spooled and packaged to prevent deformation and damage during transportation.




Copper and aluminum conductors are carefully stored and managed in a controlled warehouse environment. Each batch undergoes verification for conductivity, dimensional consistency, and surface condition before entering the production line, ensuring stable electrical performance and reliable processing throughout cable manufacturing.



Annealed single wires are stranded into conductors to achieve the required current capacity, flexibility, and mechanical strength.



Insulation materials are extruded over the stranded conductor under controlled conditions to provide electrical insulation and thermal protection.



An inner sheath is applied to protect the cable core and provide a stable base for armoring.



Metal armor is applied to enhance mechanical strength and resistance to external impact and downhole stresses.



Cables are carefully spooled and packaged to prevent deformation and damage during transportation.




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