
Low Fire Hazard (LFH) Microduct is designed for indoor installations where fire safety is essential. Manufactured from 100% virgin compounds, it delivers exceptional performance across key characteristics such as tensile strength, elongation, and thermal resistance. Its solid, low-friction inner liner ensures smooth and efficient cable installation, minimizing the risk of damage and reducing installation time. Tested to meet EN 61386-1 and EN 61386-22 standards, the LFH Microduct is proven to be fire-retardant. It features low flammability, emits minimal smoke, and is free from halogens, acids, and fumes—making it a safe choice for enclosed or sensitive environments. The ducts are lightweight, metal-free, and highly flexible, making them easy to handle and install in a wide range of settings. Available as single ducts or bundled configurations, each option is encased in a protective LFH sheath for added safety and durability. Whether used in commercial buildings, data centers, or public infrastructure, LFH Microducts provide a dependable, regulation-compliant solution for modern fiber network installations.
Applications and Installations
LFH Microducts (Low Fire Hazard)
Available from 4mm OD to 16mm OD.
Engineered to meet rigorous fire codes and regulations.
Microducts have a solid, low-friction liner for best installation performance.
Low-friction liner ensures smoother, faster cable deployment
Minimizes the risk of fire hazards by offering remarkable resistance to smoke and flame propagation, safeguarding both the infrastructure and occupants.
Offers supreme protection for indoor installations, ensuring the integrity and longevity of network infrastructure.
MHT2680.pdf
Emtelle-Indoor-Solutions-Brochure-UK.pdf
At Emtelle, we provide a wide range of associated products designed to complement and enhance your network infrastructure. These components support efficient installation, secure connections, and long-term reliability, ensuring every part of your build works seamlessly together. Trusted globally, our solutions are engineered for performance across all environments.
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