FIBREPATH
FibrePath System
Introducing FibrePath – the next leap in fibre containment raceway technology, designed exclusively for the evolving needs of modern data centres.
Introducing FibrePath – the next leap in fibre containment raceway technology, designed exclusively for the evolving needs of modern data centres.
Our goal was to minimize the time and resources needed for implementation. In data centres, where minimizing downtime and ensuring rapid system deployment are critical, FibrePaths design plays a key role. With Zero-U connectivity panel mounting options, these modular components can be quickly assembled and interconnected, enabling faster and more efficient deployment.
FibrePath was designed to prioritise user-friendliness, incorporating clear instructions, intuitive interfaces, and standardized connectors. These features streamline the installation process, reducing the reliance on technical experts. By simplifying deployment, FibrePath not only saves time but also minimizes the potential for errors, ensuring a more efficient and seamless integration into data centre environments that can also be integrated into existing systems.
This calculator streamlines the cable management planning process by instantly comparing the total cable occupancy area with the available usable space in the FibrePath basket system.
FibrePath is designed with scalability in mind, enabling seamless expansion as data centre requirements evolve. Its flexible design adapts to changes in standard rack width installations, allowing for growth without causing significant disruptions.
The Zero-2U 19-inch connectivity panel is designed as a "plug-and-play" solution, allowing immediate use without the need for complex setup or configuration.
Here are the maximum fibre capacities achievable in 1U of rack space, based on the panel design and connector types used:
Maximum Capacities in 1U
FibrePath is specifically designed with heat dissipation in mind. Its vented channels effectively minimize hotspots within and around the containment system, addressing a critical aspect of data centre design and operation. This functionality not only enhances thermal management but also supports data centres in achieving their environmental sustainability goals.
Steel is highly recyclable, retaining its quality and strength through the recycling process. Recycled steel can be repurposed to create new products, significantly reducing the demand for raw materials and lowering energy consumption, making it a sustainable choice for various applications.
Conducting life cycle assessments is essential for evaluating the overall environmental impact of steel products, from raw material extraction and manufacturing to use and end-of-life. Within the industry, efforts are underway to adopt more sustainable practices, focusing on reducing emissions and optimizing resource efficiency. The responsible use of steel involves a holistic approach, considering the material's entire life cycle while continually striving to minimize its environmental footprint.
FibrePath's material choice of steel is driven by its non-combustible properties, which prevent the spread of fire and ensure that no toxic gases are emitted during combustion. This significantly reduces the risk to both human health and expensive data centre IT equipment, providing a critical layer of fire protection in sensitive environments.
Steel is renowned for its strength, durability, and long lifespan, reducing the need for frequent replacements, making it an ideal choice for structural applications within data centres. This durability not only lowers maintenance costs but also minimizes the environmental impact associated with the production of new materials, contributing to more sustainable practices in construction and infrastructure. Whether used in server racks, equipment enclosures, or other infrastructure, steel provides robust support and protection for sensitive electronic equipment. Its ability to withstand mechanical stress, temperature variations, and environmental factors ensures reliability in demanding data centre environments. Material selection prioritizes the specific strengths and suitability of steel for each application, while compliance with industry standards and regulations remains a critical consideration. This longevity reduces the frequency of replacements and minimizes the environmental impact associated with the production of new materials.
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