Candid Optronix has invested in a high-tech fiber optic cable manufacturing plant that is considered one of the most advanced facilities in India with a High-Production rate of production..Our facility is equipped with German machinery, which is known for its reliability, precision, and efficiency. The machinery is automated and incorporates sophisticated controls that enable us to regulate the diameter of our optical fiber cables with exceptional accuracy.
We use only the best quality materials, and our plant is equipped with the latest technology to monitor and maintain optimal manufacturing conditions, ensuring that our fiber optic cables are produced to the highest standards.
At our fiber optic cable manufacturing plant, we are committed to delivering exceptional quality and performance. Our advanced facility, cutting-edge machinery, skilled technicians, and rigorous quality control measures all combine to produce fiber optic cables that are widely regarded as among the best in the industry. Here are key aspects of an optical fiber cable plant:
OFC Plant Video
Coloring & Tubing Process:
Colouring
The addition of a colored layer to the protective coating facilitates easy identification of individual cables, enabling efficient management of large numbers of fiber optic cables within a network infrastructure. The coloring process can be achieved by extruding a colored plastic layer or applying a colored ink or dye to the cable after the protective coating is applied.
Tubing
The tubing process involves placing the fiber optic cable into a protective loose tube. This loose tube serves as an additional layer of protection for the fiber, shielding it from damage during installation and operation.
Colouring Line Video
Sheathing Process:
The sheathing process is a critical step in producing high-quality optical fiber cables that can withstand various environmental factors. Let's take a closer look at how this process works..
The sheathing process begins by gathering the necessary materials, including Optical Fiber, UV coated FRP, Loose tube, Glass Yarn, and High-quality HDPE..
A polymer material, such as HDPE, is carefully selected to provide the necessary level of protection and durability for the specific application of the optical fiber cable.
The polymer layer is extruded over the optical fiber and other components using state-of-the-art equipment to ensure uniform thickness and a smooth surface finish.
The end result is a sheathed optical fiber cable that provides reliable performance in a range of applications.
Materials Used
UV Coated FRP
The FRP (Fiber Reinforced Polymer) provides additional strength and rigidity to the cable, ensuring that it can withstand stresses during installation and use. The UV coating protects the FRP from damage caused by exposure to sunlight.
Loose Tube
The FRP (Fiber Reinforced Polymer) provides additional strength and rigidity to the cable, ensuring that it can withstand stresses during installation and use. The UV coating protects the FRP from damage caused by exposure to sunlight.
Thyroxine Jelly
The FRP (Fiber Reinforced Polymer) provides additional strength and rigidity to the cable, ensuring that it can withstand stresses during installation and use. The UV coating protects the FRP from damage caused by exposure to sunlight.
Glass Yarn
The FRP (Fiber Reinforced Polymer) provides additional strength and rigidity to the cable, ensuring that it can withstand stresses during installation and use. The UV coating protects the FRP from damage caused by exposure to sunlight.
High-quality HDPE
The FRP (Fiber Reinforced Polymer) provides additional strength and rigidity to the cable, ensuring that it can withstand stresses during installation and use. The UV coating protects the FRP from damage caused by exposure to sunlight.
Each individual component in the sheathing process plays a critical role in ensuring that the optical fiber cable is protected and performs reliably in various applications. Our optical fiber plant uses the highest quality materials and rigorous quality control procedures to produce sheathed optical fibers that meet or exceed industry standards.
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