The COMX Multi Mode Simplex OM4 Patch Cords are engineered for high-performance networks, supporting distances up to 550 meters and 100Gbps speeds over 150 meters with an MPO connector. These patch cords feature multimode fiber connectors on each end, making them ideal for use in fiber optic data center panels and termination units. OM4 patch cords are the preferred choice for environments requiring rapid data transfer, such as data centers and financial hubs, due to their ability to handle higher bandwidths with reliable performance. Standard connector types include SC, LC, LSH, FC, or ST.
The COMX Multi Mode Simplex OM5 Patch Cords are designed to support advanced data transmission needs in modern data centers. Featuring multimode fiber connectors on each side, these patch cords are primarily used in fiber optic data center panels and termination units. OM5 has a 50µm core size with a distinctive lime green jacket, optimized for short wavelength division multiplexing (SWDM) technology, enabling the transmission of multiple signals on a single fiber. It supports data rates of 40Gb and 100Gb over distances up to 150 meters, making it ideal for high-speed network applications. Standard connector types include SC, LC, LSH, FC, or ST.
The COMX Multi Mode Duplex OM2 Patch Cords are engineered for reliable connectivity in fiber optic data centers and termination units. Featuring standard SC, LC, LSH, FC or ST connectors on both ends, this patch cord is optimized for high-speed multi-mode applications, ensuring minimal signal loss and superior performance. It's a key solution for efficient data transmission, particularly in environments requiring robust and stable connections. The patch cord is available in various fiber types, including OM2, making it versatile and adaptable for different network setups. Ideal for maintaining high standards of data center operations.
The COMX Multi Mode Duplex OM3 Patch Cords are designed for high-performance 10Gbps+ fiber channel applications, ensuring reliable and efficient data transmission in fiber optic data centers and termination units. Featuring standard SC, LC, LSH, FC or ST connector types on both ends, this patch cord is optimized for multimode applications, specifically OM3, which offers superior bandwidth and performance over longer distances. Ideal for environments that demand high-speed data transfer, this patch cord is versatile and compatible with a variety of standard connector types, making it a key component in advanced network infrastructures.
The COMX Multi Mode Duplex OM4 Patch Cords are engineered for high-performance networks, supporting distances up to 550 meters and 100Gbps speeds over 150 meters with an MPO connector. These patch cords feature multimode fiber connectors on each end, making them ideal for use in fiber optic data center panels and termination units. OM4 patch cords are the preferred choice for environments requiring rapid data transfer, such as data centers and financial hubs, due to their ability to handle higher bandwidths with reliable performance. Standard connector types include SC, LC, LSH, FC, or ST.
The COMX Multi Mode Duplex OM5 Patch Cords are designed to support advanced data transmission needs in modern data centers. Featuring multimode fiber connectors on each side, these patch cords are primarily used in fiber optic data center panels and termination units. OM5 has a 50µm core size with a distinctive lime green jacket, optimized for short wavelength division multiplexing (SWDM) technology, enabling the transmission of multiple signals on a single fiber. It supports data rates of 40Gb and 100Gb over distances up to 150 meters, making it ideal for high-speed network applications. Standard connector types include SC, LC, LSH, FC, or ST.
The COMX 12F-288F SM Micro Module ADSS Cables are an advanced all-dielectric optical solution tailored for versatile network deployments. Featuring a compact design, this cable incorporates 12-288 G.652D single-mode fibres within flexible, tool-free micro modules, offering effortless stripping and preparation. Its construction includes a UV-stabilized HDPE outer sheath, embedded FRP rods for anti-buckling strength, and water-blocking elements for enhanced durability and moisture resistance. Designed for backbone, access, and distribution networks, this lightweight cable ensures quick installation in ducts or overhead applications. With reduced installation time and costs, it stands as a reliable and efficient choice for modern telecommunications infrastructure.
The COMX Armored Optic Cable (GYXTW) is a robust solution designed for reliable data transmission in challenging environments. Featuring corrugated steel tape armor and water-blocking technology, this cable ensures superior protection against mechanical stress, moisture, and environmental conditions. The loose tube structure accommodates 2-12 fibers, providing flexibility for diverse applications. With a durable polyethylene outer sheath, it delivers excellent performance under tensile, crush, and impact loads. It is ideal for aerial and duct installations, supporting both single-mode (G652D/G657A) and multimode fibers. The GYXTW cable is meticulously engineered to meet international standards, making it a dependable choice for high-performance fiber optic networks.
COMX Faceplates and Modular Inserts offer stylish and high-quality solutions for professional copper cabling installations. They are available in one and two-port variants, and compatible with Cat5e, Cat6, and Cat6A keystone jacks. These faceplates come with built-in shutters to protect against dust and feature ID stripes for easy identification. Constructed from durable ABS material with a white finish, they are designed to be mounted on walls and come with optional angled floor module holders for added flexibility. The faceplates are reliable and fully compliant with copper cabling standards, ensuring both functionality and a professional look.
The COMX LC/LC OM4 Multi-Mode Duplex Patch Cord features high-performance LC/UPC connectors and a durable LSZH jacket. It’s designed to deliver reliable optical performance for data centers, telecommunications, and networking applications. The OM4 fiber ensures minimal insertion loss and back reflection, supporting high-speed data transfer rates. This patch cord is ideal for connecting multimode fiber cables over distances up to 550 meters. With excellent mechanical properties and a rugged outer jacket, it’s suitable for installations in demanding environments, providing stability and consistency for efficient and long-lasting connectivity solutions.
Streamline your network connectivity with the COMX Fiber Optic Patch Cords, specifically designed for robust and efficient performance in telecommunications networks. Featuring SC/APC SC/APC connectors and constructed with high-grade SM G652D fiber, these patch cords are tailored for single mode applications, ensuring optimal data transmission with minimal loss. The cords are encased in a low-smoke zero-halogen (LSZH) jacket for enhanced safety and durability, supporting a wide range of applications from CATV and active device terminations to extensive telecommunication networks. With their advanced features like high tensile strength aramid yarn and precision engineering, these Patch Cords are the perfect solution for maintaining seamless connectivity in critical networks.
The COMX Fiber Optics Splice Closure (Dome Type) made of High Strength UV-Resistant Polymer Plastic, provides secure and reliable housing for splicing of fiber from 24 upto 288 cores. Designed for both underground and aerial installations, its dome-shaped structure ensures excellent mechanical protection and environmental sealing against dust, moisture, and impacts. Built with high-quality materials, it supports a variety of cable diameters and configurations, making it ideal for fiber distribution and branching applications. User-friendly features enable quick installation and easy maintenance, reducing downtime. Compliant with international standards, this splice closure offers robust performance and durability, making it a trusted solution for critical network infrastructure in diverse conditions.

