Optical splitters play a crucial role in modern fiber-optic communication networks. Especially in fiber-to-the-home (FTTH), data centers, and large-scale communication systems, achieving efficient and stable optical signal distribution is a core issue in network design. Today, we will focus on a high-performance, flexible, and scalable device—the Rack-Mount PLC Splitter—and explore its application advantages and technical features.
A rack-mount PLC splitter, also known as a planar lightwave splitter, is an optical device that utilizes planar lightwave (PLC) technology for optical signal distribution. Typically installed in a standard 19-inch rack, it distributes a single input fiber signal evenly or proportionally to multiple output fibers. Compared to traditional optical splitters, PLC splitters offer advantages such as compactness, high stability, low insertion loss, and strong temperature adaptability, making them ideal for large-scale fiber-optic network deployments.
The Rack Mount PLC Splitter supports a variety of splitting ratios, including the common 1x2, 1x4, 1x8, and 1x16, to meet diverse network topologies and signal distribution requirements. For example:
Suitable for small networks or point-to-point fiber optic connections, it splits the optical signal equally into two paths with minimal signal loss.
Suitable for small to medium-sized FTTH networks, it distributes a single fiber signal to four users or nodes.
Commonly used at local aggregation points, it distributes fiber from one OLT port to eight branches.
Suitable for large fiber optic networks and data centers, it distributes a single fiber to multiple end-user fibers.
PLC splitters with different splitting ratios can be flexibly combined to suit network design, ensuring a reasonable network topology while minimizing system construction costs.
Compared to traditional box-type PLC splitters, the rack-mount design offers significant advantages:
Can be installed in a standard 19-inch rack, facilitating centralized management in data centers or communications rooms.
Supports hot-swappable and modular maintenance, eliminating the need for extensive disassembly for network expansion or maintenance.
The PLC chip itself features low insertion loss and high uniformity, while the rack-mount structure provides enhanced physical protection, reducing the risk of fiber breakage or damage.
The rack-mount design facilitates air circulation, helping to stabilize operating temperatures and ensure long-term operational stability.
Rack Mount PLC Splitters are widely used in:
Optical splitters play a crucial role in modern fiber-optic communication networks. Especially in fiber-to-the-home (FTTH), data centers, and large-scale communication systems, achieving efficient and stable optical signal distribution is a core issue in network design. Today, we will focus on a high-performance, flexible, and scalable device—the Rack-Mount PLC Splitter—and explore its application advantages and technical features.
A rack-mount PLC splitter, also known as a planar lightwave splitter, is an optical device that utilizes planar lightwave (PLC) technology for optical signal distribution. Typically installed in a standard 19-inch rack, it distributes a single input fiber signal evenly or proportionally to multiple output fibers. Compared to traditional optical splitters, PLC splitters offer advantages such as compactness, high stability, low insertion loss, and strong temperature adaptability, making them ideal for large-scale fiber-optic network deployments.
The Rack Mount PLC Splitter supports a variety of splitting ratios, including the common 1x2, 1x4, 1x8, and 1x16, to meet diverse network topologies and signal distribution requirements. For example:
Suitable for small networks or point-to-point fiber optic connections, it splits the optical signal equally into two paths with minimal signal loss.
Suitable for small to medium-sized FTTH networks, it distributes a single fiber signal to four users or nodes.
Commonly used at local aggregation points, it distributes fiber from one OLT port to eight branches.
Suitable for large fiber optic networks and data centers, it distributes a single fiber to multiple end-user fibers.
PLC splitters with different splitting ratios can be flexibly combined to suit network design, ensuring a reasonable network topology while minimizing system construction costs.
Compared to traditional box-type PLC splitters, the rack-mount design offers significant advantages:
Can be installed in a standard 19-inch rack, facilitating centralized management in data centers or communications rooms.
Supports hot-swappable and modular maintenance, eliminating the need for extensive disassembly for network expansion or maintenance.
The PLC chip itself features low insertion loss and high uniformity, while the rack-mount structure provides enhanced physical protection, reducing the risk of fiber breakage or damage.
The rack-mount design facilitates air circulation, helping to stabilize operating temperatures and ensure long-term operational stability.
Rack Mount PLC Splitters are widely used in: