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YOEC Multi-Core Fiber – High-Capacity, Multi-Service Optical Solution

YOEC Multi-Core Fiber

YOEC multi-core fiber integrates multiple independent cores within a single cladding, providing multiple physical channels in a single fiber. This advanced design allows higher data throughput, flexible sensing applications, and efficient fiber utilization.

Key Features:

Multiple physical channels in a single fiber (4, 7, or 19 cores)

Excellent geometric consistency and uniformity

Low attenuation and low crosstalk

Customizable design to meet specific communication or sensing needs

Reliable performance for both long-haul and high-density networks

Applications:

High-Capacity Optical Communication: Supports next-generation data centers, telecom networks, and ultra-high-speed transmission.

Multi-Service Access Networks: Efficiently delivers multiple services over a single fiber.

Distributed Fiber Sensing: Temperature, strain, and pressure monitoring for industrial, civil, and environmental applications.

Medical and Scientific Equipment: High-precision optical sensing in diagnostic and therapeutic devices.

Advanced Photonics Devices: Core coupling in small-core-spacing fibers enables optical switches, interferometers, and sensors.

Why Choose YOEC Multi-Core Fiber:

High Performance: Ensures low attenuation, precise core alignment, and stable optical transmission.

Versatile: Suitable for both communication and sensing applications.

Future-Ready: Supports emerging technologies like space-division multiplexing (SDM) and multi-core photonics research.

Cost-Effective: Consolidates multiple fibers into one, reducing infrastructure complexity and installation cost.

Available Configurations:

4-core | 7-core | 19-core

Large-core-spacing fibers: No core coupling, optimized for high-capacity transmission.

Small-core-spacing fibers: Core coupling enabled, ideal for sensing and photonics devices.

YOEC Multi-Core Fiber – The reliable solution for next-generation optical networks, advanced sensing, and innovative photonics applications.

Details

  • Gao Xin Wu Lu, Jiang Xia Qu, Wu Han Shi, Hu Bei Sheng, China
  • YOEC

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