Views: 0 Author: Site Editor Publish Time: 2026-08-14 Origin: Site
Amidst the rapid development of optical communication, SHINHO Communication has successfully seized market opportunities and transformed from an industry participant into a key technology solution provider by precisely positioning itself in three major areas: next-generation fiber optic technology, AI computing infrastructure, and domestic substitution.
Seizing the High Ground in Next-Generation Fiber Optic Technology: Hollow-Core Fiber Fusion Splicing
SHINHO Communication's most prominent opportunity lies in its pioneering deployment in the cutting-edge field of hollow-core fiber. Hollow-core fiber is considered the "golden channel for future optical transmission," with performance far exceeding traditional fiber. However, due to its unique structure, it is prone to collapse during fusion splicing, making it difficult for traditional equipment to handle.
SHINHO Communication has specifically developed and launched the S-23 hollow-core fiber fusion splicer, whose core technological breakthroughs include:
Intelligent Recognition and Adaptive Alignment: Automatically identifies and precisely aligns the hollow-core fiber structure.
High-Stability Cutter System: Equipped with a specially designed cutter, it achieves near-zero crack end faces, improving splicing success rates.
Anti-collapse fusion splicing technology: Effectively solves the problem of air core structure collapse during splicing.
This technology provides critical infrastructure support for strategic fields such as 6G communication, ultra-low latency financial private networks, and quantum communication trunk lines. As a result, SHINHO has become one of the few domestic manufacturers capable of providing complete solutions for hollow-core fiber cleaving and splicing, and its equipment has been deployed in numerous domestic research institutes and aerospace units.
Deeply rooted in the AI computing power era: Building a full-scenario product matrix. Facing the new demands brought by the AI computing power wave, SHINHO Communication has built a full-scenario fiber processing product matrix, precisely addressing the pain points of different scenarios.
For AI data centers: Providing ribbon fiber fusion splicers (supporting 12-core and 16-core one-time splicing) and high-precision single-core/multi-core fusion splicers for high-density cabling needs.
For cutting-edge technologies: Providing polarization-maintaining fiber fusion splicers and multi-core fiber fusion splicers (equipped with high-precision inter-core alignment algorithms) for quantum communication, aerospace, and other fields.
For operators and private networks: Providing multi-functional fiber optic fusion splicers compatible with various fiber types, flexibly handling complex field situations.
Furthermore, SHINHO offers a "one-stop" suite of tools, from cutting and cleaning to splicing and coating, enhancing the continuity and compatibility of user operations. At the 2025 CIOE Fiber Optics Expo, its solutions attracted the attention of over 100 professional visitors worldwide, resulting in more than ten cooperation intentions.
Driving Domestic Substitution: Achieving Cost Optimization Through Technological Strength
SHINHO is also a key player in the wave of domestic substitution. Its independently developed S-37 large-diameter fiber optic fusion splicer can replace imported models such as the Japanese brand FSM100M and FITEL 178LDF, helping domestic enterprises reduce production and maintenance costs.
The company's product performance has reached international standards, and it has been listed as a major player in the global and Chinese fiber optic fusion splicer market in multiple market research reports.
Summary
SHINHO success lies in its forward-looking technological layout and keen market insight. By overcoming the challenges of next-generation hollow fiber fusion splicing, building a full-scenario product matrix to serve AI computing power, and continuously promoting domestic substitution, SHINHO has not only consolidated its market position but also occupied a key position in the evolution of optical communication.