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Hollow-Core Fiber Key Applications & Splicing Solution

  • 2026-08-21

Hollow-core fiber (HCF) marks a revolutionary upgrade from conventional solid-core optical fiber. Instead of transmitting light through solid silica glass, HCF guides light within an air core. This unique structure delivers unmatched strengths: ultra-low latency, nearly eliminated optical nonlinear effects, high laser damage threshold, and strong immunity to electromagnetic interference.

Once confined to laboratory trials, hollow-core fiber is rapidly moving toward large-scale commercial deployment across multiple high-tech sectors. However, HCF’s delicate microstructure poses strict challenges for fusion splicing. Improper arc energy or inaccurate alignment can easily collapse the hollow core and introduce excessive splice loss. A dedicated hollow-core fiber fusion splicer becomes essential for stable, repeatable splicing results. Today we review major HCF application scenarios and introduce the SHINHO S-23, a purpose-built splicer for hollow-core fiber projects worldwide.

Major Application Fields of Hollow-Core Fiber

1. Ultra-Low-Latency Optical Communication

2. High-Power Laser Delivery

3. High-Precision Optical Sensing & Environmental Monitoring

4. Quantum Photonics & Advanced Scientific Research

Why Dedicated Splicing Equipment Matters for HCF

Standard fusion splicers designed for single-mode or multi-mode fiber cannot satisfy hollow-core fiber requirements. Operators must precisely control arc heat and alignment to avoid core collapse and keep splice loss low. As HCF commercialization accelerates, system integrators, research labs and laser manufacturers are seeking reliable, field-proven HCF splicing tools.

SHINHO S-23 Hollow-Core Fiber Fusion Splicer: Your Trusted Splicing Choice

With over 20 years of experience manufacturing optical fusion equipment, SHINHO developed the S-23 exclusively for hollow-core fiber splicing, solving core pain points of HCF termination.

Key Advantages

Precise profile alignment technology: Supports profile observation and end-face viewing for accurate positioning and protection of fragile hollow structures.

Real-time arc calibration with adjustable arc position: Dynamically controls heat input to prevent hollow core collapse.

Excellent splicing performance: Typical splice loss as low as 0.03 dB for hollow-core fiber .

Flexible operation modes: Manual / automatic splicing and heating; up to 40 customizable splicing programs for different HCF types.

Large storage capacity: Saves 10,000 groups of splicing records and 100 groups of splicing images; supports data export and firmware upgrade.

Wide compatibility: Fits cladding diameters ranging from 125 μm to 250 μm, matching mainstream commercial hollow-core fibers.

Global after-sales support: SHINHO products are available in more than 90 countries, with a branch office in the United States and local distributors worldwide to provide timely technical training and maintenance service.

Conclusion

Hollow-core fiber is reshaping optical communication, high-power laser and optical sensing industries. As field deployment expands, splicing quality directly determines project yield and long-term system stability.

For research institutions, laser system manufacturers, telecom contractors and optical engineers working with hollow-core fiber, the SHINHO S-23 delivers high precision, consistent repeatability and complete global service backup.

If you are evaluating dedicated hollow-core fiber fusion splicers for upcoming projects, feel free to contact Shinho team for datasheets, splicing demonstration tests and customized optical solution consultation.


© حقوق النشر: SHINHO OPTICS LIMITED كل الحقوق محفوظة.

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