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Cortadora de fibra óptica de gran diámetro LDC-100 * Aplicable a fibras de 80 μm ~ 600 μm de diámetro de revestimiento *Bomba de vacío ranura en V conveniente para poner fibra *Cuchilla duradera, vida útil más de 20000 veces *Almacenamiento de datos 4000 grupos * Menú GUI fácil de usar, fácil de operar Mais
S-22 Multi-Core Fiber Fusion Splicer O 1º S plicer de F usion F usion de Múltiplos Núcleos Totalmente Automático na China Mais
Polarização Manutenção (PM) de Fibra de Fusão, Junção de S-12 * Núcleo para núcleo de alinhamento, baixa perda de emenda * Endview e Perfil de observação e de alinhamento * Arco de calibração automática e emendas PM * fibra de 45 e 90 graus de alinhamento Mais
S-37 LDF Specialty Fiber Fusion Splicer SHINHO S-37 é o modelo mais recente que desenvolvemos, pode emendar o diâmetro do revestimento de fibra de 125 a 400μm com baixa perda de emenda. Equipamos a máquina com 3 suportes de fibra diferentes e 2 pares de eletrodos sobressalentes. Mais
núcleo para core splicer de fusão de fibra de alinhamento x 900 splicer de fusão de seis motores, núcleo real para a tecnologia de alinhamento de núcleo. 6s splicing, 16s heating, identificam os tipos de fibra automaticamente. usado para projetos de wan / man / telecomunicação. Mais
splicer robusto multi-função da fusão do arco s16 design industrial robusto, anti-choque, à prova de poeira e à prova d'água. suporte multifuncional para fibra nua, patch cords, cabo drop etc. emenda rápida e aquecimento, calibração automática de arco. Mais
Pelacables térmico de fibra de cinta SHINHO X-18 El pelacables térmico Shinho X-18 es un pelacables térmico manual recientemente desarrollado, especialmente diseñado para el pelado térmico no destructivo de la cubierta del cable plano de hasta 12 fibras. Una herramienta buena y confiable para trabajos de empalme de fibra de cinta. Mais
Cuchilla de fibra óptica de alta precisión X-50D Tamaño pequeño y peso ligero, fácil de operar. Alta precisión y rendimiento estable. Más de 48000 tiempos de vida útil de la hoja, longitud de fibra cortada de 5 a 20 mm. material de alta calidad Mais
Microstructure multi-core optical fiber for sensing
Microstructured multi-core sensing optical fibers refer to optical fibers in which multiple optical cores are designed in the core area of the fiber, and specific microstructures are used to enhance their sensing capabilities. Compared with traditional single-core optical fibers, these fibers have significantly improved transmission efficiency and sensing ability. By regulating the propagation characteristics of light, microstructured multi-core sensing optical fibers can achieve sensitive detection of external environmental changes and have broad application prospects.
The structural design of microstructure multi-core sensing optical fibers is very unique, mainly reflected in the following aspects:
Application Prospects
The microstructure multi-core sensing optical fiber demonstrates excellent application potential in several fields, mainly including the following aspects:
1) Industrial Monitoring: In complex industrial environments, micro-structured multi-core sensing optical fibers can be utilized to monitor the operating status of equipment, enabling the timely acquisition of parameters such as temperature and pressure, thereby enhancing the operational safety and efficiency of the equipment.
2) Structural Health Monitoring: In the monitoring of infrastructure such as bridges and tunnels, micro-structured multi-core optical fibers can monitor the stress and displacement changes of the structure in real time, providing reliable data support and helping to prevent potential safety hazards.
3) Environmental Monitoring: The micro-structured multi-core sensing optical fiber can also be used for environmental monitoring such as water quality and air quality, enabling real-time acquisition of environmental parameters and providing data support for environmental protection.
4) Intelligent Transportation: In the intelligent transportation system, microstructured multi-core optical fibers can be utilized to monitor information such as road conditions and traffic flow, providing effective data support for traffic management.
Development Challenges
Although microstructured multi-core sensing optical fibers have broad application prospects, they still encounter some challenges in practical applications:
1) Manufacturing cost: The manufacturing process of microstructured multi-core optical fibers is relatively complex, resulting in high costs. This, to some extent, limits their widespread use in certain fields.
2) Technological maturity: Although microstructured multi-core optical fibers perform well in laboratory settings, further research is needed to improve their stability and reliability in practical applications.
3) Market Acceptance: As an emerging technology, the acceptance of microstructured multi-core sensing optical fibers in the market still requires time. Its widespread application needs more successful cases and market education.
4)Connecting loss: the multi-core fiber connection needs a Fan-in and Fan-out divice to connected with other comment device(single core). during the backbone network construction, it needs to spliced by specialty multi-core fusion splicer. Shinho S-22 multi-core fusion splicer is keeping helping users to get lower loss on multi-core fiber splicing.
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