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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
What optical fibers can be processed by special optical fiber fusion splicers?
Specialty fiber splicers are mainly used to process non-standard optical fibers, which are significantly different from ordinary communication optical fibers (such as single-mode and multi-mode optical fibers) in terms of materials, structures or performance, and are suitable for special scenarios and needs. The following are the main types of special optical fibers and their characteristics:
1. Polarization Maintaining Fiber (PM Polarization Maintaining Fiber)
Features: Maintain the polarization state of the optical signal through special designs (such as stress zones or elliptical cores), suitable for polarization-sensitive applications.
Application scenarios: fiber optic gyroscopes, quantum communications, lasers, sensor systems, etc.
Difficulty in splicing: The polarization axis of the optical fiber needs to be precisely aligned, and the splicing loss requirement is extremely low (usually less than 0.02dB).
2. Large Diameter Fiber
Features: The core diameter is large (usually greater than 200μm), suitable for transmitting high-power optical signals or multi-mode light.
Application scenarios: industrial laser transmission, medical equipment, lighting, etc.
Difficulty in splicing: The alignment and splicing loss problems caused by the large core diameter need to be dealt with.
3. Multi-Core Fiber
Features: A single optical fiber contains multiple independent cores, which can transmit multiple signals at the same time and increase the transmission capacity.
Application scenarios: data centers, high-speed communications, optical fiber sensing, etc.
Difficulty in splicing: Multiple cores need to be precisely aligned, and the splicing loss and crosstalk control requirements are high.
4. Rare-Earth Doped Fiber Fiber
Features: doped with rare earth elements (such as erbium and ytterbium) to amplify optical signals or generate lasers.
Application scenarios: fiber amplifiers, fiber lasers, etc.
Difficulties in splicing: avoid contamination in the doped area to ensure the optical performance of the welding point.
5.Hollow core fiber
Features: Hollow core fiber is a type of optical fiber that guides light through a hollow central core, as opposed to the solid glass or plastic core used in traditional optical fibers.
Applications of Hollow Core Fiber
Telecommunications, Medical Devices, High-Power Laser Systems, Sensing and Measurement
Difficulties in splicing: Hollow-core optical fiber has a porous structure. Since optical fiber splicing is done by heating and melting, the hollow core will collapse due to heat.
Summary
Specialty optical fiber splicers need to adjust splicing parameters (such as arc intensity, splicing time, alignment method, etc.) according to the characteristics of different types of optical fibers to ensure low-loss, high-strength connections. For customers, when choosing a splicer, it is necessary to clarify the type of optical fiber being processed and ensure that the equipment has the corresponding compatibility and technical capabilities.
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