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求购藤仓 LZM-110M+ 光纤熔接机

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紧急求购,资金齐备,坐等发货

产品参数

选件 保修时间 状态 是否计量
不保修 完好
成色 发货周期 所在地 数量
8成新 -- 深圳市 1
预算价格: 电议
更新日期:2025-08-02
联系电话:0755-86016691

*产品描述

Fujikura LZM-110M+是一款高性能的光纤熔接机,采用CO₂激光作为热源,主要用于光纤的熔接和玻璃塑形加工。
特点
适用光纤范围:可熔接和加工直径80μm至2000μm的光纤,对于较大直径光纤,可通过手动或功率计反馈进行处理。
熔接性能:典型熔接损耗为单模光纤(ITU-T G.652)0.02dB,典型熔接强度可达250+KPSI(SMF,ITU-T G.652),熔接质量高,能保证光纤连接的稳定性和低损耗。
加热方式:采用30W的CO₂激光作为热源,具有专利申请中的闭环功率稳定技术,可将功率稳定在0.5%以内,确保加热稳定,避免因功率波动导致熔接结果不一致。
对准方式:具备3个PM对准方法,包括PAS(纵断面定位系统,通过摄像头观察自动对齐)、由PC控制的其他方法以及通过GPIB功率计反馈,可实现精准对准。
操作控制:可通过内部固件操作,也能通过PC控制,配备FPS PC控制GUI,提供额外测量功能和更精细的玻璃塑形控制,用户还可创建专有PC控制算法。
光纤观察:支持通过横向光纤观察PAS,以及WSI(暖熔接图像)和WTI(暖减量图像),方便用户观察光纤熔接情况和状态。

其他要求

Fujikura LZM-110M+ is a high-performance optical fiber welding machine, which uses CO laser as heat source and is mainly used for optical fiber welding and glass shaping. Features Applicable optical fiber range: optical fiber with a diameter of 80μm to 2000μm can be welded and processed. For larger diameter optical fiber, it can be processed by manual or power meter feedback. Welding performance: The typical welding loss is 0.02 dB for single-mode fiber (ITU-T G.652), and the typical welding strength can reach 250+KPSI(SMF, ITU-T G.652). The welding quality is high, which can ensure the stability and low loss of optical fiber connection. Heating mode: 30W CO laser is used as the heat source, with closed-loop power stabilization technology in patent application, which can stabilize the power within 0.5%, ensure the heating stability, and avoid inconsistent welding results caused by power fluctuation. Alignment mode: There are three PM alignment methods, including PAS (longitudinal positioning system, automatic alignment through camera observation), other methods controlled by PC and feedback from GPIB power meter, which can realize accurate alignment. Operation control: it can be operated by internal firmware or controlled by PC. It is equipped with FPS PC control GUI, which provides additional measurement function and finer glass shaping control. Users can also create proprietary PC control algorithms. Optical fiber observation: PAS, WSI (warm fusion image) and WTI (warm reduction image) can be observed through transverse optical fiber, which is convenient for users to observe the fusion situation and state of optical fiber.

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