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选件 | 是否计量 | 发货周期 | 保修时间 | 成色 |
---|---|---|---|---|
否 | 1-4周 | 12天 | 8成新 | |
所在地 | 机身号 | 状态 | 资料下载 | |
深圳市 | 完好 |
描述:
36型是当今可用的最小,最快的芯线对准熔接机之一。这是一款便携式,全自动,设备齐全的仪器,可在现场和工厂环境中创建低损耗的光纤接头。住友的创新型双显微镜光纤观察系统消除了对镜子的需求,提供了更快的操作并减少了潜在的损坏。它设计用于各种类型的光纤,包括单模,多模,色散位移和其他特殊光纤。Type-36是业内唯一的熔接机,为熔接机远程交互式维护(S-RIM)提供可选的调制解调器。
拼接器中的HDCM(高分辨率直接核心监控)图像处理软件用于执行核心对齐并估计拼接损耗。熔接机会自动在X和Y平面(水平和垂直)上对齐一对光纤,然后将它们与电弧热融合在一起,形成低损耗的熔接。
对准方法 |
核心对准ラ高分辨率直接核心监控(HDCM) |
纤维要求 |
石英玻璃 |
个人资料类型 |
SMF,MMF,NZ-DSF,CSF,掺Er光纤 |
包层直径 |
80至150μm |
涂层直径 |
250至900µm |
切割长度 |
9至16mm |
典型的熔接损耗,相同的光纤 |
SMF:0.02dB MMF:0.01dB NZ-DSF:0.05dB |
融合条件设置的数量 |
总共35个(5个光纤类别,每个类别有7个程序选择) |
接头参数 |
5个可调参数 |
电弧测试补偿 |
自动 |
加热器条件设定数 |
10 |
选单 |
用户友好的“下拉”菜单 |
典型的熔接周期时间 |
25秒(设置为损失估计) |
典型的加热器循环时间 |
90秒 |
验证测试 |
标准,200克(0.44磅) |
接头数据存储 |
1,000个接头(内置内存);30,000个接头(带可选PC存储卡) |
尺寸 |
190W x 190D x 175H mm(7.4W x 7.4D x 6.8H英寸) |
重量 |
6.5公斤(14.3磅) |
电力需求 |
输入:100至240V AC; 50 / 60Hz,12V直流 |
显示 |
低眩光,5.6英寸彩色液晶显示器,3个可能的位置,280倍放大率 |
PCMCIA插槽 |
拼接器远程交互式维护(S-RIM):通过模式m发送/接收数据,使经过工厂培训的技术人员可以执行远程软件升级,故障排除和维护功能 ions.PC存储卡:2 MB的数据存储和具有接头图像存储功能的本地软件升级。 |
DESCRIPTION:
The Type-36 is one of the smallest and fastest core alignment fusion splicers available today. Itメs a portable, fully automatic, self-contained instrument for creating low-loss optical fiber splices in both field and factory environments. Sumitomoメs innovative dual microscope fiber observation system eliminates the need for mirrors, providing faster operation and reduced damage potential. It is designed to work with a variety of fiber types including single-mode, multimode, dispersion shifted, and other specialty fiber. Type-36 is the only fusion splicer in the industry offering an optional modem for splicer remote interactive maintenance (S-RIM).
HDCM (High-resolution Direct Core Monitoring) image processing software in the splicer is used to perform core alignment and estimates the splice loss. The splicer automatically aligns a pair of fibers in both the X and Y (horizontal and vertical) planes and then fuses them together with heat from an electric arc to form a low-loss splice.
Alignment Method |
Core Alignment ラ High-resolution Direct Core Monitoring (HDCM) |
Fiber Requirement |
Silica Glass |
Profile Type |
SMF, MMF, NZ-DSF, CSF, Er-doped Fiber |
Cladding Diameter |
80 to 150µm |
Coating Diameter |
250 to 900µm |
Cleave Length |
9 to 16mm |
Typical Splice Loss, Identical Fibers |
SMF: 0.02dB MMF: 0.01dB NZ-DSF: 0.05dB |
No. of Fusion Condition Settings |
35 Total (5 fiber categories with 7 program selections each) |
Splice Parameters |
5 Adjustable Parameters |
Arc Test Compensation |
Automatic |
No. of Heater Condition Settings |
10 |
Menu Selection |
User Friendly ムDrop-Downメ Menus |
Typical Splice Cycle Time |
25 Seconds (set to loss estimate) |
Typical Heater Cycle Time |
90 Seconds |
Proof Test |
Standard, 200 Grams (0.44 lb) |
Splice Data Storage |
1,000 Splices (built-in memory); 30,000 Splices (w/opt. PC memory card) |
Size |
190W x 190D x 175H mm (7.4W x 7.4D x 6.8H in) |
Weight |
6.5kg (14.3 lb) |
Power Requirement |
Input: 100 to 240V AC; 50/60Hz, 12V DC |
Display |
Low Glare, 5.6 Inch Color LCD Monitor, 3 Possible Locations, 280X Magnification |
PCMCIA Slots |
Splicer Remote Interactive Maintenance (S-RIM): Transmit/receive data via mode m allowing factory-trained technicians to perform remote software upgrad es, troubleshooting and mainten ance funct ions.PC Memory Card: 2 MB data storag e and local software upgrade with splice image storing capabilities. |
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