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OFS improves geometry of LaserWave multimode fibers

机译:ISOS改善了LaserWave多模纤维的几何形状

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OFS has enhanced certain geometry specifications of its LaserWave multimode fibers, including LaserWave WideBand (OM5), LaserWave FLEX 550 (OM4), and LaserWave FLEX 300 (OM3) fibers. The changes should reduce connector loss and improve link system performance. In particular, the new geometry specifications can provide extra margin in 40-, 100-, and 400-Gbps applications, OFS states.The geometry changes include:1.clad diameter tolerance tightened from 125.0 ± 0.8 μm to 125.0 ± 0.7 μm 2.core non-circularity improved from ≤5.0% to ≤2.5% 3.core/clad concentricity tightened from ≤1.0 μm to ≤0.7 μm.The improvements enable better core-to-core alignment and light-coupling efficiency in connectors and splices, according to OFS. A reduction in insertion loss is the result. For example, the company says that modeling of simulated connections showed an average insertion loss improvement of 0.07 dB per connection compared to industry-standard fiber. The model distribution also showed that 97% of insertion losses would be below 0.25 dB with the new LaserWave fiber and 0.40 dB using standards-compliant fiber. With loss budgets for high-speed multimode fiber networks dropping below 2 dB, such low insertion loss could prove critical, OFS asserts, particularly for links with multiple connections.
机译:OFS具有增强其激光波多模纤维的某些几何规格,包括LaserWave宽带(OM5),LaserWave Flex 550(OM4)和LaserWave Flex 300(OM3)纤维。更改应降低连接器损耗并提高链路系统性能。特别是,新的几何规格可以在40 - ,100 - 和400 Gbps应用中提供额外的余量。几何变化包括:1.CLAD直径公差从125.0±0.8μm拧紧至125.0±0.7μm2。核心非圆形度从≤5.0%到≤2.5%3.升高到≤1.0μm至≤0.7μm的升级/包层的同心度。根据连接器和接头,改善可以更好地实现更好的核心对准和光耦合效率。对象。导入损耗的降低是结果。例如,该公司表示,与行业标准纤维相比,模拟连接的建模显示每个连接的平均插入损耗改善为0.07 dB。模型分布还表明,使用标准柔顺的光纤,97%的插入损耗将低于0.25dB的0.25dB。随着高速多模光纤网络的损失预算下降到2 dB以下,这种低插入损耗可能证明是关键的,特别是对于具有多个连接的链接。

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    《Optical networks and WDM》 |2021年第3期|5-5|共1页
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