【24h】

Multi-fibers connectors systems for FOCCoS-PFS-Subaru

机译:用于FOCCoS-PFS-Subaru的多光纤连接器系统

获取原文

摘要

The Fiber Optical Cable and Connector System (FOCCoS), provides optical connection between 2400 positioners and a set of spectrographs through optical fibers cables as part of PFS instrument for Subaru telescope. The optical fiber cable will be segmented in 3 parts along the route, cable A, cable B and cable C, connected by a set of multi-fiber connectors. The company USCONEC produces the multi-fiber connector under study. The USCONEC 32F model can connect 32 optical fibers in a 4 × 8 matrix arrangement. The ferrules are made of a durable composite, Polyphenylene Sulfide (PPS) based thermoplastic. The connections are held in place by a push-on/pull-off latch, and the connector can also be distinguished by a pair of metal guide pins that protrude from the front of the connector. Two fibers per connector will be used for monitoring the connection procedure. It was found to be easy to polish and it is small enough to be mounted in groups. Highly multiplexed instruments like PFS require a fiber connector system that can deliver excellent optical performance and reliability. PFS requires two different types of structures to organize the connectors. The Tower Connector system, with 80 multi-fiber connectors, will be a group of connectors for connecting cable B (Telescope Structure) with cable C (Positioners Plate). The Gang Connector system is a group of 8 gang connectors, each one with 12 multi-fibers connectors, for connecting cable B (Telescope Structure) with cable A (Spectrograph). The bench tests with these connector systems and the chosen fibers should measure the throughput of light and the stability after many connections and disconnections. In this paper we describe tests and procedures to evaluate the throughput and FRD increment. The lifetime of the ferrules is also in evaluation.
机译:光纤电缆和连接器系统(FOCCoS),作为Subaru望远镜的PFS仪器的一部分,通过光纤电缆在2400个定位器和一组光谱仪之间提供光学连接。光纤电缆将沿路线分为三部分,分别为电缆A,电缆B和电缆C,并通过一组多光纤连接器进行连接。 USCONEC公司生产正在研究的多光纤连接器。 USCONEC 32F模型可以以4×8矩阵形式连接32条光纤。套圈由耐用的复合材料,基于聚苯硫醚(PPS)的热塑性塑料制成。连接通过推/拉闩锁固定在适当的位置,并且连接器也可以通过一对从连接器的正面伸出的金属导销来区分。每个连接器使用两根光纤来监视连接过程。发现它易于抛光,并且足够小,可以成组安装。诸如PFS的高度复用的仪器需要能够提供出色的光学性能和可靠性的光纤连接器系统。 PFS需要两种不同类型的结构来组织连接器。塔式连接器系统具有80个多光纤连接器,将成为一组连接器,用于将电缆B(望远镜结构)与电缆C(定位器板)连接起来。 gang连接器系统是一组8个gang连接器,每个都有12个多光纤连接器,用于将电缆B(望远镜结构)与电缆A(光谱仪)连接起来。使用这些连接器系统和所选光纤进行的台架测试应该测量光的通过量以及许多连接和断开后的稳定性。在本文中,我们描述了用于评估吞吐量和FRD增量的测试和过程。套圈的寿命也在评估中。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号