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Bandwidth of Micro Twisted-Pair Cables and Fusion Spliced SIMM-GRIN Fibers and Radiation Hardness of PIN/VCSEL Arrays

机译:微双绞线和融合熔接SIMM-GRIN光纤的带宽以及PIN / VCSEL阵列的辐射硬度

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We report on a feasibility study of fabricating an optical link for the SLHC ATLAS silicon tracker based on the current pixel optical link architecture. In the current design the electrical signals between the pixel modules and the opto-boards are transmitted via micro-twisted cables. The optical signals between the opto-boards and the data acquisition system are transmitted via rad-hard SIMM fibers spliced to rad-tolerant GRIN fibers. We have measured the bandwidth of the transmission lines and the results indicate that the micro twisted-pair cables can transmit signals up to ~1 Gb/s and the fusion spliced fiber ribbon can transmit signals up to ~2 Gb/s. We have irradiated PIN and VCSEL arrays with 24 GeV protons and find at least one candidate PIN and one VCSEL array that can survive the expected SLHC dosage.
机译:我们报告了基于当前像素光链路架构为SLHC ATLAS硅跟踪器制造光链路的可行性研究。在当前设计中,像素模块和光电板之间的电信号是通过微扭电缆传输的。光电板和数据采集系统之间的光信号通过与抗辐射GRIN光纤接合的抗辐射SIMM光纤传输。我们已经测量了传输线的带宽,结果表明,微双绞线电缆可以传输高达〜1 Gb / s的信号,而熔接光纤带可以传输高达〜2 Gb / s的信号。我们用24 GeV质子辐照了PIN和VCSEL阵列,发现至少一种候选PIN和一种VCSEL阵列可以在预期的SLHC剂量下存活。

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