论文标题

Juno实验的后端卡的自动测试系统

Automatic test system of the back-end card for the JUNO experiment

论文作者

Clerbaux, Barbara, Hang, Shuang, Petitjean, Pierre-Alexandre, Wang, Peng, Yang, Yifan

论文摘要

江门地下中微子天文台(JUNO)是中国正在建设的中微子中微子实验,其目标是确定中微子质量层次结构。 JUNO电子读数系统由水下前端电子系统和外水后端电子系统组成。这两个部分由100米的以太网电缆和电源电缆连接。后端卡(BEC)是用于将水下盒连接到触发系统的Juno电子读数系统的一部分,已连接到传输系统时钟和触发信号。每个BEC都连接到48个水下盒子,总共需要大约150个BEC。在与水下系统应用实际连接之前,必须验证物理层链接。因此,我们的目标是构建自动测试系统以检查物理链路性能。测试系统基于定制设计的FPGA板,为了使设计通用,仅将JTAG用作PC的接口。该系统可以同时以不同速度以不同速度生成和检查不同的数据模式。 1024的测试结果连续时钟周期自动定期上传到PC。我们描述了BEC的自动测试系统的设置,并提供了最新的测试结果。

The Jiangmen Underground Neutrino Observatory (JUNO) is a medium-baseline neutrino experiment under construction in China, with the goal to determine the neutrino mass hierarchy. The JUNO electronics readout system consists of an underwater front-end electronics system and an outside-water back-end electronics system. These two parts are connected by 100-meter Ethernet cables and power cables. The back-end card (BEC) is the part of the JUNO electronics readout system used to link the underwater boxes to the trigger system is connected to transmit the system clock and triggered signals. Each BEC is connected to 48 underwater boxes, and in total around 150 BECs are needed. It is essential to verify the physical layer links before applying real connection with the underwater system. Therefore, our goal is to build an automatic test system to check the physical link performance. The test system is based on a custom designed FPGA board, in order to make the design general, only JTAG is used as the interface to the PC. The system can generate and check different data pattern at different speeds for 96 channels simultaneously. The test results of 1024 continuously clock cycles are automatically uploaded to PC periodically. We describe the setup of the automatic test system of the BEC and present the latest test results.

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