English

Gigabit Ethernet Daisy-Chain on FPGA for COMET Read-out Electronics

Instrumentation and Detectors 2021-09-01 v2

Abstract

The COMET experiment at J-PARC aims to search for the neutrinoless transition of a muon to an electron. We have developed the readout electronics board called ROESTI for the COMET straw tube tracker. We plan to install the ROESTI in the gas manifold of the detector. The number of vacuum feedthroughs needs to be reduced due to space constraints and cost limitations. In order to decrease the number of vacuum feedthroughs drastically, we developed a network processor with a daisy-chain function of Gigabit Ethernet for the FPGA on the ROESTI. We implemented two SiTCPs, which are hardware-based TCP processors for Gigabit Ethernet, in the network processor. We also added the data path controllers which handle the Ethernet frames and the event data. The network processor enables ROESTI to process the slow control over UDP/IP and to transfer event data over TCP/IP. By using the network processor, we measured the throughput, the stability, and the data loss rate for two to six ROESTIs. In any number of boards, the throughput of the event data transfer achieved the theoretical limit of TCP over the Gigabit Ethernet stably and ROESTI stably sent 100% of the data.

Keywords

Cite

@article{arxiv.2011.12529,
  title  = {Gigabit Ethernet Daisy-Chain on FPGA for COMET Read-out Electronics},
  author = {Eitaro Hamada and Yuki Fujii and Youichi Igarashi and Masahiro Ikeno and Satoshi Mihara and Hajime Nishiguchi and Kou Oishi and Tomohisa Uchida and Kazuki Ueno and Hiroshi Yamaguchi},
  journal= {arXiv preprint arXiv:2011.12529},
  year   = {2021}
}

Comments

IEEE Real Time 2020 Conference, 8 pages, 17 figures

R2 v1 2026-06-23T20:29:38.829Z