FERMI/spl minus/a new generation of electronic modules for large data acquisition arrays required by high energy physics

A. Dell'Acqua, H. Alexanian, C. Alippi, G. Appelquist, P. Bailly, R. Benetta, S. Berglund, J. Bezamat, F. Blouzon, C. Bohm, L. Breveglieri, S. Brigati, P. Carlson, P. Cattaneo, L. Dadda, J. David, M. Engstrom, G. Fumagalli, U. Gatti, J. Genat, V. Goggi, S. Gong, M. Hansen, H. Hentzell, I. Hoglund, S. Inkinen, A. Kerek, O. LeDortz, B. Lofstedt, F. Maloberti, P. Nayman, A. Odmark, V. Piuri, G. Polesello, F. Salice, N. Sami, A. Savoy-Navarro, R. Stefanelli, R. Sundblad, C. Svensson, G. Torelli, J. Vanuxem, N. Yamdagni, J. Yuan
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引用次数: 3

Abstract

The Front End Readout MIcrosystem, FERMI, is a representative of a new generation of data acquisition modules which utilizes modern design techniques to achieve a high acquisition rate together with intelligent on-line data processing. FERMI is being designed to satisfy the extreme requirements set by calorimeters in the next generation of particle physics detectors. Such detectors are being designed for the future LHC and SSC accelerators at CERN in Switzerland and at the SSC-laboratory in Texas. The calorimeters demand frequent (67 MHz for LHC, 63.5 MHz for SSC) high precision sampling of a large number of input channels (about 5x10/sup 5/). Each FERMI module serves 9 channels from which samples are AD-converted, corrected and temporarily stored in a local memory. The data is also merged into a trigger sum processed by digital filters to recover time of incidence and amplitude of incoming pulses. Such data is then fed to a first-level trigger processor which screens irrelevant information. Only data that may contain interesting information is kept for further analysis. Arrays of 50000 FERMIs constitute formidable processing systems when considering the total computational power and storage capacity.<>
FERMI/spl负/高能物理所需的大型数据采集阵列的新一代电子模块
前端读出微系统FERMI是新一代数据采集模块的代表,它利用现代设计技术实现了高采集率和智能在线数据处理。FERMI的设计是为了满足下一代粒子物理探测器中量热计设定的极端要求。这种探测器正在为瑞士的欧洲核子研究中心和德克萨斯州的SSC实验室未来的大型强子对撞机和SSC加速器设计。量热计要求频率高(LHC为67 MHz, SSC为63.5 MHz),对大量输入通道(约5 × 10/sup 5/)进行高精度采样。每个FERMI模块提供9个通道,从中采样进行ad转换,校正并临时存储在本地存储器中。数据还被合并成一个触发和,通过数字滤波器处理恢复入射脉冲的入射时间和振幅。然后将这些数据馈送到第一级触发处理器,该处理器筛选无关信息。仅保留可能包含有趣信息的数据以供进一步分析。考虑到总计算能力和存储容量,50000个fermi阵列构成了强大的处理系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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