ATLAS量热计的管道控制器

D. Gingrich, J. Hewlett, L. Holm, J. Pinfold
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引用次数: 1

摘要

ATLAS液氩量热计前端读出的一种方法是将数据局部存储在模拟管道存储器中,并以40mhz的LHC波束交叉频率工作。使用满足ATLAS读出要求的开关电容阵列的原型流水线芯片已经存在。这些新芯片能够同时进行读写操作,并允许随机访问存储位置。为了利用这些基本的设计特性,需要大量的快速控制和地址记录逻辑。我们设计了一种控制器,能够将管道作为模拟随机存取存储器操作,并满足ATLAS读出要求。管道控制器管理256个时间样本的数据,并提供高达100 kHz触发率的无死区操作,当每个事件读取5个时间样本时。该操作允许输出重构放大器的2 /spl mu/s稳定,并且应该足以实现所需的13位分辨率。我们目前正在制作第二个pc板版本的控制器原型。基于相同设计的集成版本的实现正在进行中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A pipeline controller for the ATLAS calorimeter
One approach to the front-end readout of the ATLAS liquid argon calorimeter is to store data locally in analog pipeline memories at the LHC beam-crossing frequency of 40 MHz. Proto-type pipeline chips using switched capacitor arrays which meet the ATLAS readout requirements exist. These new chips are capable of simultaneous read and write operations, and allow random access to storage locations. To utilize these essential design features requires a substantial amount of fast control and address bookkeeping logic. We have designed a controller capable of operating the pipelines as analog random access memories and that satisfies the ATLAS readout requirements. The pipeline controller manages the data of 256 time samples and provides dead-time free operation up to a trigger rate of 100 kHz, when reading out five time samples per event. This operation allows 2 /spl mu/s for the output reconstruction amplifiers to settle and should be sufficient to achieve the required 13-bit resolution. We are currently proto-typing a second PC-board version of our controller. The implementation of an integrated version based on the same design is in progress.
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