数码产品
现场可编程门阵列
利用
计算机科学
地图集(解剖学)
方案(数学)
控制系统
电子线路
闪存
计算机硬件
嵌入式系统
电气工程
工程类
生物
数学分析
计算机安全
古生物学
数学
标识
DOI:10.1088/1748-0221/18/02/c02054
摘要
Abstract Establishing a reliable and efficient method to control electronics system consisting of many circuit boards is critical in the system design. Among unique requirements for the control in high energy physics experiments, we propose a maximally-automated and self-driven scheme for a system that exploits FPGAs, flash memory devices, and high-speed optical links. We have demonstrated our ideas in the ATLAS Phase-II Thin Gap Chamber system as the prototype for this new automated scheme. The method is widely applicable and knowledge and experience can be shared with other experiments using an FPGA-based large-scale electronics system.
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