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Experience on a Serial-Bus Based Fast Readout Control System at Belle

机译:百丽基于串行总线的快速读取控制系统的经验

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We have installed a serial-bus based fast readout control system in the Belle experiment at the KEKB e + e - collider. Every subdetector readout system at Belle comprises common readout boards that initiate the readout sequence upon receiving a trigger signal for every event. In order to control more than hundred of such readout boards with a compact and scalable system, a cascadable tree structure based on one-to-eight switch modules that are interconnected with enhanced category-5 local area network cables was constructed. The cable carries dedicated clock and trigger signals, and a pair of 10-bit 509 Mbps serial-bus lines to transfer trigger and control related information. The 10-bit serial-bus is used as an 8-bit parallel lines with 2-bit parity bits for most of the time, and when needed, it is used to embed control sequences in other bit patterns to reset boards, to collect status, and to measure the latency of the serial-bus. A point-to-point path addressing method is implemented to access every individual node at any location in the tree. This system has replaced the old parallel and LEMO cable based fast control system for most of the subdetector readout systems at Belle. Our experience on installation and operation after running stably for more than two years is reported.
机译:我们已经在KEKB e + e-collider的Belle实验中安装了基于串行总线的快速读出控制系统。 Belle的每个子检测器读取系统均包含公共读取板,这些接收板在接收到每个事件的触发信号后便启动读取序列。为了用紧凑和可扩展的系统控制一百多个这样的读出板,构建了基于与增强的5类局域网电缆互连的一到八个交换模块的可级联树结构。该电缆承载专用的时钟和触发信号,以及一对10位509 Mbps串行总线线路,用于传输触发和控制相关信息。 10位串行总线在大多数情况下都用作具有2位奇偶校验位的8位并行线,并在需要时用于将控制序列嵌入其他位模式以复位板,以收集状态,并测量串行总线的延迟。实现了点对点路径寻址方法以访问树中任何位置的每个单独节点。该系统已代替Belle的大多数子探测器读出系统中的基于并行和LEMO电缆的旧式快速控制系统。据报道,我们在稳定运行两年以上后的安装和操作经验。

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