基于火线的第二代数据采集系统的设计演变。

T K Lewellen, R S Miyaoka, L R Macdonald, M Haselman, D Dewitt, S Hauck
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引用次数: 0

摘要

我们实验室曾报告过华盛顿大学设计的基于火线的最新交互深度探测器系统数据采集系统的基本设计理念。我们的新版数据采集系统充分利用了现代现场可编程门阵列(FPGA)的功能,将几乎所有功能都集成到了 FPGA 中,包括火线元件、嵌入式处理器以及脉冲定时和集成。设计以采集节点板(ANB)为中心,其中包括 64 个串行 ADC 通道、一个高速并行 ADC、FireWire 1394b 支持、FPGA、一条串行命令总线以及支持粗略重合窗口实现的信号线,以阻止单个事件在 FireWire 总线上发送。适配器板将检测器信号转换成差分成对信号,以便连接到 ANB。在本文中,我们将讨论许多设计细节,包括为尽量减少印刷电路板层数、避免并行信号偏斜和不必要的带宽限制而采取的措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution of the Design of a Second Generation FireWire Based Data Acquisition System.

Our laboratory has previously reported on the basic design concepts of an updated FireWire based data acquisition system for depth-of-interaction detector systems designed at the University of Washington. The new version of our data acquisition system leverages the capabilities of modern field programmable gate arrays (FPGA) and puts almost all functions into the FPGA, including the FireWire elements, the embedded processor, and pulse timing and integration. The design is centered around an acquisition node board (ANB) that includes 64 serial ADC channels, one high speed parallel ADC, FireWire 1394b support, the FPGA, a serial command bus and signal lines to support a rough coincidence window implementation to reject singles events from being sent on the FireWire bus. Adapter boards convert detector signals into differential paired signals to connect to the ANB. In this paper we discuss many of the design details, including steps taken to minimize the number of layers in the printed circuit board and to avoid skewing of parallel signals and unwanted bandwidth limitations.

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