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FPGA/DSP-based implementation of a high-performance multi-channel counter

机译:基于FPGA / DSP的高性能多通道计数器实现

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A high-performance configurable multi-channel counter is presented. The system has been implemented on a small-size and low-cost Commercial-Off-The-Shelf(COTS)FPGA/DSP-based board,and features 64 input channels,a maximum counting rate of 45 MHz,and a minimum integration window(time resolution)of 24 mu s with a 23 b counting depth.In particular,the time resolution depends on both the selected counting bit-depth and the number of acquisition channels:indeed,with a 8 b counting depth,the time resolution reaches the value of 8 mu s if all the 64 input channels are enabled,whereas it lowers to 378 ns if only 2 channels are used.Thanks to its flexible architecture and performance,the system is suitable in highly demanding photon counting applications based on SPAD arrays,as well as in many other scientific experiments.Moreover,the collected counting results are both real-time processed and transmitted over a high-speed IEEE 1394 serial link.The same link is used to remotely set up and control the entire acquisition process,thus giving the system a even higher degree of flexibility.Finally,a theoretical model of general use which immediately provides the overall system performance is described. The model is then validated by the reported experimental results.(C)2009 Elsevier B.V.All rights reserved.
机译:提出了一种高性能的可配置多通道计数器。该系统已在基于小型现成商用FPGA(COTS)FPGA / DSP的板上实现,并具有64个输入通道,最大计数速率为45 MHz,最小集成窗口(时间分辨率)为24μs,计数深度为23 b。特别是,时间分辨率取决于所选的计数位深度和采集通道数:实际上,计数深度为8 b时,时间分辨率达到如果全部64个输入通道均启用,则值为8μs;如果仅使用2个通道,则数值可降至378 ns。由于其灵活的架构和性能,该系统适用于基于SPAD阵列的高要求光子计数应用以及许多其他科学实验。此外,收集到的计数结果都可以实时处理并通过高速IEEE 1394串行链路传输。同一链路用于远程设置和控制整个采集过程,因此给系统一个更高的要求最后,描述了立即提供整体系统性能的通用理论模型。然后通过报告的实验结果验证模型。(C)2009 Elsevier B.V.保留所有权利。

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