AGATA phase 2 advancements in front-end electronics

AGATA phase 2 advancements in front-end electronics
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AGATA 前端电子产品的第二阶段进展

DOI:
10.1140/epja/s10050-023-01045-0
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发表时间:
2023
期刊:
The European Physical Journal A
影响因子:
--
通讯作者:
Collado J
Collado J
中科院分区:
--
文献类型:
--
作者:
Collado J

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AGATA 合作在使用大体积高纯度锗探测器的高分辨率射线光谱学前端电子器件的开发方面长期处于领先地位。二十年来,AGATA 合作一直致力于开发最先进的数字电子处理技术,包括高分辨率采样 ADC、高速信号传输和快速读出到高吞吐量计算 (HTC) 场,以进行在线脉冲形状分析。此次合作目前正在解决下一个挑战,即在高分辨率模式下为 4array 配备 6000 多个通道,生成大约 10 MHz 的总触发请求,并与多种互补仪器相结合。目前正在设计的下一代前端电子产品基于工业产品(FPGA模块上的系统),具有更高的集成度和更低的功耗。在这篇文章中,介绍了新电子产品的概念设计。介绍了预生产电子设备的首次测试结果以及未来的前景。
The AGATA collaboration has a long-standing leadership in the development of front-end electronics for high resolution-ray spectroscopy using large volume high purity germanium detectors. For two decades, the AGATA collaboration has been developing state-of-the-art digital electronics processing with high resolution sampling ADC, high-speed signal transfer and fast readout to a high throughput computing (HTC) farm for on-line pulse shape analysis. The collaboration is presently addressing the next challenge of equipping a 4array with more than 6000 channels in high resolution mode, generating approximately 10 MHz of total trigger requests, coupled to a large variety of complementary instruments. A next generation of front-end electronics, presently under design, is based on industrial products (System on Module FPGA’s), has higher integration and lower power consumption. In this contribution, the conceptual design of the new electronics is presented. The results of the very first tests of the pre-production electronics are presented as well as future perspectives.
分段 HPGe 探测器的数字信号处理预处理算法和脉冲形状分析
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