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Results of a prototype imaging system using the FGLD technology and self-triggering discharge-protected readout electronics

机译:使用FGLD技术和自触发放电保护读出电子设备的原型成像系统的结果

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Previous work on the FGLD (Field Gradient Lattice Detector) involved reading out 50 strips from the detector using the GP5 chip: a 128-channel charge-sensitive preamplifier with integrated individually programmable trigger. The work showed that the GP5 was suitable as a front-end electronics, but demonstrated the need to protect the inputs from discharges. To that end, the 128-channel diode protection chip developed for the TOTEM experiment has been successfully adapted to the GP5 and shown to make the GP5 resilient to destruction upon discharge. Armed with this robust front-end electronics and the FGLD technology, the group is developing a prototype imaging system capable of producing images relevant for medical and industrial applications. A discussion of the system's parameters and performance will be presented along with some images made with a collimated source.
机译:FGLD(场梯度格子检测器)的先前工作涉及使用GP5芯片从检测器中读取50条带:一个128通道电荷敏感的前置放大器,具有集成的独立可编程触发器。这项工作表明,GP5适合用作前端电子设备,但表明需要保护输入免受放电。为此,为TOTEM实验开发的128通道二极管保护芯片已成功应用于GP5,并显示出可以使GP5在放电时具有抗破坏性。借助强大的前端电子设备和FGLD技术,该小组正在开发一种原型成像系统,该系统能够生成与医疗和工业应用相关的图像。将讨论系统的参数和性能,以及使用准直源制作的一些图像。

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