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Fast wire per wire X-ray data acquisition system for time-resolved small angle scattering experiments

机译:快速的单线X射线数据采集系统,用于时间分辨的小角度散射实验

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Most of the X-ray multi-wire gas detectors used at the EMBL Hamburg outstation for time-resolved studies of biological samples are readout, using the delay line method. The main disadvantage of such readout systems is their event rate limitation introduced by the delay line and the required time to digital conversion step. They also lack the possibility to deal with multiple events. To overcome these limitations, a new approach for the complete readout system was introduced. The new linear detection system is based on the wire per wire approach where each individual wire is associated to preamplifier/discriminator/counter electronics channel. High-density, front-end electronics were designed around a fast current sensitive preamplifier. An eight-channel board was designed to include the preamplifiers-discriminators and the differential ECL drivers output stages. The detector front-end consists of 25 boards directly mounted inside the detector assembly. To achieve a time framing resolution as short as 10 /spl mu/s, very fast histogramming is required. The only way to implement this for a high number of channels (200 in our case) is by using a distributed system. The digital part of the system consists of a crate controller, up to 16 acquisition boards (capable of handling fast histogramming for up to 32-channels each) and an optical-link board (based on the Cypress "Hot-Link" chip set). Both the crate controller and the acquisition boards are based on a standard RISC microcontroller (IDT R3081) plug-in board. At present, a dedicated CAMAC module which we developed is used to interface the digital front-end acquisition crate to the host via the optical link.
机译:EMBL汉堡分站使用的大多数X射线多线气体探测器都是通过延迟线方法读出的,用于时间分辨的生物样品研究。这种读出系统的主要缺点是由延迟线引入了事件速率限制,以及所需的数字转换时间。他们还缺乏处理多个事件的可能性。为了克服这些限制,引入了一种用于完整读出系统的新方法。新的线性检测系统基于每根导线的方法,其中每根单独的导线与前置放大器/鉴别器/计数器电子通道相关联。高密度前端电子设备是围绕快速电流敏感型前置放大器设计的。设计了一个八通道板,其中包括前置放大器-鉴别器和差分ECL驱动器输出级。检测器前端由直接安装在检测器组件内部的25个板组成。为了获得短至10 / spl mu / s的时间帧分辨率,需要非常快的直方图。对于大量通道(在我们的示例中为200个)实现此功能的唯一方法是使用分布式系统。该系统的数字部分包括一个板条箱控制器,多达16个采集板(每个板可处理多达32个通道的快速直方图)和一个光链路板(基于赛普拉斯的“ Hot-Link”芯片组) 。板条箱控制器和采集板均基于标准RISC微控制器(IDT R3081)插入板。目前,我们开发的专用CAMAC模块用于通过光纤链路将数字前端采集板条箱与主机接口。

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