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AGIPD: A multi Megapixel, multi Megahertz X-Ray Camera for the European XFEL

机译:AGIPD:用于欧洲XFEL的多百万像素,多Megahertz X射线摄像头

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AGIPD is a hybrid pixel detector developed by DESY, PSI, and the Universities of Bonn and Hamburg. It is targeted for use at the European XFEL, a source with unique properties: a train of up to 2700 pulses is repeated at 10 Hz rate. The pulses inside a train are ≤ 100fs long and separated by 220 ns, containing up to 10~(12) photons of 12.4 keV each. The readout ASICs with 64 × 64 pixels each have to cope with these properties: Single photon sensitivity and a dynamic range up to > 10~4 photons/pixel in the same image as well as storage for as many as possible images of a pulse train for delayed readout, prior to the next train. The high impinging photon flux also requires a very radiation hard design of sensor and ASIC, which uses 130 nm CMOS technology and radiation tolerant techniques. The signal path inside a pixel of the ASIC consists of a charge sensitive preamplifier with 3 individual gains, adaptively selected by a subsequent discriminator. The preamp also feeds to a correlated double sampling stage, which writes to an analogue memory to record 352 frames. It is random-access, so it can be used most efficiently by overwriting bad or empty images. Encoded gain information is stored to a similar memory. Readout of these memories is via a common charge sensitive amplifier in each pixel, and multiplexers on four differential ports. Operation of the ASIC is controlled via a command interface, using 3 LVDS lines. It also serves to configure the chip's operational parameters and timings.
机译:AGIPD是由贫民,PSI和Bonn和Hamburg的大学开发的混合像素探测器。它是针对欧洲XFEL的使用,一个具有独特性的源:最多2700个脉冲的火车以10 Hz速率重复。火车内部的脉冲长度≤100fs长,并分开220ns,含有高达10〜(12)光子的12.4kev。具有64×64像素的读出ASIC必须应对这些属性:单个光子灵敏度和动态范围高达> 10〜4在同一图像中的光子/像素以及与脉冲系的可能图像一样存储器在下一列车之前延迟读数。高撞击光子磁通也需要传感器和ASIC的非常辐射的硬设计,其使用130nm CMOS技术和辐射耐受技术。 ASIC的像素内的信号路径由充电敏感前置放大器组成,其具有3个单独的增益,通过后续判别器自适应地选择。前置放大器还馈送到相关的双采样阶段,该阶段写入模拟存储器以记录352帧。它是随机访问,因此可以通过覆盖坏或空图像来最有效地使用它。编码增益信息存储在类似的存储器中。这些存储器的读数通过每个像素中的公共电荷敏感放大器,以及四个差分端口上的多路复用器。使用3 LVDS线,通过命令接口控制ASIC的操作。它还用于配置芯片的操作参数和时间。

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