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The DRE, the digital readout electronics for Athena X-IFU

机译:DRE,雅典娜X-IFU的数字读出电子设备

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We are developing the digital readout electronics (DRE) of the X-Ray Integral Field Unit (X-IFU), one of the two Athena focal plane instruments. This subsystem is made of two main parts: the DRE-DEMUX and the DRE-EP. With a frequency domain multiplexing (FDM) the DRE-DEMUX makes the readout of the 3 840 Transition Edge Sensors (TES) in 96 channels of 40 pixels each. It provides the AC signals to voltage-bias the TES, it demodulates the detector's data which are readout by a SQUID and low noise amplifiers and it linearizes the detection chain to increase its dynamic range. The feedback is computed with a specific technique, so called baseband feedback (BBFB) which ensures that the loop is stable even with long propagation and processing delays (i.e. a few μs) and with high frequency AC-bias (up to 5 MHz). This processing is partly analogue (anti aliasing and reconstruction niters) but mostly digital. The digital firmware is simultaneously applied to all the pixels in digital integrated circuits. After the demultiplexing the interface between the DRE-DEMUX and the DRE-EP has to cope with a data rate of 61.44 Gbps to transmit the data of the individual pixels. Then, the DRE-EP detects the events and computes their energy and grade according to their spectral quality: low resolution, medium resolution and high resolution (i.e. if two consecutive events are too close the estimate of the energy is less accurate). This processing is done in LEON based processor boards. At its output the DRE-EP provides the control unit of the instrument with a list including for each event its time of arrival, its energy, its location on the focal plane and its grade.
机译:我们正在开发X射线积分场单元(X-IFU)的数字读出电子设备(DRE),这是两个雅典娜焦平面仪器之一。该子系统由两个主要部分组成:DRE-DEMUX和DRE-EP。通过频域多路复用(FDM),DRE-DEMUX可以在96个通道(每个通道40个像素)中读取3840个过渡边缘传感器(TES)。它提供交流信号给TES电压偏置,解调由SQUID和低噪声放大器读出的检测器数据,并使检测链线性化以增加其动态范围。反馈是通过一种特定的技术计算的,即所谓的基带反馈(BBFB),即使在较长的传播和处理延迟(即几微秒)以及高频AC偏置(最高5 MHz)的情况下,也可以确保环路稳定。该处理部分是模拟的(抗锯齿和重构),但大部分是数字的。数字固件同时应用于数字集成电路中的所有像素。解复用之后,DRE-DEMUX和DRE-EP之间的接口必须处理61.44 Gbps的数据速率,以传输各个像素的数据。然后,DRE-EP会检测事件并根据其频谱质量(低分辨率,中分辨率和高分辨率)来计算事件的能量和等级(即,如果两个连续事件距离太近,则能量的估计不太准确)。该处理在基于LEON的处理器板上完成。 DRE-EP在其输出端为仪器的控制单元提供了一个列表,其中包括每次事件的到达时间,能量,在焦平面上的位置以及坡度。

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