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WFI Electronics and On-Board Data Processing

机译:WFI电子和车载数据处理

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The Wide Field Imager is one of two instruments on-board the future ATHENA X-ray observatory. Its main scientific objective is to perform a sky survey in the energy range of 0.2 keV up to 15 keV with an end-of-life spectral resolution (FWHM) better than 170 eV (at 7 keV) and a frame rate of at least 200 Hz. The field of view will be 40 arcmin squared wherefore a focal plane array with 4 large sensors each with a size of 512 times 512 pixels will be developed. Additionally, a fast detector with a size of 64 times 64 pixels and a frame rate of 12.5 kHz will be implemented in order to enhance the instrument with high count rate detection of bright sources. The data processing electronics within the WFI instrument is distributed over several subsystems: DEPFET sensors sensitive in the x-ray energy regime and front-end electronics are located inside the Camera Head. Data pre-processing inside the Detector Electronics will be performed in an FPGA-based frame-processor. FPGA external memory will be used to store offset and noise maps wherefore memory controllers have to be developed. Fast read and write access to the maps combined with robustness against radiation damage (e.g. bit-flips) has to be ensured by the frame-processor design.
机译:宽视场成像仪是未来雅典娜X射线天文台的两台仪器之一。其主要的科学目标是在0.2 keV至15 keV的能量范围内进行空中勘测,其使用寿命结束的光谱分辨率(FWHM)优于170 eV(在7 keV时),且帧频至少为200赫兹。视野将为40 arcmin平方,因此将开发具有4个大传感器的焦平面阵列,每个传感器的大小为512乘以512像素。此外,将实现尺寸为64乘以64像素,帧频为12.5 kHz的快速检测器,以便通过对亮源的高计数率检测来增强仪器。 WFI仪器内的数据处理电子设备分布在几个子系统上:对X射线能量状况敏感的DEPFET传感器和前端电子设备位于摄像头内部。探测器电子内部的数据预处理将在基于FPGA的帧处理器中执行。 FPGA外部存储器将用于存储偏移和噪声图,因此必须开发存储器控制器。帧处理器设计必须确保对地图的快速读写访问以及抵抗辐射损坏(例如位翻转)的鲁棒性。

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