首页> 外文会议>SPIE Astronomical Telescopes + Instrumentation Conference >Numerical simulation and validation of ATHENA/X-IFU/digital readout electronics
【24h】

Numerical simulation and validation of ATHENA/X-IFU/digital readout electronics

机译:ATHENA / X-IFU /数字读出电子设备的数值模拟和验证

获取原文

摘要

The X-IFU (X-rays Integral Field Unit), one of the two instruments of the Athena mission, is a cryogenic X-ray spectrometer for high-spectral resolution imaging. The large array of 3840 detectors each composed of an absorber coupled to a Transition Edge Sensor (TES) will be operated with a bath temperature of 50 mK. This instrument is designed to provide a challenging energy resolution of 2.5 eV in the 0.2 to 7 keV range. The DRE (Digital Readout Electronics) drives the frequency multiplexed readout of the sensors and implements the feedback required to optimise the detection chain dynamic range. To comply with the instrument energy resolution requirement, the constraints on the detection chain sub-systems are very stringent (thermal stability, signal to noise ratio, linearity,...). This implies a strong optimisation effort during the design of the sub-system in order to both satisfy the performance requirements and to fit in the mass, volume and power allocations. We have developed a numerical simulator of the X-IFU detection chain in order to validate the architecture of the DRE. The simulator implements the contributions of the different detection chain elements in the overall instrument performance. The details of the DRE architecture are included in the simulator and we use it to validate the different design options.
机译:X-IFU(X射线积分场单元)是雅典娜任务的两台仪器之一,是用于高光谱分辨率成像的低温X射线光谱仪。 3840个探测器的大型阵列,每个探测器由一个与过渡边缘传感器(TES)耦合的吸收器组成,将在50 mK的浴温下运行。该仪器旨在在0.2至7 keV范围内提供具有挑战性的2.5 eV的能量分辨率。 DRE(数字读数电子设备)驱动传感器的频率多路复用读数,并实现优化检测链动态范围所需的反馈。为了符合仪器的能量分辨率要求,对检测链子系统的约束非常严格(热稳定性,信噪比,线性等)。这意味着在子系统设计期间要进行强大的优化工作,既要满足性能要求,又要适应质量,体积和功率分配。我们已经开发了X-IFU检测链的数值模拟器,以验证DRE的体系结构。该模拟器实现了不同检测链元素对整个仪器性能的贡献。 DRE体系结构的详细信息包含在模拟器中,我们使用它来验证不同的设计选项。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号