论文标题
评估控制器的评估和开发用于Teledyne HXRG焦平面阵列的新内部控制器,用于IRSIS卫星有效载荷
Evaluation of Controllers and Development of a new in-house Controller for the Teledyne HxRG Focal Plane Array for the IRSIS satellite payload
论文作者
论文摘要
塔塔基础研究所(TIFR)的红外天文学组(天文学和天体物理学系)目前正在开发teledyne HXRG焦平阵列阵列(FPA)的控制器(FPAS),用于船上红外光谱镜检查调查(IRSIS)卫星卫星porloadload。在本手稿中,我们与不同的FPA控制器(如天文学研究摄像机(ARC)控制器,Teledyne的Sidecar ASIC以及我们新的内部设计的阵列控制器)讨论了测试结果。作为IRSIS仪器开发阶段的一部分,IRSIS仪器是一个基于光纤的积分场单元(IFU)近红外(NIR)光谱仪,建立了有限的NIR带宽的实验室模型,由Ritchey-Chretien(RC)30 CM望远镜,光纤望远镜,光学光纤ifu Ifu IFU,Spectremeters Optics Optics和Teledyede andyede ydedy eDedeede andedeDeDEDEREDERY组成。我们讨论了IRSIS实验室模型的构建和测试期间的各种发展以及内部H2RG控制器原型的技术方面。
The Infrared Astronomy Group (Department of Astronomy and Astrophysics) at Tata Institute of Fundamental Research (TIFR) is presently developing controllers for the Teledyne HxRG Focal Plane Arrays (FPAs) to be used on board the Infrared Spectroscopic Imaging Survey (IRSIS) satellite payload. In this manuscript we discuss the results of our tests with different FPA controllers like the Astronomical Research Cameras (ARC) controller, Teledyne's SIDECAR ASIC as well as our new in-house designed Array controller. As part of the development phase of the IRSIS instrument, which is an optical fibre based Integral Field Unit (IFU) Near-Infrared (NIR) Spectrometer, a laboratory model with limited NIR bandwidth was built which consisted of various subsystems like a Ritchey-Chretien (RC) 30 cm telescope, optical fibre IFU, spectrometer optics, and the Teledyne H2RG detector module. We discuss the various developments during the building and testing of the IRSIS laboratory model and the technical aspects of the prototype in-house H2RG controller.