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Thermal modelling of cooled instrument: from the WIRCam IR camera to CCD Peltier cooled compact packages

机译:冷却仪器的热模型:从WIRCam红外热像仪到CCD Peltier冷却紧凑型包装

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In the past decade, new thermal modelling tools have been offered to system designers. These modelling tools have rarely been used for the cooled instruments in ground-based astronomy. In addition to an overwhelming increase of PC computer capabilities, these tools are now mature enough to drive the design of complex astronomical instruments that are cooled. This is the case for WIRCam, the new wide-field infrared camera installed on the CFHT in Hawaii on the Mauna Kea summit. This camera uses four 2Kx2K Rockwell Hawaii-2RG infrared detectors and includes 2 optical barrels and 2 filter wheels. This camera is mounted at the prime focus of the 3.6m CFHT telescope. The mass to be cooled is close to 100 kg. The camera uses a Gifford Mac-Mahon closed-cycle cryo-cooler. The capabilities of the I-deas thermal module (TMG) is demonstrated for our particular application: predicted performances are presented and compared to real measurements after integration on the telescope in December 2004. In addition, we present thermal modelling of small Peltier cooled CCD packages, including the thermal model of the CCD220 Peltier package (fabricated by e2v technologies) and cold head. ESO and the OPTICON European network have funded e2v technologies to develop a compact packaged Peltier-cooled 8-output back illuminated L3Vision CCD. The device will achieve sub-electron read-noise at frame rates up to 1.5 kHz. The development, fully dedicated to the latest generation of adaptive optics wavefront sensors, has many unique features. Among them, the ultra-compactness offered by a Peltier package integrated in a small cold head including the detector drive electronics, is a way to achieve amazing performances for adaptive optics systems. All these models were carried out using a normal PC laptop.
机译:在过去的十年中,已经为系统设计人员提供了新的热建模工具。这些建模工具很少用于地面天文学中的冷却仪器。除了压倒性的PC计算机功能增强外,这些工具现在已经足够成熟,可以驱动复杂的冷却天文仪器的设计。 WIRCam就是这种情况,WIRCam是安装在夏威夷CFHT上的冒纳凯阿峰的新宽视场红外摄像机。该摄像机使用四个2Kx2K Rockwell Hawaii-2RG红外探测器,并包括2个光学镜筒和2个滤光轮。该相机安装在3.6m CFHT望远镜的主要焦点上。待冷却的物料接近100公斤。相机使用Gifford Mac-Mahon闭式循环低温冷却器。针对我们的特殊应用演示了I-deas热模块(TMG)的功能:在2004年12月将其集成到望远镜中后,给出了预测性能并与实际测量结果进行了比较。此外,我们还介绍了小型Peltier冷却CCD封装的热模型,包括CCD220 Peltier封装(由e2v技术制造)的热模型和冷头。 ESO和OPTICON欧洲网络为e2v技术提供了资金,以开发紧凑型封装的帕尔贴冷却的8输出背照式L3Vision CCD。该器件将以高达1.5 kHz的帧速率实现亚电子读取噪声。该开发完全致力于最新一代的自适应光学波前传感器,具有许多独特的功能。其中,集成在包括检测器驱动电子设备的小型冷头中的Peltier封装所提供的超紧凑性,是为自适应光学系统实现出色性能的一种方式。所有这些模型都是使用普通的PC笔记本电脑进行的。

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