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Integrating a compact multichannel cryogenic infrared camera in an operational detector dewar cooler assembly

机译:将紧凑的多通道低温红外线相机集成在操作探测器杜瓦冷却器组件中

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We present an ultra-compact infrared cryogenic camera integrated inside a standard SOFRADIR's Detector Dewar Cooler Assembly (DDCA) and whose field of view is equal to 120°. The multichannel optical architecture produces four non-redundant images on a single SCORPIO detector with a pixel pitch of 15μm. This ultra-miniaturized optical system brings a very low additional optical and mechanical mass to be cooled in the DDCA: the cool-down time is comparable to the one of an equivalent DDCA without an imagery function. Limiting the number of channels is necessary to keep the highest number of resolved points in the final image. However, optical tolerances lead to irregular shifts between the channels. This paper discusses the limits of multichannel architectures. With an image processing algorithm, the four images produced by the camera are combined to process a single full-resolution image with an equivalent sampling pitch equal to 7.5μm. Experimental measurements on MTF and NETD show that this camera achieves good optical performances.
机译:我们在标准Sofradir的探测器露天冷却器组件(DDCA)内部提供了一个集成的超紧凑型红外低温相机,其视场等于120°。多通道光学架构在单个天蝎座检测器上产生四个非冗余图像,其像素间距为15μm。该超小型化光学系统在DDCA中引发了非常低的附加光学和机械质量:冷却时间与没有图像功能的等效DDCA中的一个相当。限制信道的数量是在最终图像中保持最高数量的已解析点。然而,光学公差导致通道之间的不规则变化。本文讨论了多通道架构的限制。利用图像处理算法,将通过相机产生的四个图像组合以处理具有等于7.5μm的等效采样间距的单个全分辨率图像。关于MTF和NetD的实验测量表明,该相机达到了良好的光学性能。

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