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Material of LAPAN's IR Camera Equipped with Two Microbolometer in One Aperture

机译:一孔配备两个微测辐射热计的LAPAN红外摄像机的材料

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Besides the wavelength used, there is another factor that we have to notice in designing an optical system. It is material used which is correct for the spectral bands determined. Basically, due the limitation of the available range and expensive, choosing and determining materials for Infra Red (IR) wavelength are more difficult and complex rather than visible spectrum. We also had the same problem while designing our thermal IR camera equipped with two microbolometers sharing aperture. Two spectral bands, 3 - 4 nm (MWIR) and 8 - 12 um (LWIR), have been decided to be our thermal IR camera spectrum to address missions, i.e., peat land fire, volcanoes activities, and Sea Surface Temperature (SST). Referring those bands, we chose the appropriate material for LAPAN's IR camera optics. This paper describes material of LAPAN's IR camera equipped with two microbolometer in one aperture. First of all, we were learning and understanding of optical materials properties all matters of IR technology including its bandwidths. Considering some aspects, i.e., Transmission, Index of Refraction, Thermal properties covering the index gradient and coefficient of thermal expansion (CTE), the analysis then has been accomplished. Moreover, we were utilizing a commercial software, Thermal Desktop/Sinda Fluint, to strengthen the process. Some restrictions such as space environment, low cost, and performance mainly durability and transmission, were also cared throughout the trade off the works. The results of all those analysis, either in graphs or in measurement, indicate that the lens of LAPAN's IR camera with sharing aperture is based on Germanium/Zinc Selenide materials.
机译:除了使用的波长以外,在设计光学系统时还必须注意另一个因素。它是所用材料,对所确定的光谱带是正确的。基本上,由于可用范围的限制和价格昂贵,选择和确定用于红外(IR)波长的材料比可见光谱要困难和复杂。在设计配备两个共享孔径的微测辐射热仪的红外热像仪时,我们也遇到了同样的问题。我们已将3-4 nm(MWIR)和8-12 um(LWIR)两个光谱带确定为我们的红外热像仪光谱,以完成任务,例如泥炭地火,火山活动和海面温度(SST) 。参照这些波段,我们为LAPAN的红外摄像机光学元件选择了合适的材料。本文介绍了LAPAN的红外摄像头的材料,该摄像头在一个光圈中配备了两个微测辐射热计。首先,我们正在学习和理解光学材料特性,包括红外技术在内的所有红外技术的带宽。考虑到一些方面,即透射率,折射率,覆盖折射率梯度和热膨胀系数(CTE)的热特性,从而完成了分析。此外,我们正在使用商业软件Thermal Desktop / Sinda Fluint来加强该过程。在整个生产过程中,还需要注意一些限制,例如空间环境,低成本以及性能(主要是耐用性和传输性能)。所有这些分析的结果,无论是图形还是测量结果,都表明LAPAN具有共享光圈的红外摄像机镜头是基于锗/硒化锌材料制成的。

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