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OASIS: Cryogenically-Optimized Resistive Arrays IRSP Subsystems for Space-Background IR Simulation

机译:OASIS:用于空间背景IR仿真的低温优化的电阻阵列和IRSP子系统

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SBIR has completed the development of the first lot of OASIS emitter arrays and custom packaging for cryogenic IR scene projection applications. OASIS performance requirements include a maximum MWIR apparent temperature of greater than 600 K, with 10-90% radiance rise time of less than 6.5 ms. Four (4) arrays have been packaged, integrated, tested and delivered. This paper will report on the first measurements taken of the OASIS resistive emitter arrays at both ambient and cryogenic temperatures. This paper will also provide a discussion of the OASIS cryogenic projector/electronics module (Cryo-PEM) design. We will also describe the novel thermal design employed within the array package and Cryo-PEM assemblies, which allows OASIS to produce radiometrically accurate imagery with reduced thermal lag/gradient artifacts compared to legacy Honeywell cryogenic IRSP assemblies. As OASIS supports both analog and digital input, we will discuss the differences between the two modes in terms of system integration, support electronics and overall array performance.
机译:SBIR已完成第一批绿洲发射器阵列的开发,以及用于低温IR场景投影应用的自定义包装。 OASIS性能要求包括最大MWIR表观温度大于600 k,10-90%亮度上升时间小于6.5毫秒。已打包,集成,测试和交付四(4)阵列。本文将报告在环境和低温温度下对绿洲电阻发射极阵列进行的第一次测量。本文还将提供对绿洲低温投影仪/电子模块(Cryo-Pem)设计的讨论。我们还将描述阵列封装和冷冻PEM组件中采用的新型热设计,其允许绿洲与传统霍尼韦尔低温IRSP组件相比,通过降低的热滞/梯度伪像产生放射性精确的图像。由于OASIS支持模拟和数字输入,我们将在系统集成方面讨论两种模式之间的差异,支持电子设备和整体阵列性能。

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