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2nd and 3rd Generation Thermal Imagers based on Type-Ⅱ Superlattice Photodiodes

机译:基于Ⅱ型超晶格光电二极管的第二代和第三代热成像仪

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We report on the development of InAs/GaSb type-Ⅱ superlattice focal plane arrays (FPAs) for missile warning systems in airborne platforms. The FPA fabrication technology was developed on the basis of monospectral superlattices for the MWIR (3-5 μm) spectral range. A monospectral 288x384 MWIR camera with 24 μm pixel pitch, a noise equivalent temperature difference (NETD) better than 14 mK and a background-limited performance (BLIP) up to 92 K is demonstrated. Based on the monospectral technology, the first bispectral superlattice camera was realized. The dual color 288x384 superlattice camera features simultaneous, pixel-registered detection of both spectral channels between 3-4 μm and 4-5 μm with a NETD better than 30 mK and 17 mK, respectively. Hence, spatial or temporal registration problems, which are common to most dual color and dual band infrared imagers are solved with the new bispectral MWIR missile alerting sensor.
机译:我们报道了用于机载平台导弹预警系统的InAs / GaSbⅡ型超晶格焦平面阵列(FPA)的发展。 FPA制造技术是基于针对MWIR(3-5μm)光谱范围的单光谱超晶格开发的。展示了具有24μm像素间距,优于14 mK的噪声等效温度差(NETD)和高达92 K的背景限制性能(BLIP)的单光谱288x384 MWIR摄像机。基于单光谱技术,实现了第一台双光谱超晶格相机。双色288x384超晶格相机可同时对3-4μm和4-5μm之间的两个光谱通道进行像素配准检测,其NETD分别优于30 mK和17 mK。因此,新的双光谱MWIR导弹警报传感器解决了大多数双色和双波段红外成像仪常见的空间或时间配准问题。

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