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Low-cost low-power uncooled a-Si-based micro infrared camera for unattended ground sensor a

机译:用于无人值守地面传感器的低成本,低功耗,无冷却,基于硅的微红外相机

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Abstract: Low power and low cost are primary requirements for an imaging infrared camera used in unattended ground sensor arrays. In this paper, an amorphous silicon (a-Si) microbolometer-based uncooled infrared camera technology offering a low cost, low power solution to infrared surveillance for UGS applications is presented. A 15 $MUL 31 micro infrared camera (MIRC) has been demonstrated which exhibits an f/1 noise equivalent temperature difference sensitivity approximately 67 mK. This sensitivity has been achieved without the use of a thermoelectric cooler for array temperature stabilization thereby significantly reducing the power requirements. The chopperless camera is capable of operating from snapshot mode (1 Hz) to video frame rate (30 Hz). Power consumption of 0.4 W without display, and 0.75 W with display, respectively, has been demonstrated at 30 Hz operation. The 15 $MUL 31 camera demonstrated exhibits a 35 mm camera form factor employing a low cost f/1 singlet optic and LED display, as well as low cost vacuum packaging. A larger 120 $MUL 160 version of the MIRC is also in development and will be discussed. The 120 $MUL 160 MIRC exhibits a substantially smaller form factor and incorporates all the low cost, low power features demonstrated in the 15 $MUL 31 MIRC prototype. In this paper, a-Si microbolometer technology for the MIRC will be presented. Also, the key features and performance parameters of the MIRC are presented.!2
机译:摘要:低功耗和低成本是无人值守地面传感器阵列中使用的成像红外摄像机的主要要求。本文介绍了一种基于非晶硅(a-Si)微辐射热计的非制冷红外摄像机技术,该技术为UGS应用的红外监视提供了一种低成本,低功耗的解决方案。已经证明了15美元的MUL 31微型红外摄像机(MIRC),其f / 1噪声当量温差灵敏度约为67 mK。在不使用用于阵列温度稳定的热电冷却器的情况下就已经达到了这种灵敏度,从而大大降低了功率需求。无斩波摄像头能够在快照模式(1 Hz)到视频帧频(30 Hz)之间运行。在30 Hz的工作频率下,无显示功耗为0.4 W,有显示功耗为0.75W。展示的15台$ MUL 31相机具有35毫米相机尺寸,采用了低成本的f / 1单线光学元件和LED显示屏,以及低成本的真空包装。 MIRC的更大版本120 $ MUL 160也正在开发中,并将进行讨论。 120 $ MUL 160 MIRC的外形尺寸要小得多,并具有15 $ MUL 31 MIRC原型中展示的所有低成本,低功耗功能。在本文中,将介绍用于MIRC的a-Si微辐射热计技术。此外,还介绍了MIRC的关键特性和性能参数。!2

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