制冷系统是红外焦平面探测器正常工作不可缺少的组成部分。
Cryogenic system is the key component of the infrared focal plane detector sensing system.
温度不稳定是影响非致冷红外焦平面探测器性能的重要因素之一。
Temperature unstability is one of the important factors affecting the performance of an uncooled infrared focal plane detector.
对基于中波红外焦平面探测器实现目标的表面温度测量进行了理论及实验研究。
The surface temperature measurement of temperature target based on a medium wave infrared detector was researched theoretically and experimentally in this paper.
锑化铟红外焦平面探测器将要在寿命周期中于室温到77K的温度范围内工作几千次。
An InSb infrared focal plane array (IRFPA) detector is required to operate in the temperature range from room temperature to 77k for several thousand times in its lifetime period.
图像结合最新的焦平面探测器阵列技术,此技术是工程师用于产生温度测量级别的技术。
The imager incorporates the latest focal plane array detector technology that is engineered to produce class-leading temperature measurements.
针对长线列碲镉汞红外焦平面探测器封装的特点,文章讨论了分置式微型杜瓦研制的难点。
According to package characteristics of long linear HgCdTe IRFPA detector, difficulties of the metal split micro dewar manufacture are discussed in the paper.
公司主要致力于非制冷红外焦平面探测器核心FPA芯片技术及其红外热像仪的研发和生产。
The company engages in the research and development as well as the production of the core chip technology of uncooled infrared focal plane array (FPA) and the infrared cameras.
文中讨论了两点校正法,并分别提出了利用查找表法和用CPLD实现焦平面探测器非均匀性校正的方案。
In this paper, the two points correction method is discussed, and then the designs of non-uniformity correction for IRFPA using function table and CPLD separately are presented.
利用四路红外非制冷焦平面探测器、大视场光学系统、窄带滤光片和信号处理系统,构成了凝视成像激光探测与告警系统。
A staring imaging laser detecting and warning system is formed by using 4-channel uncooled infrared focal plane detectors, large field optical system, narrow band filters and signal processing system.
将该方法应用于实际物镜设计,发现光学系统波长及权重符合探测器焦平面输出信号光谱响应特性。
Applying this method to the lens design, the lens' wavelength and weight corresponds to spectral response features of the output signal in the detector's focal plane.
将该方法应用于实际物镜设计,发现光学系统波长及权重符合探测器焦平面输出信号光谱响应特性。
Applying this method to the lens design, the lens' wavelength and weight corresponds to spectral response features of the output signal in the detector's focal plane.
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