首页> 外文会议>Infrared Technology and Applications XXXII pt.2 >Lightweight Uncooled TWS Equipped With Catadioptric Optics and Microscan Mechanism
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Lightweight Uncooled TWS Equipped With Catadioptric Optics and Microscan Mechanism

机译:配备折反射光学元件和微扫描机构的轻型非冷却TWS

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A rugged lightweight thermal weapon sight (TWS) prototype was developed at INO in collaboration with DRDC-Valcartier. This TWS model is based on uncooled bolometer technology, ultralight catadioptric optics, ruggedized mechanics and electronics, and extensive onboard processing capabilities. The TWS prototype operates in a single 8-12 μm infrared (IR) band. It is equipped with a unique lightweight athermalized catadioptric objective and a bolometric IR imager with an INO focal plane array (FPA). Microscan technology allows the use of a 160 x 120 pixel FPA with a pitch of 50 μm to achieve a 320 x 240 pixel resolution image thereby avoiding the size (larger optics) and cost (expensive IR optical components) penalties associated with the use of larger format arrays. The TWS is equipped with a miniature shutter for automatic offset calibration. Based on the operation of the FPA at 100 frames per second (fps), real-time imaging with 320 x 240 pixel resolution at 25 fps is available. This TWS is also equipped with a high resolution (857 x 600 pixels) OLED color microdisplay and an integrated wireless digital RF link. The sight has an adjustable and selectable electronic reticule or crosshair (five possible reticules) and a manual focus from 5 m to infinity standoff distance. Processing capabilities are added to introduce specific functionalities such as image inversion (black hot and white hot), image enhancement, and pixel smoothing. This TWS prototype is very lightweight (~ 1100 grams) and compact (volume of 93 cubic inches). It offers human size target detection at 800 m and recognition at 200 m (Johnson criteria). With 6 Li AA batteries, it operates continuously for 5 hours and 20 minutes at room temperature. It can operate over the temperature range of -30℃ to +40℃ and its housing is completely sealed. The TWS is adapted to weaver or Picatinny rail mounting. The overall design of the TWS prototype is based on feedbacks of users to achieve improved user-friendly (e.g. no pull-down menus and no electronic focusing) and ergonomic (e.g. locations of buttons) features.
机译:INO与DRDC-Valcartier合作开发了坚固耐用的轻型热武器瞄准器(TWS)原型。该TWS模型基于非制冷测辐射热计技术,超轻反射折射光学器件,坚固的机械和电子器件以及广泛的机载处理能力。 TWS原型在单个8-12μm红外(IR)波段中运行。它配备了独特的轻型无热折反射物镜和带有INO焦平面阵列(FPA)的辐射热红外成像仪。 Microscan技术允许使用间距为50μm的160 x 120像素FPA来获得320 x 240像素分辨率的图像,从而避免了尺寸(较大的光学器件)和成本(昂贵的IR光学组件)的罚款。格式数组。 TWS配备了用于自动偏移校准的微型快门。基于FPA以每秒100帧(fps)的速度运行,可以在25 fps下以320 x 240像素分辨率进行实时成像。该TWS还配备了高分辨率(857 x 600像素)OLED彩色微型显示器和集成的无线数字RF链接。该瞄准器具有可调和可选的电子标线或十字准线(五个可能的标线),以及从5 m到无限远距距离的手动聚焦。添加了处理功能以引入特定功能,例如图像反转(黑热和白热),图像增强和像素平滑。该TWS原型非常轻巧(约1100克),并且紧凑(体积为93立方英寸)。它可以在800 m处进行人体大小目标检测,并在200 m处进行识别(Johnson标准)。使用6节AA锂电池,它在室温下可连续运行5小时20分钟。它可以在-30℃至+ 40℃的温度范围内工作,并且外壳完全密封。 TWS适用于编织器或Picatinny导轨安装。 TWS原型的总体设计基于用户的反馈,以实现更好的用户友好性(例如,没有下拉菜单和电子对焦)和符合人体工程学的(例如按钮的位置)功能。

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