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Low-cost thermo-electric infrared FPAs and their automotive applications

机译:低成本热电红外FPA及其在汽车中的应用

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This paper describes three low-cost infrared focal plane arrays (FPAs) having a 1,536, 2,304, and 10,800 elements and experimental vehicle systems. They have a low-cost potential because each element consists of p-n poly silicon thermocouples, which allows the use of low-cost ultra-fine micro-fabrication technology commonly employed in the conventional semiconductor manufacturing processes. To increase the responsivity of FPA, we have developed a precisely patterned Au-black absorber that has high infrared absorptivity of more than 90%. The FPA having a 2,304 elements achieved high resposivity of 4,300 V/W. In order to reduce package cost, we developed a vacuum-sealed package integrated with a molded ZnS lens. The camera aiming the temperature measurement of a passenger cabin is compact and light weight devices that measures 45 × 45 × 30 mm and weighs 190 g. The camera achieves a noise equivalent temperature deviation (NETD) of less than 0.7°C from 0 to 40°C. In this paper, we also present a several experimental systems that use infrared cameras. One experimental system is a blind spot pedestrian warning system that employs four infrared cameras. It can detect the infrared radiation emitted from a human body and alerts the driver when a pedestrian is in a blind spot. The system can also prevent the vehicle from moving in the direction of the pedestrian. Another system uses a visible-light camera and infrared sensors to detect the presence of a pedestrian in a rear blind spot and alerts the driver. The third system is a new type of human-machine interface system that enables the driver to control the car's audio system without letting go of the steering wheel. Uncooled infrared cameras are still costly, which limits their automotive use to high-end luxury cars at present. To promote widespread use of IR imaging sensors on vehicles, we need to reduce their cost further.
机译:本文介绍了三种具有1,536、2,304和10,800个元件的低成本红外焦平面阵列(FPA)和实验车辆系统。它们具有低成本的潜力,因为每个元素都由p-n多晶硅热电偶组成,这允许使用常规半导体制造工艺中常用的低成本超细微制造技术。为了提高FPA的响应度,我们开发了一种精确图案化的Au-black吸收体,该吸收体具有90%以上的高红外吸收率。具有2,304个元素的FPA实现了4,300 V / W的高响应性。为了降低包装成本,我们开发了与模制ZnS透镜集成的真空密封包装。瞄准客舱温度的摄像机是紧凑轻巧的设备,体积为45×45×30 mm,重190 g。摄像机在0至40°C之间的等效噪声温度偏差(NETD)小于0.7°C。在本文中,我们还介绍了几个使用红外热像仪的实验系统。一种实验系统是采用四个红外摄像头的盲区行人预警系统。它可以检测到人体发出的红外辐射,并在行人处于盲区时向驾驶员发出警报。该系统还可以防止车辆沿行人方向行驶。另一个系统使用可见光摄像头和红外传感器检测后盲点中是否存在行人,并向驾驶员发出警报。第三种系统是新型的人机界面系统,使驾驶员能够在不松开方向盘的情况下控制汽车的音频系统。未冷却的红外热像仪仍然很昂贵,目前限制了其在高端豪华车中的使用。为了促进红外成像传感器在车辆上的广泛使用,我们需要进一步降低其成本。

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