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Improved methods of system integration for MEMS-based laser projection systems

机译:基于MEMS的激光投影系统的系统集成方法的改进方法

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摘要

Ultra-compact laser projection systems based on a single two-dimensional micro scanning mirror are a very promising candidate for personal and mobile display solutions in infotainment. Fraunhofer IPMS' resonant micro scanning mirror in combination with lasers as light sources allows a degree of miniaturization that the integration of such projectors into mobile appliances will become possible. Content stored on the device can be consumed and presented anytime. The authors have already presented first demonstrators of ultra-compact laser projection system that utilize that principle. These systems use the Flying Spot approach: the image area is scanned by a single laser beam at such a high frequency that every virtual pixel of the image is hit at least once within the time of one image frame and image information is generated by modulation of the laser beam that is deflected by the micro scanning mirror By driving of the mirror and modulation of the lasers in a strictly synchronous manner, the impression of a stable image can be generated.
机译:基于单一二维微扫描镜的超紧凑型激光投影系统是信息娱乐中个人和移动显示解决方案的非常有希望的候选者。 Fraunhofer IPMS的谐振微扫描镜与激光器相结合,作为光源,允许这种投影仪整合到移动设备中的小型化程度。可以随时消耗和呈现存储在设备上的内容。作者已经介绍了利用该原理的超紧凑型激光投影系统的首次示威者。这些系统使用飞行光斑方法:通过单个激光束以这样的高频扫描图像区域,即图像的每个虚拟像素在一个图像帧的时间内至少击中一次,并且通过调制产生图像信息通过通过驱动镜子和以严格同步的方式驱动的微扫描镜偏转的激光束,可以产生稳定图像的印象。

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