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Key Notes to the Advancement of Optical Scanning

机译:光学扫描技术发展的主要注记

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In forming an historical perspective of the development of optical scanning, we ask a probing question: What was the first major optical scanning innovation? We offer one having unexpected attributes, and seek audience ideas. We then demonstrate the pioneering work in Optical Scanning for information transfer — some created long before we arrived on the scene. Our job has been and is — Make it Faster and Better. The body of the presentation addresses how our technology advanced to this useful state. We then view some key signs of this progress Major device development starts with the mirrored reflectors, articulated in oscillation or in rotation. The High Inertia catagory concldues with holographic scanning. The Low Inertia groups, initiated with the Oscillatory scanners, continue into the Acoustooptic and the very fast Electrooptic domains. The quest for economic practicality gains special attention for the control of scanned beam misplacement, leading to precise opto-mechanical pixel and line positioning from cost-effective articulating scanning devices. The development concludes by describing some recent advancing technogies which utilize novel disciplines for precise low inertia random-access scanning. Some of the early progress was derived from work conducted by research groups which limited information distribution. Such constraint resulted from, e.g, security requirements, or specialized operational fields of interest, or simply from lack of interaction. Consequently, with limited early information transfer, other groups having related expertise or interest were delayed in the pursuit of this development. Commendation is accorded to the SPIE for recognizing early in the '70s (our First Conference entitled, Laser Recording, Vol. 53) the need for effective information transfer, by supporting and sustaining the forums for this technology for more than three decades.
机译:在形成光学扫描发展的历史视角时,我们提出一个探究性问题:什么是第一项主要的光学扫描创新?我们提供一种具有意外属性的产品,并寻求观众的想法。然后,我们演示了光学扫描中用于信息传递的开拓性工作-其中一些是在我们到达现场之前很久就创建的。我们的工作过去一直是–使它变得更快更好。演示的正文介绍了我们的技术如何发展到这种有用的状态。然后,我们会看到这一进展的一些主要迹象。主要的设备开发始于镜面反射器,该反射器以摆动或旋转方式铰接在一起。高惯性类别编目与全息扫描。由振荡扫描仪启动的低惯性组继续进入声光和非常快的电光领域。对经济实用性的追求引起了对扫描光束错位的控制的特别关注,这导致了具有成本效益的铰接式扫描设备的精确光机械像素和线定位。这项进展以描述一些最近的先进技术为结尾,这些技术利用新颖的技术进行精确的低惯性随机访问扫描。一些早期的进展来自研究小组进行的工作,这些工作限制了信息的分发。这种限制是由于例如安全要求或感兴趣的特殊操作领域,或仅仅是由于缺乏交互作用而引起的。因此,由于早期信息传递有限,其他具有相关专业知识或兴趣的团体在追求这一发展方面被推迟了。对SPIE表示赞赏,因为它在70年代初期(我们的第一次会议,标题为Laser Recording,第53卷)通过支持和维持该技术的论坛超过三十年来认识到有效信息传输的必要性。

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