机械的联系

M. Sondermann, U. Kletzin, Geleitwort der Herausgeber
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引用次数: 0

摘要

光学技术被认为是21世纪的关键技术之一。光的当前和未来应用的多样性需要高度发达的光学系统。新的和进一步发展的光学系统的总趋势是提高其性能,例如,以更高的图像质量的形式。这一方面取决于系统的物理设计布局,另一方面取决于技术实现的可能性。作为技术实现的一部分,建设性设计和技术实施之间的密切联系是必要的。光学高性能系统是一组特殊的光学系统,例如用于掩模和晶圆检测的光学系统、高分辨率显微镜或特定激光应用的光学系统。现有技术实现的可能性无法安全地满足未来和部分当前对此类系统的要求。由此可见,越来越需要技术和建设性的发展。作为光学系统结构设计的一部分,光学元件与机械元件的安装(例如透镜支架)以及安装的光学元件与更复杂的系统(例如物镜)的连接起着核心作用。本文的目的是展示这些安装应用程序实现的当前发展状态,并有系统地开发其增强的机会。为此,需要从概念和内容上界定工作领域。通过对光学高性能系统的制造和应用的考虑,得出了光学高性能系统进一步发展的要求。为了实现这些需求,系统地开发了解决方案空间和方法,然后对其进行了分析,以满足给定的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanische Verbindungen
Optical technologies are considered one of the key technologies in the 21st Century. A multiplicity of current and future applications of light requires highlydeveloped optical systems. A general trend in the new and further development of optical systems is to increase their performance, for example, in the form of a higher image quality. On the one hand this is determined by the physical design layout of systems and on the other hand by the possibilities of technical realization. As part of the technical realization a close link between constructive design and technology implementation is necessary. Optical high-performance systems are a special group of optical systems, such as those used, for example, in optical systems for mask and wafer inspection, in high-resolution microscopy, or in specifi c laser applications. Future and partly current requirements for such systems can not be safely met with the existing possibilities of technical realization. From this follows that there is a growing need for technological and constructive development. As part of the structural design of optical systems, the mounting of optical components with mechanical elements, for instance lens mounts, and the connection of mounted optical components to more complex systems, such as objectives, take a central role. Th e aim of this paper is to show the current state of development on the implementation of these mounting applications and to methodically develop opportunities for its enhancement. For this, the fi eld of work is defi ned in terms of concept and content. Using a consideration of the manufacturing and application of optical high performance systems, requirements are derived for their further development. In order to realize these requirements solution spaces and methods have been systematically developed and then analyzed to fulfi l the given requirements.
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