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Applications of LIGA technology to precision manufacturing of high-aspect-ratio micro-components and -systems: a review

机译:LIGA技术在高纵横比微组件和系统的精密制造中的应用:综述

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摘要

The by far leading technology for manufacturing MEMS devices is Si-micromachining with its various derivatives. However, many applications of microsystems have requirements on materials basis, geometry, aspect ratio, dimensions, shape, accuracy of microstructures, and number of parts that cannot be fulfilled easily by mainstream silicon-based micromachining technologies. LIGA, an alternative microfabrication process combining deep X-ray lithography, plating-through-mask and molding, enables the highly precise manufacture of high-aspect-ratio microstructures with large structural height ranging from hundreds to thousands of micrometers thick. These tall microstructures can be produced in a variety of materials with well-defined geometry and dimensions, very straight and smooth sidewalls, and tight tolerances. LIGA technology is also well suited for mass fabrication of parts, particularly in polymer. Many microsystems benefit from unique characteristics and advantages of the LIGA process in terms of product performance. The LIGA technology is briefly reviewed. The strengths of the manufacturing method and its main fields of application are emphasized with examples taken from various groups worldwide, especially in micromechanics and microoptics.
机译:迄今为止,用于制造MEMS器件的领先技术是Si微加工及其各种衍生物。然而,微系统的许多应用对材料基础,几何形状,长宽比,尺寸,形状,微结构的精度以及零件数量的要求是主流硅基微加工技术无法轻松实现的。 LIGA是将深X射线光刻,通孔电镀和模制相结合的替代性微加工工艺,可以高精度制造高纵横比的微结构,其结构高度范围从数百到数千微米厚。这些高大的微结构可以用多种材料制成,具有明确的几何形状和尺寸,非常平整的侧壁和严格的公差。 LIGA技术也非常适合零件的批量制造,尤其是聚合物。在产品性能方面,许多微系统都受益于LIGA工艺的独特特性和优势。简要回顾了LIGA技术。举世界各地不同群体的例子,特别是在微机械和微光学方面,强调了制造方法及其主要应用领域的优势。

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