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Large Stroke Actuators for Adaptive Optics

机译:用于自适应光学的大型行程执行器

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In this paper we review the use of a 3-dimensional MEMS fabrication process to prototype long stroke (>10 μm) actuators as are required for use in future adaptive optics systems in astronomy and vision science. The Electrochemical Fabrication (EFAB™) process that was used creates metal micro-structures by electroplating multiple, independently patterned layers. The process has the design freedom of rapid prototyping where multiple patterned layers are stacked to build structures with virtually any desired geometry, but in contrast has much greater precision, the capability for batch fabrication and provides parts in engineering materials such as nickel. The design freedom enabled by this process has been used to make both parallel plate and comb drive actuator deformable mirror designs that can have large vertical heights of up to 1 mm. As the thickness of the sacrificial layers used to release the actuator is specified by the designer, rather than by constraints of the fabrication process, the design of large-stroke actuators is straightforward and does not require any new process development. Since the number of material layers in the EFAB™ process is also specified by the designer it has been possible to gang multiple parallel plate actuators together to decrease the voltage required for long-stroke actuators.
机译:在本文中,我们审查了使用三维MEMS制造过程,以便在天文学和视觉科学中使用的未来自适应光学系统所需的原型长行程(>10μm)致动器。使用的电化学制造(EFAB™)方法通过电镀多个独立的图案层来产生金属微结构。该过程具有快速原型的设计自由度,其中多个图案层堆叠以构建具有几乎任何所需几何形状的结构,但相反具有更高的精度,批量制造的能力并提供诸如镍等工程材料中的部件。通过该过程实现的设计自由已被用于制造平行板和梳状驱动致动器可变形镜设计,其可以具有高达1毫米的大垂直高度。由于用于释放致动器的牺牲层的厚度由设计者指定,而不是通过制造过程的约束,大行程致动器的设计是简单的并且不需要任何新的过程开发。由于EFAB™过程中的材料层的数量也由设计者指定,因此可以将多个并联板致动器团体一起扩合以减小长行程致动器所需的电压。

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