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首页> 外文期刊>Journal of Micromechanics and Microengineering >Computer-controlled dynamic mode multidirectional UV lithography for 3D microfabrication
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Computer-controlled dynamic mode multidirectional UV lithography for 3D microfabrication

机译:用于3D微加工的计算机控制动态模式多向UV光刻

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Computer-controlled dynamic mode multidirectional ultraviolet (UV) lithography has been demonstrated using a collimated UV light source, a substrate-holding stage equipped with two stepper motors (one for tilting and the other for rotation), a controller with programming software and a laptop computer. The tilting and rotational angles of the stage in motion are accurately controlled during UV exposure as programmed by the user to produce complex three-dimensional (3D) microstructures. Process parameters include the initial and final tilting and rotational angles of the stage, and the relative angular velocities of the two motors in addition to the normal fabrication process parameters of UV lithography such as optical dose, baking time, and developing time and condition. Symmetric patterns can be generated by a simple synchronous mode dynamic operation, where both the angular velocities of the tilting motion and the rotating motion are set equal or harmonically related. More complex and non-symmetric patterns can be obtained using a piecewise synchronous mode, where the relationship between the angular velocities of the two motors is described not with a single coefficient but with a set of coefficients. 3D structures fabricated from the synchronous mode operation include the four-leaf clover horn and the cardiac horn while the ones from the piecewise synchronous mode are a vertical triangular slab, a screwed wind vane and arbitrary shape horns. Ray trace simulation has been performed using a mathematical tool in a spherical coordinate system and the simulated 3D patterns show good agreement with the fabricated ones.
机译:使用准直的UV光源,配备有两个步进电机(一个用于倾斜,另一个用于旋转)的基板固定台,带有编程软件的控制器和便携式计算机,演示了计算机控制的动态模式多向紫外线(UV)光刻技术电脑。根据用户的编程,可以在UV曝光期间精确控制运动台的倾斜角度和旋转角度,以产生复杂的三维(3D)微结构。除UV光刻的正常制造工艺参数(例如光学剂量,烘烤时间以及显影时间和条件)外,工艺参数还包括工作台的初始和最终倾斜角和旋转角度,以及两个电机的相对角速度。可以通过简单的同步模式动态操作生成对称模式,其中,倾斜运动和旋转运动的角速度都设置为相等或谐波相关。使用分段同步模式可以获得更复杂和非对称的模式,其中两个电动机的角速度之间的关系不是用单个系数而是用一组系数来描述。由同步模式操作制造的3D结构包括四叶三叶草号角和心形号角,而从分段同步模式获得的3D结构是垂直的三角形平板,螺旋风向标和任意形状的号角。已经使用数学工具在球坐标系中执行了光线跟踪模拟,并且模拟的3D模式显示出与所制造的模式良好的一致性。

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