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Large-stroke self-aligned vertical comb drive actuators for adaptive optics applications

机译:用于自适应光学应用的大冲程自对准立式梳式驱动器致动器

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A high-stroke micro-actuator array was designed, modeled, fabricated and tested. Each pixel in the 4x4 array consists of a self-aligned vertical comb drive actuator. This micro-actuator array was designed to become the foundation of a micro-mirror array that will be used as a deformable mirror for adaptive optics applications. Analytical models combined with CoventorWare(R) simulations were used to design actuators that would move up to 10 microns in piston motion with 100V applied. Devices were fabricated according to this design and testing of these devices demonstrated an actuator displacement of 1.4 microns with 200V applied. Further investigation revealed that fabrication process inaccuracy led to significantly stiffer mechanical springs in the fabricated devices. The increased stiffness of the springs was shown to account for the reduced displacement of the actuators relative to the design.
机译:设计,建模,制造和测试设计了高冲程微致动器阵列。 4x4阵列中的每个像素由自对准的垂直梳驱动致动器组成。这种微致动器阵列被设计成成为微镜阵列的基础,该微镜阵列将用作自适应光学应用的可变形镜子。与Coventorware(R)模拟相结合的分析模型用于设计致动器,该致动器在活塞运动中高达10微米,施加100V。根据这种设计制造的装置,并测试这些设备的测试表明致动器位移为1.4微米,施加200V。进一步的研究表明,制造过程的不准确性导致制造装置中的机械弹簧显着逆时不变。示出了弹簧的增加的刚度,以解释致动器相对于设计的降低的位移。

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