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Thermal microactuators for optical purpose

机译:光学热致动器

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摘要

The core of the project was to design a moveable micromirror array with the most optimal dependence of the optically active area, the deflection angles and the micromirror power consumption. The matrix of 10/spl times/20 micromirrors uses a thermal actuated principle. The micromirror was designed using an industrial 0.8 /spl mu/m double metal CMOS process followed by one single postprocessing step and anisotropic silicon etch. The device consists of one cantilever beam supporting the mirror plate. The beam is a bimorph sandwich of aluminium and silicon dioxide enclosing polysilicon heating resistor. The control electronics contains 20-bit edge-triggered shift register with serial data entry and an output from each of the twenty stages (flip-flop). The output buffer is a driver for the CMOS switch (transfergate) which connects current (Pad Supply for the beam) to the thermal actuator (beam). The ANSYS program was used for the mechanical simulation of thermally actuated micromirror.
机译:该项目的核心是设计一种可移动的微镜阵列,其光学活性区域,偏转角和微镜功耗的最佳相关性。 10 / spl次/ 20微镜的矩阵使用热激励原理。微镜是使用工业0.8 / splμm/ m的双金属CMOS工艺设计的,然后进行一个后处理步骤和各向异性硅蚀刻。该设备由一个支撑镜板的悬臂梁组成。该梁是铝和二氧化硅的双晶片夹层结构,内含多晶硅加热电阻器。控制电子器件包含20位边缘触发的移位寄存器,具有串行数据输入和20个级中的每个级的输出(触发器)。输出缓冲器是CMOS开关(传输门)的驱动器,该开关将电流(光束的焊盘电源)连接到热执行器(光束)。 ANSYS程序用于热驱动微镜的机械仿真。

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