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Integrated add/drop multiplexer (ADM) using micromachined mirror

机译:使用微机械镜的集成分插复用器(ADM)

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摘要

High speed, low insertion loss optical add/drop multiplexer (ADM) is designed and fabricated. The optical vertical micromirror is fabricated by deep dry etching, the aspect ratio reaches as high as 20. A thin aluminum film is deposited on the sidewall of the micromirror to increase the reflectivity. The anchors and pads are fabricated firstly, followed by the comb drive, micromirror and fiber grooves. Refilling technique is introduced to electrically insulate the anchors and pads from the substrate while still maintaining the mechanical support. The anchors and pads are strong enough to sustain the floating structures (micromirror and moving comb) and also assure good electrical connection to the electrostatic comb drive so that the external voltage can be applied. By improving dry etching, the finger width is only 2μm and the gap is only 2.5 μm. A typical electrostatic comb drive is fabricated by the deep reactive ion etching (RIE) and underneath releasing. Folded suspension beams of 800μm long, 2.0μm wide and 35um deep are employed to support the movable micromirror. The stiffness along the desired lateral direction is 0.21N/m. Comb drive using three electrodes is employed. Its applied voltage is decreased by a ratio of 0.707 compared with that of the two electrodes system, and the switching speed is also increased. To simply the optical fiber assembly, fiber grooves are fabricated along with the other structures. This device has a typical of optical ADM that can be widely used in all optical networks. All of the processes are compatible with IC technology and can be integrated with control circuits in a single chip.
机译:设计并制造了高速,低插入损耗的光分插复用器(ADM)。光学垂直微镜是通过深干蚀刻制成的,长宽比高达20。在微镜的侧壁上沉积了一层铝膜以提高反射率。首先制造锚固件和垫,然后制造梳状驱动器,微镜和光纤凹槽。引入了重新填充技术,以使锚固件和焊盘与基板电绝缘,同时仍保持机械支撑。锚固件和焊盘的强度足以承受浮动结构(微镜和移动梳子),并确保与静电梳齿驱动器的良好电连接,从而可以施加外部电压。通过改进干法蚀刻,手指宽度仅为2μm,间隙仅为2.5μm。典型的静电梳齿驱动器是通过深反应离子刻蚀(RIE)并在释放下制造的。使用800μm长,2.0μm宽和35um深的折叠式悬架梁支撑可移动微镜。沿所需横向的刚度为0.21N / m。采用了使用三个电极的梳齿驱动。与两个电极系统相比,其施加电压降低了0.707,并且开关速度也提高了。为了简化光纤组件,将光纤凹槽与其他结构一起制造。该设备具有典型的光学ADM,可以在所有光学网络中广泛使用。所有过程都与IC技术兼容,并且可以与控制电路集成在单个芯片中。

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