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4X4 8X8 Optical Cross Connect for Optical Fiber Networks

机译:光纤网络的4X4和8X8光学交叉连接

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We report on a 4x4 optical matrix switch for telecom application. It consists of a 4x4 array of vertical mirrors that have the same pitch as the fibers of commercially available fiber ribbons (250 μm). This compact design enables a parallel assembly to optical components, which simplifies the time consuming and costly process for switches with larger pitch. Additionally, a small pitch leads to a short optical coupling length, which facilitates the integration of a suitable collimation system. However there are physical limitations for optical MEMS in conjunction with assembled micro-optics. The optical beam exiting a collimator diverges, the divergence angle is indirectly proportional to the beam waist and the coupling length increases quadratically. Our calculations show that for a pitch of 250 μm a mirror height of 100 μm is optimal. The mirrors are monolithically etched onto a platform etched during a previous step. No assembly of the mirrors to the actuators is needed. Alignment structures for the optical components are etched during the same step as the mirrors, which lead to self aligned structures. The platform is supported by 150 μm long torsion beams with sub-micron diameter. The electrostatic actuation voltage is given by a separate chip. The mirror moves out of the optical path when the platform is actuated and goes to the switching state if no voltage is applied. The first prototypes have been actuated at 200 V, which agrees with a CoventorWare simulation used for designing the device. Light was successfully switched with a 4x4 OXC. An 8x8 OXC is shown and electrostatically characterized.
机译:我们报告了用于电信应用的4x4光矩阵交换机。它由一个垂直镜的4x4阵列组成,其间距与市售光纤带的光纤(250μm)相同。这种紧凑的设计使光学组件可以并行组装,从而简化了大间距开关的耗时且昂贵的过程。另外,较小的间距导致较短的光学耦合长度,这有利于集成合适的准直系统。然而,结合组装的微光学器件的光学MEMS存在物理限制。离开准直仪的光束发散,发散角与光束腰间接成比例,耦合长度成平方增加。我们的计算表明,对于250μm的节距,最佳反射镜高度为100μm。将镜子整体蚀刻到在先前步骤中蚀刻的平台上。不需要将镜子组装到致动器上。在与反射镜相同的步骤中蚀刻用于光学部件的对准结构,这导致自对准结构。该平台由具有亚微米直径的150μm长的扭力梁支撑。静电激励电压由单独的芯片提供。当平台被致动时,镜子移出光路,如果不施加电压,则镜子进入切换状态。第一批原型已在200 V电压下启动,这与用于设计该器件的CoventorWare仿真相符。使用4x4 OXC成功切换了光。所示为8x8 OXC,并具有静电特性。

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