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A Micromachined Variable Optical Attenuator (VOA)

机译:微机械可变光学衰减器(VOA)

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摘要

Variable optical attenuator (VOA) is undergoing to be a mainstream component of wavelength division multiplex (WDM) networks to monitor and control the optical power of wavelength channels. In this paper, a free-space VOA fabricated by micro electromechanical systems (MEMS) technology to operate in the 1.55 μm wavelength region is described. It employs a micromirror driven by an electrostatic comb drive to cut partially into the light beam between two single mode fibers (SMFs), enabling the attenuation. The micromirror has a size of 30 μum X 30 μm and is coated with aluminum to increase the reflectance. The moving fingers of comb drive and the micromirror are supported by folded suspension beams over the substrate. By applying different voltage to the comb drive, the micromirror translates to different position to achieve an attenuation ranging from 0.4dB to 50dB, and even higher. The nonlinear relationship between the position of the micromirror and attenuation is analyzed. The distributions of the light beams at the micromirror and the output fiber end are investigated respectively. And the influence of the separations between the micromirror, the input and output fiber ends is also discussed to obtain different attenuation resolutions. At low attenuation stages, fine tuning of attenuation is obtainable. The largest attenuation is driven by 21voltage. Deep reactive ion etching (DRIE) process is employed to fabricate the VOA and the micro loading effect is remedied by mask design.
机译:可变光衰减器(VOA)正在成为波分复用(WDM)网络中用于监视和控制波长信道光功率的主流组件。在本文中,描述了一种通过微机电系统(MEMS)技术制造的,在1.55μm波长范围内工作的自由空间VOA。它采用了由静电梳状驱动器驱动的微镜,以部分切入两条单模光纤(SMF)之间的光束,从而实现衰减。微镜的尺寸为30μumX 30μm,并涂有铝以增加反射率。梳状驱动器和微镜的活动指状件由折叠式悬臂梁支撑在基板上。通过向梳齿驱动器施加不同的电压,微镜可转换到不同的位置,以实现0.4dB至50dB甚至更高的衰减。分析了微镜位置与衰减之间的非线性关系。分别研究了微镜和输出光纤端的光束分布。并讨论了微镜,输入和输出光纤末端之间的分离的影响,以获得不同的衰减分辨率。在低衰减阶段,可以获得衰减的微调。最大衰减是由21voltage驱动的。采用深反应离子刻蚀(DRIE)工艺制造VOA,通过掩膜设计可消除微负载效应。

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