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Modeling and characterization of a vernier latching MEMS variable optical attenuator

机译:游标锁存MEMS可变光衰减器的建模与表征

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摘要

We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) which uses chevron electrothermal microactuators to control fiber-to-fiber optical power coupling. The use of microlatches has the advantage of holding the mechanical position of the fiber, and therefore the level of attenuation, with no electrical energy supplied except only to change the attenuation. Results of analytical electro-thermo-mechanical models of the device are obtained and compared with experimental test results, showing a good agreement. A step resolution of 0.5 μm for this multi-state latched device is achieved using a Vernier latch approach. This incremental step size is smaller than previously reported latched microactuators. The VOA demonstrated an attenuation range of over 47 dB and an insertion loss of 1 dB. The wavelength dependent loss across the optical communications C-band is 1.4 dB at 40 dB attenuation and the 10-90% transition time of the unlatched VOA is measured to be 1.7 ms.
机译:我们报告了使用人字形电热微致动器来控制光纤到光纤的光耦合的游标闩锁MEMS可变光衰减器(VOA)的建模和测试。微闩锁的使用具有保持光纤的机械位置并因此保持衰减水平的优点,除了仅改变衰减之外,不供应电能。获得了该装置的分析电热机械模型的结果,并将其与实验测试结果进行比较,显示出良好的一致性。使用Vernier锁存方法,可为该多态锁存器件实现0.5μm的步进分辨率。该增量步长小于先前报道的闩锁微致动器。 VOA的衰减范围超过47 dB,插入损耗为1 dB。在40 dB衰减下,光通信C波段上与波长有关的损耗为1.4 dB,未锁定的VOA的10-90%过渡时间测得为1.7 ms。

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