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Variable optical attenuator using a thermal actuator array with dual shutters

✍ Scribed by J.C Chiou; W.T Lin


Book ID
104072769
Publisher
Elsevier Science
Year
2004
Tongue
English
Weight
571 KB
Volume
237
Category
Article
ISSN
0030-4018

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✦ Synopsis


A compact variable optical attenuator (VOA) driving by thermal actuating principle with dual shutters for single mode fibers is developed. The fabricated thermal actuator array is capable of achieving larger displacement with low applied voltage than traditional thermal actuator array. The designed dual shutters can be driven independently or simultaneously, which increase the accurate tuning range and decrease working voltage for variable optical attenuator. The device is fabricated using MEMS-SOI fabrication technology, which greatly simplifies the traditional surface micromachining technology and increases its corresponding reliability. The newly designed thermal actuator array is capable of traveling 20 lm distance with less than 5 V applied voltage for VOA application. The insertion loss of the fabricated VOA is below 1.5 dB. The initial return loss and working return loss is about 50 and 40 dB, respectively. Experimental results indicated that the response time is below 4 ms and maximum attenuation range is about 40 and 45 dB at 1550 and 1310 nm, respectively. The working voltage and temperature of the designed VOA is under 5 V and 550 K, respectively.


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## Abstract A high‐dynamic‐range variable optical attenuator (VOA) using a movable shutter, which moves in a tilted‐angle direction to the collimate fiber pair, is proposed. The VOA operates in the C+L band with the advantages low cost, high dynamic range of more than 50 dB, low insertion loss of 0