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Modular MEMS-based optical cross-connect with large port-count
31
Citations
4
References
2003
Year
Optical MaterialsEngineeringMicro-optical ComponentModular Microelectromechanical SystemsOptical PropertiesOptical SwitchingPhotonic Integrated CircuitOptical CommunicationOptical NetworkingFree-space Optical NetworkPhotonicsElectrical EngineeringOptical Cross-connectComputer EngineeringOptical ModulesMicroelectronicsElectro-optics DeviceLarge Port-countOptoelectronics
We describe and demonstrate a modular microelectromechanical systems (MEMS)-based optical cross-connect (OXC) architecture. The OXC port count increases modularly by adding new optical modules, and a maximum cross-connectivity of /spl sim/ 350 /spl times/ 350 can be achieved in the current design. Each optical module has 16 ports with closed-loop servo-controlled MEMS mirrors. Using a prototype OXC system, mounted in a standard telecommunications equipment bay comprising optical modules, folding mirrors, and other optical elements, we demonstrate switching times of less than 10 ms, excellent optical power stability of less than /spl plusmn/ 0.15-dB variation, and immunity to stochastic vibrations. An automatic power peak-up process is performed when the power falls below 0.5-dB off the maximum coupled power for any connection.
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