Title :
Optical MEMS for photonic switching-compact and stable optical crossconnect switches for simple, fast, and flexible wavelength applications in recent photonic networks
Author :
Yano, Mitsuhiro ; Yamagishi, Fumio ; Tsuda, Toshitaka
Author_Institution :
Fujitsu Labs. Ltd., Atsugi, Japan
Abstract :
We review the development trends and state-of-the-art technologies of large-port-count optical switches over the past decade. Practical implementation of optical switch fabrics is discussed in terms of optical switch architectures, optical configurations, port counts, switch elements, and so on. We describe compact and stable optical crossconnect three-dimensional microelectromechanical systems (3-D-MEMS) switches that are a key technology in recent photonic networks. To show how these enable simple, fast, and flexible wavelength applications in the photonic layer, we discuss the fast and stable MEMS switching by novel comb actuator and V-shaped torsion bar, compact optical configuration with roof-type mirror, stable switch housing with cubic structure, packaging techniques by tolerance expansion and simple procedures of the component assembly, MEMS mirror controller with fast and low power digital notch circuit, reliability by shock absorption, and field trials. In addition, we discuss the impact of these switches on system integration for recent metropolitan area networks and enterprise networks.
Keywords :
digital circuits; microactuators; microassembling; micromirrors; optical control; optical design techniques; optical fibre networks; optical interconnections; packaging; photonic switching systems; wavelength division multiplexing; 3D MEMS switches; MEMS mirror controller; V-shaped torsion bar; comb actuator; compact optical configuration; component assembly; crossconnect switches; digital notch circuit; enterprise networks; fast wavelength applications; field trials; flexible wavelength applications; large-port-count optical switches; metropolitan area networks; optical MEMS; optical configurations; optical crossconnect; optical switch architectures; optical switch fabrics; optical switches; packaging techniques; photonic networks; photonic switching; port counts; reliability; roof-type mirror; shock absorption; stable MEMS switching; stable switch housing; switch elements; system integration; three-dimensional microelectromechanical systems; tolerance expansion; wavelength division multiplexing; Actuators; Fabrics; Microelectromechanical systems; Micromechanical devices; Mirrors; Optical devices; Optical fiber networks; Optical switches; Photonics; Switching circuits; Microelectromechanical systems (MEMS); optical add–drop multiplexing (OADM); optical crossconnects (OXCs); optical switch; photonic network; wavelength division multiplexing (WDM);
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2005.846523