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. ...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
We report on the fabrication and characterization of a single-mode fiber variable optical attenuator...
The paper described a new micromachined reflection-type variable attenuator (VOA), which uses an ell...
We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) wh...
We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) wh...
A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier...
A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier...
A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier...
Abstract—A multistate latching variable optical attenuator (VOA) is demonstrated using microelectrom...
A novel micromechanical variable optical attenuator (VOA) for single mode fibers based on MEMS is pr...
Variable optical attenuators (VOAs) based on insertion of a shutter into an optical beam have been d...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
A compact fiber variable optical attenuator (VOA) with 25-dB dynamic range is proposed and demonstra...
[[abstract]]Optical microelectromechanical systems (MEMS) technology or micro-optoelectromechanical ...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
We report on the fabrication and characterization of a single-mode fiber variable optical attenuator...
The paper described a new micromachined reflection-type variable attenuator (VOA), which uses an ell...
We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) wh...
We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) wh...
A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier...
A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier...
A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier...
Abstract—A multistate latching variable optical attenuator (VOA) is demonstrated using microelectrom...
A novel micromechanical variable optical attenuator (VOA) for single mode fibers based on MEMS is pr...
Variable optical attenuators (VOAs) based on insertion of a shutter into an optical beam have been d...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
A compact fiber variable optical attenuator (VOA) with 25-dB dynamic range is proposed and demonstra...
[[abstract]]Optical microelectromechanical systems (MEMS) technology or micro-optoelectromechanical ...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
Fiber-optic variable optical attenuators (VOAs) are required for light power control in numerous app...
We report on the fabrication and characterization of a single-mode fiber variable optical attenuator...
The paper described a new micromachined reflection-type variable attenuator (VOA), which uses an ell...