A microelectromechanical-systems-based moving fiber variable optical attenuator (VOA) with a Vernier latching mechanism is described in this letter. Controlled misalignment between the end-faces of two optical fibers varies the optical coupling. This is performed using a Chevron-type thermal microactuator which moves one fiber end-face with respect to the other. The moving fiber is latched in positions using a Vernier latching mechanism with 0.5-/spl mu/m step resolution. A prototype VOA has been fabricated using 80-/spl mu/m silicon-on-insulator. Optical power coupled between the two single-mode fibers varied from 3.72 to -44 dBm, and over this range the VOA latched in 30 stable positions. Insertion loss was measured to be 1.05 dB. In the ...
To the best of our knowledge, this letter demonstrates the first hybrid analog-digital design fiber-...
[[abstract]]This paper describes the feasibility study result for a variable optical attenuator (VOA...
To the best of our knowledge, this letter demonstrates the first hybrid analog-digital design fiber-...
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...
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...
Abstract—A multistate latching variable optical attenuator (VOA) is demonstrated using microelectrom...
We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) wh...
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...
The paper described a new micromachined reflection-type variable attenuator (VOA), which uses an ell...
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...
[[abstract]]This paper describes the feasibility study result for a variable optical attenuator (VOA...
To the best of our knowledge, this letter demonstrates the first hybrid analog-digital design fiber-...
[[abstract]]This paper describes the feasibility study result for a variable optical attenuator (VOA...
To the best of our knowledge, this letter demonstrates the first hybrid analog-digital design fiber-...
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...
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...
Abstract—A multistate latching variable optical attenuator (VOA) is demonstrated using microelectrom...
We report on the modeling and testing of a Vernier latched MEMS variable optical attenuator (VOA) wh...
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...
The paper described a new micromachined reflection-type variable attenuator (VOA), which uses an ell...
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...
[[abstract]]This paper describes the feasibility study result for a variable optical attenuator (VOA...
To the best of our knowledge, this letter demonstrates the first hybrid analog-digital design fiber-...
[[abstract]]This paper describes the feasibility study result for a variable optical attenuator (VOA...
To the best of our knowledge, this letter demonstrates the first hybrid analog-digital design fiber-...