In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber networks are proposed. Designs are compact, scalable, and of low consumption, capable of operating in a large wavelength range simultaneously 660, 850, and 1300 nm, due to the use of nematic liquid crystal cells. Light that comes from each input port is handled independently and eight operation modes are possible. Control electronics has been made using a programmable integrated circuit. Electronic system makes available the managing of the optical stage using a computer. An additional four optical sensors have been included for allowing the optical status checking. Finally, a polarization independent multiplexer has been implemented and teste...
Optical fiber sensor networks are evolving rapidly. They are used because of the inert nature of opt...
The increment of bandwidth required for new services offered to users make necessary the use of opti...
Optical fiber sensor networks are evolving rapidly. They are used because of the inert nature of opt...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
Compact 1 × 2 multimode fiber optic switches are demonstrated using nematic liquid crystals, a polar...
Compact 1 × 2 multimode fiber optic switches are demonstrated using nematic liquid crystals, a polar...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
A 1×2 optical router based on an achromatic liquid crystal polarization rotator has been designed an...
A 1×2 optical router based on an achromatic liquid crystal polarization rotator has been designed an...
A 1×2 optical router based on an achromatic liquid crystal polarization rotator has been designed an...
Optical fiber sensor networks are evolving rapidly. They are used because of the inert nature of opt...
The increment of bandwidth required for new services offered to users make necessary the use of opti...
Optical fiber sensor networks are evolving rapidly. They are used because of the inert nature of opt...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, different novel 3×1 multiplexer structures for being used in polymer optical fiber net...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
Compact 1 × 2 multimode fiber optic switches are demonstrated using nematic liquid crystals, a polar...
Compact 1 × 2 multimode fiber optic switches are demonstrated using nematic liquid crystals, a polar...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
A 1×2 optical router based on an achromatic liquid crystal polarization rotator has been designed an...
A 1×2 optical router based on an achromatic liquid crystal polarization rotator has been designed an...
A 1×2 optical router based on an achromatic liquid crystal polarization rotator has been designed an...
Optical fiber sensor networks are evolving rapidly. They are used because of the inert nature of opt...
The increment of bandwidth required for new services offered to users make necessary the use of opti...
Optical fiber sensor networks are evolving rapidly. They are used because of the inert nature of opt...