Examples of 'optoelectronic devices' in a sentence
Meaning of "optoelectronic devices"
Refers to electronic devices or components that use light or photons in combination with electrical signals to perform specific functions or operations. These devices can manipulate or control light to generate, detect, or transmit signals or data. Examples include lasers, light-emitting diodes (LEDs), photodetectors, optical fibers, and solar cells
How to use "optoelectronic devices" in a sentence
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optoelectronic devices
The optoelectronic devices may be of several types.
Understanding how work some optoelectronic devices.
Organic optoelectronic devices and applications thereof.
Research of electroluminescent materials for use in optoelectronic devices.
Optoelectronic devices for current and voltage measuring.
The latter are important for the optoelectronic devices.
These optoelectronic devices can be used in a variety of applications.
This invention relates to the field of optoelectronic devices.
Optoelectronic devices exist that allow combs of frequencies to be generated.
High contrast gratings have been employed in many optoelectronic devices.
Photosensitive optoelectronic devices convert electromagnetic radiation into electricity.
It will facilitate integration of biological structures as components of optoelectronic devices.
Breakthrough in optoelectronic devices.
Outcomes point the way to opportunities to increase efficiencies in optoelectronic devices.
And optoelectronic devices.
See also
The optoelectronic circuit includes one or more optoelectronic devices.
The general characteristics of optoelectronic devices and their production are well known.
This work is being directed at the development of novel optoelectronic devices.
The invention also relates to optoelectronic devices using such coatings.
Potential applications include molecular nanowires in electronic and optoelectronic devices.
It is a further object to provide optoelectronic devices having improved output and efficiency.
The optically pure derivatives can be used in optical or optoelectronic devices.
Photosensitive optoelectronic devices convert electromagnetic radiation into an electrical signal or electricity.
There is therefore a need for a new approach to developing optoelectronic devices.
Further development should lead to novel optoelectronic devices with exciting new functionalities.
Project findings will pave the way to developing pioneering optoelectronic devices.
The field of the invention is that of optoelectronic devices for generation of a frequency comb.
The method thus described can be applied to different types of optoelectronic devices.
Different elementary optoelectronic devices are then made on one and the same substrate.
Such microwires or nanowires enable to manufacture semiconductor devices such as optoelectronic devices.
The organic photosensitive optoelectronic devices of the present invention may function as photodetectors.
Microwires or nanowires comprising a semiconductor material particularly enable to manufacture optoelectronic devices.
The invention also relates to electronic or optoelectronic devices comprising such layers.
Optoelectronic devices of the present invention comprise at least one photosensitive organic layer.
A recent theory of localization in disordered systems is applied to nitride materials and optoelectronic devices.
Optical switches are optoelectronic devices which can be integrated with integrated or discrete microelectronic circuits.
In particular we applied printable serigraphic and inkjet technologies to produce electronic and optoelectronic devices.
It should also impact other electronic and optoelectronic devices that utilize colloidal nanocrystals.
Optoelectronic devices of the present invention comprise a second electrode surrounding the organic layer.
The invention relates to the field of optoelectronic devices equipped with light concentration systems.
The surface passivation becomes a key step for its integration in attractive optoelectronic devices.
In contemporary society the dependence on optoelectronic devices for countless daily applications has increased gradually.
This has applications in miniaturized chemical sensors or for heat management in nanoscale optoelectronic devices.
The double heterostructure is a very useful structure in optoelectronic devices and has interesting electronic properties.
The fibres and optoelectronic devices can be passively aligned using the assembly thus obtained.
The present invention generally relates to methods of manufacturing optoelectronic devices based on semiconductor materials.
Optoelectronic devices of the present invention comprise a radiation transmissive first electrode surrounding the fiber core.
That could help bring down the cost of manufacturing solar cells and other optoelectronic devices.
LEDs are solid state optoelectronic devices that produce light in response to electrical inputs.
These findings were important for designing plasmonic CQD optoelectronic devices.
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