Examples of 'optoelectronic component' in a sentence

Meaning of "optoelectronic component"

optoelectronic component - An optoelectronic component is a device that can interact with both light (optical) and electricity (electronic). These components are essential in various technologies such as solar cells, light sensors, LEDs, and optical communication systems

How to use "optoelectronic component" in a sentence

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optoelectronic component
Said optoelectronic component also acts as an optical gate.
It may also be a question of an optoelectronic component.
Bidirectional optoelectronic component operating as an optical coupling device.
Development of a computer aided assembly method for an optoelectronic component.
This allows an optoelectronic component of small dimensions to be made.
Encapsulation of an organic optoelectronic component.
Optoelectronic component with curved waveguide with inwardly sloped sides.
Electronic device including an organic optoelectronic component and an organic transistor.
This optoelectronic component comprises an emitting electroluminescent diode and a receiving photodiode.
Device for the alignment of an optical fiber and an optoelectronic component.
The optoelectronic component of claim 1, wherein it constitutes a semiconductor diode.
Thus problems relative to the aperture angle of the optoelectronic component are overcome.
The optoelectronic component of claim 1, wherein it constitutes an electro optical modulator.
Method of coupling an optical fiber to an optoelectronic component and connector devices obtained thereby.
Fixing the fiber to the substrate to make an optical connection to the optoelectronic component.

See also

In the present embodiment, the optoelectronic component is a photodiode.
Process and device for connection / disconnection of an optical fiber with an optoelectronic component.
Electronics, electronic and optoelectronic component cleaning.
The use of an optoelectronic component according to claim 1 for implementing an optoelectronic switch.
The support could be an electrical circuit with the optoelectronic component connecting into it.
The making of an optoelectronic component dicates a search for two-dimensional confinement.
It could obviously be an electronic, optical or optoelectronic component.
In the invention, each optoelectronic component may be a vertical cavity surface emitting laser.
The method as claimed in claim 1, wherein the electronic component comprises an optoelectronic component.
Advantageously, the substrate of the optoelectronic component is a flexible substrate.
A set of electronic components which have electrical connection terminals including at least one optoelectronic component 8.
For example, a laser type optoelectronic component will be obtained by the epitaxial growth,.
The connector device 1 comprises a fiber support 5 positioned adjacent to optoelectronic component 2.
Small number of components ( one optoelectronic component alone provides for the optical modulation and detection ).
In effect, the coating resin 30 constitutes a reverse moulding of the optoelectronic component or chip.
The type of optoelectronic component in the present invention is illustrated in FIG . 1.
The sensor as claimed in claim 1, wherein said optoelectronic component is a phototransistor.
The optoelectronic component may be a laser emitter such as a VCSEL, or a photodetector such as a photodiode.
The alternate dot / dash lines show an optoelectronic component 430 mounted on the support.
An optoelectronic component 6 is electrically connected to the integrated circuit 2 via microbeads of solder 8.
In a first stage the optoelectronic component 10 is manufactured.
FIG . 3 shows a three-dimensional view of a first embodiment of an optoelectronic component.
The second optoelectronic component 201 is a photodiode for example.
FIG . 4 shows a three-dimensional view of a second embodiment of the optoelectronic component.
The optoelectronic component of claim 1, wherein it constitutes a solid-state optical amplifier.
The microspheres 113 are then deposited on the metallized surfaces of the optoelectronic component 101.
The optoelectronic component of claim 1, wherein it constitutes a Mach-Zehnder type interferometer.
Only the preparation of the optoelectronic component 10 shown in FIG . 2 differs.
This optoelectronic component includes a photoreceptor circuit mounted on a first portion 10 a of a flexible substrate 10.
We obtain an optoelectronic component 69.
Another optoelectronic component 10 is electrically connected to the integrated circuit 4 via microbeads of solder 12.
The chip 24 comprises an optoelectronic component 48 such as a generator of a laser beam.
The optoelectronic component shown in FIG . 4 is mounted in a standard transistor box, of the T018 type.
The first optoelectronic component 101 is a VCSEL for example arranged as in FIG . 8.

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