Examples of 'microbattery' in a sentence

Meaning of "microbattery"

microbattery (noun) - a small-sized battery designed to power miniature electronic devices such as hearing aids, watches, and calculators. Microbatteries are known for their compact size and long-lasting power supply, making them ideal for portable gadgets and medical instruments

How to use "microbattery" in a sentence

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microbattery
Microbattery and method for manufacturing a microbattery.
Must be powered by some sort of new microbattery.
Lithium microbattery and fabrication method thereof.
Method for producing a lithium microbattery.
Microbattery and method for manufacturing same.
Packaging of the microbattery is therefore total.
A microbattery including a layer of solid electrolyte.
This preferred embodiment comprises formation of the microbattery.
Such a microbattery further comprises metal current collectors.
Method for fabricating such a microbattery is also provided.
The microbattery is preferably a lithium microbattery.
The encapsulation method can be performed on a single microbattery.
Lithium microbattery fabrication method.
The invention also relates to a fabrication method of such a microbattery.
Other microbattery architectures with a vertical connection have been proposed.

See also

Such phenomena do not occur in a microbattery comprising a solid electrolyte.
Lithium microbattery comprising an encapsulating layer and fabrication method.
The invention first relates to a single microbattery encapsulation method.
Lithium microbattery provided with an electronically conductive packaging layer.
This contact results in a decrease of the performances of the microbattery.
This microbattery comprises a metallic current collector as negative electrode.
The invention can advantageously be used to manufacture a battery or a microbattery.
Three major microbattery architecture configurations are described in the prior art.
The second layer results in a sealing of the single microbattery.
It will enable microbattery technologies to be improved and hence enhance performance.
The invention also relates to a manufacturing method of such a microbattery.
It also enables deformations of the microbattery on charging and discharging to be absorbed.
This patterning technique does not guarantee lateral protection of the microbattery.
Recent works have proposed new microbattery configurations to palliate these shortcomings.
One packaging solution consists in depositing thin layers on the microbattery.
Microbattery on silicon.
The performances and the lifetime of the microbattery are thus increased.
The microbattery is preferably of a type which can be manufactured integrated in a semiconductor chip.
The first layer results in an electrical insulation of the single microbattery.
Electric connection of the microbattery on the front surface of the substrate is further facilitated.
The lithium deposit is then activated when charging of the microbattery is performed.
The invention relates to a lithium microbattery formed by a stack of solid thin layers on a substrate.
Method for patterning a polymer layer and method for packaging a microbattery.
The resistance and impedance of a microbattery device may also be important to design considerations.
This phenomenon in the long run leads to a loss of the microbattery performances.
Three generations of chips integrating a microbattery have been developed within the context of the project.
This layer may also cover the substrate surface opposite to the microbattery.
Such a microbattery further comprises metallic current collectors made from platinum or tungsten for example.
The method described above enables a solid electrolyte layer to be patterned to form a microbattery.
Different microbattery structures can be produced,.
They at least partially form the respectively cathodic and anodic current collectors of the microbattery.
A lithium microbattery stack comprises in particular,.
Forming a metal layer extending from the current collectors to the lateral sides of the microbattery.
However, a lithium microbattery is very sensitive to air and to moisture.
The dimensions of the first and second interfaces are identical and characterize the symmetric microbattery.

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