It’s a small chip sensor, but it’s made of a material ten times more resistant than Kevlar

The properties of this new component have implications for many future technologies.

Recreating artificial intelligence for a future processor.

If you have a disturbed mind, you must have heard conspiracy theories regarding microchips, among other crazy stories. However, on this occasion we have to introduce you A new type of materialwhich turned out to be very resistance And with the characteristics that allow him to integrate into it Ultra-sensitive sensors Processors are the basic components of any computer.

Make way, it’s silicon carbide’s turn

Scientists from the Technical University of Delft published a The study is in the journal Advanced Materials With which they illustrate the interesting properties of a material known as Amorphous silicon carbide.

Don’t worry. They don’t insult his latest discovery. In the scientific field, A Amorphous substance He is the one who has it The molecules are not arranged in a specific structure. An example of an amorphous material would be glass.

But back to the study in question, this was discovered material He is Very resistant This, in addition, has huge potential when it comes to isolating vibrations in the processor. This is why they identified amorphous silicon carbide as a very tough material Promising to manufacture Ultra-sensitive sensors.

how Evidence of its amazing resistanceThe team of scientists confirms that Strain break Of the material is 10 gigapascals, which means you will have to Extend it beyond the length of ten cars Medium sized until broken.

he The element that provides real resistance In these materials are Nanowiresalthough A real revolution Discovery comes Scalability Of matter. We are talking about how processor chips are created thanks to the possibility of manufacturing large sheets of amorphous silicon carbide. Richard Nortje, principal investigator Confirmed in EurekAlert media Which:

With the advent of amorphous silicon carbide, we are at the threshold of microchip research filled with technological possibilities.

Through this study, we can say that the next technological generation can make a huge leap. Whether we’re talking about tools space explorationof creation Solar cells Or techniques DNA sequencing, Amorphous silicon carbide shows promise. Harder than diamond or graphene, but can be manufactured on a large scale.

Myrtle Frost

"Reader. Evil problem solver. Typical analyst. Unapologetic internet ninja."

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