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* smaller components - e.g. the OR gate (actual iron-atom gate counts approx. 3nm), these kind of components can be smaller than today's semiconductors | * smaller components - e.g. the OR gate (actual iron-atom gate counts approx. 3nm), these kind of components can be smaller than today's semiconductors | ||
* non-volatile memory - '''information is not lost when power is turned off''' because they store data magnetically (this means the boot process of computers would also become significantly faster) | * non-volatile memory - '''information is not lost when power is turned off''' because they store data magnetically (this means the boot process of computers would also become significantly faster) | ||
* and nanospintronics would also allow hybrid components for calculation and memory (these information were adapted from [ | * and nanospintronics would also allow hybrid components for calculation and memory (these information were adapted from [https://idw-online.de/pages/de/attachmentdata8851.pdf here]) | ||
That's the point which is especially interesting, because of the analogy to biological ''components''. Also, biological brains use one type of ''component'' for two things - the neurons store '''and''' process information. | That's the point which is especially interesting, because of the analogy to biological ''components''. Also, biological brains use one type of ''component'' for two things - the neurons store '''and''' process information. |