Well, maybe dystopian SciFi turns out to be not as much fiction as we had hoped ;-). Ubiquitous surveillance together with artificial intelligence are probably one of the most powerful tools for authoritarian regimes you can imagine. They already have the physical power to hurt their opponents, now they also know exactly where they need to apply this power to keep themselves at the helm and quash any resistance befor…
Not only that, more fuel for the "microchips in vaccines"... ugh.
Flying microchips size of a sand grain could be used for population surveilance
81–90 of 109 posts
Re: Flying microchips size of a sand grain could be used for population surveilance
#82These devices don't even have space for an antenna (limited by physical size). The power required by the sensors is dwarfed by RF transmit. The current challenges of powering a radio device with an MPU at this size are far too great for this to be useful. Unless there is a breakthrough in radio physics, drones need to be a certain size that is much larger than this. Unless they plan to release a billion of these, swe…
Doesn't that ring-like structure in the center look like an antenna? I suppose it could just be traces between the 'lobes' of the circuit on each wing. That said, it does seem like a tall order to pack in useful sensors and some way to transmit into tiny particles like these.
Re: Flying microchips size of a sand grain could be used for population surveilance
#83Before jumping to conclusions, note that the microcontroller equipped flyer is reported to be about 5cm in diameter. Not exactly size of sand grain. From the article: > Mechanical simulation results and photograph of a 3D IoT macroflier with a circuit to measure fine dust pollution through the light dosimetry method. The weight of the IoT flier is 19.7mg (d≈5cm), with payload 198mg (Supplementary Fig.23
Edit: screenshot https://ibb.co/sKw7tqt
I thought posting emoji wasnt possible on hn?! This one seems acceptable:
Re: Flying microchips size of a sand grain could be used for population surveilance
#84Before jumping to conclusions, note that the microcontroller equipped flyer is reported to be about 5cm in diameter. Not exactly size of sand grain. From the article: > Mechanical simulation results and photograph of a 3D IoT macroflier with a circuit to measure fine dust pollution through the light dosimetry method. The weight of the IoT flier is 19.7mg (d≈5cm), with payload 198mg (Supplementary Fig.23
Amazing! Your comment renders a couple of train emoji on my device! Edit: screenshot https://ibb.co/sKw7tqt I thought posting emoji wasnt possible on hn?! This one seems acceptable:
Re: Flying microchips size of a sand grain could be used for population surveilance
#85Before jumping to conclusions, note that the microcontroller equipped flyer is reported to be about 5cm in diameter. Not exactly size of sand grain. From the article: > Mechanical simulation results and photograph of a 3D IoT macroflier with a circuit to measure fine dust pollution through the light dosimetry method. The weight of the IoT flier is 19.7mg (d≈5cm), with payload 198mg (Supplementary Fig.23
Re: Flying microchips size of a sand grain could be used for population surveilance
#86The complete lack of awareness in this whole endeavor is absolutely gobsmacking. They want to manufacture these things by the billions and then throw them into the wind with no plan to collect them and dispose of them afterwards (because that'd basically be impossible)? Uh, these things aren't monitoring for contamination, they are contamination.
Re: Flying microchips size of a sand grain could be used for population surveilance
#87Earlier quoted context omitted.
Amazing! Your comment renders a couple of train emoji on my device! Edit: screenshot https://ibb.co/sKw7tqt I thought posting emoji wasnt possible on hn?! This one seems acceptable:
Fun. Apparently HN does not filter private area unicode, and nature.com reader for some reason includes those in copypaste...
Re: Flying microchips size of a sand grain could be used for population surveilance
#88Re: Flying microchips size of a sand grain could be used for population surveilance
#89These devices don't even have space for an antenna (limited by physical size). The power required by the sensors is dwarfed by RF transmit. The current challenges of powering a radio device with an MPU at this size are far too great for this to be useful. Unless there is a breakthrough in radio physics, drones need to be a certain size that is much larger than this. Unless they plan to release a billion of these, swe…
So the title "Flying microchips size of sand grain" is just plain wrong here :(
Re: Flying microchips size of a sand grain could be used for population surveilance
#90Earlier quoted context omitted.
It sounds like you are having difficulty drawing a distinction in your mind between the journalist who did the reporting on the story and the art department that had to come up with something that conveys "small chip" to an average reader without having actual photos. Most stories about COVID include inaccurate artistic renditions of the virus, but that does not discredit the reporting.
There's a big difference between a physical hardware attack (that is fully unspecified and fully FUD), and an actual threat to IT departments (ex: insecure BMC that needs to be isolated into its own VLAN). The minute you start thinking about "how do I protect my company's computers from this attack?" is the minute the Bloomberg article falls apart. Asking for further details just resulted in Bloomberg clamming up and…
And BMC networks are extremely high value targets. Tons of exploits from running ancient code, and DMA access to the the rest of the system, often without even an IOMMU in the way.