Given the cooling requirements, I suppose it would create completely impassable rift between datacenter computing and other kinds. Imagine how programming and operating systems might look in a world where processing power is 80x cheaper. Considering that "data centers alone consume 2% of world's enegy", I think it's worth it.
New superconductor microprocessor yields a substantial boost in efficiency
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Re: New superconductor microprocessor yields a substantial boost in efficiency
#42Re: New superconductor microprocessor yields a substantial boost in efficiency
#43Given the cooling requirements, I suppose it would create completely impassable rift between datacenter computing and other kinds. Imagine how programming and operating systems might look in a world where processing power is 80x cheaper. Considering that "data centers alone consume 2% of world's enegy", I think it's worth it.
>Imagine how programming and operating systems might look in a world where processing power is 80x cheaper. So like 2009 compared to 2021? Based on that, I'd say even more inefficient webshit.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#44Earlier quoted context omitted.
Solid state physics begets both cryogenic technology and cryocooling technology. I wouldn't write off the possibility of making an extremely small cryocooler quite yet. Maybe a pile of solid state heat pumps could do it.
This is true, but the fact that heat absorption scales with the surface area is pretty brutal for tiny cooled objects.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#45If it ever gets to home computing, it will get to data center computing far sooner. What does a world look like where data center computing is roughly 100x cheaper than home computing?
Re: New superconductor microprocessor yields a substantial boost in efficiency
#46Earlier quoted context omitted.
Solid state physics begets both cryogenic technology and cryocooling technology. I wouldn't write off the possibility of making an extremely small cryocooler quite yet. Maybe a pile of solid state heat pumps could do it.
This is true, but the fact that heat absorption scales with the surface area is pretty brutal for tiny cooled objects.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#47Earlier quoted context omitted.
Its a bit cold in space. But actually its really difficult to cool down things in space as there is nothing around you to transfer heat to.
I'm ignorant of the specific physics, but what if you got it cold before you sent it into a vacuum, and then shielded it from external radiation? Surely due to the massively reduced power usage it would be easier to keep it cool relative to traditional compute
So no, it probably wouldn't be any easier in space.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#48That would save money on the computing power as well as the mining, transportation of raw materials, refining, transportation of refined materials, manufacturing, transportation of finished goods and the whole retail chain.
Unless we achieve room-temperature semiconducting processors, this will only benefit data centres, most of whose power is used to sell stuff. Does anyone actually think that the savings will be passed on to the consumer or that business won't immediately eat up the savings by using eighty times more processing power?
Hey, now we can do eighty times more marketing for the same price!
Re: New superconductor microprocessor yields a substantial boost in efficiency
#49If it ever gets to home computing, it will get to data center computing far sooner. What does a world look like where data center computing is roughly 100x cheaper than home computing?
Someone, somewhere, will adopt a Ting-type model where you pay for your compute per cycle, or per trillion cycles or whatever, with a small connection fee per month. It'll be broken down into some kind of easy-to-understand gibberish bullshit for the normies.
In short, it'll create another circle of Hell for everyone - at least initially.