An inside look at the custom CPUs in Tesla's Dojo Supercomputer
11–20 of 132 posts
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#12Is this power from the top method something other people do?
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#13Now assume that Moore's law stays healthy and in a few decades we're carrying around dojo-equivalent smart phones. Or implants. What do our apps do with all that compute? Detailed convincing AR, accurate real-time translation, identify almost any object in sight, turing-test passing answering machine. We'll be carrying around neural-net training hardware that is different than the stuff between our ears, often worse…
Performance per watt is not improving that much, nor is feature size. You'll probably never be carrying around a supercomputer with this many FLOPS.
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#14Earlier quoted context omitted.
Moore’s law is quite dead. Transistor density isn’t doubling. We’re still getting speed increases due to architectural improvements, but transistor density is capping out because thermals are a problem. That’s why you see these massive wafer designs and they’re not shrinking.
> Transistor density isn’t doubling. It pretty much continues to double: https://en.m.wikipedia.org/wiki/Transistor_count#/media/File...
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#15Now assume that Moore's law stays healthy and in a few decades we're carrying around dojo-equivalent smart phones. Or implants. What do our apps do with all that compute? Detailed convincing AR, accurate real-time translation, identify almost any object in sight, turing-test passing answering machine. We'll be carrying around neural-net training hardware that is different than the stuff between our ears, often worse…
Moore’s law is quite dead. Transistor density isn’t doubling. We’re still getting speed increases due to architectural improvements, but transistor density is capping out because thermals are a problem. That’s why you see these massive wafer designs and they’re not shrinking.
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#16Insane, truly insane. Meanwhile laptop CPUs, with the notable exception of M1, are impossible to cool.
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#17Now assume that Moore's law stays healthy and in a few decades we're carrying around dojo-equivalent smart phones. Or implants. What do our apps do with all that compute? Detailed convincing AR, accurate real-time translation, identify almost any object in sight, turing-test passing answering machine. We'll be carrying around neural-net training hardware that is different than the stuff between our ears, often worse…
I wish I had your optimism. All I expect are better ways to deliver targeted advertising.
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#18Now assume that Moore's law stays healthy and in a few decades we're carrying around dojo-equivalent smart phones. Or implants. What do our apps do with all that compute? Detailed convincing AR, accurate real-time translation, identify almost any object in sight, turing-test passing answering machine. We'll be carrying around neural-net training hardware that is different than the stuff between our ears, often worse…
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Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#19Now assume that Moore's law stays healthy and in a few decades we're carrying around dojo-equivalent smart phones. Or implants. What do our apps do with all that compute? Detailed convincing AR, accurate real-time translation, identify almost any object in sight, turing-test passing answering machine. We'll be carrying around neural-net training hardware that is different than the stuff between our ears, often worse…
Moore’s law is quite dead. Transistor density isn’t doubling. We’re still getting speed increases due to architectural improvements, but transistor density is capping out because thermals are a problem. That’s why you see these massive wafer designs and they’re not shrinking.
Re: An inside look at the custom CPUs in Tesla's Dojo Supercomputer
#20Earlier quoted context omitted.
Performance per watt is not improving that much, nor is feature size. You'll probably never be carrying around a supercomputer with this many FLOPS.
Even with reversible computing?