In its original form as in "transistors double every two years" it certainly already seems over. Apple silicon is at 5mn today, and Intel claims they'll conquer 3mn by 2030, so even these facts and theoretical statements already don't fit anymore. We'll probably have a couple more innovations and might get to making a transistor out of a single atom (silicon atom is 0.262nm; carbon atom is 0.3). 5nm / (2*2*2*2) =~ 0.…
Ask HN: Is Moore's Law over, or not?
11–20 of 94 posts
Re: Ask HN: Is Moore's Law over, or not?
#12People are starting to move to getting performance improvements by increasing chip sizes and power budgets - part of the reason why GPUs are more expensive than they used to be.
Re: Ask HN: Is Moore's Law over, or not?
#13In its original form as in "transistors double every two years" it certainly already seems over. Apple silicon is at 5mn today, and Intel claims they'll conquer 3mn by 2030, so even these facts and theoretical statements already don't fit anymore. We'll probably have a couple more innovations and might get to making a transistor out of a single atom (silicon atom is 0.262nm; carbon atom is 0.3). 5nm / (2*2*2*2) =~ 0.…
Re: Ask HN: Is Moore's Law over, or not?
#14Transistor is scaling, for now. SRAM is not! TSMC N3E SRAM density is equal to N5 SRAM density. This is something of an inflection point. https://www.tomshardware.com/news/no-sram-scaling-implies-on...
> While there were a great number of interesting papers from both academia and industry, it was the one by TSMC that brought frighteningly bad news: whereas logic is still scaling more-or-less along the historical trendline, SRAM scaling appears to have completely collapsed.
https://fuse.wikichip.org/news/7343/iedm-2022-did-we-just-wi...
Re: Ask HN: Is Moore's Law over, or not?
#15Dead, but we're heading into new a new paradigm of hardware accelerators (encoders, decoders, AI-optimized chips, multi-die GPUs, ...) and new packaging systems (M1 SoC's, GPU Chiplets, ...), all powered by what was previously the big bottleneck, interconnection within these components (AMD's Infinity Fabric, Apple's UltraFusion, ...)
https://en.m.wikipedia.org/wiki/Intel_8087
The problem is memory bandwidth. This is also a place we’ve been to before :)
Re: Ask HN: Is Moore's Law over, or not?
#16Re: Ask HN: Is Moore's Law over, or not?
#17In its original form as in "transistors double every two years" it certainly already seems over. Apple silicon is at 5mn today, and Intel claims they'll conquer 3mn by 2030, so even these facts and theoretical statements already don't fit anymore. We'll probably have a couple more innovations and might get to making a transistor out of a single atom (silicon atom is 0.262nm; carbon atom is 0.3). 5nm / (2*2*2*2) =~ 0.…
"5 nm" does not correspond to any physical dimension, so it is nonsensical to compare to size of atom.
Re: Ask HN: Is Moore's Law over, or not?
#18"AI's Rule: Just as Moore's Law unfolds, the language models might expand, doubling the size and inference capability every [insert timeframe], revolutionizing communication and comprehension in unprecedented ways." (generated by ChatGPT)
[1] "a cliché and phrasal template that can be used and recognized in multiple variants", https://en.wikipedia.org/wiki/Snowclone
Re: Ask HN: Is Moore's Law over, or not?
#19In its original form as in "transistors double every two years" it certainly already seems over. Apple silicon is at 5mn today, and Intel claims they'll conquer 3mn by 2030, so even these facts and theoretical statements already don't fit anymore. We'll probably have a couple more innovations and might get to making a transistor out of a single atom (silicon atom is 0.262nm; carbon atom is 0.3). 5nm / (2*2*2*2) =~ 0.…
"5 nm" does not correspond to any physical dimension, so it is nonsensical to compare to size of atom.
Its a marketing term
Re: Ask HN: Is Moore's Law over, or not?
#20Nvidia thinks that Moore's Law is dead. https://arstechnica.com/gaming/2022/09/do-expensive-nvidia-g... Intel, by contrast, says that Moore's Law is still alive. But Intel is technologically behind, and it is easier to improve when there is someone to learn from, so maybe there is a wall that they haven't yet hit. Regardless, it is a very different law than when I was young, when code just magically got faster each y…