I suspect this one is very similar hardware and a slightly better deal if you give up the cool factor of Framework. Although I don't really know.
Anyone compared them head-to-head?
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I suspect this one is very similar hardware and a slightly better deal if you give up the cool factor of Framework. Although I don't really know.
Anyone compared them head-to-head?
Earlier quoted context omitted.
Compression Attached Memory Module (CAMM) tries to be a middle-term solution for that, by reducing how crappy your average RAM socket is to latency and signal integrity issues. But, at this point, I can see CAMM delivered memory being reduced to a sort of slower, "CXL.mem" device.
Seriously though, Would desoldering the sockets help? Why are the sockets bad?
This sort-of-interview of Nirav Patel (ceo of framework) explains in a bit more detail: https://www.youtube.com/watch?v=-lErGZZgUbY
Basically, they need to use LPDDR5X memory, which isn't available in socketed form, because of signal integrity reasons.
Which means you won't see an improvement if you solder your ram directly, I think mostly because your home soldering job will suffer signal integrity issues, but also because your RAM isn't LPCAMM and isn't spread across a 256 bit bus.
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CUDA isn't really used for new code. Its used for legacy codebases. In the LLM world, you really only see CUDA being used with Triton and/or PyTorch consumers that haven't moved onto better pastures (mainly because they only know Python and aren't actually programmers). That said, AMD can run most CUDA code through ROCm, and AMD officially supports Triton and PyTorch, so even the academics have a way out of Nvidia he…
If you're not doing machine code by hand, you're not a programmer
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I have been continuously baffled by the people that think that soldered on RAM is somehow "throwaway". My last desktop build is eight years old and I have never upgraded the ram. Never will. My next build will have an entirely new motherboard, ram, and GPU, and the last set will end up at the ewaste recycler, because who could I find that wants that old hardware? Soldered RAM, CPU, and GPU, that give space benefits a…
>I have been continuously baffled by the people that think that soldered on RAM is somehow "throwaway" One of the primary objections to soldered RAM was/is the cost to purchase. As the likes of Apple priced Ram upgrade at a hefty premium to retail prices.
My current laptop (ASUS GA503QM) had 8GB soldered and 8GB socketed. I didn’t want to go for the 16+16 model because it was way more expensive due to shifting from a decent GPU to a top-of-the-line GPU, and a more-expensive-but-barely-faster CPU. (I would have preferred it with no dedicated GPU—it would have been a couple of hundred USD cheaper, a little lighter, probably more reliable, less fiddly, and have supported two external displays under Linux (which I’ve never managed, even with nvidia drivers); but at the time no one was selling a high-DPI laptop with a Ryzen 5800H or similar without dedicated graphics.) So after some time I got a 32GB stick and now I have 40GB of RAM. And I gave my sister the 8GB stick to replace a 4GB stick in her laptop, and that improved it significantly for her.
I like Framework and own one of their laptops. But the desktop seems more a triumph of gimmicky marketing than a desktop that's meaningfully different. And, it seems significantly overpriced.
It's taking a newly released mobile- and mini-PC-focused platform that's usually paired with proprietary technology, and building something that's as close as possible to a standard desktop with it. Seems very much in the Framework spirit once you account for that side of it.
For desktop you already have thousands of choices though and reparability, assuming its not some proprietary Dell/HP desktop, is already as good as it gets without breaking out your soldering iron.
That said, they'll know more about the market demand than I do and another option won't hurt :)
Earlier quoted context omitted.
It's taking a newly released mobile- and mini-PC-focused platform that's usually paired with proprietary technology, and building something that's as close as possible to a standard desktop with it. Seems very much in the Framework spirit once you account for that side of it.
Right, but why go with mobile at all? I get the laptops. For desktop you already have thousands of choices though and reparability, assuming its not some proprietary Dell/HP desktop, is already as good as it gets without breaking out your soldering iron. That said, they'll know more about the market demand than I do and another option won't hurt :)
Earlier quoted context omitted.
Right, but why go with mobile at all? I get the laptops. For desktop you already have thousands of choices though and reparability, assuming its not some proprietary Dell/HP desktop, is already as good as it gets without breaking out your soldering iron. That said, they'll know more about the market demand than I do and another option won't hurt :)
Supporting OSS and repairable hardware?
From the product page I don't see how that mainboard is more repairable than a typical ITX one though. As far as I can tell, you also cannot change the CPU on it so even less than a typical desktop mainboard.
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Right, but why go with mobile at all? I get the laptops. For desktop you already have thousands of choices though and reparability, assuming its not some proprietary Dell/HP desktop, is already as good as it gets without breaking out your soldering iron. That said, they'll know more about the market demand than I do and another option won't hurt :)
Supporting OSS and repairable hardware?
The only selling point is the form factor and a massive amount of GPU memory, but a dGPU offers more raw compute.
Earlier quoted context omitted.
It's taking a newly released mobile- and mini-PC-focused platform that's usually paired with proprietary technology, and building something that's as close as possible to a standard desktop with it. Seems very much in the Framework spirit once you account for that side of it.
Right, but why go with mobile at all? I get the laptops. For desktop you already have thousands of choices though and reparability, assuming its not some proprietary Dell/HP desktop, is already as good as it gets without breaking out your soldering iron. That said, they'll know more about the market demand than I do and another option won't hurt :)