Earlier quoted context omitted.
> I wouldn't mind being able to buy a computer and not have to worry about upgrading it for 10 years (I think we're pretty close to this point already). I used an i5-2500k for 7 years. Only retired it because the rest of the computer was falling apart and I had already had too many computers. I think that a CPU built in $CURRENT_YEAR will be completely usable in 10 years.
Memory and graphics are the limiting factors these days moreso than CPU.
Intel Stockpiling 10nm Chips
91–100 of 131 posts
Re: Intel Stockpiling 10nm Chips
#92Earlier quoted context omitted.
> I wouldn't mind being able to buy a computer and not have to worry about upgrading it for 10 years (I think we're pretty close to this point already). Depending on your needs, we're been there for at least 10 years. I don't expect to have to upgrade (not counting increasing memory or storage as "ugrading") or replace any of the systems I own right now until they're over 10 years old. About half of my current machin…
But isn't that just the result of lack of hardware gains limiting new software application areas? If single threaded performance had been doubling every two years for the past 10 years like it did historically, then there would likely be new applications available that made use of that 30x performance gains to deliver functionality that would be popular enough that it would reinvigorate the upgrade process. It seems…
It’s no accident that the biggest advances in the last ten years have been in areas not limited by single thread performance; machine learning & cloud computing.
Re: Intel Stockpiling 10nm Chips
#93Earlier quoted context omitted.
But at the same time, I'm considering replacing my 2015 HP laptop because my "A" key stopped working, and the cost to replace the keyboard is 25% the cost of a new laptop, which I'll need anyway in another year or two even if the keyboard were fixed.
Well I don't know what's up with your model, but I can get a replacement keyboard for my seven year old laptop for $25.
However the popular "ultra" books and similar have to integrate more heavily to get close to 1". Even fans become hard to replace. Often there's no dimms (so you can't replace or add ram), even storage can be on the motherboard.
They are close to disposable unfortunately.
Re: Intel Stockpiling 10nm Chips
#94Re: Intel Stockpiling 10nm Chips
#95Earlier quoted context omitted.
My impression is that they know moore's gravy train is over and they're scrambling to figure out new tricks to allow them to sell a new generation of processors every year. Personally, while I'm a little disappointed that processors 20 years from now might not be 4+ orders of magnitude faster than the one I have now, I wouldn't mind being able to buy a computer and not have to worry about upgrading it for 10 years (I…
New? Using epoxy to make batteries hard to replace and other tweaks to make other unreliable parts hard to replace. Popular recent choices are keyboards and backlights.
Re: Intel Stockpiling 10nm Chips
#96What are Intel and other semiconductors planning to pivot to when they can no longer reduce process size at a reasonable pace (i.e. now)? Is there a plan, or is it an existential wall?
Re: Intel Stockpiling 10nm Chips
#97What are Intel and other semiconductors planning to pivot to when they can no longer reduce process size at a reasonable pace (i.e. now)? Is there a plan, or is it an existential wall?
Re: Intel Stockpiling 10nm Chips
#98Earlier quoted context omitted.
My impression is that they know moore's gravy train is over and they're scrambling to figure out new tricks to allow them to sell a new generation of processors every year. Personally, while I'm a little disappointed that processors 20 years from now might not be 4+ orders of magnitude faster than the one I have now, I wouldn't mind being able to buy a computer and not have to worry about upgrading it for 10 years (I…
In 2010, you could've bought an Intel i7 980X for $1,000 (why would you? B-but still...) with six cores @ 3.33 GHz and easily OCed to 4 GHz. I think we're a year or two away before beefy, AAA games begin demanding 4 GHz minimum, and new CPUs barely offer over 4 GHz clocks as it is, so... we've already been there! CPU power's been flatlined, especially when you compare it to GPU power.
Re: Intel Stockpiling 10nm Chips
#99Earlier quoted context omitted.
My understanding is that Intel is doing OK with smaller die size 10nm (Cannon Lake-U / Ice Lake-U) for Ultrabooks. But for bigger dies such as HEDT or server CPUs, the Ice Lake SP is still pretty much in the air with Intel's vague timeline of "sooner than expected end of 2020" claim.
Isn't that “Ultrabook” part the one with the broken GPU that's shipping only in an obscure variant of a cheap Chinese education-only laptop?
Re: Intel Stockpiling 10nm Chips
#100Earlier quoted context omitted.
My impression is that they know moore's gravy train is over and they're scrambling to figure out new tricks to allow them to sell a new generation of processors every year. Personally, while I'm a little disappointed that processors 20 years from now might not be 4+ orders of magnitude faster than the one I have now, I wouldn't mind being able to buy a computer and not have to worry about upgrading it for 10 years (I…
> not have to worry about upgrading it for 10 years (I think we're pretty close to this point already I think we're already there. Ivy Bridge machines from 2012 can still get the job done today if paired with a solid complement of RAM and an SSD. Graphics is really the only area where those older machines are starting to be a limfac, as their inability to drive the latest 4K+ displays is starting to be more of an iss…
I kept upgrading GPU and seeing only 20-30% CPU use while gaming. It was fine.
Some changes to how we build these things would be nice.
The heavily integrated motherboard model should die. A PCI slot on my old board made the whole system flake.
Discrete components I can stack are more my dream design. If my old CPU had been a sealed unit of some kind with a physical connector to the GPU, power, and such, and I could have simply swapped out the faulty port expansion “module”, that would be slick.
But one PCI port flaking means I have to bail on an otherwise perfectly functional CPU, RAM, PSU, and cooling kit.