5 ms·
> It has two layers Where did you get that from? Pretty sure it's a single planar set of transistors. Those transistors are manufactured using multiple layers
by gchadwick 1y ago
> It has two layers
Where did you get that from? Pretty sure it's a single planar set of transistors. Those transistors are manufactured using multiple layers of mask.
FinFET transistors are described as 3D or non-planar but crucially this isn't allowing transistor on transistor stacking you've just got the gate structure of the FinFET poking out above the plane of the rest of the transistors.
Silicon on silicon die stacking is a possibility but limits your power and GPUs run very hot so it's not an option for them.
- murderfs 1y agoGPUs are not particularly hot for compute silicon, they just have ridiculously huge dies. Comparing the 5090 to a Core Ultra 285K, the GPU has a 750 mm^2 die compared to the CPU's 243 mm^2, but has a peak power of 575W compared to 250W. The CPU uses 25% more power per area, and that's before considering the fact that consumer CPUs are packaged for user installation, so there's an extra heatspreader on top of the die, whereas GPUs are sold as integrated units, so the heatsink sits directly on top of the die.
- kvemkon 1y ago> consumer CPUs are packaged for user installation I'd say advanced users or skilled staff. 20+ years ago e.g. Athlon XP had a small CPU die in the middle and 4 round spacers in the corners for a proper heatspreader installation. Despite the CPU die wouldn't clock down and go in flames in case of cooler removal during operation. Nowadays with a safer CPU monitoring its temperature, one has to risk to remove the heatspreader and replace it with "special" direct die cooling resulting in either a bit more performance or 15-20 grad lower temperatures or a smaller or a silent cooler. One is free to choose. Sure, even advanced user must take more care working around the naked die. But the technology to make this safer than before could have also matured.
- adrian_b 1y agoHalf a century ago, neither Pentium 4 nor Athlon would go in flames without a cooler, but because they included thermal protection circuits that stop the clock above a certain temperature threshold, which cannot be modified by users. The halting of the clock is invisible for software, except that frequent and/or long clock haltings will lengthen accordingly the execution time of a long task that has spanned over time intervals when the clock has been stopped. The latest CPUs still include such a thermal protection, which is independent of the turbo clock frequency management, which is based on the power and current limits, which can be modified by the user, e.g. for overclocking. Older CPUs, until about the middle of the nineties, could be destroyed by inadequate cooling. This has forced both Intel and AMD to implement thermal protections, to avoid requests for CPU replacements.
- kvemkon 1y agoPerhaps, I've formulated not exact enough. I was remembering what has been demonstrated in the famous video [1] for Athlon 1400 and 1200. Yes, the went not in flame but just in smoke. Back then the user was allowed to install a cooler direct onto the die though AMD CPU had no thermal protection (just thermal diode for emergency power-off the whole system by BIOS?). I have no confirmation for the following but I've considered that the pre-installed and hard and risky to remove the pretty massive heatspreader plate works not only as die physical protection but also as a minimal needed buffer for heat dissipation in case of rapid cooler removal. [1] "What happens when the CPU cooler is removed?" (Tom's Hardware Guide, 2001) https://www.youtube.com/watch?v=y39D4529FM4 https://www.youtube.com/watch?v=y39D4529FM4 https://www.youtube.com/watch?v=UoXRHexGIok https://www.youtube.com/watch?v=UoXRHexGIok P.S. Another rather philosophical question I have since a ventilator (not just some heatspreader) was required for the first time for CPU to operate as advertised. Can one consider that CPUs are actually factory overclocked since then? Even though not to the absolute limit, e.g. Celeron 333A (@66) up to 500 (@100) manually.