Earlier quoted context omitted.
Example 1, if we're referring to the likes of Siri and Alexa isn't thanks to improvements in personal computer technology - said platforms send your speech recording off to a massive datacenter for processing, no need for 10Ghz processors there. Example 2 requires the use of depth-sensing and heat-sensitive cameras to avoid trivial "show a photo of an authorized user" attacks - that's not really CPU-dependent either.
Android has had face unlock built in for some time. A naive way it mitigates the "unlock with photo" vulnerability is an option requiring you to blink. Not as robust as 3d, heat sensitive cameras but it's at least not a trivial as showing a photo to beat it. The impressive amount of processing power available on many smartphones today certainly contributes to this being a practical unlock method.
10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
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Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#72Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#73[1] https://www.amazon.com/Intel-Xeon-2620-Processor-BX80621E526...
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#74Anecdotally, I've heard that Everquest 2 (released 2004) is still impossible to run at 60FPS with all graphical settings maxed; the devs attempted to future-proof it with speculative high-end graphics options, but they optimized for high-GHz processors which never arrived.
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#75So, what was the reason CPUs could not scale vertically (higher frequency)? Temperature? Stability?
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#76So, what was the reason CPUs could not scale vertically (higher frequency)? Temperature? Stability?
Because of the special relativity theory nothing including electrical current can transmit information faster than the speed of light (c = 3*10^10 cm/s). So if maximum size dimension of your CPU is say 2cm (I'm ignoring that they actually can have multiple smaller cores), then the maximum physically achievable frequency is upper bounded by size/c = 15 GHz.
Although it has not been reached yet, it has the same order of magnitude as the record frequencies achieved by overclockers using liquid nitrogen cooling (something a little below 9 GHz). Also it shows that reducing transistor size and as a consequence overall CPU size increases maximum physically allowed frequency.
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#77I'm surprised Intel made this bold claim so late. When I was in college in the late 90's, my computer architecture prof said the physics problems get really hard starting around 4 to 8 Ghz. He said it as it was common knowledge in the industry.
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#78Ah yes, the 10Ghz CPU. Now if you run 6 cores at 2.5Ghz each[1] is the 15Ghz? By the end of 2001 it was clear that Intel really needed to rethink things. And ever since that time we've had a series of "linear projections" which have come up short (process nodes, power levels, cpu power). Not to say we don't have some pretty awesome toys to play with that can do a lot more than machines of a decade ago could do, but e…
turns out, flirting with women is more fulfilling than that after all
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#79It's interesting that while we aren't at 10 GHz quite yet, the functionality that was mentioned in the article [1][2] is here and works even on budget smartphones. -- [1] Imagine being able to speak normally with your computer as you would a secretary sitting next to you and have your computer accurately and quickly take notes from your speech. [2] Imagine logging onto your computer not via a user name and a password…
Is this really the experience of voice recognition people have? I can't get Siri to reliably create appointments... takes about 3 tries for the voice recognition to work correctly.
Re: 10GHz at under 1V by 2005 - The future of Intel’s manufacturing processes [2000]
#80 - 10 GHz
- long pipelines, I think we're currently at around 14 stages, which is more than P6 but less than Netburst (Pentium 4)
- EUV lithography is still not a thing at 10 nm
Die I miss any important failed predictions?