Intel Foundry Services and Arm announce collaboration on SoC design
intel.com
intel.com
If IFS is serious it needs to be fabbing SoC's with Arm CPUs and to be as competitive as possible with TSMC.
Nothing forces IFS to make Arm CPU's that compete with Intel's desktop and server products.
Of course, the two companies have a long history of collaboration including Intel having an Arm architecture license via StrongARM. There is an interesting anecdote from Robin Saxby of Arm about when Steve Jobs phoned him and tried to persuade him to block the sale of StrongARM to Intel but Saxby convinced Jobs otherwise.
Strategic blunder of the century so far?
> There was just one problem: The PC era was about to end. Apple was already working on the iPhone, which would usher in the modern smartphone era. Intel turned down an opportunity to provide the processor for the iPhone, believing that Apple was unlikely to sell enough of them to justify the development costs.
https://www.vox.com/2016/4/20/11463818/intel-iphone-mobile-r...
You say that as if Intel should have known that the iPhone would be an explosive hit. They probably assumed it would be yet another Blackberry competitor, not really a threat to their desktop hegemony.
I honestly think people overlook this aspect of Jobs leadership, basically from the time he returned on Apple he doubled down on mobile computing repeatedly throwing 50% of Apple's marketing budget into the unproven iPod for instance. Why was Jobs able to see the writing on the wall and not Intel? I think Steve Jobs himself said it best:
https://www.youtube.com/watch?v=P4VBqTViEx4
Intel itself was NOT totally blindsided by the mobile revolution. Intel Atom development started in 2004. Intel Atom could have dominated the market. There were Intel Execs pushing Atom. But all the R&D was pumped into the desktop and server business, the quality silicon was reserved for the desktop and server business, Intels execs didn't want these inexpensive chips for what were presumed to be peoples secondary computers to cannibalise its expensive desktop and server chips, and the strategic vision was simply bad. You can apologise for it but the mistake may have doomed the entire business and plenty of companies did not make the same mistake.
Intel wouldn't even exist if they didn't already make such a shift away from the memory market into the microprocessor market firing most of the their company in the process. Intel had leaders with strategic vision and guts back in the day, and the senior leadership simply weren't good enough to commit to mobile when that bridge had to be crossed.
Depends on what you call Atom, but if you mean Atom as it was released then absolutely no, it had exactly zero fighting chance. IIRC first Atoms were Pentium 4 or so fabricated on smaller process and resulting in lower power draw. The only meaningful use for early Atoms was crappy netbooks.
However, it was or could have been an important stepping stone for paving the road towards x86-based low power devices. Remember, it was also a time where linux-on-arm started booming. It could have been an alternative to ARM SoCs, but there were simply too little attractive offerings and Broadcom/Freescale/Ti effectively ate the market
Everyone has rose tinted glasses and short memories when it comes to just how far computers have come in the last 15 years. For reference, netbooks predate iPads by 3 years. They came out about the same time as the first iPhone.
The low power long life computing platform has for the longest time been a dream. Netbooks with 4-8 hour battery existed at the same time that a top of the line laptop would get only 3 hours battery life, a normal consumer grade laptop would top out at 1-2 hours, for a 1/4 of the price.
If you squint hard enough, there is no discernible difference between the aspiration of the netbook platform, and a modern chrome book or iPad with a keyboard, but Intel doesn’t make processors for either platform.
Completely agree here, I call Atom important stepping stone. However, as you mentioned Intel does not make processors for descendant platforms.
As I have elaborated in different comment, I guess the major reason Atom failed was market positioning. They were effectively eaten by ARMs getting more powerful from one end and mobile CPUs getting more power efficient from the other end.
So while I agree that Atom based netbooks helped start the whole mobile compute market, my argument is that market positioning of Atom products meant that they were destined to be replaced. IMO success of Atom required a bit more useful PC-like devices AND high integrity SoCs for appliances.
People also overlook the mobile phone market outside US.
The big telcos were handing out data in miserly amounts and eye bleeding prices (think 50 bucks for 1MB then another 30-50 for SMS). AT&T was willing to pair with an unlimited plan set the iPhone wildly ahead of all the other phones in that category. VZ messed up big on that one. They were touting how amazing their network was meanwhile their competition was letting people surf the net from their phone. VZ was meanwhile still charging silly rates for SMS. Meanwhile I could open a connection on an iPhone and use an online chat service or the unlimited SMS. All of the other phones from that time could do similar things. It was the per month charge that people balked at to do simple internet things. Then on top of that it was apple so it had a bit of cool to go with it. I personally think though without that data plan the thing would have been a dud.
From what I recall, the original iPhone only supported 2G, while contemporary phones supported 3G. I remember a lot of criticism around the iPhone web experience because of that, even though the interface was clearly superior to everyone who used it.
It looks like there were relatively competitive data plans available[1] that offered unlimited data. I'm not really convinced that that was the problem.
---
1. https://arstechnica.com/gadgets/2007/04/data-plans-the-barri...
Yep. Only EDGE and quad-band GSM ("2G"). The second generation iPhone was called the "iPhone 3G" specifically because it supported tri-band UMTS ("3G") with HSDPA. In fact, some even back-named the first generation iPhone to "iPhone 2G".
Even if the iPhone wasn't an explosive hit and the smartphone growth didn't explode, 10% of Blackberries market would have meant millions of processors sold to Apple in the first years and any other Blackberry competitor that was interested,
But they clearly had high ambitions for their new revolutionary ergonomic mobile "phone" + "music player" + "internet". They wanted to define a new indispensable market and they wanted to own it. They already had a multi-year product path and design pipeline for regular major upgrades in place.
The iPhone was intended to be a "next big thing" from the start.
And it seems unlikely Steve was selling Intel on doing a new chip for 1% of the phone market. He was telling Intel this was the future, in some form.
Apple was an objective market demonstration, with no ambiguity, that there was now a need for low-power first (as apposed to speed first) that would got to other suppliers if Intel didn't move.
This was a leadership failure at Intel. They happen.
Some people thought that, yeah. But not everybody, and not on the same places Intel sold their chips to.
Anyway, Intel sold their foundry exactly because its unitary profit was way too small for them. Since then, the company only got more expensive, so they wouldn't be able to keep it.
Sucsess(as measured in valuation back than, not today, that's how managers measure themselves), was far from certain.
It’s still a lesson on the importance of keeping a foothold for the lowest volume market even if you’re not making any money as long as the cost is sustainable - cutting every unprofitable part of the business leaves you for disruption. Same thing happened to Microsoft with smartphones and Google with social.
Intel had a cellular modem business which they formed in 2011 and sold to Apple in 2019.
They acquired* from Infineon. And completely messed it up.
Magic is finding out what of those can fly and it is not a manager but a leader quality to do well with new fields. Although sometimes managers feel the obvious moves for the short term sometimes better.
Sure, it can be hard to know when to stay in, but the “death by a thousand cuts” is not a financial problem. These are often rounding errors to continue. It’s a question of focus. And Intel clearly made the mistake of thinking they didn’t need to focus on mobile.
Qualcomm still has a 60-70%+ market share in the $300+ Android phone market and their gross profit margin was similar to Intel until last year so it's obviously doable. And XScale/Intel was probably the best positioned company to dominate the ARM SoC market back in the mid 2000s.
From Paul Otellini exit interview in 2013
>"We ended up not winning it or passing on it, depending on how you want to view it. And the world would have been a lot different if we'd done it… The thing you have to remember is that this was before the iPhone was introduced and no one knew what the iPhone would do... At the end of the day, there was a chip that they were interested in that they wanted to pay a certain price for and not a nickel more and that price was below our forecasted cost. I couldn't see it. It wasn't one of these things you can make up on volume. And in hindsight, the forecasted cost was wrong and the volume was 100x what anyone thought.”
The title of the article is "Paul Otellini's Intel: Can the Company That Built the Future Survive It?” and that is still a good question a decade later.
EDIT: corrected factual error. Paul was never a CFO but much of his career was in sales and marketing. Sales do count as "bean-counters" because their main metric are counting PaL.
Edit: I see you've changed your comment without acknowledgment. Still wrong 'sales and marketing' isn't 'bean counting' and Otellini had extensive 'tech' experience.
https://dictionary.cambridge.org/dictionary/english/bean-cou...
Similar to why the best sales leaders only do deals where there’s renewal possibilities in 2-3 years out.
https://www.zdnet.com/article/arm-shares-tumble-as-transmeta...
in 1997 Intel was terrified of Transmeta, and it lit a fire under their ass to get the Celeron out more quickly...
Me and a colleague worked a F-ton to test out not only the Celeron, AGP, SIMD, OpenGL, Unreal Engine, and all the latest games...
But Intel paid the game devs a Million Marketing bucks if they would optimize their games (and general software) to the SIMD instructions, to make the game feel more subjectively responsive on the Celeron as opposed to the AMD, and the seemingly incoming Transmeta.
so I think that Transmeta was the big blunder, but in reverse ; ; Intel should have been all over gaming, and not been afraid of some plucky startup...
But recall all the senior engineers at intel from <1995 had slide rules and pocket protectors.... they didnt see the entertainment wave of computing early enough and made far too many mistakes and tried to catch up.... personally, I think Linux saved Intel from bankruptcy.
Apple didn't move off Samsung entirely until the A8, and they still rely on many Samsung hardware IPs within the SoC to this day. It was not just a fab arrangement from day 1. https://twitter.com/calebccff/status/1472517091970494465
Apple relied on many of the same suppliers as the rest of the industry for a very long time, except the ones they acquired and closed-off. Purely on a "rising tide lifts all boats basis", Intel would still have had access to the dominant player if the ARM-based touchscreen era wiped out the incumbents. However, this is still a very low-margin business, despite requiring more engineering effort than desktop.
You could argue that $1500 phones were unthinkable at the time, but as a commodity, chipset manufacturers see less than 5-10% percent of that, even on flagship phones.
There was a deep dive article I came across about this a while ago and the only other interesting bits I've never seen anywhere else were tha
- Intel was offering a chip based on core/atom and couldn't hit the required performance/TDP
- apple wanted a custom chip meeting the required specs, but this is where Intel balked due to estimates of low demand to design and fab it
- apple went with ARM and PowerVR GPU was an important part of this story
Sometimes I wish I had a searchable full text index of articles I found interesting but didn't see value in bookmarking
I hope you won't mind this reply that isn't related to the topic, but this part of your comment stood out to me.
The way I get around this is by just saving the bits of articles I find interesting for later full-text search, and on the side I make topic-specific feeds of what I'm saving available via RSS for others to subscribe to.[1]
This paradigm shift from saving/bookmarking entire articles to saving highlights has worked really well for me, maybe it could work for you?
[1]: https://notado.app/feeds/jado - I run the service my highlights and feeds are hosted on, but if you're not interested in a subscription service that does this I don't think it's particularly difficult to spin up something yourself over a weekend or two
It wasn't that great then and it deserves death now. Zero ability to upgrade or get third party OS on it due to those processors not taking off.
Almost bought my niece an Android tablet with an x86 CPU. They were priced super low. Turns out there was a reason for that. Apps ran like shit and any games written using the Android NDK just straight-up didn't work.
The problem was that embedded OS-es like Symbian, A200, PalmOS were running circles around Windows Mobile. Most of them used Samsung SoCs which were few times slower than StrongARM.
StrongARM was seen exclusively in the context of it being used to "lift" extremely bloated WinMo smartphones, and was otherwise thought as an overkill for other uses.
Night and day... and the Mac is actually faster for programming type stuff and the audio stuff I mess around with - on top of being a much more pleasant environment for both.
Even for gaming it's a lot more competent than you'd expect, especially for games that have been ported to Silicon. WoW runs at over 100fps (NB: 1440p, 165hz gaming monitor) with settings turned up pretty high. Factorio runs awesome, and just got a silicon port that bumped performance another 20% or so.
Obviously it's not so good at AAA games, but I have a PS5 for that, anyway. A lot more of my Steam library was avilable than I expected.. all the Paradox grand strategy stuff, lots of tycoon/city/base builders...
On a day to day level it's just so much more plesant... effectively silent (not recording studio silent, there's a very very slight noise, but it's well below the noise floor if the household HVAC is running, or you have any sound at all playing.
Even maxed out (like a chess engine using all cores) the fans barely come off idle and the machine temp peaks in the high 50s. At idle, it sites in the very low 30s, only 10c above ambient - and things that are on the edge of the SoC, like the RAM, are only 5c above ambient.
Then old i0 beast would idle in the 60s and go all the way into the 90s under load, with fans sounding like jet turbines.
Yes, the 10900k as the biggest 14nm consumer chip was a power guzzler and is bad compared to Intel/AMD/Apples current line up on new processes.
November 2020 the m1 mac mini was released... September 2022 was when Zen4 came along, the next CPU to use the same node. Nearly a full 2 years.
Cinebench scores... The M1 Ultra got 24189 multithreaded... not that impressive but its tdp is 60w... at 65w the 7950x (eco mode) scored 31308 in the same test, down from 38291 at full power usage (170w).
It will be interesting to see if apple pushes for another exclusivity deal with TSMC for 3nm.
It’s pretty much guaranteed as it’s part of the deal Apple has with TSMC. They bankroll a significant part of costs for a new process node, in exchange they get exclusive access to the node for a number of years.
I don't really do gaming, except occasional Minecraft with the kids. My GPU is a 10+ years old GeForce GTX 560, and it seems fine. (But maybe that only works with x64? I don't know.)
I've already had a taste of Apple's ARM speeds with my M1 Macbook Air. Running `make clean && make` on Postgres is practically instant. I don't understand what's going on there to make it so fast. But for my daily work I'd rather be in Xubuntu. Is anyone out there doing something similar?
Regarding recording studios, PCs are generally kept in a machine room away from everything else.
Great that it works for you, but for a lot of creative industries, the Mac doesn't make sense in 2023.
Essentially, the demand for CAD on Mac just isn't high enough to justify it, especially when anybody serious about CAD wants the absolute cutting edge of hardware, and the ability to expand upon it as soon as the rest of the industry is able to take advantage of the latest GPU. Being competitive is everything.
It's never been a case of software needing to be ported. Some CAD apps have come and gone on Mac, but the demand just isn't there in terms of sales to make it worthwhile. That's not to say that there aren't CAD apps on Macs, there are, but the big boy industrial toys are elsewhere.
Keep in mind we used to run Parallels and Bootcamp in the '00s to get Windows software on Macs!
This was in 2004.
One of the more interesting aspects of the switch I hadn't considered though is that it actually (positively) impacted my power bill - I'm paying about $5-$10 less per month since the switch.
The difference in form factor is welcome as well - some days I find myself astonished at how much power fits in such a (relatively) small box on my desk.
I like Apple stuff (I have an iPhone, MBP) but their high-end stuff is really overpriced for what it offers.
7950x = $599 7900XT = $800 64GB of RAM = $150
Thats' $1550 right there, before motherboard, storage, case, cooling, powersupply, etc. By the time you add all that (plus labor, either in dollars or in time) I bet you're in the $3500 range with those specs.
You have to consider the total package... the Studio is 7" x 7" x 4"... that's smaller than a microATX board, never mind some giant dual slot graphics card (Which also draws 300w btw, over 3x what the entire Studio draws).
Lack of noise, heat, and power efficiency has real value. Some of us are at a point where we want stuff that just works, not to fiddle with components and BIOs settings. Plus, frankly, nobody on the PC side has anything even close to Applecare.
That's a total, with your estimates for the CPU and GPU prices, of $2300 which is around $1000 lower than the Studio while having more power. I agree the power efficiency is worse but also note that the Mac simply doesn't have access to the same compute power. Also the CPU and GPU are redlined by default and going down to almost 50% TDP only causes a 5% drop in performance so it is not that bad.
Of course there are advantages that you mentioned (form factor, better support) but, at least for me, that is not worth a $1k+ premium. Also using MacOS for me at least is a pain compared to Linux.
I will agree that the Ultra ($3999) is probably not a great value for most people, since outside of synthetic benchmarks, it's usually more like 10-20% faster, not 100%, as outside of editing 8k video or AI, there really isn't much that scales well to that many threads.
Another thing I'll mention, and that I think really is a big part of the special sauce, is the insane memory bandwidth.
A 7950x has a maximum memory bandwidth of 83.7GB/sec. An M1 Max has 409GB/sec.
It's really hard to outrun RAM that's essentially soldered directly to the CPU.
But that memory bandwidth is some envy inducing stuff.
The bandwidth is due to apple giving more area and pins to more channels.
I actually just bought this last week for the work machine..
https://www.keychron.com/products/keychron-k8-pro-qmk-via-wi...
Not as good as the board on my personal PC, but that is a highly tweaked out, kit built, full metal gasket mount board that I have mumble hundreds of dollars in to...
bench 1024 8 26 in latest stockfish (well, whatever brew installed two days ago)
Total time (ms) : 128108 Nodes searched : 1605433485 Nodes/second : 12531875
12,531,875 NPS is competitive with a 2950x threadripper, which is an $1100 cpu with a TDP of 180w. The M1 Max has a power draw under load of about 90w max (and that's the full SoC), but under typical high loads it's more like 50-60w.
The 5950x was also available for sale at the time, a system based on it was cheaper, and it does 54029460 NPS in stockfish which is over 4x faster.
It's not like the Mac Studio is too slow for chess engines to be usable for purposes like analysis, but the thing is if you make that argument than why not get a much cheaper Ryzen 5 or Intel i5 based system which is still faster than the Mac Studio? Say a Ryzen 5600g which is also pretty power efficient and can fit in a nice little box and push a few displays?
https://openbenchmarking.org/test/pts/stockfish&eval=7596252...
WoW doesn't need much hardware to run. What is the fps on the gaming rig for comparison?
https://www.anandtech.com/show/17024/apple-m1-max-performanc...
I've been a long time Windows user (20+ yrs) and have built my own PCs for nearly as long. My most recent 5900X + 3080 FE setup with 2x Gen 4 NVMes is amazing, but it's not the most efficient. ~95W idle and can top out around 200-400W depending on the use.
The (base) 14" M1 Pro I got launch day has been great overall, just really smooth/snappy in real-world use, where lately I've hit snags on Windows and MS software. The 14" M1 Pro maxes out around 35W or so (including its display). Desktop's more like 500W including displays. Great battery life on all the new M1s, it can do a full day at 8-14+ hours of medium/heavy use depending on your use/multitasking. It doesn't have to throttle down for thermal or power reasons like many recent Intel laptops (including a previous and recent-gen XPS 15 - which was much noisier by comparison).
In terms of quietness, I have the 3080 FE undervolted to typically only top out around 240W with under 2% performance loss. It typically runs around 55-65c in games without the fans being noticeable. 5900X is cooled by a 240mm AIO so it too is able to maintain reasonable temps running nice low fan speeds - only up to around 1050 RPM for sustained max loads which is still quiet compared to most other peoples' desktop PCs I've seen.
The 14" M1 Pro has never been audible above the idle fan speeds on the desktop (which run at ~550-600rpm and are also nice and quiet). The MBP is virtually always silent unless you manually crank the fan. Direct sunlight or somewhere very hot the fans might kick up a little more in response, but for me it's never really noticeable or even on or audible under normal use, and I like quiet devices.
Take a note on the wording. They are definitely making a mobile SoC for somebody, with Qualcomm being the likeliest client.
But then they instantly dilute it with other buzzwords, and try to break the line of thinking how it will compete with Intel's own products.
What it probably means is that ARM will port their standard cells and memory compiler to Intel's process. The other IP like the ARM CPU's are delivered as Verilog RTL and a customer can synthesize them to standard cells using any foundry's standard cell library.
When I worked at ARM they would work with any foundry even those that made competing IP. If my fabless semiconductor company decided to use Intel as our fab then we would still be using ARM CPUs in our chips. We aren't going to use Intel though based on Intel's prior history over the last 20 years of saying they will be a fab to external customers and then backing away and cancelling those plans. Based on talking to former coworkers most of the people talking to Intel as a fab are using it to negotiate lower prices with TSMC or Samsung.
It also underscores the reality that Intel doesn't think it can keep its fabs busy/profitable with just its own designs anymore.
Intel has been saying so for the last 2-3 years.
https://semiwiki.com/semiconductor-manufacturers/intel/7912-...
Honestly, this says less about Intel's desperation to me and more about ARM's. Just a few months ago they were rushing to renegotiate their contracts, and there have been rumblings for a while about ARM's eventual response to RISC-V. They know they need buy-in from legacy companies to make ARM a lasting ISA, simply trusting Apple not to throw them under the bus will get them PowerPC'd in an instant.
[0] https://www.macworld.com/article/677947/intels-ceo-wants-app...
On the other hand, ARM is very popular right now, and maybe Intel feels like what it needs right now is to take some of that market to deprive competing fabs of revenue and give itself better economies of scale.
Intel axed their involvement with RISC-V.[1]
[1]: https://www.theregister.com/2023/01/30/intel_ris_v_pathfinde...
Just not under the Pathfinder program.
Also Apple is a very small part of Arm’s business.
The writing is on the wall - RISC will be democratized, and ARM's intellectual property is bleeding value by the day. They know this, and they're making good moves to secure their positioning by working with Intel. Even still, their stakeholders are getting iffy and even their largest customers don't see them as essential to their business. Hundreds of Chinese manufacturers already kicked them to the curb years ago.
> Intel is desperate to get IFS working and if it hasn’t got an Arm offering it’s basically locked out of mobile SoCs.
Or, less charitably, ARM is getting iffy about TSMC's density roadmap and wants to hedge their bet a little. They lose nothing by reaching out to Intel, and Intel loses nothing by expanding their lithography to 2 popular ISAs. It is a mutual moneymaking move, and one that would not exist if ARM corporate was confident in their ability to wait-out Intel in the long term.
Apple is single handedly bankrolling the latest and greatest from TSMC. If it wasn’t for them, the latest and greatest would likely be even more expensive/out of reach for “some companies”.
That's the whole point of the recent semiconductor investment boom, though. Reduce dependence on Taiwanese silicon so that we can care less about the geopolitics of the region.
The west essentially is getting tired of playing bodyguard to Taiwan; because as has been evident with the Ukraine invasion, the west is not willing to go to war to protect peace.
Russia and China cannot win a conventional war against the West. For the West, it wouldn't be easy, it wouldn't be quick, but it would be a certainty. Maybe it would even take a couple of wars, like Europe in the 20th century. The only way for those two terrible countries to win is if they use nuclear weapons, and use them quickly. Western democracies know this, and act accordingly.
US fabs will mostly service NATO and partners nations, i don't see them being able to compete in the global south on price given Chinese infrastructure, living costs of labor and domestic market size advantages which can fuel the R&D of Chinese semi designer studios and fabs.
TSMC doesn’t have much to fear in the near future.
Edit: I see where the confusion lies.
https://www.forbes.com/sites/patrickmoorhead/2022/08/10/inte...
This was announced two years ago. Intel hasn’t proven that it can be a third party manufacturer for anything close to cutting edge
Intel announced they would be producing chips for MediaTek two years ago.
Intel has its 2nm node (called 20A, followed by 18A six months later) lined up for production to start in the first half of 2024, which compares to TSMC’s equivalent node (called N2) which is scheduled for the second half of 2025. 18A will be half a node denser than N2, while also being 12 months earlier to market.
As to IFS as a concept, it's only recently been revamped in 2021 after a lackluster attempt in 2013 as you mentioned. So far they've announced partnerships with Arm, MediaTek, Qualcomm, AWS, and the DoD. That's a pretty heavy hitting pack, not including all of Tower Semiconductors customers. Intel wouldn't be building another 3 fabs if it wasn't serious this time about building capacity for other companies.
Like their 7nm process has been delayed, what? 4 times? Have they even shipped it? Its the same story they had with the 10nm process too. IIRC they were behind like 5-6 years on that one too.
TSMC 7nm HPC: 66M Transistors/mm^2
TSMC 7nm Mobile: 96M Transistors/mm^2
Intel 7: 100M Transistors/mm^2
TSMC 7nm+: 115M Transistors/mm^2
It was perfectly fair for them to rename it, but yes, in the context of deliverables it's the same slipped process that used to be called 10nm.Remember that unlike the others, Arm won't be an actual customer here. They don't require any capacity themselves.
- see: https://en.wikipedia.org/wiki/2_nm_process#:~:text=The%20ter...
https://en.m.wikipedia.org/wiki/Semiconductor_device_fabrica...
It would be interesting to hear what the consensus view is on Intel actually being able to meet this timetable. Surely a strong degree of scepticism is warranted given their recent record.
"We all take two years to develop one generation, how come you guys can do it in one or one-and-a-half year?" And they asked if some of your customer transfer technology to you or what not? And I told him, "No," I told him that, "That's not true." I think he probably implied we steal technology from customer, the way he talk.
And I say, "I'll tell you why." I said that, "When we develop one node, basically you have some learning cycles. First, you do some simulation. And you have some idea, then you run wafers to prove that. So, you run a group of wafers according to simulation and you have some splits. The wafer runs through the fab, they come out and you measure them, you analyze them, and you try to improve and you run this again. This again, you run. So, this is learning cycle." At that time, "It takes about six learning cycle, roughly, to complete one generation." Of course, you had some short loops and not just one. I said that, "My R&D wafer in the fab run much faster than yours, because my R&D engineer works three shifts and you only work one shift. So, your R&D wafer move eight hours a day, my work/move 24-hours a day. So, my wafers go three times faster, even if you are twice smarter than me, I still beat you up." <laughter>
https://www.computerhistory.org/collections/catalog/10279267...
Previous leadership was seriously mismanaging things. The following comment sheds some light on their stagnation during the 10nm/'Intel 7' node development period:
Intel has a long way to go to prove they can catch up.
https://www.forbes.com/sites/patrickmoorhead/2022/08/10/inte...
Intel isn’t dabbing cutting edge chips from them
https://www.forbes.com/sites/patrickmoorhead/2022/08/10/inte...
Although this might help Intel become more of a foundry player like TSMC this could help ARM get a greater share of the the server market over Intels xeon processors.
All we've learned here is that Intel foundry will fab some ARM chips.