Intel plans to rival TSMC and Samsung as a chip supplier
asia.nikkei.com
asia.nikkei.com
Okay I'll try to be constructive. TSMC is two things: The biggest contracting foundry in the world, and a leader in EUV application for tiny geometries. I think it's possible for Intel to become a contracting foundry; it goes against their DNA but Gelsinger very much wants to do it. So that's the first thing. Maybe it'll happen.
The second thing is much more problematic.
> Intel is still working on getting its 5-nm mass production going, and says it will begin manufacturing Intel 3 -- its answer to TSMC's 3-nm tech -- in the second half of 2023.
This I'm much more skeptical about. Intel tried to make EUV work before and failed. Still they seem to be buying ASML equipment and installing it at Ronler Acres:
https://www.protocol.com/enterprise/intel-euv-fab-chips
But it still sounds like a long shot to get it working in 2023.
"We'll start with a focus on driving $3 billion of cost reduction in 2023, 1/3 in cost of sales and 2/3 in operating expenses."
"best-in-class semiconductor companies have a financial profile that includes gross margins in the 60s" (Intel's is in the mid 40's and fell last quarter)
So they're not only trying to change a gigantic part of their business model, but ALSO drive $3B of cost reduction and try and push gross margins back up to... where they were 5 years or so ago?
They're making it impossible for themselves IMO. Pivot or profit improvements, choose one. Doing both at the same time is surely going to lead to a huge mess.
Intel’s culture is that of a cash cow, not an innovator. So year, profit improvements come naturally, pivoting not so much.
I fear it is not in Intel's DNA to make this switch.
Obviously, they are kind of big enough to do both — make a half hearted attempt and fight it all the same due to some internal politics. However, for something this existential, one would think that the smart people and the leadership would try to put some focus on the field. Was it that bad? Really, looking for some insight on what really went down.
The key that ultimately made it possible was the light source, and ASML is the only company that sells these light sources. ASML didn't invent the light source entirely on its own; there were a lot of ideas for light sources floating around and the only one that turned out to work was laser-induced plasma from tin microdroplets, which sounds completely crazy but it works [0]. ASML perfected that process (with -- to be fair -- some investment from Intel).
[0] https://www.asml.com/en/technology/lithography-principles/li...
Intel did fight EUV with a technology called SAQP which ultimately turned out not to work as well as EUV, but they were researching EUV at the same time. Here are some more historical articles about Intel's work on EUV in the past. Note the dates.
https://newsroom.intel.com/news-releases/intel-achieves-majo...
https://semiengineering.com/why-euv-is-so-difficult/
https://www.eetimes.com/intel-developing-euv-pellicle/
https://www.extremetech.com/computing/276376-intel-reportedl...
Was it just a matter of luck that ASML nailed the right one or was it the nature of exploring some riskier alternative (as you said "which sounds completely crazy but it works")?
There were several different light source ideas tried. Some at US national laboratories. Tin plasma was known to work but it left so much debris that it gummed up the optics so it was forgotten for a while. The key turned out to be tin microdroplets.
https://www.optica-opn.org/home/articles/volume_29/march_201...
Like anything, some of their PHDs were like “no that’s probably not going to work because xyz” and they trusted said PHDs.
It’s just science. It’s hard to predict.
Once it became clear that AMD and ARM (and by extension TSMC) were eating their lunch, they had great difficulty pivoting because they lacked the talent and the organizational will to do so -- at least until Gelsinger took charge. I have a lot of respect for Gelsinger and I think he just might turn it around.
Yet another example in a long history that modeling your talent pipeline as a JIT supply chain does not work in high cognitive input settings. This is a general unsolved management challenge: capturing sufficiently granular and comprehensive institutional knowledge to be able to efficiently restart organizations that rely upon it years down the line.
I don't think we will ever solve it until we learn how to share human mind states. The complexity of these high cognitive input activities at large scale has surpassed the ability of our capabilities to transfer comprehension between minds using conventional information transfer techniques (primarily written word and audio video). Even were I to guarantee the capture of all information at sufficient granularity, the only way to QA that is to de novo staff up a brand-new parallel organization, and have them reproduce the original organization's accomplishments. No one is ever funded for that.
This is a really interesting problem space for me because I suspect it is a dimension of technical debt very rarely explored because our species has not had to really grapple with it before as our technological progression has been slow enough we could "good enough" brute force our way through it whenever it came up in less severe forms.
A cursory Google search results in multiple search hits from recent news pieces announcing Intel buying their EUV kits from ASML.
If Intel is handing out small fortunes to ASML to deliver a machine that in the past Intel was expected to develop in-house, that does not sound like a success story.
Here's a Reddit thread on the topic:
https://www.reddit.com/r/AMD_Stock/comments/miar30/why_is_in...
The race to the bottom of physics is not a long ride.
Where does it said that? They haven't even launched their first node with EUV yet. So arguably they haven't failed.
I am not entirely sure if Intel needs to overtake TSMC, they just need to be a good enough alternative. But I agree even that is a tall order.
It is the same with Samsung which arguably ship their 7nm ahead of TSMC. But with low volume, yield and poor performance characteristic it doesn't really matter. ( And I haven't even mentioned cost yet )
The template is first printed on the glass. This is done by putting a light sensitive layer (photoresist) on the glass, and exposing some of it to light. When the light gets put on there the properties of the photoresist change so you can wash off the parts you don't want. Jl6 called this process "etching" (there may be additional steps that can also be described as etching, I don't know. Semiconductors are made with a lot of processes. This is the most well known process).
Then you spray on the chemicals you want, and then you wash away the remaining photoresist so you can put the next layer on.
This happens a lot of times for a modern chip.
https://en.wikipedia.org/wiki/Wafer_fabrication
Here is ASML specifically, in a very slow slideshow format, representing our finest web technology.
https://www.asml.com/en/technology/all-about-microchips/how-...
[1]: https://en.wikichip.org/wiki/mask
[2]: https://en.wikipedia.org/wiki/Electron-beam_lithography
The wavelength, or the color of the light here limits how much minified image we can shine and currently the Extreme ultraviolet lithography(EUV) is the state of the art where they use ultraviolet light with 13.5nm wavelength. As different materials behave differently under different light wavelengths, EUV requires different process to shine the mask over the silicon disk. One major difference from the previous processes is that in EUV lithography they use mirrors instead of lenses to direct the light.
So far, it's only the European manufacturer ASML who managed to perfect this process for mass production.
The problem always is “Intel fabs are so deeply integrated with Intel circuit design that it’s hard for more general customers to use their process.”
Intel foundry makes a bunch of ‘odd’ choices justified by the fact that most of their volume is so homogeneous in terms of circuit design.
I’m sure they’ve gotten better since I was last aware, but Intel is a hard ship to steer very far.
The other trouble is that Intel isn’t used to working from a place other than being the best and most advanced and expensive option.
The last time they tried, it looked like it was a blatant move to try to prepare for an acquisition. They essentially screwed Altera into doing the work to port their chips to an Intel process while also tanking the value of Altera Inc. due to the delays. Do SoC companies want to risk chaining themselves to the Intel process? Do more of them want to be acquisition targets? Do competing CPU vendors want to give up their IP to Intel in exchange for fabrication?
Until Intel spins out its fabs, which it probably should have done a long time ago, Intel will be facing an uphill battle to acquire customers for its fabs.
https://semiwiki.com/semiconductor-manufacturers/intel/7912-...
Is Intel going to let a customer use their internal IP?
Most of the third party IP for TSMC is based on around ARM and the AXI / AMBA bus specs to quickly integrate. I've heard that Intel's blocks use an Intel specific bus so you would need a bunch of translation shims.
Do you remember when Intel ported the Atom CPU to TSMC 40nm around 2009? They had to pre approve every design and it couldn't be in devices with larger than a 7" screen and all kinds of ridiculous nonsense. I later read articles that they did not have a single customer license the Atom in TSMC's process. Then they decided to make Atom powered mobile phone chips and basically paid a couple of companies to design them. Then no one wanted them. On top of that there were Android apps that used native ARM code and not just Java. So Intel had to make an ARM to x86 emulator for that.
Intel is great at making server / desktop / laptop chips and pushing the industry forward with new specs and standards like USB. But I don't trust them to understand or follow through on anything else
Why would this be a problem ?
TSMC focuses on making rules that are easy to follow (and documenting their rules for a broad audience).
Intel has been “allowed” to make design rules that are bad for the circuit designers, as long as they improve performance, since the designers are a captive audience.
That doesn’t work as a 3P vendor.
Intel is set up pretty well to pull it off when this happens. Samsung might be in a good position too.
Isn't this why TSMC is creating another foundry in the US, so they can circumvent these issues with China somewhat?
Unfortunately, a decade is optimistic now. Given rising instability in China, it will probably be less than 5 years. I believe the DOD has updated their estimate
But, I agree with you.
What the hell is wrong with all of this warmongering and reddit-quality posts.
Tsmc is spending $36 billion [1] for 2022 for capital expenditure. Those numbers are fucking nuts, and they Already have several huge fabs
[1] https://www.reuters.com/technology/tsmc-q3-profit-jumps-80-b...
Intel has tried to be a fab to external customers multiple times in the past. I can remember around 2002 and 2009. After a few years the effort dies out. I know a couple of companies that tried to get Intel to fab stuff and their orders get shoved aside when Intel needs the fab space for their own chips.
The people who founded the company Open Silicon (physical design services) were kind of a spin off from Intel's design services group. They got frustrated when Intel wasn't serious about doing external chips.
I know a couple of other 3rd party external IP companies that have designed IP for Intel in Intel's process. They all said the DRC rules were very restrictive. These blocks had a large amount of analog circuits where the layout is done by hand. In contrast I am in digital physical design where we use automated tools for most of it and follow DRC rules provided by the fab. When they went to check the DRC rules for their analog design they found techniques you could use at TSMC were not allowed by Intel.
TSMC optimizes their process and rules so that 1,000 different companies can each make 1 million chips. If the yield is 80% then that's fine because in order to get the yield to 90% you would have to hire another 50 engineers and spend another 6 months of design time.
Intel optimizes their process so that 1 company can make 5 chips 1 billion times each. They can throw another 100 engineers at it and get the yield to 90% because they are making so few different types of chips.
EDIT:
Regarding DRC rules:
All fabs have DRC rules. These define things like metal layer 2 can't be thinner than X amount and if it is parallel to another segment of metal 2 for longer than 20 microns then the spacing needs to be increased. Vias on layer 13 are larger than on layer 12. The rule for minimum size and the spacing between a 4 x 3 grid of vias is different for via layer 13 vs 12. And so on
TSMC has their mandatory DRC rules. They will not manufacture the chip for you if you don't meet all the rules or get waivers for special requests. Then they have their recommended rules. If you meet these the yield will be higher but many of them involve leaving even more space between wires. This increase your die area which increases cost. But the yield will be higher. So do you save money or lose money? We have people in our team to analyze this and decide that we will meet THESE recommended rules but not THOSE rules.
TSMC also had suggested DRC rules. These would increase yield even more with the tradeoff of more design time spent to do it.
If the strategy works out, the upside is huge.
The AMD vs Intel game is minuscule compared to the Intel vs TSMC vs Samsung game.
Intel doesn't have a great track record in contract mfg, but there is absolutely no reason this story can't change. Especially, if more subsidies arise in the future...
The contract fab push exists to keep 401k funds from divesting in the near term.
... "so far, there is no evidence to show any of these hurdles have been overcome," Shi said.
Apparently it's in this domain that TSMC is king.
Source: Their high level employees that I know.
Don’t underestimate the kind of gravity well that creates, especially in a large organization like intel. Their process is well tuned for high performance Xeon chips. Its not impossible to change that, but extremely hard, and it will take tim.
At the same time they currently have near 0 external customers trying to use their process, they are having a hard time figuring out what their customers need. (I have no doubt they are working hard to change that) But is there a way for them to improve a process node for an external customer? What if it creates an ever so slight downside for x86 products? These are the difficult decisions they will need to make at some point.
TSMC, on the other hand, has decades of experience of doing exactly that: designing a process for everyone with every fabless company in the world, for type of chip, whether it’s server or tiny ultra low power class. And they have a very broad range of flavors of every node to show for it.
Why stay and say things like this?
Morale issues sink businesses. If everyone who was unhappy walked away, no companies would ever have morale issues.
I knew people at companies that were acquired and joked that they were in "rest and vest mode"
They didn't care what the new company did as long as they got paid and their huge number of shares over the next 3 years vested
The wording is weird. The US cannot start a war over Taiwan, the only way for a war to break out there is for China to invade.
They would probably have a monopoly, and with that, too much control, and so, are liable to become lazy and greedy, which will harm everyone involved.
Maybe some Chinese CPU manufacturers would like to use Intel but there is a trade ban for China.
Also, seeing how Intel likes to jack prices from time to time, I wouldn't want to depend on Intel for all of my manufacturing.
TSMC & SAMSUNG have large backing and incentives from their respective governments....no publicly backed corporate entity can match those pockets.
Intel's designs (i.e., architectures), products and manufacturing capabilities are from the early 90s. They have failed to innovate partly because their manufacturing capabilities are pretty poor, which have a high impact on their architectures and product development. They need to decouple those two functions as AMD did when they split into GlobalFoundries and acquired ATI...which was probably the smartest thing AMD ever did.
Also, Intel needs to get off their highly egotistical perspective that chips can only be processed using PhDs and Postdocs...their entire mentality is elitist driven by a highly academic white castle mentality.
Intel is still market-leader in most aspects and is still very much fighting AMD in equal or better position when it comes to their top-end products and benchmark results.
Also, the news is about manufacturing chips, which AMD does not do any. We should be mentioning TSMC here.
The new budget AMD mainboards cost 200+ Euros now. Intel doesn't even need to execute well when AMD is about to play itself.
And they dominate in the Steam hardware survey (gamers more likely to build their own machines)
Last generation and legacy support is for DDR4.
The new, more expensive stuff is DDR5.
On raw performance; the 13900k(+f) outperforms the 7950x. On performance per watt however, AMD holds the crown.
https://store.steampowered.com/hwsurvey/?platform=pc
Have a look at the graphic "PC Processor usage by manufacturer". The ratio hasn't changed at all since May 2021; still 70% for Intel.
edit: more numbers
- Engineering support when you're designing a new motherboard
- CPU SKUs with different use conditions. Intel Industrial rated CPUs are rated for 24/7 operation, 100% duty cycle for 10 years. I'm not aware if AMD has an equivalent.
- Long product support - CPU SKUs that are "guaranteed" to be around for X number of years. As as example, some Icelake SKUs are planned to be supported for 10-15 years. Let's use an x-ray scanner as an example. The x-ray scanner mfg needs a computer inside the machine to help process info and display images. The x-ray equipment has an intended lifespan of at least 5 years and they plan to sell/service this equipment for at least 10 years. The mfg wants to use an embedded computer that's going to be commercially available for a long time so they don't have to re-engineer and re-certify their machine. This is one reason why you see some "stickiness" with Intel.
Then you have reasons associated with vendor lock in. I mean, most people buy DEVICES, not CPUs, and device manufactures are hesitant to switch, because doing so can potentially be complicated and prohibitively costly (especially if they already have deals with their current vendors). Whereas their customers will end up buying their devices regardless of whether they switch CPU vendors or not (because of reasons mentioned above)...
Ergo, as other's have already sort of alluded, it's largely because of branding, marketing, and vendor lock in.
Intel meanwhile has an established year old motherboard pipeline for their current socket that 13th gen can be dropped in to.
If this were 14th gen vs Ryzen 7000 the calculus would be different as all the Intel purchases would also include a motherboard.
Also, Ryzen 5000 is going gangbusters outselling everything else.
Which is why they just dropped their prices? (see, e.g., https://forums.anandtech.com/threads/amd-has-dropped-5000-se...)
You can see the 5600X price drop on Amazon happened Oct 26[0].
If you look at the Amazon best sellers[1], it gives you a pretty good idea of where things stand.
0: https://camelcamelcamel.com/product/B08166SLDF?context=searc...
1: https://www.amazon.com/Best-Sellers-Computer-CPU-Processors/...
Intel isn't strapped for cash to do R&D, and if they are, AMD is way worse off. Go look at profit numbers for both companies over the last 5 years. It's not even close.
To pretend like intel is going to run out of money to fund R&D is just to not even understand what's going on.
It's a bit ghoulish but Intel's saving grace may be an invasion of Taiwan.
Intel is in a good place. The question people should be asking is why its so close at all if AMD is several nodes ahead. why is 5nm and 6nm TSMC only competitive with intel and not crushing it? Their performance per watt at high load (and not at idle) is AMDs biggest differentiator. When intel goes to smaller nodes they'll gain more thermal headroom to pack more and faster cores than AMD.
The current modern tech youtubers are asking many of the wrong questions. I watched gamersnexus crowing about AMD efficiency in the highest tier chips and asked "people buying race cars care about speed more than efficiency - why are you downplaying intel's ultrafast chips on 10nm+++ vs amd's smaller and more efficient nodes, and talking about their fuel mileage for a market segment differentiated by performance?"
Theres a lot of nonsense going around.
CPU efficiency is so nonlinear at high power levels as to make comparison meaningless if they aren't matched.
CPU efficiency is an interesting number to the tech youtubers who focus on it, but is not that market differentiator at the highest end most profitable part of the market, and only matters to them. The AMD 7950x is very fast chip which is much more efficient than its intel counterpart, but at the top end of the market what matters is who performs better, not their fuel mileage. You'd be investigating a number interesting to testers but not consumers likely to buy those products - its a waste of time and effort.
I guess from a practical perspective, if you aren't modifying the chip clocks then yeah, they are talking about the right thing. But from a technical perspective, I'm more interested in the underlying architecture performance, which is to say:
If the intel chip is set to a Power Limit of 100w, and the AMD chip is set to a Power Limit of 100w, what does performance look like then? Because it's nearly meaningless to run one processor at 250w and the other at 150w, then say the 150w chip is more efficient. Processor power skyrockets at high voltages and clocks, so likely the intel chip can use 50% less power for 10% less performance, if desired - Intel merely made the (correct, imo) calculus that maximal performance is more important than efficiency for this class of chip.
I think we pretty much agree - I just think it would be interested to have a more accurate architectural efficiency/performance comparison (which would also help when choosing eg. a laptop where those numbers DO matter)
As I said before, the efficiency per watt is a youtuber number. Nobody who is buying chips really cares, or if they care they watch the youtubers who talk about it nonstop already. It's the youtubers bringing it up on top tier chips who are just out to lunch and not understanding the actual selling to a market and distorting things because of numbers they care about that class customers don't.
I don't care what a 7950x does at 100w, because if I wanted that performance I would have bought a cheaper chip. It's a stupid nonsensical number unrelated to why people buy $700 high end CPUs. You don't buy that chip to save $3 worth of electricity.
This comparison is meaningless though if the processors aren't running at the same power, however :(
https://guidehouseinsights.com/news-and-views/efficiency-is-...
I'm bullish on Intel's IDM 2.0 vision in the later stages of a 10-year horizon, but as of today and for at least the next few years, this assertion is unsubstantiated bullshit.
According to their latest Q3 10-Q filing[1], Intel Foundry Services segment accounts for $576M revenue and -$289M operating losses YTD.
In contrast, Globalfoundries' last relevant 6-K filing[2] reported $3.933B revenue and $501M operating profit YTD...and oh by the way, GFS Q3 earnings call isn't until next week Tuesday, so these numbers reflect only 6 months of the current fiscal year.
The reality these numbers support is that Intel's (bleeding) cash cow is in making and selling their own chips, not fabbing other companies' designs.
Furthermore, the only named portfolio segment that's currently doing worse that Intel Foundry Services is Accelerated Computing Systems and Graphics, which has hemorrhaged -$1.275B in operating losses YTD. Even Mobileye segment generated 2.3x more revenue than Intel Foundry Services segment YTD, and is profitable despite being acquired only 5 years ago.
To be fair, AMD intentionally divested their legacy foundry capabilities a decade ago; conflating GFS with AMD in the foundry space is logically indefensible, and there's meaningful underlying reasons why AMD pivoted to fabless.
[1] https://www.sec.gov/Archives/edgar/data/50863/00000508632200...
[2] https://www.sec.gov/ix?doc=/Archives/edgar/data/1709048/0001...
I get it if you just like the products, but there’s no comparison between the two as far as being companies.
I may be long Intel, but this unqualified assertion without cite is certifiable bullshit at face value.
From the latest 10-Q filings for Intel[1] and AMD[2], this is what the numbers are saying for 2022 YTD:
(In millions) | INTC | AMD | Diff |
====================|=========|=========|=======|
Revenue | 49,012 | 18,002 | 36.7% |
Cost of sales | 27,646 | 9,802 | 35.5% |
--------------------|---------|---------|-------|
Gross margin | 21,366 | 8,200 | 38.4% |
Operating expenses | 17,900 | 6,787 | 37.9% |
--------------------|---------|---------|-------|
Operating income | 3,466 | 1,413 | 40.8% |
Net income | 8,678 | 1,299 | 15.0% |
--------------------|---------|---------|-------|
Adjusted net income | 3,580 | 1,299 | 36.3% |
A few (probably obvious) notes, just in case:- Intel's non-operating income (~80%/20% split between equity investments/interest and other) accounts for $5.098B and is 147% relative to operating income YTD! Adjusting this out of the picture tells a different story about pound-for-pound operations.
- Compared to AMD's $135M Q3 tax benefit, Intel recognized a massive $1.207B boon! Both companies swallowed operating losses this quarter (Intel -$175M v. AMD -$64M); without this tax benefit, YTD net income for both companies would have taken a hit. I keep this benefit in because Intel operates fabs, and much of that benefit was attributable to "a change in tax law from 2017 Tax Reform related to the capitalization of R&D expenses that went into effect in January 2022."
- Included in AMD's cost of sales and operating expenses are amortization of acquisition-related intangibles (Xilinx) to the tune of $1.005B and $1.499B, respectively. When this acquisition-related cost disappears, we can expect AMD's gross margins to substantially increase as you'd expect from a fabless design house.
Keeping it real.
[1] https://www.sec.gov/Archives/edgar/data/50863/00000508632200...
[2] https://www.sec.gov/Archives/edgar/data/2488/000000248822000...
FY21 AMD revenue 16.4 billion dollars[0]
FY21 Intel profit 43.815 billion dollars[1]
[0]https://ir.amd.com/news-events/press-releases/detail/1044/am....
[1]https://www.intc.com/news-events/press-releases/detail/1522/...
From Intel's latest Q3 press release[1], management is guiding towards $63-64B revenue to close FY22, representing -20% decline YoY.
In contrast, from AMD's latest Q3 press release[2], management is guiding towards $23.2-23.8B revenue to close FY22, representing +43% growth YoY.
Underneath the hood, Intel's two biggest segments by huge margin are going down faster than a whore spreading herpes:
- Client Computing segment revenue is down -17.0% QoQ, -18.5% YoY; segment operating income is down -53.9% QoQ, -53.3% YoY.
- Datacenter and AI segment revenue is down -27.2% QoQ, -16.3% YoY; segment operating income is down -99.3% QoQ, -68.5% YoY.
- This quarter, Intel spun off their Mobileye segment and is expected to hold ~94% of MBLY common stock upon IPO. For Q3, this segment's revenue was up +38.0% QoQ, +26.6% YoY; segment operating income was up +11.8% QoQ, +11.4% YoY...we won't be seeing this segment soften Intel's top line decline moving forward.
- Management has made it abundantly clear that they're trying to cauterize deep operating wounds now and over the next few years: "The company is focused on driving $3 billion in cost reductions in 2023, growing to $8 billion to $10 billion in annualized cost reductions and efficiency gains by the end of 2025."
- Next year, Intel will burn ~$5.4B acquiring Tower Semi to advance their IDM 2.0 vision[3]. Prevailing macroeconomic headwinds today and throughout at least the end of next year strongly suggests this will weigh a lot more unfavorably on Intel's balance sheet moving forward given the implied cost of capital went from cheap in February 2022 when the acquisition intent was announced to sky-fucking-high today trending to the moon based on what the futures market has already priced in.
[1] https://www.intc.com/news-events/press-releases/detail/1586/...
[2] https://ir.amd.com/news-events/press-releases/detail/1098/am...
[3] https://www.intc.com/news-events/press-releases/detail/1527/...
So I'm not sure what you mean? Can you show numbers that would support "eating one's lunch"?
Although you did say to ignore financials, so which makes the analogy meaningless.
All of the tech youtubers have been making similar points lately (LTT, GamersNexus, HardwareUnboxed).
Data centre does seem to be in AMD's favour at the moment, but I don't know enough about the space to know if their advantages will be long lived.
I know what you mean about the chips themselves, but that hasn’t translated into actual money for AMD yet.
A higher PE only makes sense if a business’s profit is poised to expand significantly beyond doubt. Which it almost never is.
If someone is selling a McDonalds that makes $1m a year for $5m and somebody else selling one with the same revenue for $1m either one of the seller is behaving irrationally or the second seller knows something you don't. Why would somebody give you free money otherwise?
Who you consider best is very different if you are a gamer that wants 120 fps, or an investor that wants $$$.
But you can't you speak for all consumers and people on this site: I could care less about performance because even bottom end CPUs are enough for my needs. In fact, as a stockholder, Intel matters more.
I'm old enough to remember when AMD was an actual threat to Intel in the PC space but had inferior performance compared to Intel, but AMD was far cheaper and getting design wins (for a brief period in the 1990's before Intel's mega-deal with Dell and anti-competitive wrangling).
I don't have a horse in this race, I just enjoy seeing factions fight over "who's best", and how the arguments change over time.
EDIT: phrasing.
If you want to talk performance, here's gaming performance of Ryzen 7000 vs Intel 13th gen.[0] Needless to say, I don't see where AMD crushes Intel.
And then there's the financials.
FY21 AMD revenue 16.4 billion dollars
FY21 Intel profit 43.815 billion dollars
[0]https://www.eurogamer.net/digitalfoundry-2022-intel-core-i9-...
> Can you show numbers that would support "eating one's lunch"?
It's imprudent to swallow bold, unsubstantiated assertions without even bothering to sniff test.
Lunch[1] is on me this time.
Earning money is different from market valuation
China's chips doesn't sell well in the global market, and yet they managed to launch their space station with them
What matter nowadays? how much money it makes, or what it allows them to do?
Should we be stuck with that kind of questions again, for how long? i'd like to see people playing on Mars, so let's promote what does the job better, not what sells better
AMD GPUs perform better than Intel ones, and they do it with close to half the TDP, that's just one example
I feel like talking about intel's 1st generation video cards as if that's the entire debate and future of intel is misleading and nonsensical. Intel hasn't really made discrete graphics cards before. Their first attempt missesd.
AMD was behind nvidia and intel for years and years in their respective businesses, but here we are and things have changed. Pretending like now that AMD has a efficiency edge over intel the entire game is over, ignores the fact that intel is still performance competitive on larger nodes and also improving their efficiency every year.
Intel is a more profitable company with more than enough R&D dollars to compete against amd. If you had applied your thinking to AMD anytime before the last 3 years you would have also declared them a dead company.
It's just not a consistent way of thinking.
As far as AMD vs Nvidia, NV is not behind AMD at all. Nothing has changed there. The 4090 obliterates the 6900XT at 4K in Cyberpunk.[0] And if you enable DLSS3, we're talking a minimum framerate of 10.6 FPS for the Radeon, with a minimum framerate of 118.27 FPS for the 4090. This won't dramatically change with the 7900XTX. Nvidia competes well with AMD up and down the stack. Intel has a midrange GPU that should reach Geforce 3070 performance once the drivers mature. The encoders, XeSS upscaling, and ray tracing performance are already great.
[0]https://www.eurogamer.net/digitalfoundry-2022-nvidia-geforce...
See: CYBERPUNK 2077, ULTRA RT, DX12, TAA
[1]https://www.eurogamer.net/digitalfoundry-2022-nvidia-geforce...
See: CYBERPUNK 2077 DRIVING, MAX, PSYCHO RT, DX12, DLSS 3
FY21 AMD revenue 16.4 billion dollars
FY21 Intel profit 43.815 billion dollars
Have at you!
There is a reason that US manufacturers have outsourced their production to Asia for the last three decades.
Also, Intel is on path to regaining process lead, they can compete with TSMC and Samsung based on quality.
I can't really comment how important labor costs are, but I don't think that they're insignificant.
When chip technology took off in the 1970s, the US semiconductor manufacturers had probably over 80% of the manufacturing share.
Why is that share so low today? Why is it that the US manufacturers would be lucky to reach double-digits in manufacturing share? How did they get to drop to so low in the first place?
The running cost of fabs is not the only cost of new fabs.
Can you elaborate on this point?
There is a lot of strategic value to the island, even without the chips.
Money alone doesn't make the world go round. Trust does. People work for early stage startups for free because they trust the founders.
When I was researching my master thesis 90% of the papers authors were either Chinese or Indian of origin(probably of US universities). A significant number of Chinese-American scientists are making their way back to China for fear of unfair prosecution. Stigmatization of Chinese-Americans during Covid didn't help either.
I'd be willing to bet that Japans TSMC fab will be done faster than the US's
I tell myself someone just had the clarity of mind to refuse to build a doomsday device (hypersonic warheads breaks MAD, or just becomes a new MAD once everyone has them). Happened before with Project Pluto [0] (among other reasons)
> The program was terminated in July 1964 by the Department of Defense and the State Department as “being too provocative”. It was believed by many that if the U.S. deployed a missile of such awesome power against which there was no known defense, then the Soviets would be compelled to do so [1]
The question of morality is REALLY off-topic and always comes up when someone makes a point about the inefficiencies of certain systems, instead of actually addressing the main concern, which is why isn't the money being spent efficiently? And where are the checks to make sure it is?
But the only country that has so far used nuclear weapons and littered the planet with depleted uranium wasn't the Soviet Union was it? That country also threatened to use them in Vietnam[3] and brought the biggest nuclear weapon on its carrier to threaten India in 1971[1]. It also wasn't Russia that unilaterally pulled out of the arms agreements. Bolton just argued that Russia was violating it anyway, so there's no point keeping it[2].
Look, I'm not trying to bash that country, but hold your horses when talking about morals, in a discussion that is ultimately a game of power between superpowers. The reason why the US should stay a superpower isn't because it's so morally superior, it's because, if there isn't some sort equilibrium of power, one side is bound to become a bully. Just like how in a democracy there is an intention to have an equal separation of power which for the last decades has been gradually eroding, giving the executive ever more power, leading to all sorts of problems for society.
[0] https://ntrs.nasa.gov/citations/20020011010
[1] https://www.indiatimes.com/news/india/when-russia-stunned-us...
[2] https://www.npr.org/2018/10/23/659911920/bolton-affirms-u-s-...
[3] https://nationalinterest.org/blog/buzz/us-military-looked-us...
Thanks for the links, particularly re: India, I wasn't aware of this chapter in the cold war at all.
Similarly, China's military hasn't been tested in decades.
They are not winning! And very much appear to be in the process of losing.
They may not lose, but at the very least they are doing much worse than anyone expected given the relative disparity in military investments.
By my count, of the 7 fabs on the latest process, 5 are in the US.