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ASML is so interesting. Its like sci-fi that one firm in the Netherlands knows how to make the most complicated machine ever made, and no one else can do it. A
by codeulike 2y ago
ASML is so interesting. Its like sci-fi that one firm in the Netherlands knows how to make the most complicated machine ever made, and no one else can do it.
And it is arguably the most complicated machine ever made. 50,000 times a second, the EUV lithography machine hits a 25 micron drop of molten tin that is moving at 70 meters per second with two co-ordinated lasers, the first hit to change the shape of the drop of tin in exactly the right way, the second hit to vaporise it, creating Extreme Ultraviolet Light at the right wavelength to etch chip designs onto silicon at "5nm process" sizes. Some labs can cobble together something similar as a proof of concept, but not well enough to make it feasible for mass production of chips.
Video about the light souce - https://www.youtube.com/watch?v=5Ge2RcvDlgw https://www.youtube.com/watch?v=5Ge2RcvDlgw
No one else in the world is able to make these machines. If you buy one it costs $150m and gets shipped to you in forty containers on specially adapted planes. Very few firms have the resources/know how to even run the machines - which is what makes TSMC so important.
- abdullahkhalids 2y agoWhile EUV lithography machines are surely a contender, the most complicated machine every made is likely the Large Hadron Collider (LHC). A 27 km tunnel in which protons (with cross section about 10^-28 square meters) collide head on. Hard to imagine this amount of alignment is possible.
- sciencesama 2y agoIt’s not complex just gigantic, repeated sections. Definitely not downplaying it but definitely euv is damn complex !!
- tonfa 2y agoOne differentiator is that it's factory produced (not just a one off)
- codeulike 2y agoTrue, perhaps if we call EUV Lithography the most complicated fabricator machine that actually makes something. Whereas LHC is a scientific experiment.
- bravo33 2y agoIt is nothing compared to the EUV machines and not as complicated either and with a utility value much less than even regular DUV machines.
- nradov 2y agoIt appears that ASML alone knows the correct rituals to keep the Machine Spirit cooperative.
- throwup238 2y agoEUV technology was developed in partnership with the US Department of Energy which is why the US can implement export controls (it was an explicit condition of original deal with the DoE). A significant part of the “secret sauce” is manufactured in San Diego. It’s not really “one firm in the Netherlands”, it’s a global collaboration that goes back to the 1990s. Intel was involved from the beginning, they just dropped the ball.
- to11mtm 2y ago> it’s a global collaboration Yep, even on the optics side (IIRC Zeiss, Nikon and Samsung are big players in the optical side...)
- deleted 2y ago[deleted]
- milleramp 2y agoI saw a working euv laser at TRW in the early 2000's. https://www.laserfocusworld.com/lasers-sources/article/16550791/trw-and-euv-llc-to-develo165extreme-uv-light-source-for-smaller-faster-integrated-circuits https://www.laserfocusworld.com/lasers-sources/article/16550...
- throwup238 2y agoEUV LLC is the joint venture between ASML, Intel, etc funded by the Department of Energy. That’s the legal structure that they used to bring the entire deal together. TRW was a partner.
- motaforever2019 2y agoA part of reason No one else can make these machines is because US has tight control on who's allowed to even develop that tech.
- tonfa 2y agoThere were 9 manufacturers with access to the initial technology, but only one managed to productionize it iiuc.
- wenc 2y agoASML seems to strike deep at personal identities: it's the only European player in space dominated by American and Asian companies. Every time anyone mentions ASML, I see comments of adulation. It's a very human tendency to hero-worship, especially fanboys who only recognize the name but don't understand the history or the ecosystem. It's useful to remember that ASML didn't outcompete rivals through brilliant innovation in a heated market race. Instead it won mostly by being the last one standing. All the other players dropped out. Nikon and Canon made strategic decisions not to pursue EUV because it was too risky and expensive. ASML, a small Phillips spinoff, couldn't do it alone either. It took two decades and billions of investments backed by Intel and TSMC to keep ASML going before the first breakthrough -- it was a lot of persistence and incrementalism. ASML was essentially a side bet/strategic hedge by Intel, TSMC and Samsung. (all this is covered on Asianometry) People associate ASML with the Netherlands, but it would not have been possible without the massive contributions of the Americans, the Taiwanese, the Germans, and the Japanese. It's like Grigori Perelman and the Poincare conjecture -- he didn't accept the Fields Medal for it because he felt that he just happened to the last person to put the pieces together (he was building on work by Thurston, Hamilton, etc.). We see ASML as this amazing Dutch company, but we forget all the other players were critical to making this singular company possible (only because it happened to be the only one standing, not because no one else is capable -- this is the great misconception).
- codeulike 2y agoFair enough, I can see it was a team effort. But its still interesting that all that work has focused on one place without leaking and it now has global strategic importance. And being the last one standing must mean something - good at negotiating with funders, tenacious, perceived as a good long term bet etc.
- Tade0 2y agoFor a long time the Netherlands were somewhat of a tax haven for companies relying heavily on R&D.
- ojl 2y agoIt seems for some reason that it’s only important to keep these things in mind and mention that it contains American tech, is an international effort, etc, when discussing some successful European company. But when discussing American companies there is never any talk about such things. Why can’t ASML be seen as an amazing Dutch company even if they also use tech from other countries?
- trynumber9 2y agoCymer was the best purchase they ever made. But it also means they're totally beholden to US export controls. That light source is made in San Diego after all.
- ghaff 2y agoThey were a big customer of a former company I worked for. I had a session at our executive briefing center, and myself and everyone else was just floored and geeking out on their tech.
- danparsonson 2y agoThe rest of the machine is no less incredible - the EUV light is reflected off a series of mirrors (the largest weighing, IIRC, somewhere in the region of 300kg, and the largest that Zeiss have ever made) onto a mask of the target pattern, which is rapidly shuttling back and forth, onto another series of mirrors, and finally focused onto the wafer stage, which is also moving precisely in step with the mask, to expose the photoresist on a single die which is on the order of 10mm square. And each wafer goes through multiple cycles of this, so not only does the machine rapidly create features at the nanonmetre scale with incredible accuracy, but again and again in exactly the same place after removing and returning the wafer. Oh, and the wafer stage is pretty fun too; it uses an electrostatic chuck that induces a charge in the wafer and therefore holds it firmly in place without needing any kind of suction that could distort the wafer. Promotional fly through video from ASML here: https://youtu.be/h_zgURwr6nA https://youtu.be/h_zgURwr6nA Asianometry video about the stage: https://youtu.be/1fOA85xtYxs https://youtu.be/1fOA85xtYxs Another short video about the light source: https://youtu.be/9VDJMivfhGU https://youtu.be/9VDJMivfhGU
- rajnathani 2y ago> Very few firms have the resources/know how to even run the machines - which is what makes TSMC so important. I dispute that this is simply what sets TSMC apart. The process of designing transistors and chip "IP" (the term used) such as 2.5D stacking technologies and the like (which is where coordination with EDA companies like Synopsys, Cadence, and etc. comes in) is just one thing. Then to prepare the photomask (I'm sure there are partners, but still), and operate the whole clean room facility around the input and output of wafers and other materials into these ASML/other fabrication machines is another thing.