5 ms·
Semiconductor manufacturing involves a lot of precisely controlled processes. You put the wafers into furnaces and pass a gas over them for X time and Y flow ra
by furi 7y ago
Semiconductor manufacturing involves a lot of precisely controlled processes. You put the wafers into furnaces and pass a gas over them for X time and Y flow rate at Z temperature to impregnate the wafer with various chemicals. You put them in low pressure plasma environments to etch them, again for X time at Y flow rate. There are half a dozen more of these as well, like applying metal and implanting ions.
These values are experimentally tightened to get the highest possible accuracy to the desired effect and improve the number of working chips that leave the factory. If the power cuts out you don't know what conditions the wafer experienced while the system was winding down completely uncontrolled and your processes haven't been designed for the wafer going through the ramp up twice.
The reason why it's lost so much output is because modern semiconductor processes have hundreds of steps and (I believe) a lead time in the months, so the amount of material that's in flight at any one instant has to be huge to get any reasonable throughput.
- agumonkey 7y agoSo they realized late that an early step of the pipeline was off, rendering everything that has been through flawed ?
- BeeOnRope 7y agoMore like many steps in parallel would all be affected by a power outage, and much or all of the wafers in progress were ruined or simply not economical to recover.
- CydeWeys 7y agoNo, they experienced a power outage which has ruined every chip that was currently at any point in the pipeline. The realization would be immediately (as soon as the power goes out).
- shaklee3 7y agoIt said that it was 1/2 their production output for one quarter. Is that really possible for an instantaneous power outage?
- msbarnett 7y agoIf at that instant they have half there quarter’s product in various stages of processing (and there are hundreds of such stages, in hundreds of parallel pipelines) when all of those stages shit the bed, obviously yes.
- shaklee3 7y agoThat's the point. The only way that's possible is if things sit in a process that takes many months.
- msbarnett 7y agoIf you understand that that’s the way the process works, then why are you asking if it’s possible
- londons_explore 7y agoor that the restart procedure after a power failure is going to take a few weeks... I can imagine that if the factory is entirely automated and a full-restart has never been attempted. Every single machine will probably be in some bad state with unknown chemicals settled into unknown pipes in the machine, requiring custom flush processes to be designed, and in some cases machines might have to be replaced, which in a human-free clean room isn't easy...
- CydeWeys 7y agoYes, that's exactly what's going on here. The processes last quite a long time. Similarly, a drought that doesn't last that long (relative to the life of a big tree) can nevertheless kill that tree even though said tree has been growing for centuries. In other words, there need be no correlation between how little time it takes to ruin something that takes a very long time to make.
- quickben 7y agoInteresting. So what do they do with the materials afterwards? Landfill or melting or?
- dodobirdlord 7y agoProbably varies depending on stage. Wafers are very pure silicon, so the ones that haven't yet been contaminated with trace elements would probably be melted down for reuse. Wafers later in the process are probably carrying a lot of material (gold/silver/platinum, maybe iridium, some heavy metals?) that would be worth salvaging in bulk.