Hi CWL1,
https://graphene-flagship.eu/graphene/news/...ompound-semiconductors/
Have you seen this? Sounds to me liek Aixtron is still actively following and researching this opportnuity.
Thanks for your vision on Q4, FY 2022 and Q1 order intake and revenue.
BR baggo-mh
[url]www.aixtron.com/de/presse/...%2520LED-Anwendungen_n2237[/url]
Big news, denn AMS Osram investiert $850 Millionen in den Ausbau des Werks in Kulim. Nicht alles wird bei Aixtron landen aber ein größerer Anteil sicherlich.Produktionsstart 2024. [url]www.microled-info.com/...s-start-8-inch-production-2024[/url]
The future is bright......and the best is yet to come!
Gruß baggo-mh
During the Q3 call I had the impression that Felix stopped short of saying.....
it depends on when we book the orders
My interpretation goes as follows.
When a new fab is build (like Ensdorf), there will be a schedule as to when what should be accomplished.
- groundbreaking 07/2023
- fab housing completed 06/2024
- first tools to arrive end 2024
- tool qualification by end 2025
- mass tool shipments in early 2026
- mass production in 2027
If AMS-Osram wants to be operational with Micro LED in 2024, the tools need to ship in 2023. With that and 9 months lead time in mind it becomes clear to me that AMS has given Aixtron what I call a blanket purchase order. For example: We will need 100 G10 tools to reach full utilisation by 2024 on the condition that the qualification will be successfully completed.
That blanket purchase order will be accompanied with a shipping plan. For example, 10,50,20,20 tools per quarter in 2023.
Against that shipping plan release orders will be placed by AMS, with advance payments and the import liscence documents.
It would give Aixtron the possibility to adjust the order intake on a per quarter level and explain what Felix almost said.
BR baggo-mh
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very, very interesting presentation for those you are interested in the MOCVD technology.
I learnt a few new things although some (if not to say a lot of the physic laws) went also straight over my head. Schrödingers law for example.
https://www.youtube.com/watch?v=iiz9hEVmZmc
BR baggo-mh
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Graphene used to grow the world's smallest microLEDs and highest-density microLED arrays
Researchers from MIT, in collaboration with researchers from other Universities in the US and Korea, have used graphene (and hBN) to develop full-color vertically-stacked microLEDs - that achieve the highest array density (5100 PPI) and the smallest size (4 µm) reported to date.
The researchers developed a 2D-materials based layer transfer (2DLT) technique - that involves growing the LEDs on 2D material-coated substrates, removing the LEDs, and then sttacking them. For the red LEDs, the researchers used graphene, coated on a GaAs wafer, while for the green and blue LEDs, they used hBN on sapphire wafers. The graphene red LEDs were transferred using remote epitaxy, while the hBN blue and green ones were removed using Van der Waals epitaxy.
Zum Glück weiss ich seit dem Video heute, dass Aixtron diese Laboraktivitäten auch unterstützt und untersucht.
https://www.graphene-info.com/...croleds-and-highest-density-microled
Gruß
baggo-mh
www.asm.com/Pages/Press-releases/...pid=2590309&from=home
Orders amounted to approximately €820 million in Q4 2022, above the level that was implied by the guidance for a book-to-bill of a bit above 1 that we mentioned in our press release of November 28, 2022. The upside was predominantly driven by the power/analog/wafer segment, including an exceptionally high order intake in our silicon carbide epitaxy business (LPE). Next to strong underlying demand, the increase in LPE’s orders was driven by some customers bringing forward orders that are scheduled for shipment in the latter part of 2023.
Hi CWL1,
I was asked to ask you if you know that company?https://www.thelec.kr/news/articleView.html?idxno=19620
Thanks for your feedback.
Kind ergards baggo-mh
Thank you.
What a day! Strong results as FEl216 stated already and positive guidance from both PVA Tepla and Aixtron.
I guess we will see PT raises for both in the coming days.
BR baggo-mh
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