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RealIZM Figure of the Month: 100 Blog Posts
#Figureofthemonth
All the best, RealIZM! This month we are celebrating the publication of our 100th blog post.
For five years now, the RealIZM team and our researchers have been providing an insight into the world of microelectronics and the research and development work on electronic packaging at Fraunhofer IZM. With topics such as:
• Will Chiplets Revive Moore's Law?
• Faster, Higher, Stronger: Why Co-Packaged Optics are a Game Changer
• Threats and protection mechanisms for the trustworthiness of electronic hardware
our science blog for microelectronics offers a wide range of content.
Curious? Then stay up-to-date: Subscribe to our RealIZM blog newsletter and join us on our way to the next 100 blog posts! ow.ly/cJT350SH4em
#newsfromrealizm #fraunhoferizmberlin #microelectronics #sciencecommunication
__________________________________________________________________________
Official website: www.izm.fraunhofer.de/​
Follow us on LinkedIn: www.linkedin.com/company/489228/
Follow us on Instagram: fraunhofer_izm?hl=de
Subscribe to our blog RealIZM: blog.izm.fraunhofer.de/
มุมมอง: 8

วีดีโอ

#µknowsbest | Broadband Antennas for Cellular Networks
มุมมอง 41หลายเดือนก่อน
#Career Nowadays, antenna systems are used in many different areas. In order to achieve the best possible results, specialized systems are required that are precisely tailored to the respective application. #µknowsbest asks Thi Huyen Le from #FraunhoferIZM about her research on #broadbandantennas! Find out where they are used and what makes the project work so exciting in today's latest issue. ...
RealIZM Figure of the Month: 51x15mm Smartphone of the future
มุมมอง 332 หลายเดือนก่อน
#Figureofthemonth The smartphone of the future does not necessarily have to be large and angular. This is the view of the two industrial designers Tapani Jokinen and Robin Hoske, who are working on behalf of Fraunhofer IZM. Their concept design MODEST ARCH impresses with its round shape and handy size of just 51 x 15 mm. Find out how form and functions can support sustainable and moderate use o...
RealIZM Figure of the Month: 300 mm Wafer Process Line
มุมมอง 492 หลายเดือนก่อน
#Figureofthemonth The Fraunhofer IZM-ASSID “All Silicon System Integration Dresden - ASSID” has a 300(200)-mm 3D wafer-level process line with modules for TSV formation, pre-assembly, wafer-level assembly and stacking. Our colleagues at the Dresden site focus on process development, material and system evaluation as well as R&D services and prototyping in the field of packaging technologies for...
#μknowsbest | Measuring Materials through Nanoindentation
มุมมอง 452 หลายเดือนก่อน
#Career In order to develop reliable #electronics, it is important to know the properties of a material. This is why components are thoroughly tested. One method used for this is #nanoindentation. #µknowsbest asks Simon Kuttler, who carries out reliability simulations at #FraunhoferIZM, tells us what nanoindentation is and how it is used. #ResearchForNewcomers #µknowsbest #reliability #simulati...
RealIZM Figure of the Month: 10 Nanoseconds
มุมมอง 433 หลายเดือนก่อน
#figureofthemonth At Fraunhofer IZM, a Power Electronics Test chamber is used to measure switching losses to predict the perfect system design. The test chamber is vital, as new, modern wide band gap Silicon carbide and gallium nitride compound semiconductors can switch in less than 10 nanoseconds - a speed at which losses can’t be measured accurately with the standard double pulse method emplo...
#µknowsbest | Partner School Edition #2: Cleanrooms
มุมมอง 664 หลายเดือนก่อน
#Career #µknowsbest is back. Today we present the second quiz video, which was produced in cooperation with the Gabriele-von-Bülow-Gymnasium. In just two days of workshops, the pupils filmed interviews with IZM experts and edited them with us. Today, student Mila 👩‍🎓 asks our training officer Sven Schmidt what cleanrooms are all about and why they are so important for microelectronic research. ...
RealIZM Figure of the Month: -273,15° Celsius / 0 Kelvin
มุมมอง 224 หลายเดือนก่อน
#figureofthemonth Quantum computers have been a field of research since the 1970s. Their advantage is that they perform calculations in parallel instead of one after the other, as is the case with classical computers. This is made possible by qubits. In order to keep qubits stable for computing power, their ambient temperature must be close to absolute zero at -273.15 degrees Celsius / 0 degree...
Green ICT-Kurs: Ökobilanzierung und Klimaneutralität von IKT - Basiswissen für Unternehmen
มุมมอง 934 หลายเดือนก่อน
Green ICT-Kurs: Ökobilanzierung und Klimaneutralität von IKT - Basiswissen für Unternehmen
Fraunhofer IZM at SMTconnect: Future Packaging Production Line
มุมมอง 1045 หลายเดือนก่อน
Fraunhofer IZM at SMTconnect: Future Packaging Production Line
Green ICT Kurs: Robuste Prozesse der AVT unter Berücksichtigung von Nachhaltigkeitsaspekten
มุมมอง 935 หลายเดือนก่อน
Green ICT Kurs: Robuste Prozesse der AVT unter Berücksichtigung von Nachhaltigkeitsaspekten
#µknowsbest | Partner School Edition #1: AI
มุมมอง 655 หลายเดือนก่อน
#µknowsbest | Partner School Edition #1: AI
Green ICT Schulung: Batterien - allgemeiner Überblick und gesetzliche Richtlinien, Teil 1
มุมมอง 885 หลายเดือนก่อน
Green ICT Schulung: Batterien - allgemeiner Überblick und gesetzliche Richtlinien, Teil 1
Green ICT Schulung: Batterien - Zusammensetzung und Recycling, Teil 2
มุมมอง 395 หลายเดือนก่อน
Green ICT Schulung: Batterien - Zusammensetzung und Recycling, Teil 2
Green ICT Schulung: Grüne Zuverlässigkeit
มุมมอง 425 หลายเดือนก่อน
Green ICT Schulung: Grüne Zuverlässigkeit
Ankündigung - Green ICT Online-Kurs: Robuste Prozesse der AVT mit Fokus auf Nachhaltigkeit
มุมมอง 365 หลายเดือนก่อน
Ankündigung - Green ICT Online-Kurs: Robuste Prozesse der AVT mit Fokus auf Nachhaltigkeit
RealIZM Figure of the Month: 75 years Fraunhofer Gesellschaft
มุมมอง 86 หลายเดือนก่อน
RealIZM Figure of the Month: 75 years Fraunhofer Gesellschaft
Expert Session: Reliability Challenges of Power Electronic Modules
มุมมอง 2296 หลายเดือนก่อน
Expert Session: Reliability Challenges of Power Electronic Modules
E:Space project in the Textile Prototyping Lab at Fraunhofer IZM
มุมมอง 366 หลายเดือนก่อน
E:Space project in the Textile Prototyping Lab at Fraunhofer IZM
Expert Session: Concepts for Power Electronics - PCB Embedding for SiC and GaN Semiconductors
มุมมอง 5396 หลายเดือนก่อน
Expert Session: Concepts for Power Electronics - PCB Embedding for SiC and GaN Semiconductors
RealIZM Tech Insights: Vertrauenswürdige Infrastruktur in der Mikroelektronikproduktion
มุมมอง 1436 หลายเดือนก่อน
RealIZM Tech Insights: Vertrauenswürdige Infrastruktur in der Mikroelektronikproduktion
RealIZM Tech Insights: A trustworthy infrastructure for microelectronics production
มุมมอง 1856 หลายเดือนก่อน
RealIZM Tech Insights: A trustworthy infrastructure for microelectronics production
Expert Session: Highly reliable Interconnect Processes for Power Electronics
มุมมอง 1.2K6 หลายเดือนก่อน
Expert Session: Highly reliable Interconnect Processes for Power Electronics
RealIZM Figure of the Month: 59 Sensor Nodes
มุมมอง 206 หลายเดือนก่อน
RealIZM Figure of the Month: 59 Sensor Nodes
Green ICT-Kurs: Drahtlose, autarke, miniaturisierte Sensor-Aktor-Plattform für Industrieanwendungen
มุมมอง 996 หลายเดือนก่อน
Green ICT-Kurs: Drahtlose, autarke, miniaturisierte Sensor-Aktor-Plattform für Industrieanwendungen
#µknowsbest | Data Hygiene through Sustainable Computing
มุมมอง 1277 หลายเดือนก่อน
#µknowsbest | Data Hygiene through Sustainable Computing
Expert Session: Wafer-level Process Technologies for SiC/GaN Power Electronics
มุมมอง 1.4K7 หลายเดือนก่อน
Expert Session: Wafer-level Process Technologies for SiC/GaN Power Electronics
Flip-Chip Underfill: Pushing Boundaries in Semicon Packaging in cooperation with Fraunhofer IZM
มุมมอง 6087 หลายเดือนก่อน
Flip-Chip Underfill: Pushing Boundaries in Semicon Packaging in cooperation with Fraunhofer IZM
Expert Session: Power Electronics - Strategies for High Volume Production and Cost Reduction
มุมมอง 8377 หลายเดือนก่อน
Expert Session: Power Electronics - Strategies for High Volume Production and Cost Reduction
Videotagebuch: Schüler*innen-Praktikum am Fraunhofer IZM
มุมมอง 318 หลายเดือนก่อน
Videotagebuch: Schüler*innen-Praktikum am Fraunhofer IZM

ความคิดเห็น

  • @supersuperANANAS
    @supersuperANANAS 3 หลายเดือนก่อน

    very interesting, thank you for your work

  • @Stealth3008
    @Stealth3008 4 หลายเดือนก่อน

    That's pretty chill

  • @曹先生-d1y
    @曹先生-d1y 5 หลายเดือนก่อน

    cool

  • @feralbomustafa7039
    @feralbomustafa7039 6 หลายเดือนก่อน

    Richtig cool!

  • @nsshn9690
    @nsshn9690 6 หลายเดือนก่อน

    amazing... thnx a lot for this presentation and the informations

  • @TT-M
    @TT-M 6 หลายเดือนก่อน

    Moin, ich hätte noch 3 Fragen zum Vortrag: 1. Wie weit unterscheiden sich die hier vorgestellte _Wake-Up Technik_ von _Target Wake Time (TWT),_ welche z.b. im IEEE 802.11ah (Wi-Fi HaLow) Standard steht? Bzw. kann man mit der hier vorgestellten Technik diese IEEE Norm erfüllen? 2. Bei 1:08:00 wird beide Rechnungen mit Primärzellen durchgeführt. Könnte man nicht eine Gegenrechnung mit Sekundärzellen, wie LiFePO4 26650er mit 1W PV Modul aufstellen, welche sich immer wieder aufladen kann, um diese weitere Möglichkeit zu beleuchten? 3. Hat die ESP32-Serie von Espressif, nicht viele hier genannten Eigenschaften von Haus aus, wie etwa der ESP32-C6er?

  • @mbuchwald_atg
    @mbuchwald_atg 8 หลายเดือนก่อน

    Schau an, ein Silikon-Photonik-Chip bei 02:58🤦

  • @miles2378
    @miles2378 11 หลายเดือนก่อน

    4:49 why did they not make the Silicon waveguide the same width as the fibet?

    • @Fraunhofer-IZM
      @Fraunhofer-IZM 11 หลายเดือนก่อน

      Hi Christopher Bloom, please find below the answer from our colleague Wojciech Lewoczko-Adamczyk: This is a very good question and the problem is well known. For some years there have been a quest among Si-PICs manufacturers to reach the goal of matching the model size of the PIC-waveguide to that of a fiber. Some attempts are "almost there" however the reason for "almost" is of technological nature: the thickness of the Si or oxide layers cannot be arbitrary and this limits the expansion of the beam size. At least at telecom wavelengths. On the other side of the coupling interface there are efforts to minimize the mode size of the fiber by using adiabatic spot-size converters, UHNA-fibers or lens fibers. Best regards

    • @miles2378
      @miles2378 11 หลายเดือนก่อน

      @@Fraunhofer-IZM thank you.

  • @nsshn9690
    @nsshn9690 ปีที่แล้ว

    ich liebe diese Architektur

  • @gaussdog
    @gaussdog ปีที่แล้ว

    I lived in Germany and went to public German school from the age of kindergarten through third grade… I completely forgot how you can just take 17 words and stick them together and make one word in German, until I started reading the closed captions Great Vid! Thanks

  • @guanchen4810
    @guanchen4810 ปีที่แล้ว

    Thanks for the sharing.

  • @mishuk2008
    @mishuk2008 ปีที่แล้ว

    At 5:39, I was expecting a sum of the field integrals in the dominator. Can you please explain why I am wrong? Thanks so much!

    • @Fraunhofer-IZM
      @Fraunhofer-IZM ปีที่แล้ว

      Hi Paul Tuhin, Please find here the feedback from Wojtek regarding your question: The easiest argumentation is the check of units: if there was a sum, instead of product, in denominator, the coupling efficiency would not be unitless. For more detailed mathematical treatment please search textbooks or internet for “mode overlap integral” or “projection of wave function onto eigenstates”. Note that the mentioned wave function represents the amplitude of electric field. For calculating the power coupling efficiency you need the integrals of the square of electric field.

  • @peterdoyle8571
    @peterdoyle8571 ปีที่แล้ว

    Utilizing the optical interconnect technology created by LightMatter, it would be great inspiration to the computer industry if an entire glass based motherboard was created connecting all computer components, cpu, gpu, memory, etc. via optical waveguides

  • @peterdoyle8571
    @peterdoyle8571 ปีที่แล้ว

    What if Cerebras, LightMatter, UltraRam, and AMD and Nvidia came together to build a fully integrated server using panel level packaging via optical interconnects. Imagine the speed and power efficiency of said system!!!

  • @karennavia3634
    @karennavia3634 ปีที่แล้ว

    🥰😋

  • @audreythornton2514
    @audreythornton2514 ปีที่แล้ว

    ✌️ ᎮᏒᎧᎷᎧᏕᎷ

  • @Voidroamer
    @Voidroamer ปีที่แล้ว

    wow that is awesome, i had no idea! lithography on top of lithography!

  • @jenson7725
    @jenson7725 2 ปีที่แล้ว

    𝓹𝓻𝓸𝓶𝓸𝓼𝓶 😈

  • @feralbomustafa7039
    @feralbomustafa7039 2 ปีที่แล้ว

    Sehr gutes und informatives Format. Kein Wunder, dass ihr den Kommunikationspreis erhalten habt. <3

  • @meetoptics
    @meetoptics 3 ปีที่แล้ว

    This are the kind of presentation that photonics field needs to approach society and make people understand how our lives may improve thanks to scientific innovations and the engagement of more and more people. From MEETOPTICS we are proud to be part of the photonics community and to help engineers and researchers in their search for optical lenses through our site. We celebrate every step forward and we hope new people join our community every day!

  • @namigalasgarzade7727
    @namigalasgarzade7727 3 ปีที่แล้ว

    May I ask when the glass integrated waveguides seminar will take place?

    • @Fraunhofer-IZM
      @Fraunhofer-IZM 3 ปีที่แล้ว

      Dear @Namig Alasgarzade. The online workshop series has ended for the time being under the title »IZM Photonics: IN GLASS WE TRUST«. You can find all the other online seminars of the series on our youtube channel or on our website: www.izm.fraunhofer.de/en/news_events/trainings-and-workshops/online-sessions--izm-photonics-in-glass-we-trust.html. Stay tuned about our next online workshop series named: "»IZM PHOTONIK PACKAGING: IN OPTICAL INTERCONNECTS WE TRUST« with more interessting speakers and topics about the photonic interconnection technologies at Fraunhofer IZM.

  • @RichardKCollins
    @RichardKCollins 3 ปีที่แล้ว

    Optical fiber coupling to photonics chip by Wojciech Lewoczko-Adamczyk at th-cam.com/video/rHcfemtfP2s/w-d-xo.html Suggest you use the whole screen for the graphs, equations, diagrams. It is too small to read easily and I do not need to see your face while you are looking at the screen. Such are called "screen videos", where you and the viewer are looking at the whole of something together. All your links are to generic pages, not to your work and these topics. The links are too vague and waste time tracking down this interesting topic. Some very nice methods, materials and components. But you are right that there is a mismatch in size and methods. My immediate impression from the mismatch would be to put an array of the chips on the whole face of the fiber, map the channel, and find optimal paths (primarily timings and correlations). If you have lots of fiber, use it. Don't make the fiber more expensive to fit one chip, just put lots of chips on existing infrastructure. It means more sensitive detectors in 2D arrays, but that is not too hard. But you can't hand if off to a graduate student. It becomes a statistical communications channel, not forcing small pieces to work together. Putting N^2 channels through an existing fiber is a fun project, and challenging enough to keep your interest. Just like disk drives and memory chips, you map the bad sectors, the bad and good channels. Some would call it "lucky imaging". It will work for copper as well. Richard Collins, Director, The Internet Foundation

    • @Fraunhofer-IZM
      @Fraunhofer-IZM 3 ปีที่แล้ว

      Thank you Mr. Collings for your constructive feedback. We will discuss your comments for the upcoming online workshop series and further optimise our online events. For questions regarding the content, please contact the speaker Wojciech Lewoczko-Adamczyk directly at wojciech.lewoczko-adamczyk@izm.fraunhofer.de.

    • @RichardKCollins
      @RichardKCollins 3 ปีที่แล้ว

      @@Fraunhofer-IZM There is a LOT of really good content on TH-cam but it is not indexed all all, and most of the groups trying to work together and share have poor tools for communicating. These comments and replies are better than nothing, but far less than ideal. Keep up the great work! Thanks for the contact information. You might consider what would be best to put in every description area of any videos you share on the Internet. TH-cam has no standards, so you will have to make up your own.

  • @MScAlchemist
    @MScAlchemist 3 ปีที่แล้ว

    Sehr informativ! Viel Erfolg bei den weiteren Forschungen!

  • @steveschiets8031
    @steveschiets8031 3 ปีที่แล้ว

    Are you familiar with polymers?

    • @Fraunhofer-IZM
      @Fraunhofer-IZM 3 ปีที่แล้ว

      @Steve Schiets we´re very happy about your comment. To answer your question, their will be another webinar in August about polymers itself by Dr. Alethea Vanessa Zamora Gómez. If you want to get in contact with her earlier you find her contact information here: www.izm.fraunhofer.de/en/abteilungen/system_integrationinterconnectiontechnologies/arbeitsgebiete/photonic-packaging/optische-sensorik.html

  • @arcoshpl
    @arcoshpl 4 ปีที่แล้ว

    gut gemacht... weiter so. Die Leistungselektronik habt ihr vergessen.. ;)

  • @andrewjar4199
    @andrewjar4199 4 ปีที่แล้ว

    0:34lol habe gerade Freispiele gefunden allstock.live/free-spins-bonus.php

  • @mike4tech
    @mike4tech 5 ปีที่แล้ว

    What a beautiful video love to see the inside of this amazing institution