home.social

#memristor — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #memristor, aggregated by home.social.

fetched live
  1. Realtime AI voraus

    "in einem 40-Nanometer-Prozess gefertigt, taktet mit 50 Megahertz und benötigt für einen einzelnen Rechenschritt 2,12 Millisekunden. Die vollständige Rekonstruktion einer kortikalen Oberfläche schließt er nach 426 Millisekunden ab, also in weniger als einer halben Sekunde. Damit unterschreitet er erstmals die Latenzgrenze von zehn Millisekunden pro Schritt, die als Schwelle für echte Echtzeitverarbeitung gilt."

    forschung-und-wissen.de/nachri

    #AI #nvidia #memristor

  2. Realtime AI voraus

    "in einem 40-Nanometer-Prozess gefertigt, taktet mit 50 Megahertz und benötigt für einen einzelnen Rechenschritt 2,12 Millisekunden. Die vollständige Rekonstruktion einer kortikalen Oberfläche schließt er nach 426 Millisekunden ab, also in weniger als einer halben Sekunde. Damit unterschreitet er erstmals die Latenzgrenze von zehn Millisekunden pro Schritt, die als Schwelle für echte Echtzeitverarbeitung gilt."

    forschung-und-wissen.de/nachri

    #AI #nvidia #memristor

  3. Realtime AI voraus

    "in einem 40-Nanometer-Prozess gefertigt, taktet mit 50 Megahertz und benötigt für einen einzelnen Rechenschritt 2,12 Millisekunden. Die vollständige Rekonstruktion einer kortikalen Oberfläche schließt er nach 426 Millisekunden ab, also in weniger als einer halben Sekunde. Damit unterschreitet er erstmals die Latenzgrenze von zehn Millisekunden pro Schritt, die als Schwelle für echte Echtzeitverarbeitung gilt."

    forschung-und-wissen.de/nachri

    #AI #nvidia #memristor

  4. Realtime AI voraus

    "in einem 40-Nanometer-Prozess gefertigt, taktet mit 50 Megahertz und benötigt für einen einzelnen Rechenschritt 2,12 Millisekunden. Die vollständige Rekonstruktion einer kortikalen Oberfläche schließt er nach 426 Millisekunden ab, also in weniger als einer halben Sekunde. Damit unterschreitet er erstmals die Latenzgrenze von zehn Millisekunden pro Schritt, die als Schwelle für echte Echtzeitverarbeitung gilt."

    forschung-und-wissen.de/nachri

    #AI #nvidia #memristor

  5. Realtime AI voraus

    "in einem 40-Nanometer-Prozess gefertigt, taktet mit 50 Megahertz und benötigt für einen einzelnen Rechenschritt 2,12 Millisekunden. Die vollständige Rekonstruktion einer kortikalen Oberfläche schließt er nach 426 Millisekunden ab, also in weniger als einer halben Sekunde. Damit unterschreitet er erstmals die Latenzgrenze von zehn Millisekunden pro Schritt, die als Schwelle für echte Echtzeitverarbeitung gilt."

    forschung-und-wissen.de/nachri

    #AI #nvidia #memristor

  6. Cambridge Üniversitesi'nin beyin ilhamlı çipi, yapay zekanın enerji tüketimini %70’e indiriyor. Memristör teknolojisiyle desteklenen bu yenilik, veri merkezlerinde yeni bir standart oluşturuyor ve sürdürülebilirliği artırıyor.

    🚩 #yapayzeka #beyinchip #teknoloji #enerji #memristor

  7. USC Researchers Develop Memristor Chip Capable of Withstanding Extreme Heat

    📰 Original title: A New Computer Chip Could Finally Withstand The Hellscape of Venus

    🤖 IA: It's clickbait ⚠️
    👥 Usuarios: It's clickbait ⚠️

    View full AI summary: killbait.com/en/usc-researcher

    #technology #memristor #extremeheat #graphene

  8. USC Researchers Develop Memristor Chip Capable of Withstanding Extreme Heat

    📰 Original title: A New Computer Chip Could Finally Withstand The Hellscape of Venus

    🤖 IA: It's clickbait ⚠️
    👥 Usuarios: It's clickbait ⚠️

    View full AI summary: killbait.com/en/usc-researcher

    #technology #memristor #extremeheat #graphene

  9. USC Researchers Develop Memristor Chip Capable of Withstanding Extreme Heat

    📰 Original title: A New Computer Chip Could Finally Withstand The Hellscape of Venus

    🤖 IA: It's clickbait ⚠️
    👥 Usuarios: It's clickbait ⚠️

    View full AI summary: killbait.com/en/usc-researcher

    #technology #memristor #extremeheat #graphene

  10. USC Researchers Develop Memristor Chip Capable of Withstanding Extreme Heat

    📰 Original title: A New Computer Chip Could Finally Withstand The Hellscape of Venus

    🤖 IA: It's clickbait ⚠️
    👥 Usuarios: It's clickbait ⚠️

    View full AI summary: killbait.com/en/usc-researcher

    #technology #memristor #extremeheat #graphene

  11. USC Researchers Develop Memristor Chip Capable of Withstanding Extreme Heat

    📰 Original title: A New Computer Chip Could Finally Withstand The Hellscape of Venus

    🤖 IA: It's clickbait ⚠️
    👥 Usuarios: It's clickbait ⚠️

    View full AI summary: killbait.com/en/usc-researcher

    #technology #memristor #extremeheat #graphene

  12. USC Researchers Develop Memristor Chip Capable of Withstanding Extreme Heat

    📰 Original title: A New Computer Chip Could Finally Withstand The Hellscape of Venus

    🤖 IA: It's clickbait ⚠️
    👥 Usuarios: It's clickbait ⚠️

    View full AI summary: killbait.com/en/usc-researcher

    #technology #memristor #extremeheat #graphene

  13. In the Re-enactment Lab IV at ArtScience dept. in The Hague, Ko de Beer experimenting with a coherer / memristor setup to remotely trigger an LED by means of a discharge from a Van de Graaff generator.
    #radio #coherer #memristor #static

  14. In the Re-enactment Lab IV at ArtScience dept. in The Hague, Ko de Beer experimenting with a coherer / memristor setup to remotely trigger an LED by means of a discharge from a Van de Graaff generator.
    #radio #coherer #memristor #static

  15. In the Re-enactment Lab IV at ArtScience dept. in The Hague, Ko de Beer experimenting with a coherer / memristor setup to remotely trigger an LED by means of a discharge from a Van de Graaff generator.
    #radio #coherer #memristor #static

  16. In the Re-enactment Lab IV at ArtScience dept. in The Hague, Ko de Beer experimenting with a coherer / memristor setup to remotely trigger an LED by means of a discharge from a Van de Graaff generator.
    #radio #coherer #memristor #static

  17. In the Re-enactment Lab IV at ArtScience dept. in The Hague, Ko de Beer experimenting with a coherer / memristor setup to remotely trigger an LED by means of a discharge from a Van de Graaff generator.
    #radio #coherer #memristor #static

  18. Forscher der University of Cambridge haben neuartige Memristoren aus Hafniumoxid entwickelt.

    Durch asymmetrische p-n-Heterointerfaces modulieren die neuromorphen Bauteile ihre Leitfähigkeit auf extrem niedrigem Energieniveau. Sie verarbeiten Informationen direkt am Speicherort, was den Energiebedarf um bis zu 70 Prozent senken kann.

    #Hafniumoxid #Memristor #Hardware #Cambridge #News
    all-ai.de/news/news26/cambridg

  19. Forscher der University of Cambridge haben neuartige Memristoren aus Hafniumoxid entwickelt.

    Durch asymmetrische p-n-Heterointerfaces modulieren die neuromorphen Bauteile ihre Leitfähigkeit auf extrem niedrigem Energieniveau. Sie verarbeiten Informationen direkt am Speicherort, was den Energiebedarf um bis zu 70 Prozent senken kann.

    #Hafniumoxid #Memristor #Hardware #Cambridge #News
    all-ai.de/news/news26/cambridg

  20. Forscher der University of Cambridge haben neuartige Memristoren aus Hafniumoxid entwickelt.

    Durch asymmetrische p-n-Heterointerfaces modulieren die neuromorphen Bauteile ihre Leitfähigkeit auf extrem niedrigem Energieniveau. Sie verarbeiten Informationen direkt am Speicherort, was den Energiebedarf um bis zu 70 Prozent senken kann.

    #Hafniumoxid #Memristor #Hardware #Cambridge #News
    all-ai.de/news/news26/cambridg

  21. Very nifty approach!

    "Perovskite solar cells (PSCs) with power-conversion efficiencies comparable to established technologies hold huge promise for becoming the future photovoltaic technology, also given their versatility, low-cost and energy-efficient fabrication processes. However, PSCs are not stable under moderate reverse bias, an unavoidable situation under real-world operation, for instance, caused by partial shading of a module or installation with PSCs connected in series. Approaches to address this issue have focused on engineering the device architecture to enhance the breakdown voltage and mitigate the detrimental effects of reverse bias2,5,6. Here we present a completely different approach that fully solves the reverse-bias issue. With our Memsol, we developed a new concept of a solar cell with an integrated memristor, which protects the solar cell and simultaneously works as a bypass element. The memristor is realized by area-selective deposition of an additional metal–insulator stack and shares the perovskite and electrodes with the solar-cell part. Reverse-bias and shading tests show that the Memsol remains stable and automatically toggles between a low-resistance bypass state and full-efficiency solar-cell operation, dependent on the illumination and bias conditions."

    #photovoltaics
    #perovskites
    #memristor

    nature.com/articles/s41586-026

  22. Very nifty approach!

    "Perovskite solar cells (PSCs) with power-conversion efficiencies comparable to established technologies hold huge promise for becoming the future photovoltaic technology, also given their versatility, low-cost and energy-efficient fabrication processes. However, PSCs are not stable under moderate reverse bias, an unavoidable situation under real-world operation, for instance, caused by partial shading of a module or installation with PSCs connected in series. Approaches to address this issue have focused on engineering the device architecture to enhance the breakdown voltage and mitigate the detrimental effects of reverse bias2,5,6. Here we present a completely different approach that fully solves the reverse-bias issue. With our Memsol, we developed a new concept of a solar cell with an integrated memristor, which protects the solar cell and simultaneously works as a bypass element. The memristor is realized by area-selective deposition of an additional metal–insulator stack and shares the perovskite and electrodes with the solar-cell part. Reverse-bias and shading tests show that the Memsol remains stable and automatically toggles between a low-resistance bypass state and full-efficiency solar-cell operation, dependent on the illumination and bias conditions."

    #photovoltaics
    #perovskites
    #memristor

    nature.com/articles/s41586-026

  23. Very nifty approach!

    "Perovskite solar cells (PSCs) with power-conversion efficiencies comparable to established technologies hold huge promise for becoming the future photovoltaic technology, also given their versatility, low-cost and energy-efficient fabrication processes. However, PSCs are not stable under moderate reverse bias, an unavoidable situation under real-world operation, for instance, caused by partial shading of a module or installation with PSCs connected in series. Approaches to address this issue have focused on engineering the device architecture to enhance the breakdown voltage and mitigate the detrimental effects of reverse bias2,5,6. Here we present a completely different approach that fully solves the reverse-bias issue. With our Memsol, we developed a new concept of a solar cell with an integrated memristor, which protects the solar cell and simultaneously works as a bypass element. The memristor is realized by area-selective deposition of an additional metal–insulator stack and shares the perovskite and electrodes with the solar-cell part. Reverse-bias and shading tests show that the Memsol remains stable and automatically toggles between a low-resistance bypass state and full-efficiency solar-cell operation, dependent on the illumination and bias conditions."

    #photovoltaics
    #perovskites
    #memristor

    nature.com/articles/s41586-026

  24. Very nifty approach!

    "Perovskite solar cells (PSCs) with power-conversion efficiencies comparable to established technologies hold huge promise for becoming the future photovoltaic technology, also given their versatility, low-cost and energy-efficient fabrication processes. However, PSCs are not stable under moderate reverse bias, an unavoidable situation under real-world operation, for instance, caused by partial shading of a module or installation with PSCs connected in series. Approaches to address this issue have focused on engineering the device architecture to enhance the breakdown voltage and mitigate the detrimental effects of reverse bias2,5,6. Here we present a completely different approach that fully solves the reverse-bias issue. With our Memsol, we developed a new concept of a solar cell with an integrated memristor, which protects the solar cell and simultaneously works as a bypass element. The memristor is realized by area-selective deposition of an additional metal–insulator stack and shares the perovskite and electrodes with the solar-cell part. Reverse-bias and shading tests show that the Memsol remains stable and automatically toggles between a low-resistance bypass state and full-efficiency solar-cell operation, dependent on the illumination and bias conditions."

    #photovoltaics
    #perovskites
    #memristor

    nature.com/articles/s41586-026

  25. Very nifty approach!

    "Perovskite solar cells (PSCs) with power-conversion efficiencies comparable to established technologies hold huge promise for becoming the future photovoltaic technology, also given their versatility, low-cost and energy-efficient fabrication processes. However, PSCs are not stable under moderate reverse bias, an unavoidable situation under real-world operation, for instance, caused by partial shading of a module or installation with PSCs connected in series. Approaches to address this issue have focused on engineering the device architecture to enhance the breakdown voltage and mitigate the detrimental effects of reverse bias2,5,6. Here we present a completely different approach that fully solves the reverse-bias issue. With our Memsol, we developed a new concept of a solar cell with an integrated memristor, which protects the solar cell and simultaneously works as a bypass element. The memristor is realized by area-selective deposition of an additional metal–insulator stack and shares the perovskite and electrodes with the solar-cell part. Reverse-bias and shading tests show that the Memsol remains stable and automatically toggles between a low-resistance bypass state and full-efficiency solar-cell operation, dependent on the illumination and bias conditions."

    #photovoltaics
    #perovskites
    #memristor

    nature.com/articles/s41586-026

  26. Các nhà khoa học vừa tạo ra chip nano lỏng với khả năng ghi nhớ như não bộ! Chip MOF này điều khiển dòng proton phi tuyến tính, hoạt động như một memristor ion. Phát hiện này mở ra hướng đi mới cho công nghệ iontronics và máy tính mô phỏng sinh học.

    #KhoaHoc #CongNghe #Memristor #NanoFluidics #BrainLikeComputing #Science #Technology #IonTrònics

    reddit.com/r/singularity/comme

  27. Các nhà khoa học vừa tạo ra chip nano lỏng với khả năng ghi nhớ như não bộ! Chip MOF này điều khiển dòng proton phi tuyến tính, hoạt động như một memristor ion. Phát hiện này mở ra hướng đi mới cho công nghệ iontronics và máy tính mô phỏng sinh học.

    #KhoaHoc #CongNghe #Memristor #NanoFluidics #BrainLikeComputing #Science #Technology #IonTrònics

    reddit.com/r/singularity/comme

  28. Các nhà khoa học vừa tạo ra chip nano lỏng với khả năng ghi nhớ như não bộ! Chip MOF này điều khiển dòng proton phi tuyến tính, hoạt động như một memristor ion. Phát hiện này mở ra hướng đi mới cho công nghệ iontronics và máy tính mô phỏng sinh học.

    #KhoaHoc #CongNghe #Memristor #NanoFluidics #BrainLikeComputing #Science #Technology #IonTrònics

    reddit.com/r/singularity/comme

  29. Các nhà khoa học vừa tạo ra chip nano lỏng với khả năng ghi nhớ như não bộ! Chip MOF này điều khiển dòng proton phi tuyến tính, hoạt động như một memristor ion. Phát hiện này mở ra hướng đi mới cho công nghệ iontronics và máy tính mô phỏng sinh học.

    #KhoaHoc #CongNghe #Memristor #NanoFluidics #BrainLikeComputing #Science #Technology #IonTrònics

    reddit.com/r/singularity/comme

  30. 3️⃣ Scalable 28nm IC implementation of coupled oscillator network featuring tunable topology and complexity
    👉 arxiv.org/abs/2505.10248

    4️⃣ Self Clocked Digital LDO for Cryogenic Power Management in 22nm FDSOI with 98 Percent Efficiency
    👉 arxiv.org/abs/2505.10234

    🔗 Check them out on arXiv. 📄

    #arXiv #NeuromorphicComputing #Memristor #CryoCMOS #SoC #VLSI #OscillatorNetworks #LowPowerDesign

  31. Spannender Artikel über deutsche #Memristor-Forschung:

    Neuartiger Computer: Diese Forscherin baut das Gehirn auf einem Chip nach

    An so was hat übrigens auch Google als die Zukunft geglaubt, weil so schön energieeffizient. Fast ein Analog-Computer. Bis OpenAI kommerziell, aber energiehungrig, mit dem Transformer-Zeug durchstartete und Google sich auf dem falschen Ast gesetzt gesehen hatte.

    spiegel.de/wissenschaft/techni (S+)

  32. Spannender Artikel über deutsche #Memristor-Forschung:

    Neuartiger Computer: Diese Forscherin baut das Gehirn auf einem Chip nach

    An so was hat übrigens auch Google als die Zukunft geglaubt, weil so schön energieeffizient. Fast ein Analog-Computer. Bis OpenAI kommerziell, aber energiehungrig, mit dem Transformer-Zeug durchstartete und Google sich auf dem falschen Ast gesetzt gesehen hatte.

    spiegel.de/wissenschaft/techni (S+)