Researchers from the Institute of Science Tokyo (formerly Tokyo Tech), in collaboration with Western Digital, has developed a new high-performance material suitable for low-power SOT-MRAM:
https://t.co/mH0vl65fBT
#MRAM
An interview with Everspin's president and CEO, Sanjeev Aggarwal, talking about the company's MRAM technology, business, roadmap and vision:
https://t.co/5WYbkctqrl
#MRAM@EverspinTech
Netsol signed a global distribution partnership with Digi-Key Electronics, a pivotal development in its effort to improve global access and delivery of its MRAM and SRAM products:
https://t.co/Kz9Uf4pqDj
#MRAM@digikey
Researchers from Northwestern University, led by Prof. Khalili show that it's possible to efficiently read information from antiferromagnetic MRAM:
https://t.co/wSYRHBft34
#MRAM
Renesas developed new MRAM technologies that enabled it to produce the world's faster STT-MRAM (random access speed of 4.2 ns):
https://t.co/nKEP5MBqdl
#mram@RenesasGlobal
Researchers from Japan's Tohoku University developed a method to produce high-performance 1nm MTJs, using a CoFeB/MgO stack structure:
https://t.co/UdbvXqQcMp
#MRAM@TohokuUniPR
ITRI announced and TSMC announced that they developed SOT-MRAM array chips that boasts a power consumption of merely one percent of a comparable STT-MRAM device:
https://t.co/uloGgC1hOO
#MRAM
At the 2023 MRAM Forum, a key event by the IEEE Magnetics Society tied to the IEDM conference, Mr. Noh, Chief Technology Officer at Netsol, provided an overview of the company's advancements in #MRAM technology:
https://t.co/D8ZQ1t5vvf
Korea's NETSOL started mass producing 1Mb to 64Mb STT-MRAM products, using Samsung's Electronics Foundry. NETSOL says its MRAM has the smallest bitcell size on the market.
https://t.co/5pWcByQAay
#MRAM
Researchers from the Hebrew University of Jerusalem in Israel have made an exciting recent discovery that could change the face of spintronics research:
https://t.co/Soqs99YsrU
#spintronics
Northwestern Engineering researchers developed highly efficiency nanoscale perpendicular STT-MRAM (pMTJ) devices that use sub-volt switching. The researcher say that this new technology can allow scaling MRAM to very high densities:
https://t.co/OVmowtY6M8
#mram
With support from DARPA, Taiwan-based ITRI announced an agreement with the University of California, Los Angeles (UCLA) to co-develop Voltage-Control #MRAM technologies:
https://t.co/EUcU210aXU
Researchers from Tohoku University managed to fabricate the world's smallest STT-MRAM MTJ, at 2 nm. In addition, the researchers demonstrated fast switching (3.5 ns) in sub-five-nm STT-MRAM MTJs:
https://t.co/ZkyVRZ1uNB
#mram@TohokuUniPR
If you are looking to promote your company's products and services for the #MRAM market, increase industry awareness of your technology, and generate industry leads - MRAM-Info is the perfect choice!
https://t.co/SlOAcmAdw4
CAES announced that its radiation-hardened microelectronic technology, including a 16Mbit #MRAM chip, is on its way to Jupiter, as part of NASA’s Lucy Mission to study the 4.5 billion years old Trojan Asteroids:
https://t.co/VrJYfPqlYI
#Samsung says it is advancing its 14 nm process which will support flash-type embedded #MRAM which enables increased write speed and density. Samsung targets applications such as micro controller units (MCUs), IoT and wearables for its next-gen eMRAM:
https://t.co/rC57qrD2YN
Our poll results are in - Most people seem to believe that the embedded #MRAM will grow in the next 3-5 years, some think it will enjoy high demand and explosive growth, while others are more conservative:
https://t.co/yMD9RbtOxf
One year ago Avalanche started shipping its Serial P-SRAM STT-MRAM memory devices. Since then it announced several new products and design wins:
https://t.co/E2nxj7eaZq
#mram@FollowAvalanche