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Picture the smartphone in your pocket, the data centers powering artificial intelligence, or the wearable health monitors that track your heartbeat. All of them rely on energy-hungry memory chips to ...
Everyday technology—smartphones, artificial intelligence data centers, wearable health trackers—depends on memory chips that ...
MRAM is one of the most promising emerging memory technologies we have, as it can theoretical improve on nearly every metric of existing DRAM and SRAM technologies. However, MRAM requires significant ...
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Scientists shatter silicon’s temperature barrier with revolutionary memory device that works at 1100°F
New tech could open doors to using computers in environments with extreme heat, like Venus. ANN ARBOR, Mich. — Scientists have developed a groundbreaking computer memory device that can operate at ...
Researchers have demonstrated that the layered multiferroic material nickel iodide (NiI2) may be the best candidate yet for devices such as magnetic computer memory that are extremely fast and compact ...
Electronic devices power everyday life, from smartphones to medical sensors. Yet, as these gadgets grow in number, so does the mounting challenge of electronic waste, or e-waste. Physically transient ...
Kai Ni was awarded a National Science Foundation CAREER Award to improve computing memory through the use of ferroelectric materials and capacity. The assistant professor of electrical and ...
TOKYO--(BUSINESS WIRE)--Kioxia Corporation, a world leader in memory solutions, today announced sampling [1] of the industry’s first [2] Universal Flash Storage [3] (UFS) Ver. 4.0 embedded flash ...
Inventors of Flash Memory Drive Next-Gen Automotive Innovation with Higher Performance, More Efficient Data Handling, and Automotive-Grade Reliability Available in capacities of 128 GB, 256 GB, 512 GB ...
Teradyne, Inc. (NASDAQ: TER), a leading provider of automated test equipment and advanced robotics, is proud to announce the launch of the Magnum 7H, a next-generation memory tester designed to meet ...
Scientists from Auburn University have proposed a new mechanism to control some of the thinnest electronic memory devices ...
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