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Semiconductor Memories: Technology, Testing, and

Semiconductor Memories: Technology, Testing, and Reliability. Ashok K. Sharma

Semiconductor Memories: Technology, Testing, and Reliability


Semiconductor.Memories.Technology.Testing.and.Reliability.pdf
ISBN: 0780310004,9780780310001 | 473 pages | 12 Mb


Download Semiconductor Memories: Technology, Testing, and Reliability



Semiconductor Memories: Technology, Testing, and Reliability Ashok K. Sharma
Publisher: Wiley-IEEE Press




Renesas Electronics Corporation, a premier supplier of advanced semiconductor solutions, has developed the industry's first 40-nanometer (nm) memory intellectual property (IP) for automotive real-time applications. * Application-specific memories and architectures. More pins means more manufacturing issues and reliability starts to drop. Due to more pins and higher speeds; Standards compliance (need to build this in from the start); Signal integrity (increasingly critical as transfer rates rise); Timing margin; Probability (for physical testing of manufactured systems). MRAM has now been on the market for over two years and has proven to be a highly-reliable, high-speed non-volatile memory. Renesas develops industry's first 40nm embedded flash memory technology for automotive real-time applications; in automotive microcontrollers by autumn 2012. Save to My Library Follow Comments. Thomas Coughlin - September 18, 2012. Because the data is stored as a magnetic state, MRAM is inherently nonvolatile as well as having unlimited endurance and fast operation. Technical Details for Semiconductor Memories: Technology, Testing, and Reliability Memory cell structures and fabrication technologies. Semiconductor Memories: Technology, Testing, and Reliability. Browse the world's largest eBookstore and start reading today on the web, tablet, phone, or ereader. Zanoni: FLASH Memories (Kluwer Academic, Dordrecht, 2000) p. The only company to date to successfully commercialize MRAM is EverSpin Technologies (recently spun- out of parent Freescale Semiconductor). Consequently, the semiconductor memory industry has been and is evolving different interface standards to meet the divergent needs of these application markets. Fundamentals of solid-state memory technologies in consumer electronics - Part 3: Flash memory endurance and predicting bit errors. Sharma: Semiconductor Memories Technology, Testing and Reliability (IEEE Press, Piscataway, NJ, 1997) p.

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