• 제목/요약/키워드: deep sub-micron

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A High Performance Co-design of 26 nm 64 Gb MLC NAND Flash Memory using the Dedicated NAND Flash Controller

  • You, Byoung-Sung;Park, Jin-Su;Lee, Sang-Don;Baek, Gwang-Ho;Lee, Jae-Ho;Kim, Min-Su;Kim, Jong-Woo;Chung, Hyun;Jang, Eun-Seong;Kim, Tae-Yoon
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.11 no.2
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    • pp.121-129
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    • 2011
  • It is progressing as new advents and remarkable developments of mobile device every year. On the upper line reason, NAND FLASH large density memory demands which can be stored into portable devices have been dramatically increasing. Therefore, the cell size of the NAND Flash memory has been scaled down by merely 50% and has been doubling density each per year. [1] However, side effects have arisen the cell distribution and reliability characteristics related to coupling interference, channel disturbance, floating gate electron retention, write-erase cycling owing to shrinking around 20nm technology. Also, FLASH controller to manage shrink effect leads to speed and current issues. In this paper, It will be introduced to solve cycling, retention and fail bit problems of sub-deep micron shrink such as Virtual negative read used in moving read, randomization. The characteristics of retention, cycling and program performance have 3 K per 1 year and 12.7 MB/s respectively. And device size is 179.32 $mm^2$ (16.79 mm ${\times}$ 10.68 mm) in 3 metal 26 nm CMOS.

A Deadlock Free Router Design for Network-on-Chip Architecture (NOC 구조용 교착상태 없는 라우터 설계)

  • Agarwal, Ankur;Mustafa, Mehmet;Shiuku, Ravi;Pandya, A.S.;Lho, Young-Ugh
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.11 no.4
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    • pp.696-706
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    • 2007
  • Multiprocessor system on chip (MPSoC) platform has set a new innovative trend for the System on Chip (SoC) design. With the rapidly approaching billion transistors era, some of the main problem in deep sub-micron technologies characterized by gate lengths in the range of 60-90 nm will arise from non scalable wire delays, errors in signal integrity and un-synchronized communication. These problems may be addressed by the use of Network on Chip (NOC) architecture for future SoC. Most future SoCs will use network architecture and a packet based communication protocol for on chip communication. This paper presents an adaptive wormhole routing with proactive turn prohibition to guarantee deadlock free on chip communication for NOC architecture. It shows a simple muting architecture with five full-duplex, flit-wide communication channels. We provide simulation results for message latency and compare results with those of dimension ordered techniques operating at the same link rates.