• 제목/요약/키워드: Capacitor-less 1T-DRAM

검색결과 2건 처리시간 0.016초

Phase Change Memory와 Capacitor-Less DRAM을 사용한 Unified Dual-Gate Phase Change RAM (Unified Dual-Gate Phase Change RAM (PCRAM) with Phase Change Memory and Capacitor-Less DRAM)

  • 김주연
    • 한국전기전자재료학회논문지
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    • 제27권2호
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    • pp.76-80
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    • 2014
  • Dual-gate PCRAM which unify capacitor-less DRAM and NVM using a PCM instead of a typical SONOS flash memory is proposed as 1 transistor. $VO_2$ changes its phase between insulator and metal states by temperature and field. The front-gate and back-gate control NVM and DRAM, respectively. The feasibility of URAM is investigated through simulation using c-interpreter and finite element analysis. Threshold voltage of NVM is 0.5 V that is based on measured results from previous fabricated 1TPCM with $VO_2$. Current sensing margin of DRAM is 3 ${\mu}A$. PCM does not interfere with DRAM in the memory characteristics unlike SONOS NVM. This novel unified dual-gate PCRAM reported in this work has 1 transistor, a low RESET/SET voltage, a fast write/erase time and a small cell so that it could be suitable for future production of URAM.

A Nonvolatile Refresh Scheme Adopted 1T-FeRAM for Alternative 1T-DRAM

  • Kang, Hee-Bok;Choi, Bok-Gil;Sung, Man-Young
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제8권1호
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    • pp.98-103
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    • 2008
  • 1T1C DRAM has been facing technological and physical constraints that make more difficult their further scaling. Thus there are much industrial interests for alternative technologies that exploit new devices and concepts to go beyond the 1T1C DRAM technology, to allow better scaling, and to enlarge the memory performance. The technologies of DRAM cell are changing from 1T1C cell type to capacitor-less 1T-gain cell type for more scalable cell size. But floating body cell (FBC) of 1T-gain DRAM has weak retention properties than 1T1C DRAM. FET-type 1T-FeRAM is not adequate for long term nonvolatile applications, but could be a good alternative for the short term retention applications of DRAM. The proposed nonvolatile refresh scheme is based on utilizing the short nonvolatile retention properties of 1T-FeRAM in both after power-off and power-on operation condition.