• DocumentCode
    1283841
  • Title

    Negative resistance element for a static memory cell based on enhanced surface generation (MOS devices)

  • Author

    Wilamowski, Bogdan M. ; Long, Francis M.

  • Author_Institution
    Dept. of Electr. Eng., Wyoming Univ., Laramie, WY, USA
  • Volume
    11
  • Issue
    10
  • fYear
    1990
  • Firstpage
    451
  • Lastpage
    453
  • Abstract
    A negative resistance (NR) element for a static memory cell using enhanced surface generation of MOS devices is proposed. Such a memory cell will maintain information with extremely small current information and the control circuitry can be the same as in one-transistor dynamic memories. The mechanism of operation is discussed and some experimental data are presented. It is shown that in order to maintain information in a single static memory cell, the required current can be as low as a few picoamperes. Operating currents are large enough to compensate for leakage currents of storage capacitors in dynamic RAM (DRAM) memories. By adding the proposed circuit in parallel with those capacitors, the dynamic memory can be converted into a static memory requiring no refresh circuit or restoring circuit. In the proposed memory structure, the storage capacitor can be reduced significantly or perhaps even eliminated. This will result in much faster operation in comparison to DRAM memories.<>
  • Keywords
    insulated gate field effect transistors; leakage currents; metal-insulator-semiconductor devices; negative resistance; random-access storage; MOS devices; control circuitry; dynamic RAM; dynamic memory; enhanced surface generation; leakage currents; negative resistance element; one-transistor dynamic memories; restoring circuit; small current information; static memory cell; storage capacitors; Capacitors; Circuits; Ferroelectric materials; Leakage current; MOS devices; Nonvolatile memory; Random access memory; Surface resistance; Ultra large scale integration; Voltage;
  • fLanguage
    English
  • Journal_Title
    Electron Device Letters, IEEE
  • Publisher
    ieee
  • ISSN
    0741-3106
  • Type

    jour

  • DOI
    10.1109/55.62993
  • Filename
    62993