• Journal of Terahertz Science and Electronic Information Technology
  • Vol. 18, Issue 3, 545 (2020)
ZHOU Xuana1, YAO Maoqun2、*, and ZHOU Chuanxin2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.11805/tkyda2018236 Cite this Article
    ZHOU Xuana, YAO Maoqun, ZHOU Chuanxin. Design of ternary current-mode CMOS Schmitt inverter based on HE map[J]. Journal of Terahertz Science and Electronic Information Technology , 2020, 18(3): 545 Copy Citation Text show less
    References

    [1] CHEN Z,CHEN S. A high-speed low voltage CMOS Schmitt Trigger with adjustable hysteresis[C]// 2017 IEEE/ACIS 16th International Conference on Computer and Information Science(ICIS). Wuhan,China:IEEE, 2017:293-297.

         CHEN Z,CHEN S. A high-speed low voltage CMOS Schmitt Trigger with adjustable hysteresis[C]// 2017 IEEE/ACIS 16th International Conference on Computer and Information Science(ICIS). Wuhan,China:IEEE, 2017:293-297.

    [2] SURESH A. A low power Schmitt trigger design using SBT technique in 180 nm CMOS technology[C]// 2014 IEEE International Conference on Advanced Communications,Control and Computing Technologies. [S.l.]:IEEE, 2014:533-536.

         SURESH A. A low power Schmitt trigger design using SBT technique in 180 nm CMOS technology[C]// 2014 IEEE International Conference on Advanced Communications,Control and Computing Technologies. [S.l.]:IEEE, 2014:533-536.

    [3] NEJATI A,BASTAN Y,AMIRI P. 0.4 V ultra-low voltage differential CMOS Schmitt trigger[C]// 2017 Iranian Conference on Electrical Engineering(ICEE). [S.l.]:IEEE, 2017:532-536.

         NEJATI A,BASTAN Y,AMIRI P. 0.4 V ultra-low voltage differential CMOS Schmitt trigger[C]// 2017 Iranian Conference on Electrical Engineering(ICEE). [S.l.]:IEEE, 2017:532-536.

    [4] KADU A W,KALBANDE M. Design of low power Schmitt trigger logic gates using VTCMOS[C]// 2016 Online International Conference on Green Engineering and Technologies (IC-GET). [S.l.]:IEEE, 2016:1-5.

         KADU A W,KALBANDE M. Design of low power Schmitt trigger logic gates using VTCMOS[C]// 2016 Online International Conference on Green Engineering and Technologies (IC-GET). [S.l.]:IEEE, 2016:1-5.

    [5] TAMNUPAN W,KASEMSUWAN V. A low-voltage low-power current-mode differential adjustable Schmitt trigger[C]// 2012 9th International Conference on Electrical Engineering/Electronics,Computer,Telecommunications and Information Technology. [S.l.]:IEEE, 2012:1-4.

         TAMNUPAN W,KASEMSUWAN V. A low-voltage low-power current-mode differential adjustable Schmitt trigger[C]// 2012 9th International Conference on Electrical Engineering/Electronics,Computer,Telecommunications and Information Technology. [S.l.]:IEEE, 2012:1-4.

    [6] MELEK L A P,SCHNEIDER M C,GALUP-MONTORO C. Operation of the classical CMOS Schmitt trigger as an ultra-low-voltage amplifier[J]. IEEE Transactions on Circuits and Systems II:Express Briefs, 2018,65(9):1239-1243.

         MELEK L A P,SCHNEIDER M C,GALUP-MONTORO C. Operation of the classical CMOS Schmitt trigger as an ultra-low-voltage amplifier[J]. IEEE Transactions on Circuits and Systems II:Express Briefs, 2018,65(9):1239-1243.

    [7] AHMAD S,GUPTA M K,ALAM N,et al. Single-ended Schmitt-trigger-based robust low-power SRAM cell[J]. IEEE Transactions on Very Large Scale Integration(VLSI) Systems, 2016,24(8):2634-2642.

         AHMAD S,GUPTA M K,ALAM N,et al. Single-ended Schmitt-trigger-based robust low-power SRAM cell[J]. IEEE Transactions on Very Large Scale Integration(VLSI) Systems, 2016,24(8):2634-2642.

    [8] SASAGAWA K,YAMAGUCHI T,HARUTA M,et al. An implantable CMOS image sensor with self-reset pixels for functional brain imaging[J]. IEEE Transactions on Electron Devices, 2016,63(1):215-222.

         SASAGAWA K,YAMAGUCHI T,HARUTA M,et al. An implantable CMOS image sensor with self-reset pixels for functional brain imaging[J]. IEEE Transactions on Electron Devices, 2016,63(1):215-222.

    [9] KUMAR A,CHATURVEDI B,MAHESHWARI S. A fully electronically controllable schmitt trigger and duty cycle-modulated waveform generator[J]. International Journal of Circuit Theory and Applications, 2017,45(12):2157-2180.

         KUMAR A,CHATURVEDI B,MAHESHWARI S. A fully electronically controllable schmitt trigger and duty cycle-modulated waveform generator[J]. International Journal of Circuit Theory and Applications, 2017,45(12):2157-2180.

    ZHOU Xuana, YAO Maoqun, ZHOU Chuanxin. Design of ternary current-mode CMOS Schmitt inverter based on HE map[J]. Journal of Terahertz Science and Electronic Information Technology , 2020, 18(3): 545
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