太赫兹科学与电子信息学报, 2020, 18 (3): 545, 网络出版: 2020-07-16  

基于和图的三值电流型 CMOS施密特反相器设计

Design of ternary current-mode CMOS Schmitt inverter based on HE map
作者单位
1 杭州师范大学钱江学院,浙江杭州 310018
2 杭州师范大学信息科学与工程学院,浙江杭州 311121
摘要
基于阈算术代数系统理论,以和图为指导,分析施密特反相器的阈值可控开关,对三值电流型 CMOS施密特反相器进行设计。 Hspice仿真结果表明,该电路具有正确的逻辑功能和良好的瞬态特性,阈算术代数系统设 计得到进一步的完善,三值施密特反相器设计更加简单直观。
Abstract
Based on the threshold-arithmetic algebra system and guided by HE map, the threshold controllable switch of Schmitt inverter is analyzed, and the ternary current-mode CMOS Schmitt inverter is designed. The simulation results of Hspice show that the designed circuit has correct logic function and good transient characteristics. This circuit design not only makes the design of the threshold-arithmetic algebraic system further improved, but also makes the design of the ternary Schmitt inverter more simple and intuitive.
参考文献

[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.

[10] 陈偕雄,沈继忠.近代数字理论[M]. 杭州:浙江大学出版社, 2001. (CHEN Xiexiong,SHEN Jizhong. Modern digital theory[M]. Hangzhou,China:Zhejiang University Press, 2001.)

    陈偕雄,沈继忠.近代数字理论[M]. 杭州:浙江大学出版社, 2001. (CHEN Xiexiong,SHEN Jizhong. Modern digital theory[M]. Hangzhou,China:Zhejiang University Press, 2001.)

[11] 吴训威. 多值逻辑电路设计原理[M].杭州:杭州大学出版社, 1994. (WU Xunwei. Design principles of multivalued logic circuits[M]. Hangzhou:Hangzhou University Press, 1994.)

    吴训威. 多值逻辑电路设计原理[M].杭州:杭州大学出版社, 1994. (WU Xunwei. Design principles of multivalued logic circuits[M]. Hangzhou:Hangzhou University Press, 1994.)

[12] 张官志,姚茂群,施锦河,等.阈算术代数系统及电流型 CMOS电路设计[J].浙江大学学报(理学版), 2013,40(1):51-55. (ZHANG Guanzhi,YAO Maoqun, SHI Jinhe,et al. Threshold-arithmetic algebraic system and design of current-mode CMOS circuits[J]. Journal of Zhejiang University(Science Edition), 2013,40(1):51-55.)

    张官志,姚茂群,施锦河,等.阈算术代数系统及电流型 CMOS电路设计[J].浙江大学学报(理学版), 2013,40(1):51-55. (ZHANG Guanzhi,YAO Maoqun, SHI Jinhe,et al. Threshold-arithmetic algebraic system and design of current-mode CMOS circuits[J]. Journal of Zhejiang University(Science Edition), 2013,40(1):51-55.)

[13] 姚茂群,张官志,施锦河.阈算术代数系统及多值电流型 CMOS电路设计[J].电子与信息学报, 2012,34(7):1773-1778. (YAO Maoqun,ZHANG Guanzhi,SHI Jinhe. Threshold-arithmetic algebraic system and design of multiple-valued CMOS circuits[J]. Journal of Electronics & Information Technology, 2012,34(7):1773-1778.)

    姚茂群,张官志,施锦河.阈算术代数系统及多值电流型 CMOS电路设计[J].电子与信息学报, 2012,34(7):1773-1778. (YAO Maoqun,ZHANG Guanzhi,SHI Jinhe. Threshold-arithmetic algebraic system and design of multiple-valued CMOS circuits[J]. Journal of Electronics & Information Technology, 2012,34(7):1773-1778.)

[14] 杭国强,吴训威. 电流控阈技术及三值电流型 CMOS施密特电路[J]. 浙江大学学报(理学版), 2000,27(2):230-234. (HANG Guoqiang,WU Xunwei. Current threshold-controllable technique and ternary current-mode CMOS Schmitt circuits[J]. Journal of Zhejiang University(Science Edition), 2000,27(2):230-234.)

    杭国强,吴训威. 电流控阈技术及三值电流型 CMOS施密特电路[J]. 浙江大学学报(理学版), 2000,27(2):230-234. (HANG Guoqiang,WU Xunwei. Current threshold-controllable technique and ternary current-mode CMOS Schmitt circuits[J]. Journal of Zhejiang University(Science Edition), 2000,27(2):230-234.)

[15] 杭国强,陆慧娟. 新型电流型 CMOS三值施密特电路设计[J]. 浙江大学学报(工学版), 2006,40(7):1141-1145. (HANG Guoqiang,LU Huijuan. Novel current-mode CMOS ternary Schmitt trigger[J]. Journal of Zhejiang University(Engineering Science), 2006,40(7):1141-1145.)

    杭国强,陆慧娟. 新型电流型 CMOS三值施密特电路设计[J]. 浙江大学学报(工学版), 2006,40(7):1141-1145. (HANG Guoqiang,LU Huijuan. Novel current-mode CMOS ternary Schmitt trigger[J]. Journal of Zhejiang University(Engineering Science), 2006,40(7):1141-1145.)

周旋, 姚茂群, 周传鑫. 基于和图的三值电流型 CMOS施密特反相器设计[J]. 太赫兹科学与电子信息学报, 2020, 18(3): 545. 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.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!