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DESIGN OF TERNARY CURRENT-MODE CMOS CIRCUITS BASED ON SWITCH-SIGNAL THEORY 被引量:4

DESIGN OF TERNARY CURRENT-MODE CMOS CIRCUITS BASED ON SWITCH-SIGNAL THEORY
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摘要 By applying switch-signal theory, the interaction between MOS transmission switch-ing transistor and current signal in current-mode CMOS circuits is analyzed, and the theory oftransmission current-switches which is suitable to current-mode CMOS circuits is proposed. Thecircuits, such as ternary full-adder etc., designed by using this theory have simpler circuit struc-tures and correct logic functions. It is confirmed that this theory is efficient in guiding the logicdesign of current-mode CMOS circuits at switch level. By applying switch-signal theory, the interaction between MOS transmission switch- ing transistor and current signal in current-mode CMOS circuits is analyzed, and the theory of transmission current-switches which is suitable to current-mode CMOS circuits is proposed. The circuits, such as ternary full-adder etc., designed by using this theory have simpler circuit struc- tures and correct logic functions. It is confirmed that this theory is efficient in guiding the logic design of current-mode CMOS circuits at switch level.
出处 《Journal of Electronics(China)》 1993年第3期193-202,共10页 电子科学学刊(英文版)
基金 Supported by National Natural Science Foundation of China
关键词 Switch-signal THEORY THEORY of transmission current-switches Multivalued LOGIC CURRENT-MODE CMOS CIRCUIT Switch-signal theory Theory of transmission current-switches Multivalued logic Current-mode CMOS circuit
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  • 2杭国强.基于控阈技术的电流型CMOS全加器的通用设计方法[J].电子学报,2004,32(8):1367-1369. 被引量:8
  • 3杭国强.基于开关信号理论的电流型CMOS多值施密特电路设计[J].电子学报,2006,34(5):924-927. 被引量:4
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  • 7TRESCASES O, PRODIC A, WAI TUNG NG. Digitally Controlled Current-Mode DC-DC Converter IC [J]. IEEE Transactions on Circuits and Systems, 2011, 58(1): 219-231.
  • 8BHATIA V, PANDEY N, BHATTACHARYYA A. A 4-bit expandable algorithmic current-mode Analog to Digital Converter for use in digital control systems [A]. India International Conference on Power Electronics (IICPE) [C]. New Delhi: IICPE, 2010. 1-4.
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