A method to design ternary multiplexers controlled by ternary signals based on SUS-LOC
E. Sipos, Gabriel Oltean, Costin Miron
Abstract
E. Sipos, Gabriel Oltean, Costin Miron
Abstract
In this paper, a method to design ternary multiplexers with any number of inputs is presented. The basic circuit used to design all ternary multiplexers is the 3-to-1 multiplexer. Starting from the basic multiplexer in binary, we design and simulate the 3-to-1 multiplexer. The multiplexer is built with the basic ternary functions such minimum and maximum. The control circuit of the 3-to-1 multiplexer is design with ternary circuits too, called indicators of logical level. Using one or more 3-to-1 ternary multiplexers, the ternary multiplexers with any number of inputs can be designed. All multiplexers are realized using Supplementary Symmetrical LOgic Circuit Structure (SUS-LOC). The operation of the multiplexers was proved by simulation in the Orcad environment.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In this paper, a method to design ternary multiplexers with any number of inputs is presented. The basic circuit used to design all ternary multiplexers is the 3-to-1 multiplexer. Starting from the basic multiplexer in binary, we design and simulate the 3-to-1 multiplexer. The multiplexer is built with the basic ternary functions such minimum and maximum. The control circuit of the 3-to-1 multiplexer is design with ternary circuits too, called indicators of logical level. Using one or more 3-to-1 ternary multiplexers, the ternary multiplexers with any number of inputs can be designed. All multiplexers are realized using Supplementary Symmetrical LOgic Circuit Structure (SUS-LOC). The operation of the multiplexers was proved by simulation in the Orcad environment.
Key concepts: Multiplexer, Ternary operation, Computer science, Multiplexing, Electronic circuit, Electronic engineering, Electrical engineering, Engineering