1) Read the entirety of Experiment 3. 2) Design a 2-to-1 multiplexer in which the inputs and outputs consist of single bits. Provide the truth table for this multiplexer using INO and IN1 for the two inputs, S for the select line and OUT for the output. Obtain the minimal standard sum-of-products expression for the output. 3) Obtain the schematic diagram for the mux designed in 2). Use proper conventions as to the labelling of part numbers, instance numbers and pin numbers.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Show hand drawn  2-to-1 multiplexer in which the inputs and outputs consist of single bits. and schematic diagram for the mux designed
1) Read the entirety of Experiment 3.
2) Design a 2-to-1 multiplexer in which the inputs and outputs consist of single bits. Provide the
truth table for this multiplexer using INO and IN1 for the two inputs, S for the select line and OUT
for the output. Obtain the minimal standard sum-of-products expression for the output.
3) Obtain the schematic diagram for the mux designed in 2). Use proper conventions as to the
labelling of part numbers, instance numbers and pin numbers.
Transcribed Image Text:1) Read the entirety of Experiment 3. 2) Design a 2-to-1 multiplexer in which the inputs and outputs consist of single bits. Provide the truth table for this multiplexer using INO and IN1 for the two inputs, S for the select line and OUT for the output. Obtain the minimal standard sum-of-products expression for the output. 3) Obtain the schematic diagram for the mux designed in 2). Use proper conventions as to the labelling of part numbers, instance numbers and pin numbers.
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