Design a circuit called half adder (HA) which adds two 1-bit numbers, a,b and produces 2-bit output, c. a. Draw the truth table of the circuit. b. Find the Boolean functions of each bit of the output. c. Optimize the Boolean functions.

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Design a circuit called half adder (HA) which adds two 1-bit numbers, a,b and produces 2-bit output, c.

a. Draw the truth table of the circuit.
b. Find the Boolean functions of each bit of the output.
c. Optimize the Boolean functions.
d. Draw the logic diagram of the optimized circuits.
e. Write the VHDL code of the logic diagrams by using “Dataflow modeling” method

f. Simulate the circuits that you have designed in 1.e. Prepare a simulation waveform for you report.
g. Produce the RTL schematic for the circuit that you have designed in 1.e.

Design a circuit called half adder (HA)
which adds two 1-bit numbers, a,b and
produces 2-bit output, c.
Draw the truth table of the circuit.
a.
b. Find the Boolean functions of each bit
of the output.
Optimize the Boolean functions.
d. Draw the logic diagram of the optimized
circuits.
с.
Write the VHDL code of the logic
diagrams by using "Dataflow
modeling" method
£ Simulate the circuits that you have
designed in 1.e. Prepare a simulation
waveform for you report.
Produce the RTL schematic for the
g.
circuit that you have designed in 1.e.
Transcribed Image Text:Design a circuit called half adder (HA) which adds two 1-bit numbers, a,b and produces 2-bit output, c. Draw the truth table of the circuit. a. b. Find the Boolean functions of each bit of the output. Optimize the Boolean functions. d. Draw the logic diagram of the optimized circuits. с. Write the VHDL code of the logic diagrams by using "Dataflow modeling" method £ Simulate the circuits that you have designed in 1.e. Prepare a simulation waveform for you report. Produce the RTL schematic for the g. circuit that you have designed in 1.e.
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