Question 1: The characteristic table of a sequential logic circuit with inputs (x, y) is given below: X 0 1 1 y X 0 1 Q(t+1) Q(t) 0 1 X: Don't care (a) Construct the state table and determine the state equation of this circuit. (b) Consider the following three different approaches of implementing the sequential logic circuit. Sketch the logic diagram of the circuit for each case. (i) Use a negative-edge triggered D flip-flop and some primitive gates (ii) Use a positive-edge triggered JK flip-flop and some primitive gates (iii) Use a positive-edge triggered T flip-flop and a 4x1 multiplexer

Electric Motor Control
10th Edition
ISBN:9781133702818
Author:Herman
Publisher:Herman
Chapter22: Sequence Control
Section: Chapter Questions
Problem 6SQ: Draw a symbol for a solid-state logic element AND.
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Question 1: The characteristic table of a sequential logic circuit with inputs (x, y) is given below:
X
0
1
1
y
X
0
1
Q(t+1)
Q(t)
0
1
X: Don't care
(a) Construct the state table and determine the state equation of this circuit.
(b) Consider the following three different approaches of implementing the sequential logic circuit.
Sketch the logic diagram of the circuit for each case.
(i) Use a negative-edge triggered D flip-flop and some primitive gates
(ii) Use a positive-edge triggered JK flip-flop and some primitive gates
(iii) Use a positive-edge triggered T flip-flop and a 4x1 multiplexer
Transcribed Image Text:Question 1: The characteristic table of a sequential logic circuit with inputs (x, y) is given below: X 0 1 1 y X 0 1 Q(t+1) Q(t) 0 1 X: Don't care (a) Construct the state table and determine the state equation of this circuit. (b) Consider the following three different approaches of implementing the sequential logic circuit. Sketch the logic diagram of the circuit for each case. (i) Use a negative-edge triggered D flip-flop and some primitive gates (ii) Use a positive-edge triggered JK flip-flop and some primitive gates (iii) Use a positive-edge triggered T flip-flop and a 4x1 multiplexer
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