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3. Design a M-1 Flip-Flop, that behaves like the following: When M=1, and I = 0, the flip-flop next state is the complement of I.
3. Design a M-1 Flip-Flop, that behaves like the following: When M=1, and I = 0, the flip-flop next state is the complement of I. When M = 1, and I = 1, the flip-flop next state is the present state (no change). When M = 0 and I = 0, the flip flop next state will be 0. When M = 0 and I = 1, the flip flop next state is the complement of the present state. a. Derive the truth table of M-I flip flop b. Derive the Next state table of the M-I flip flop c. Derive the characteristic equation of M-I flip-flop d. Convert the D flip flop to M-I flip-flop, extend the state table, to include D in the state table, and find the equation of D flip flop input e. Draw the logic circuit of M-I flip-flop III. Lab work In this experiment: a. Setup the circuits in part 1 on your breadboard and check its operation. b. Setup the circuits in part 2 on your breadboard and check its operation. C. Setup the circuits in part 3 on your breadboard and check its operation. Not that the circuits should work as described to get the grade, otherwise no partial credit for wrong output Page 1 of 2 Dr. Rami Alazrai
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