Follow these steps for converting one flip-flop to the other. (Show every step and attach to this question) • Consider the characteristic table of desired flip-flop. • Fill the excitation values inputs of given flip-flop for each combination of present state and next state. • Get the simplified expressions for each excitation input. Use Kmaps for simplifying. • Draw the circuit diagram of desired flip-flop according to the simplified expressions using given flip-flop and necessary logic gates. 8. This section shows how the JK and D flip-flops can be constructed from the SR flip-flop and a few gates. In fact, any flip-flop can be constructed from any other with the help of a few gates. Construct the following flipflops from a JK flip-flop: *(a) D (b) SR (c) T Construct the following flip-flops from a D flip-flop: (d) SR (e) JK (f) T Construct the following flip-flops from a T flip-flop: (g) SR

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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This section shows how the JK and D flip-flops can be constructed from the SR flip-flop and a few gates. In fact, any flip-flop can be constructed from any other with the help of a few gates.

Construct the following flip-flops from a D flip-flop:

(f) T

Construct the following flip-flops from a T flip-flop:

(g) SR

Follow these steps for converting one flip-flop to the other. (Show every step and attach to this question)

  • Consider the characteristic table of desired flip-flop.

  • Fill the excitation values inputs of given flip-flop for each combination of present state and next state. 

  • Get the simplified expressions for each excitation input. Use Kmaps for simplifying.

  • Draw the circuit diagram of desired flip-flop according to the simplified expressions using given flip-flop and necessary logic gates.

 

Follow these steps for converting one flip-flop to the
other. (Show every step and attach to this question)
• Consider the characteristic table of desired flip-flop.
• Fill the excitation values inputs of given flip-flop for
each combination of present state and next state.
• Get the simplified expressions for each excitation
input. Use Kmaps for simplifying.
• Draw the circuit diagram of desired flip-flop according
to the simplified expressions using given flip-flop and
necessary logic gates.
Transcribed Image Text:Follow these steps for converting one flip-flop to the other. (Show every step and attach to this question) • Consider the characteristic table of desired flip-flop. • Fill the excitation values inputs of given flip-flop for each combination of present state and next state. • Get the simplified expressions for each excitation input. Use Kmaps for simplifying. • Draw the circuit diagram of desired flip-flop according to the simplified expressions using given flip-flop and necessary logic gates.
8. This section shows how the JK and D flip-flops can be constructed from the SR
flip-flop and a few gates. In fact, any flip-flop can be constructed from any other
with the help of a few gates. Construct the following flipflops from a JK flip-flop:
*(a) D
(b) SR
(c) T
Construct the following flip-flops from a D flip-flop:
(d) SR
(e) JK
(f) T
Construct the following flip-flops from a T flip-flop:
(g) SR
Transcribed Image Text:8. This section shows how the JK and D flip-flops can be constructed from the SR flip-flop and a few gates. In fact, any flip-flop can be constructed from any other with the help of a few gates. Construct the following flipflops from a JK flip-flop: *(a) D (b) SR (c) T Construct the following flip-flops from a D flip-flop: (d) SR (e) JK (f) T Construct the following flip-flops from a T flip-flop: (g) SR
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