2- Realize a 3-bit sequential device with three T-flip-flops; Table.2.1 describes the excitation of the T-flipflop and Table.2.2 describes the transition between the states. i. Complete Table.2.2 ii. Use the most economical multiplexer to realize Ta in terms of the present states, a, b, and c (complete the multiplexer labels) Use the most economical multiplexer to realize Tb in terms of the present states, a, b, and e (complete the multiplexer labels) iv. Use the most cconomical multiplexer to realize Te in terms of the present states, a, b, and c (complete the multiplexer labels) ii.
2- Realize a 3-bit sequential device with three T-flip-flops; Table.2.1 describes the excitation of the T-flipflop and Table.2.2 describes the transition between the states. i. Complete Table.2.2 ii. Use the most economical multiplexer to realize Ta in terms of the present states, a, b, and c (complete the multiplexer labels) Use the most economical multiplexer to realize Tb in terms of the present states, a, b, and e (complete the multiplexer labels) iv. Use the most cconomical multiplexer to realize Te in terms of the present states, a, b, and c (complete the multiplexer labels) ii.
Computer Networking: A Top-Down Approach (7th Edition)
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![2- Realize a 3-bit sequential device with three T-flip-flops;
Table.2.1 describes the excitation of the T-flipflop and Table.2.2 describes the transition between the states.
i. Complete Table.2.2
Use the most economical multiplexer to realize Ta in terms of the present states, a, b, and c (complete the multiplexer labels)
Use the most economical multiplexer to realize Tb in terms of the present states, a, b, and c (complete the multiplexer labels)
Use the most economical multiplexer to realize Tc in terms of the present states, a, b, and c (complete the multiplexer labels)
ii.
ii.
iv.
Table.2.1 The Excitation table for T-FlipFlop
Q)
Q(t+1)
Table.2.2
present
flip flop
state
next
state
inputs
a(t)
b(t)
c(t)
a(t+1)
b(t+1)
c(t+1)
Та
Tb
Te
1
1
1
1
ii- Label the the following multiplexer
SO
Ta
SI
MUX 4-1
1
2
3
ii- Label the following multiplexer
SO
Tb
MUX 4-1
1
2
3
iv-Label the following multiplexer
SO
Te
SI
MUX 4-1
2
3](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdd1340e1-026e-4b10-9e6b-a53bd1323fd7%2Fbe571305-8148-4639-a819-f4647501b66e%2Fekbr366_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2- Realize a 3-bit sequential device with three T-flip-flops;
Table.2.1 describes the excitation of the T-flipflop and Table.2.2 describes the transition between the states.
i. Complete Table.2.2
Use the most economical multiplexer to realize Ta in terms of the present states, a, b, and c (complete the multiplexer labels)
Use the most economical multiplexer to realize Tb in terms of the present states, a, b, and c (complete the multiplexer labels)
Use the most economical multiplexer to realize Tc in terms of the present states, a, b, and c (complete the multiplexer labels)
ii.
ii.
iv.
Table.2.1 The Excitation table for T-FlipFlop
Q)
Q(t+1)
Table.2.2
present
flip flop
state
next
state
inputs
a(t)
b(t)
c(t)
a(t+1)
b(t+1)
c(t+1)
Та
Tb
Te
1
1
1
1
ii- Label the the following multiplexer
SO
Ta
SI
MUX 4-1
1
2
3
ii- Label the following multiplexer
SO
Tb
MUX 4-1
1
2
3
iv-Label the following multiplexer
SO
Te
SI
MUX 4-1
2
3
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