AB AB JO Present state Input Next State Output ABC X ABC X 010 000 O 000 1 100 001 010 010 011 011 100 100 101 ][ 10 101 110 oll [1] 11) 10 00 Oo 01 T 11 x 101 X XX X X 10 XIX 11 10 00 -O 0- -O 1 XXX 1 0-0-0 }} 10 1 X X XXII O O 1 0 00 0) TXX 1) Q ( XI xx AB 00 01 11 10 0611 11JB÷A'tctX XX X 110 110 110 10) 001 100 080 111 011 010 160 000 001 10 XX|JC = A'B+BX 10) JA= C+BX oo O 0 1 1 O 4 1 O 1 OOO- 1 e 1 O 00 O 23 )) 10 1567 CX IJA I KA OO- 1 1 1 O T 1 8 X 10 00 X b 10 X II X 12 X 13 X 14 X 15 X ||||||||||| XXXX XXXXXXXX-O In VICTORY AB 00 01 11 10 00 AP 01 11 11 Flip-flop Inputs JB KB 1 | 1 O 1 1 1 1 1 O X 1 XXXXO XXXX XXX 1 O 1 XX XX |0|0| X 1 x 1 X 1 X 1 ABX 11 10 00KA-B²C + B² X ² + BC X² + cx² XXX KA=X(B²+ c) + x B C ²7 B ³ C IKA-X (BC) +X B C 't B' C ol 11 U 10 KA÷X XNOR (B<') + B'C AB CX ABX 00 01 11 10 60 01 11 10 00XXXXKB² Atc²+x JC 1 XX 1 1 x X 0 1 хX0-xx0-xx XXOO x KC X XX- X x 1 O XX00 TXX 10 COO 1XX 10 XX 11 KC-A'B'HAX+BX Y=A'B'C + A'cx + B'cxtBC'X Y= A'B'C + A'cx + x (B' ct Bc')! Y= A'B'C+ A'Cx+X (BXOR C)

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Provide the following:

a.) state diagram

b.) logical diagram

 

ASAP :)

AB
AB
JO
Present state Input Next State Output
ABC
X
ABC
X
010
000
O
000
1
100
001
010
010
011
011
100
100
101
][
10
101
110
oll
[1]
11)
10 00
Oo
01 T
11 x
101 X
X X 10
XIX
11 10 00
-O
0-
-O
1
0-0-0
}} 10
1
1
XXX
X X
XXII
O
O
1
0
00
0) TXX
1)
Q
(
XI
xx
AB
00 01 11 10
0611 11JB÷A'tctX
XX
X
110
110
110
10)
001
100
080
111
011
010
160
000
001
10
XX|JC = A'B+BX
10)
JA= C+BX
oo
O
0
1
1
O 4
1
O
1
OOO-
1
e
1
O
00
O
23
))
10
1567
CX
IJA I KA
OO-
1
1
1
O
T
1
8 X
10 00
X b
10 X
II X
12 X
13 X
14 X
15 X
|||||||||||
XXXX
XXXXXXXX-O
In
VICTORY
AB
00 01 11 10
00 AP
01
11
11
Flip-flop Inputs
JB
KB
1
|
1
O
1
1
1 1
1
O
X
1
XXXXO
XXXX
XXX
1
O
1
XX
XX
|0|0|
JC
1
XX
X
1
x
1
X
1
X
1
ABX
11 10
00KA-B²C + B² X ² + BC X² + cx²
ol
XXX KA=X(B²+ c) + x B C ²7 B ³ C
IKA-X (BC) +X B C 't B' C
11
U
10
KA÷X XNOR (B<') + B'C
AB CX
ABX
00 01 11 10
60 01 11 10
00XXXXKB² Atc²+x
1
1
x
X
0
1
XXOO
x
KC
XX
XX-
x
1
хX0-xx0-xx
O
O
1
XX00
TXX 10
COO
1XX
10 XX 11
KC-A'B'HAX+BX
Y=A'B'C + A'cx + B'cxtBC'X
Y= A'B'C + A'Cx+x (B'ct Bc')
Y= A'B'C+ A'Cx+X (BXOR C)
Transcribed Image Text:AB AB JO Present state Input Next State Output ABC X ABC X 010 000 O 000 1 100 001 010 010 011 011 100 100 101 ][ 10 101 110 oll [1] 11) 10 00 Oo 01 T 11 x 101 X X X 10 XIX 11 10 00 -O 0- -O 1 0-0-0 }} 10 1 1 XXX X X XXII O O 1 0 00 0) TXX 1) Q ( XI xx AB 00 01 11 10 0611 11JB÷A'tctX XX X 110 110 110 10) 001 100 080 111 011 010 160 000 001 10 XX|JC = A'B+BX 10) JA= C+BX oo O 0 1 1 O 4 1 O 1 OOO- 1 e 1 O 00 O 23 )) 10 1567 CX IJA I KA OO- 1 1 1 O T 1 8 X 10 00 X b 10 X II X 12 X 13 X 14 X 15 X ||||||||||| XXXX XXXXXXXX-O In VICTORY AB 00 01 11 10 00 AP 01 11 11 Flip-flop Inputs JB KB 1 | 1 O 1 1 1 1 1 O X 1 XXXXO XXXX XXX 1 O 1 XX XX |0|0| JC 1 XX X 1 x 1 X 1 X 1 ABX 11 10 00KA-B²C + B² X ² + BC X² + cx² ol XXX KA=X(B²+ c) + x B C ²7 B ³ C IKA-X (BC) +X B C 't B' C 11 U 10 KA÷X XNOR (B<') + B'C AB CX ABX 00 01 11 10 60 01 11 10 00XXXXKB² Atc²+x 1 1 x X 0 1 XXOO x KC XX XX- x 1 хX0-xx0-xx O O 1 XX00 TXX 10 COO 1XX 10 XX 11 KC-A'B'HAX+BX Y=A'B'C + A'cx + B'cxtBC'X Y= A'B'C + A'Cx+x (B'ct Bc') Y= A'B'C+ A'Cx+X (BXOR C)
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