3) Given multiplexor circuit shown. a) Fill in the K-map for the function (F) implemented. CD C AB 00 [ 01 11 10 00 01 11 B A 10 D 78 C +5V D 11 10 15 74x151 EN SO $1 $2 DO D1 D2 D3 D4 DS D6 D7 b) Provide a reduced 3-variable K-Map using map entered variables for F (Use D as map-entered variable here). Provide the minimum sum for the function F (i.e., minimize the sum of products).

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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3) Given multiplexor circuit shown
a) Fill in the K-map for the function (F)
implemented.
CD
AB
C
00
01
[
11
10
A
00 01 11
B
10
D
9 be
+5V-
D
I
11
10
13
d) Show how to implement the function F using only NAND gates.
EN
SO
$1
$2
DO
D2
D3
D4
DS
74x151
D6
D7
b) Provide a reduced 3-variable K-Map using map entered variables for F (Use D as
map-entered variable here).
c) Provide the minimum sum for the function F (i.e., minimize the sum of products).
Transcribed Image Text:3) Given multiplexor circuit shown a) Fill in the K-map for the function (F) implemented. CD AB C 00 01 [ 11 10 A 00 01 11 B 10 D 9 be +5V- D I 11 10 13 d) Show how to implement the function F using only NAND gates. EN SO $1 $2 DO D2 D3 D4 DS 74x151 D6 D7 b) Provide a reduced 3-variable K-Map using map entered variables for F (Use D as map-entered variable here). c) Provide the minimum sum for the function F (i.e., minimize the sum of products).
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