1. Design a combinational circuit that multiplies a decimal digit (in BCD) by 5 and outputs the corresponding result in BCD. 2. Design a four-bit combinational circuit 2's complementer. (The output generates the 2's complement of the input binary number.)

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1. Design a combinational circuit that multiplies a decimal digit
(in BCD) by 5 and outputs the corresponding result in BCD.
2. Design a four-bit combinational circuit 2's complementer.
(The output generates the 2's complement of the input binary
number.)
3. Construct a 5-to-32-line decoder with enable by using 3-to-8
and 2-to-4-line decoders with enables
4. For the decimal-to-BCD encoder given in the text (Slide 33
of chapter 5), assume by error that the 6 input and the 3 input
are both HIGH. What is the output code? Is it a valid BCD
code?
5. Construct a 16 x 1 multiplexer with 4 x 1 multiplexers. Use
block diagrams.
6. Your tool box contains only NOR and OR gates and
decoders. Using a minimum of these components implement
the following functions:
b.
7. Implement the following Boolean function with a (8X1)
multiplexer:
(a)
(b)
8. Obtain expressions for P, Q and F in simplified standard
forms.
P
1
1
1
a [b
1
1
a
b b
Transcribed Image Text:1. Design a combinational circuit that multiplies a decimal digit (in BCD) by 5 and outputs the corresponding result in BCD. 2. Design a four-bit combinational circuit 2's complementer. (The output generates the 2's complement of the input binary number.) 3. Construct a 5-to-32-line decoder with enable by using 3-to-8 and 2-to-4-line decoders with enables 4. For the decimal-to-BCD encoder given in the text (Slide 33 of chapter 5), assume by error that the 6 input and the 3 input are both HIGH. What is the output code? Is it a valid BCD code? 5. Construct a 16 x 1 multiplexer with 4 x 1 multiplexers. Use block diagrams. 6. Your tool box contains only NOR and OR gates and decoders. Using a minimum of these components implement the following functions: b. 7. Implement the following Boolean function with a (8X1) multiplexer: (a) (b) 8. Obtain expressions for P, Q and F in simplified standard forms. P 1 1 1 a [b 1 1 a b b
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