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Princess Sumaya Univ.
Computer Engineering Dept.
Page 2


Princess Sumaya Univ.
Computer Engineering Dept.
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Output is function of input only
i.e. no feedback
When input changes, output may change (after a delay)
1 1 / 65 / 65






n inputs m outputs
Combinational
Circuits
û
Page 3


Princess Sumaya Univ.
Computer Engineering Dept.
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Output is function of input only
i.e. no feedback
When input changes, output may change (after a delay)
1 1 / 65 / 65






n inputs m outputs
Combinational
Circuits
û
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Analysis
? Given a circuit, find out its function
? Function may be expressed as:
? Boolean function
? Truth table
«Design
? Given a desired function, determine its circuit
? Function may be expressed as:
? Boolean function
? Truth table
2 2 / 65 / 65
?
?
?
Page 4


Princess Sumaya Univ.
Computer Engineering Dept.
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Output is function of input only
i.e. no feedback
When input changes, output may change (after a delay)
1 1 / 65 / 65






n inputs m outputs
Combinational
Circuits
û
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Analysis
? Given a circuit, find out its function
? Function may be expressed as:
? Boolean function
? Truth table
«Design
? Given a desired function, determine its circuit
? Function may be expressed as:
? Boolean function
? Truth table
2 2 / 65 / 65
?
?
?
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Analysis Procedure Analysis Procedure
«Boolean Expression Approach
3 3 / 65 / 65
ABC
A+B+C
AB+AC+BC
(A’+B’)(A’+C’)(B’+C’)
AB'C'+A'BC'+A'B'C
F
1
=AB'C'+A'BC'+A'B'C+ABC
F
2
=AB+AC+BC
Page 5


Princess Sumaya Univ.
Computer Engineering Dept.
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Output is function of input only
i.e. no feedback
When input changes, output may change (after a delay)
1 1 / 65 / 65






n inputs m outputs
Combinational
Circuits
û
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Combinational Circuits Combinational Circuits
«Analysis
? Given a circuit, find out its function
? Function may be expressed as:
? Boolean function
? Truth table
«Design
? Given a desired function, determine its circuit
? Function may be expressed as:
? Boolean function
? Truth table
2 2 / 65 / 65
?
?
?
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Analysis Procedure Analysis Procedure
«Boolean Expression Approach
3 3 / 65 / 65
ABC
A+B+C
AB+AC+BC
(A’+B’)(A’+C’)(B’+C’)
AB'C'+A'BC'+A'B'C
F
1
=AB'C'+A'BC'+A'B'C+ABC
F
2
=AB+AC+BC
Princess Sumaya University Princess Sumaya University 4241 4241 – – Digital Logic Design Digital Logic Design Computer Engineering Dept. Computer Engineering Dept.
Analysis Procedure Analysis Procedure
«Truth Table Approach
4 4 / 65 / 65
A  B  C F
1
F
2
0   0   0
= 0
= 0
= 0
= 0
= 0
= 0
= 0
= 0
= 0
= 0
= 0
= 0
0
0
0
0
0
0
1
0
0
0        0
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FAQs on PPT: Combinational Logic - Analog and Digital Electronics - Electrical Engineering (EE)

1. What is combinational logic?
Ans. Combinational logic refers to a type of digital logic circuit where the output is solely determined by the current input values. It does not depend on any previous inputs or the circuit's internal state.
2. How does combinational logic differ from sequential logic?
Ans. Combinational logic circuits produce an output based only on the current input values, while sequential logic circuits have outputs that depend on both the current inputs and the previous inputs or the circuit's internal state.
3. What are some common applications of combinational logic circuits?
Ans. Combinational logic circuits find applications in various fields, including digital electronics, computer architecture, and communications. They are used in data processing, arithmetic operations, logical operations, and code conversions, among others.
4. Can combinational logic circuits be implemented using different technologies?
Ans. Yes, combinational logic circuits can be implemented using different technologies, such as transistor-transistor logic (TTL), complementary metal-oxide-semiconductor (CMOS), and application-specific integrated circuits (ASICs). The choice of technology depends on factors like power consumption, speed requirements, and cost.
5. Is it possible to design complex systems using only combinational logic circuits?
Ans. No, complex systems typically require a combination of both combinational and sequential logic circuits. While combinational logic handles immediate computations and calculations, sequential logic is necessary to store and manipulate data over time. The combination of both types of logic allows for the implementation of more sophisticated systems.
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