About Me

header ads

Digital Application Lab (1BECL307B)

Digital Application Lab

Course Code 1BECL307B 
Scheme 2025
Type of Course Ability Enhancement Course (Laboratory)
Semester III
Teaching Hours/Week (L :T : P) 0:0:2 
CIE Marks 50
Total Hours of Pedagogy (L :T:P:SL&TW) 0: 0:28 :2 
SEE Marks 50
Credits 1 
Total Marks 100
Type of Examination Practical 
Exam Hours 3



SET OF EXPERIMENTS

Open-source tool /LabVIEW/ Virtual Lab by IIT Bombay can be used for simulation.

1. To construct logic circuit of washing machine control using a generalized simulator and verify its output.

2. Conduct an experiment to apply the basic OR gate logic in industrial control process. The user will be able to drag and drop the OR gate on the blank canvas and make input-output connections and verify the truth table.

3. Conduct an experiment to apply a basic NOT gate logic in an 8 -bit one’s complement circuit. The user will be able to build, simulate and verify the 8-bit one’s complementing circuit using the generalized simulator (a blank canvas with click & place facility for selected gates).

4. To apply the NOT gate logic in an application to indicate that the fuel level in a tank has reached the minimum (reserve) level. The user can compute the output of a given circuit with the help of a generalized simulator. The user will be able to construct, simulate and verify the output of the fuel level application.

5. To study the application of a combination of AND and NOT gates in a seat belt warning indicator. The user will be able to construct, simulate and verify the seat belt warning application using the generalized simulator. Display the output on red LED.

6. Conduct an experiment to apply basic AND gate logic to control the on/off action of car wiper. The user will be able to drag and drop the two-input AND gate on the blank canvas and make input-output connections and verify the truth table.

7. To apply the combination of AND & NOT gates in water level controller application. The user will be able to find the output status of the electronic lock for given combination of inputs. The user will be able to analyse, construct and simulate to verify any combinational logic circuit for a given problem statement using the generalized simulator.

8. To study the application of a combinational electronic lock using basic logic gates. The user will be able to design a 4-digit electronic code lock using two-input basic logic gates. Using the generalized simulator, the user can implement his design and verify it’s working.

9. To apply NAND gate logic in a level monitoring system in a chemical plant. Using generalized simulator framework, the user will be able to place a NAND gate, make input-output connections and verify its truth table.

10. To build automobile alarm application using basic logic gates on a generalized simulator canvas and verify its truth table.

11. To construct a cockpit warning light control system using the generalized simulator. The users will be able to state the output condition for given set of combinations of input. The users will be able to select the correct Boolean expression for given combinational circuit.

12. To construct a half adder circuit and verify its truth table using the generalized simulator framework.

13. Verify Binary to Gray and Gray to Binary conversion using NAND gates only.



Suggested Learning Resources: 

Text books:

1. M. Morris Mano, Digital Design, 3rd Edition, Prentice Hall of India Pvt. Ltd., 2003 /Pearson Education (Singapore) Pvt. Ltd., New Delhi, 2003.

2. John F.Wakerly, Digital Design, Fourth Edition, Pearson/PHI, 2006

3. Floyd T.L, Digital Fundamentals , 10/e, Pearson Education, 2011

4. C.H.Roth and L.L.Kimney Fundamentals of Logic Design, 7/e, Cengage Learning, 2013