B.E. (Biomedical Engineering) Electronics Lab Skill Based Lab Syllabus - Mumbai University 2026
This is the Second Year Biomedical Rev 2019 C Scheme syllabus under REV-2019 'C' Scheme, in force from the academic year 2020-21. The University also publishes a NEP 2020 syllabus for Semesters III and IV, which is what the current second year is taught; this scheme is what ATKT candidates of the earlier batches still sit. Check which scheme your examination form names before you revise.
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Syllabus for Electronics Lab (Skill Based Lab)
Course Objective
- To design and implement voltage regulator circuits.
- To design and implement digital circuits.
- To learn skills of soldering.
- To learn simulation of circuits using one of the simulation software. Course Outcome Learner will be able to:
- Design and implement analog and digital electronic circuits on bread board and verify the outputs.
- Learn one of the tools for simulating different circuits.
- Know the limitations of ideal environment of simulations and also importance of simulation in designing the circuits.
- Learn soldering skills for implementing the circuits on PCB. List of experiments from Analog electronics: Skill 1-Soldering the components on PCB (Any 4)
- 1 Implement diode as full-wave rectifier using centre tap transformer.
- 2 Implement diode as full-wave rectifier using bridge circuit.
- 3 Use of Filter components with rectifier circuit.
- 4 Implement voltage regulators using IC 79XXand/or IC 78XX
- 5 Implement voltage regulators using IC 317/IC 723
- 6 Implement of logic gates using diodes. Skill 2-Simulations using simulation software like Multisim, Pspice etc (Any 4)
- 1 Simulate CASCODE amplifier.
- 2 Simulate Darlington amplifier.
- 3 Simulate power Amplifier
- 4 Simulate DIAC for transfer characteristics.
- 5 Simulate TRIAC for transfer characteristics.
- 6 Simulate UJT for transfer characteristics. List of experiments from Digital Electronics (Perform using Breadboard or Logisim S/W etc): (Any 8)
- 1 A step in space vehicle checkout depends on FOUR sensors S1, S2, S3 and S4. Every circuit is working properly if sensor S1 and at least two of the other three sensors are at logic 1. Implement the system using NAND gates only, the output is connected to a red LED which must glow if the circuit is not working properly and the output is connected to a green LED which must glow if the circuit is working properly.
- 2 To design binary to gray code converter and gray to binary converter. University of Mumbai, Biomedical Engineering, Rev 2020-21 30
- 3 To design parity generator and parity checker circuits.
- 4 To design adder and subtractor circuits.
- 5 To design various circuits using multiplexers.
- 6 To design various circuits using de-multiplexer.
- 7 To design Asynchronous counter.
- 8 To design decade counter
- 9 To design Synchronous counter.
- 10 To implement shift register and ring counter using MSI shift register.
- 11 To implement Moore/ Mealy machine.
- 12 A given finite state machine has an input W and output Z. During four consecutive clock pulses a sequence of four values of W signal is applied. Design a machine that produces Z = 1 when it detects either of sequence W: 0010 or W: 1110 otherwise Z=0. After the fourth clock pulse the machine has to be again in the reset state ready for next sequence. Any other experiment based on syllabus can be included in the term work which will help learner to understand topic/concept. Assessment: Term Work: Term work shall consist of minimum 8 experiments from Analog electronics and 8 experiments from digital electronics. The distribution of marks for term work shall be as follows: Laboratory work (Lab work and journal):10 Marks Soldering skills :05 Marks Simulation skills :05 marks Attendance :05 Marks The final certification and acceptance of term work ensures the satisfactory performance of laboratory work and minimum passing in the term work. Books Recommended:
Text Books
- 1 Op-Amps and linear integrated circuits – Ramakant Gayakwad, Prentice Hall
- 2 Electronics Devices & Circuits, by Boylestad Robert L., Louis Nashelsky, Pearson Education.
- 3 Modern Digital Electronics, by R.P.Jain, Tata McGraw Hill, 1984
- 4 Digital Design, M Morris Mono, Prentice Hall International-1984.
- 1 Electronic Principles, by Albert Paul Malvino, 6/e, McGraw Hill
- 2 Semiconductor Data Manual, BPB Publications.
- 3 Electronic design, by Martin Roden, Gordon L. Carpenter, William Wieseman Fourth edition, Shroff Publishers &Distributors Pvt. Ltd.
- 4 Digital Design, by M Morris Mono Prentice Hall International 1984 Practical exam consists of performance of any one practical from digital electronics experiments conducted within the semester and oral based on digital electronics syllabus. University of Mumbai, Biomedical Engineering, Rev 2020-21 31
Reproduced from the University of Mumbai syllabus for B.E. (Biomedical Engineering) under REV-2019 'C' Scheme, in force from the academic year 2020-21. Wording is as printed in that syllabus. The University sets no module list for this course; what she publishes is the objectives, outcomes and assessment guidelines reproduced above.
The complete syllabus
This subject is cut from the University circular for its year. Open a document here if you want the whole thing rather than a single subject.