Applications for the September 2026 Qualifier are open. Apply by September 27, 2026. Apply now
Degree Level

Biomedical Electronic Systems

This course provides an understanding of biopotential recording, electrical stimulation, and implantable devices, covering design principles, safety, and applications in pacemakers, defibrillators, cochlear implants, brain stimulators, and retinal implants.

Code EE5104
Credits 4 Credits
Type Degree
Prerequisites None
12-Week Roadmap

Course Structure & Syllabus

For details of standard term assessment timelines and exam structures, visit our Academics page.

Module 1
Biopotential recording : ECG, EMG, EEG, Action potentials i. Physiological origin and characteristics ii. Electrical characteristics Biopotential amplifiers i. Electrode-tissue-electronics interface ii. Operation and design principles Noise and interference i. Sources and pathways ii. System and circuit design for noise mitigation
Module 2
Electrical stimulation of cells : Nerve and muscle stimulation i. Basics of electrical stimulation of excitable cells ii. Stimulation parameters Safety i. Electrochemical safety ii. Tissue safety Stimulation electronics i. Electrode-tissue-electronics interface ii. Operation and design principles
Module 3
Implantable electronic devices : Wireless power and data transmission i. Inductive, RF and optical links ii. Design parameters and principles Safety and compatibility i. Regulations and standards ii. Design for safety and compatibility
Module 4
Cardiac electronic devices : Pacemakers i. Cardiac pacing mechanisms ii. Operation and design principles. Defibrillators i. Fibrillation mechanisms ii. Operation and design principles
Reading List

Prescribed Books & References

  • "Medical Instrumentation: Application and Design" by John G. Webster; 4th ed., 2009
  • Bioelectricity: A Quantitative Approach" by Robert Plonsey and Roger C. Barr; 3rd ed., 2007
  • Implantable Medical Electronics: Prosthetics, Drug Delivery, and Health Monitoring" by Dennis Fitzpatrick., 2015