Unit 1
Overview of electrical engineering in medical applications and biological principles- Significance of electrical principles in healthcare technology- Electrical quantities and units- Ohm’s Law, Kirchhoff’s Laws- Series and parallel circuits- Node and mesh analysis- Thevenin and Norton theorems- Resistors, capacitors, inductors-AC fundamentals- Diodes, transistors, operational amplifiers- Circuit design in medical instruments- safety considerations
Unit 2
Introduction to signals and systems- Analog and digital signals- Frequency domain analysis-Amplifiers and filters in medical devices- Analog-to-digital and digital-to-analog converters- Noise analysis and reduction techniques- requirements for medical devices Voltage regulation and power management Battery technologies in healthcare applications- Reliability and failure analysis Electromagnetic compatibility (EMC) in medical electronics Regulatory considerations for electronic medical devices
Unit 3
Types of sensors in medical applications Sensor characteristics and specifications Sensor interfacing with microcontrollers- Introduction to actuators in medical systems Case studies on actuator-driven medical devices Feedback control systems in healthcare technology- Design principles for sensor-actuator systems Real-time monitoring and control in medical applications Challenges and opportunities in smart medical device