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Electronic Technology in Biomedicine
OVERVIEW
CEA CAPA Partner Institution: Universidad Carlos III de Madrid
Location: Madrid, Spain
Primary Subject Area: Biomedical Engineering
Instruction in: English
Course Code: 15542
Transcript Source: Partner Institution
Course Details: Level 200
Recommended Semester Credits: 3
Contact Hours: 42
DESCRIPTION
scription of contents: programme
T1: Circuit Theory
1. Ohm law.
2. Kirchhoff laws
3. Current and voltage sources.
4. Superposition theorem.
5. Thevenin and Norton theorem.
6. Real voltage and current sources.
7. Capacitors and Inductors (C and L).
8. Time response of C and L.
9. Universal equation for C and L.
10. DC and AC circuit analysis.
11. Frequency response of R, C and L circuits.
12. First order passive Filters and Bode Diagram.
13. Computer circuit simulation of AC and DC circuits
T2: Electronic components
1. Diodes and Transistors (MOSFET).
2. MOSFET small signal model.
3. Single stage amplifier using MOSFETs.
T3: Amplification (Operational Amplifiers)
1. Inverting Amplifier.
2. Non-Inverting Amplifier.
3. Comparator.
4. Differential Amplifier.
5. Input and Output impedance.
6. Cascade Amplifiers.
7. Computer simulation of amplifier circuits
T4: Digital Electronics
1. Binary system and Boole Algebra.
2. Combinational circuits: Decoders and Multiplexers.
3. Sequential circuits: Flip-Flops
T1: Circuit Theory
1. Ohm law.
2. Kirchhoff laws
3. Current and voltage sources.
4. Superposition theorem.
5. Thevenin and Norton theorem.
6. Real voltage and current sources.
7. Capacitors and Inductors (C and L).
8. Time response of C and L.
9. Universal equation for C and L.
10. DC and AC circuit analysis.
11. Frequency response of R, C and L circuits.
12. First order passive Filters and Bode Diagram.
13. Computer circuit simulation of AC and DC circuits
T2: Electronic components
1. Diodes and Transistors (MOSFET).
2. MOSFET small signal model.
3. Single stage amplifier using MOSFETs.
T3: Amplification (Operational Amplifiers)
1. Inverting Amplifier.
2. Non-Inverting Amplifier.
3. Comparator.
4. Differential Amplifier.
5. Input and Output impedance.
6. Cascade Amplifiers.
7. Computer simulation of amplifier circuits
T4: Digital Electronics
1. Binary system and Boole Algebra.
2. Combinational circuits: Decoders and Multiplexers.
3. Sequential circuits: Flip-Flops
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