Analogue Electronics (block optB)

Analogue Electronics (block optB)

BLOCK: block B-opt – ELECTRONICS AND DIGITAL TRANSITION
1st Year II semester

Course Information
Course Code 8037954
Credits 6 + 3 CFU extra
Offered by Engineering Sciences
SSD2015 ING-INF/01
SSD2024 IINF-01/A
note Students who include Analogue Electronics in their study plan are strongly advised to take it in its 9-CFU version, with the last 3 CFUs (out of 9) serving as Extra Credits.

Lecturer

Current Lecturer
Prof. Paolo Colantonio
✉ paolo.colantonio@uniroma2.it
☏ 06. 7259.7323
since a.y. 2023-24
Previous Lecturer
Prof. Rocco Gioffré
✉ giofr@ing.uniroma2.it
a.y. 2021-22 to 2022-23

Grading Criteria
Evaluation Written examination
Oral examination

Resources
Links

Electronic Interfaces – 6 CFU (block E, optB, optC1.b/optC2.b)

Electronic Interfaces – 6 CFU (block E, optB, optC1.b/optC2.b)
1 YEAR II semester  6 CFU
Christian Falconi A.Y. 2022-23 (since)
A.Y. 2023-24 (new block E) 
Christian Falconi (4)

Usman Khan (2)

A.Y. 2025-26
didatticaweb

Syllabus📑

Code: 80300103
SSD: ING-INF/01

Analogue Electronics – 9 CFU (block optB)

Analogue Electronics – 9 CFU (block optB)
PROFESSOR 1 Year – II semester  6 CFU + 3 cfu extra
Rocco Giofre’ A.Y. 2021-22 to A.Y. 2022-23
Paolo Colantonio since A.Y. 2023-24
👉(provided by Engineering Sciences) 

 🧩 Block: B – Electronics

📌 Course Code: 8037954 (9CFU)

🏷 SSD2015: ING-INF/01
🏷 SSD2024:

📑 Grading criteria

https://t0.gstatic.com/faviconV2?client=SOCIAL&type=FAVICON&fallback_opts=TYPE,SIZE,URL&url=https://didatticaweb.uniroma2.it&size=32  DidatticaWeb

Students who include Analogue Electronics in their study plan are strongly advised to take it in its 9-CFU version, with the last 3 CFUs (out of 9) serving as Extra Credits.


✅ Syllabus📑

  1. Classification of electrical systems and requirements.

  2. Analysis of transitory and frequency behavior.

  3. Distortion in electronic systems and Bode diagrams.

  4. Diode semiconductor devices and circuit applications: clipper, clamper, peak detector, etc.

  5. Bipolar Junction and Field Effect Transistors.

  6. Biasing techniques for Transistors.

  7. Amplifiers classification, analysis and circuit design.

  8. Differential amplifiers and Cascode.

  9. Current mirrors.

  10. Frequency response of single and cascaded amplifiers.

  11. Feedback amplifiers and stability issues.

  12. Power amplifiers.

  13. Operational amplifiers and related applications.

  14. Integrated circuits and voltage waveform generators.

  15. Oscillator circuits.