Basic concepts on technologies for modern electronic embedded systems. Introduction to sensor devices and sensing methods. Embedded electronic sensing systems for Internet of Things (IoT) and for distributed monitoring. Basic concepts of radio transceivers. Distributed wireless sensing networks for environmental monitoring. Application examples.
Attendance and active participation in the proposed educational activities (lectures and laboratory activities) and individual study will enable the student to:
- understanding basic electrical variables e.g. current, voltage, power, energy
- understanding the behavior of a simple linear electric circuit
- understanding the behavior of a simple RC circuit
- understanding the classification of materials based on their electrical properties e.g. insulators, conductors and semiconductors
- learning how to analyze the behavior of an electric circuit
- understanding the behavior and application of the diode
- understanding the behavior of a MOS transistor as signal amplifier
- understanding the behavior of the CMOS inverter and of NOR and NAND gates circuits
- understanding the evaluation of time response and power/energy consumption of CMOS logic gate circuits
- understanding the behavior of an Operational Amplifier
Basic mathematic skills
The course is based on class lectures (about 40 hours) and includes a lab exercise on the programming and usage of an IoT node for environmental monitoring.
EXAM DESCRIPTION
APRIL 12, Classroom MA218 , time: 9AM-12PM
MAY 24, Classroom MA218 , time: 9AM-12PM
ASSESSMENT METHODS
The oral/written tests checks the knowledge of the students of the course content.
Three examinations are planned in the summer session and three during the winter session
OFFICE HOURS FOR STUDENTS
On appointment
Course content:
The course material is published on Aulaweb.
Textbooks:
Sedra/Smith, Microelectronic Circuits, Oxford University Press Inc, ISBN 9780199339143 (you can find this online) ---- OK for the ANALOG PART
Digital Circuits And Logic Design DCAP108 –https:/ebooks.lpude.in/computer_application/ad/DCAP108_DIGITAL_CIRCUITS_AND_LOGIC_DESIGNS.pdf GOOD FOR THE DIGITAL PART
Ricevimento: Su appuntamento
RAFFAELE BOLLA (Presidente)
ORAZIO AIELLO
FRANCO RINO DAVOLI
LUCIA SEMINARA (Presidente Supplente)
https://courses.unige.it/10553/p/students-timetable
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