BMS330 Electronics 3

5 ECTS - 3-0 Duration (T+A)- 6. Semester- 3 National Credit

Information

Unit FACULTY OF ENGINEERING
BIOMEDICAL ENGINEERING PR.
Code BMS330
Name Electronics 3
Term 2017-2018 Academic Year
Semester 6. Semester
Duration (T+A) 3-0 (T-A) (17 Week)
ECTS 5 ECTS
National Credit 3 National Credit
Teaching Language Türkçe
Level Belirsiz
Type Normal
Label E Elective
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Prof. Dr. MUTLU AVCI
Course Instructor
The current term course schedule has not been prepared yet.


Course Goal / Objective

Aim of this course is to acquire basic knowledge in the field of Computer Aided Design (CAD) for electronic devices and circuits, familiarizing with FPGA and hardware description languages, design of PCB and understand testing and measurement methods of electronic systems.

Course Content

DC, ac, transient, RF and parametric analysis of electronic circuits using SPICE. Integrated circuits (IC) and computer assisted design of ICs. Analysis and simulations of digital and analog ICs. Introduction to FPGA with VHDL and Verilog hardware description languages. An introduction to Verilog A and VHDL AMS hardware description languages. IC layout and PCB design. Test and measurement methods of electronic systems.

Course Precondition

Resources

Notes



Course Learning Outcomes

Order Course Learning Outcomes
LO01 Draw Bode amplitude and phase plots.
LO02 Recognize transfer functions.
LO03 Use advanced analysis techniques.
LO04 Recognize second order transfer functions.
LO05 Know Extra element theorem.
LO06 Design Controllable analog active filter.
LO07 Design Observable analog active filter.
LO08 Make stability analysis.
LO09 Recognize sinusoidal oscillators.
LO10 Know voltage controlled oscillator.
LO11 Know voltage frequency conversion.
LO12 Recognize phase locked loops.
LO13 Knows buck converter.
LO14 Knows Boost converter.


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 - 1. Solve the scientific problems encountered in medicine and medical technologies by applying technical approaches of disciplines. 2. Self development on science and technology issues. 3. Assess the contributions of engineering solutions on medicine, medical technologies and healthcare
PLO02 - 1. Define the problems about Biomedical Engineering 2. Modelling the problems about Biomedical Engineering.
PLO03 - 1. Analyse data and interpret results
PLO04 - 1. Utilize modern techniques and computing tools which are essential for Engineering applications
PLO05 - 1. Design and analyse a defined process 2. Recognise national and international problems for Biomedical Engineering
PLO06 - Understand the research problems of medical doctor with engineering perspective
PLO07 - 1. Describe the ideas clearlywith written and verbally 2. Have the interdisciplinary teamwork skills
PLO08 - 1. Have knowledge on calibration and quality assurance systems in Biomedical Engineering 2. Have the sense of responsibility and professional ethics


Week Plan

Week Topic Preparation Methods
1 Review of Bode amplitude and phase plots Reading lecture materials
2 Transfer functions Reading lecture materials
3 Advanced analysis techniques for design Reading lecture materials
4 Second order transfer functions Reading lecture materials
5 Extra element theorem Reading lecture materials
6 Controllable analog active filter design Reading lecture materials
7 Observable analog active filter design Reading lecture materials
8 Mid-Term Exam Reading lecture materials and solving problems
9 Stability Reading lecture materials
10 Oscillators Reading lecture materials
11 Voltage controlled oscillators Reading lecture materials
12 Voltage frequency, frequency voltage converters. Reading lecture materials
13 Phase locked loops I Reading lecture materials
14 Phase locked loops II Reading lecture materials
15 DC-DC converters Reading lecture materials and solving problems
16 Term Exams Classical exam
17 Term Exams Classical exam

Update Time: 25.01.2018 09:43