BMM331 Electronics 2

5 ECTS - 4-0 Duration (T+A)- 5. Semester- 4 National Credit

Information

Code BMM331
Name Electronics 2
Semester 5. Semester
Duration (T+A) 4-0 (T-A) (17 Week)
ECTS 5 ECTS
National Credit 4 National Credit
Teaching Language Türkçe
Level Lisans Dersi
Type Normal
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Dr. Öğr. Üyesi MUSTAFA İSTANBULLU


Course Goal

Objectives of this course are to understand and model opamp, analysis of the basic opamp circuits and applications as well as frequency response

Course Content

BJT and MOSFET power amplifiers, differential amplifier, current mirror, operational amplifiers (OPAMP), Opamp circuits,OPAMP limitations, Multistage OPAMP amplifiers, Instrumentation amplifiers, Feedback, comparators, Schmitt triggers, oscillators, Sallen-Key active filters, AD and DA Converter

Course Precondition

The course has no prerequisites.

Resources

Design With Operational Amplifiers and Analog Integrated Circuits, S. Franco, McGrawHill, 4th Ed., 2015. Microelectronics Circuit Analysis and Design, D. Neamen, McGrawHill, 2010.

Notes

Microelectronics Circuit Analysis and Design, D. Neamen, McGrawHill, 2010.


Course Learning Outcomes

Order Course Learning Outcomes
LO01 Recognize power amplifiers.
LO02 Analyze differential amplifier.
LO03 Know OPAMP and operation limitations.
LO04 Analyze OPAMP circuits.
LO05 Design OPAMP circuits.
LO06 Know instrumentation amplifier and operation principles.
LO07 Analyze multi stage OPAMP circuits.
LO08 Know OPAMP based comparator.
LO09 Recognize Scmitt trigger circuit.
LO10 Know feedback phenomena.
LO11 Recognize feedback types of OPAMP circuits.
LO12 Analyze comparator based square wave oscillator.
LO13 Design Sallen-Key type active filter.
LO14 Know analog to digital, digital to analog conversion.
LO15 Recognize ADC and DAC circuits.


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 Bilgi - Kuramsal, Olgusal Scientific problems encountered in the field of medicine and medical technologies; the ability to solve problems by applying the technical approaches of mathematics, science and engineering sciences. 5
PLO02 Yetkinlikler - Öğrenme Yetkinliği To be able to improve oneself by embracing the importance of lifelong learning and by following the developments in science-technology and contemporary issues. 4
PLO03 Yetkinlikler - Öğrenme Yetkinliği Assess the contributions of engineering solutions on medicine, medical technologies and healthcare. 2
PLO04 Yetkinlikler - Öğrenme Yetkinliği Identifying problems related to biomedical engineering. 3
PLO05 Yetkinlikler - Öğrenme Yetkinliği Modeling problems related to biomedical engineering. 5
PLO06 Beceriler - Bilişsel, Uygulamalı Analyzing data and interpreting the results. 5
PLO07 Beceriler - Bilişsel, Uygulamalı To be able to use modern techniques and computational tools required for engineering applications. 5
PLO08 Beceriler - Bilişsel, Uygulamalı Ability to analyze and design a process in line with a defined goal. 4
PLO09 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği To be able to understand the problems and wishes of the medical doctor in their scientific studies from an engineering point of view. 2
PLO10 Yetkinlikler - İletişim ve Sosyal Yetkinlik Expressing ideas verbally and in writing, clearly and concisely.
PLO11 Yetkinlikler - Alana Özgü Yetkinlik To be conscious of calibration and quality assurance systems in Biomedical Engineering. 2
PLO12 Beceriler - Bilişsel, Uygulamalı Design and Implement Experiments. 5
PLO13 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği Ability to act independently, set priorities and creativity. 5
PLO14 Yetkinlikler - İletişim ve Sosyal Yetkinlik Being aware of national and international contemporary issues in the field of Biomedical Engineering. 2
PLO15 Yetkinlikler - İletişim ve Sosyal Yetkinlik Ability to work in interdisciplinary teams.
PLO16 Yetkinlikler - Alana Özgü Yetkinlik To have a sense of professional and ethical responsibility.


Week Plan

Week Topic Preparation Methods
1 Power amplifiers Reading lecture materials Öğretim Yöntemleri:
Anlatım
2 Difference amplifiers Reading lecture materials Öğretim Yöntemleri:
Anlatım
3 Current sources and current mirrors Reading lecture materials Öğretim Yöntemleri:
Anlatım
4 Ideal operational amplifier (opamp), inverting, noninverting, buffer, summing, difference amplifiers Reading lecture materials Öğretim Yöntemleri:
Anlatım
5 Opamp differentiator anid integrator, precision rectifiers Reading lecture materials Öğretim Yöntemleri:
Anlatım
6 Opamp instrumentation amplifier Reading lecture materials Öğretim Yöntemleri:
Anlatım
7 I-V, V-I Converters Reading lecture materials Öğretim Yöntemleri:
Anlatım
8 Mid-Term Exam Reading lecture materials Ölçme Yöntemleri:
Yazılı Sınav
9 Feedback Reading lecture materials Öğretim Yöntemleri:
Anlatım
10 Voltage comparators and Schmitt trigger Reading lecture materials Öğretim Yöntemleri:
Anlatım
11 Multivibrator circuits Reading lecture materials Öğretim Yöntemleri:
Anlatım
12 Active filter design Reading lecture materials Öğretim Yöntemleri:
Anlatım
13 Sallen-Key active filters Reading lecture materials Öğretim Yöntemleri:
Anlatım
14 Controllable canonical active filter design Reading lecture materials Öğretim Yöntemleri:
Anlatım
15 Observable caonical active filter design Reading lecture materials Ölçme Yöntemleri:
Yazılı Sınav
16 Term Exams Classical exam Ölçme Yöntemleri:
Yazılı Sınav
17 Term Exams Classical exam Ölçme Yöntemleri:
Yazılı Sınav


Student Workload - ECTS

Works Number Time (Hour) Workload (Hour)
Course Related Works
Class Time (Exam weeks are excluded) 14 4 56
Out of Class Study (Preliminary Work, Practice) 14 3 42
Assesment Related Works
Homeworks, Projects, Others 0 0 0
Mid-term Exams (Written, Oral, etc.) 1 8 8
Final Exam 1 16 16
Total Workload (Hour) 122
Total Workload / 25 (h) 4,88
ECTS 5 ECTS