ELT011 Medical DevicesIstinye UniversityDegree Programs Electonics TechnologyGeneral Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Electonics Technology

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Associate TR-NQF-HE: Level 5 QF-EHEA: Short Cycle EQF-LLL: Level 5

Course Introduction and Application Information

Course Code: ELT011
Course Name: Medical Devices
Semester: Fall
Course Credits:
ECTS
3
Language of instruction: Turkish
Course Condition:
Does the Course Require Work Experience?: No
Type of course: Departmental Elective
Course Level:
Associate TR-NQF-HE:5. Master`s Degree QF-EHEA:Short Cycle EQF-LLL:5. Master`s Degree
Mode of Delivery: Face to face
Course Coordinator: Öğr. Gör. ERDAL GÜRSOY
Course Lecturer(s): Lec. Erdal GÜRSOY
Course Assistants:

Course Objective and Content

Course Objectives: This course aims to provide students with the knowledge and skills to perform electrical installation of medical devices.
Course Content: Human-Instrumentation System Noise Reduction Methods in Biological Signals Measuring Nerve Signals Measuring Muscle Signals (EMG) Electrocardiogram Devices Blood Flow Measurement Methods Blood Pressure Measurement Methods

Learning Outcomes

The students who have succeeded in this course;
1) Obtaining biomarkers.
2) Measuring biological (Bio potential) signals.
3) To establish Biomedical Devices Using Cell, Muscle, Heart and Circulatory Parameters.

Course Flow Plan

Week Subject Related Preparation
1) Human-Instrumentation System
2) Human-Instrumentation System
3) Noise Reduction Methods in Biological Signals
4) Noise Reduction Methods in Biological Signals
5) Measuring Nerve Signals
6) Measuring Nerve Signals
7) Measuring muscle signals (EMG)
8) MIDTERM
9) Measuring muscle signals (EMG)
10) Electrocardiogram devices
11) Methods of Measuring Blood Flow
12) Methods of Measuring Blood Flow
13) Blood Pressure Measurement Methods
14) Blood Pressure Measurement Methods
15) FINAL EXAM
16) FINAL EXAM

Sources

Course Notes / Textbooks: Robert L. Boylestad, Louis Nashelsky “Elektronik Cihazlar ve Devre Teorisi”
References: Robert L. Boylestad, Louis Nashelsky “Elektronik Cihazlar ve Devre Teorisi”

Course - Program Learning Outcome Relationship

Course Learning Outcomes

1

2

3

Program Outcomes
1) To have sufficient knowledge and experience in applying mathematics and science in the field of Electronic Technology. 2 2 2
2) To have knowledge about occupational safety and its applications and to have the competence to carry out its applications. 1 1 1
3) To have the ability to communicate effectively verbally and in written Turkish.
4) Having basic knowledge of English language and the ability to use it in the professional field. 1 1 1
5) To be conscious of Ataturk's Principles and to have knowledge about the History of the Revolution.
6) Able to transfer relevant designs and applications in the field of electronics to colleagues, superiors and the people and groups they serve, and to work in teams. 2 2 2
7) Awareness of the necessity of lifelong learning; To monitor the developments in science and technology and to constantly renew itself. 1 1 1
8) To be able to use computer-aided electronic design programs at a basic level for simulation and printed circuit creation.
9) To be able to make decisions in independent work, to take initiative and adapt in teamwork with people inside and outside the profession.
10) To use the software and hardware required by the profession, along with basic computer usage knowledge.
11) To effectively use the devices in electronics laboratories, collect data through measurement and diagnose faults. 2 2 2
12) To identify problems related to unforeseen situations in electronics-related studies and to produce solutions to the problems 2 2 2
13) To have knowledge and awareness of social responsibility, ethical values and social security rights on electronics-related issues.
14) To be able to produce solutions using basic knowledge about the design and control of control-based functions in electronic circuits and systems. 2 2 2
15) To objectively evaluate and supervise the performance of employees under his/her responsibility. 2 2 2
16) To know the concepts related to electronics, to recognize electronic circuit elements and to use them in related circuits. 3 3 3
17) To recognize the physical strength limits of electronic circuit components and to gain the ability to determine operating conditions accordingly. 2 2 2

Course - Learning Outcome Relationship

No Effect 1 Lowest 2 Average 3 Highest
       
Program Outcomes Level of Contribution
1) To have sufficient knowledge and experience in applying mathematics and science in the field of Electronic Technology. 2
2) To have knowledge about occupational safety and its applications and to have the competence to carry out its applications. 1
3) To have the ability to communicate effectively verbally and in written Turkish.
4) Having basic knowledge of English language and the ability to use it in the professional field. 1
5) To be conscious of Ataturk's Principles and to have knowledge about the History of the Revolution.
6) Able to transfer relevant designs and applications in the field of electronics to colleagues, superiors and the people and groups they serve, and to work in teams. 2
7) Awareness of the necessity of lifelong learning; To monitor the developments in science and technology and to constantly renew itself. 1
8) To be able to use computer-aided electronic design programs at a basic level for simulation and printed circuit creation.
9) To be able to make decisions in independent work, to take initiative and adapt in teamwork with people inside and outside the profession.
10) To use the software and hardware required by the profession, along with basic computer usage knowledge.
11) To effectively use the devices in electronics laboratories, collect data through measurement and diagnose faults. 2
12) To identify problems related to unforeseen situations in electronics-related studies and to produce solutions to the problems 2
13) To have knowledge and awareness of social responsibility, ethical values and social security rights on electronics-related issues.
14) To be able to produce solutions using basic knowledge about the design and control of control-based functions in electronic circuits and systems. 2
15) To objectively evaluate and supervise the performance of employees under his/her responsibility. 2
16) To know the concepts related to electronics, to recognize electronic circuit elements and to use them in related circuits. 3
17) To recognize the physical strength limits of electronic circuit components and to gain the ability to determine operating conditions accordingly. 2

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Midterms 1 % 40
Final 1 % 60
total % 100
PERCENTAGE OF SEMESTER WORK % 40
PERCENTAGE OF FINAL WORK % 60
total % 100

Workload and ECTS Credit Calculation

Activities Number of Activities Preparation for the Activity Spent for the Activity Itself Completing the Activity Requirements Workload
Course Hours 10 1 1 1 30
Laboratory 4 1 1 1 12
Midterms 1 5 5 5 15
Final 1 8 5 5 18
Total Workload 75