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FACULTY of ENGINEERING / DEPARTMENT of ELECTRICAL and ELECTRONICS ENGINEERING
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FACULTY of ENGINEERING / DEPARTMENT of ELECTRICAL and ELECTRONICS ENGINEERING / (30%) English
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EEE4006Electronic Device Techniques2+0+1ECTS:4
Year / SemesterSpring Semester
Level of CourseFirst Cycle
Status Elective
DepartmentDEPARTMENT of ELECTRICAL and ELECTRONICS ENGINEERING
Prerequisites and co-requisitesNone
Mode of DeliveryFace to face
Contact Hours14 weeks - 2 hours of lectures and 1 hour of laboratory per week
Lecturer--
Co-LecturerNone
Language of instruction
Professional practise ( internship ) None
 
The aim of the course:
The aim of this course is to give the students the ability design, analysis and practice of an instrument before implementation, implementing it and testing the specifications.
 
Learning OutcomesCTPOTOA
Upon successful completion of the course, the students will be able to :
LO - 1 : Designing, analizing,and implementation of an electronic instrument3,5,11,131
LO - 2 : making statistical analysis, error and data correlations3,5,11,131
LO - 3 : performance characteristics of instrument systems3,5,11,131
LO - 4 : Noise and its related knowledge.3,5,11,131
LO - 5 : sensors and transducers and their utility and applications3,5,11,131
LO - 6 : A/D and D/A conversion techniques and mutiplexing11,12,131
LO - 7 : Digital multimeter circuits- frequency and time interval measurements.3,5,11,131
CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome

 
Contents of the Course
An approach to Electronic Instrument design. Statistical Analysis: Probability of errors. Correlation of data. Performance characteristics of an instrument system: Transfer functions, zero-order systems, 1st and 2nd order systems and their ramp, impulse and step responses. Frequency response. Dead time elements. Noise: Sources and types of noise, descriptions, equivalent circuits, measurement of noise. Methods of noise reduction. Interference, description and types of interference. Transducers: Types and specifications of transducers. Choosing a transducer. A/D Conversion: General principles, specifications and types. Advantages and disadvantages comparisons. D/A Conversion: Implementing D/A conversion, multiplexing (A/D and D/A) . Digital Multimeter Circuits, frequency and time interval measurements.
 
Course Syllabus
 WeekSubjectRelated Notes / Files
 Week 1An approach to Electronic Instrument design
 Week 2Statistical Analysis
 Week 3Performance characteristics of an instrument system
 Week 4Noise: Sources and types of noise
 Week 5Methods of noise reduction
 Week 6Types and specifications of transducers
 Week 7Choosing a transducer
 Week 8A/D Conversion techniques
 Week 9Mid-term exam
 Week 10D/A Conversion: Implementing D/A conversion
 Week 11multiplexing (A/D and D/A)
 Week 12Digital Multimeter Circuits
 Week 13frequency and time interval measurements
 Week 14RF and fiber-optic measurements
 Week 15RF and fiber-optic measurements
 Week 16End-of-term exam
 
Textbook / Material
1Berlin, Howard M.- Frank C. Getz, 1988; Principles of electronic instrumentation and measurement, U.S.A.
2Helfrick, Albert D., William D. Cooper, 1990; Modern electronic instrumentation and measurement techniques
3Morris, Alan S., 2001; Measurement and instrumentation principles, England
4Cheatle, Keith R., 2006; Fundamentals of test measurement instrumentation, U.S.A.
 
Recommended Reading
 
Method of Assessment
Type of assessmentWeek NoDate

Duration (hours)Weight (%)
Mid-term exam 9 10/04/2013 2 50
End-of-term exam 16 31/05/2013 2 50
 
Student Work Load and its Distribution
Type of workDuration (hours pw)

No of weeks / Number of activity

Hours in total per term
Yüz yüze eğitim 2 14 28
Sınıf dışı çalışma 2 13 26
Arasınav için hazırlık 1 8 8
Arasınav 2 1 2
Dönem sonu sınavı için hazırlık 2 5 10
Dönem sonu sınavı 2 1 2
Total work load76