Eskisehir Technical University Info Package Eskisehir Technical University Info Package
  • Info on the Institution
  • Info on Degree Programmes
  • Info for Students
  • Türkçe
About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Faculty of Aeronautics and Astronautics
  • Department of Avionics
  • Course Structure Diagram with Credits
  • Digital Data Transmission
  • Learning Outcomes
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications
  • ECTS Credit Load

  • explain terms of analog and digital data.
  • Explain number systems.
  • Calculate conversions between the number systems.
  • Analyze conversion of analog data to digital data and digital data to analog data.
  • describe analog signal rise-time, fall-time, delay time, pulse period, pulse pause, and how this affects signal transmission in a circuit.
  • Define the concepts of sampling and resolution
  • Explain data transmission buses and standards on aircraft.
  • The student can explain ARINC 429 and MIL-STD -1153B data transmission standards.
  • Explain properties of signal in ARINC 429 data transmission standard.
  • Explain types of data and word codes in ARINC 429 data transmission standard.
  • The student can explain features of fiber optic cable.
  • Describe the advantages and disadvantages of fiber optic data transmission.
  • Describe the purpose of the optic termination and the problems associated with a failed termination.
  • Describe the function of Couplers, control terminals, remote terminals.
  • Explain the advantages of using fiber optic transmission in airplanes.
  • The student can explain the basic electrostatic field.
  • He/She knows the Del operator, the concepts of Sakaler gradient and divergence. He/She knows Coulomb's law and the divergence theorem. He/She finds the potential difference between two point charges.
  • The student can describe the fundamentals of magnetic field and define Maxwell's equations.
  • The student can explain Ampere's law. The student can interpret Maxwell's equations.
  • The student can define electromagnetic wave concepts. The student can explain the impact of events in maintenance applications for electronic systems.
  • The student can explain plane wave concepts. The student can describe wave motion in free space. The student can explain wave motion and its concepts in free space, in curved and perfect dielectrics. The student can explain EMC (Electromagnetic Compatibility), EMI (Electromagnetic Interference), HIRF (High Intensity Field of Radiation), lightning/lightning protection.

  • Info on the Institution
  • Name and Adress
  • Academic Calendar
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  • General Description
  • List of Programmes Offered
  • General Admission Requirements
  • Recognition of Prior Learning
  • Registration Procedures
  • ECTS Credit Allocation
  • Academic Guidance
  • Info on Degree Programmes
  • PhD / Proficiency in Art
  • Master's Degree
  • Bachelor's Degree
  • Associate Degree
  • Info for Students
  • Cost of living
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  • Facilities for Special Needs Students ı
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  • Language courses
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