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Teaching Goals

The teaching goal of NFU-DEE


1.      The cultivation of basic thesis

1.1  Have the ability of basic math and physical analysis and application.

1.2  Have appreciative facility of culture, art, and music and strengthen human general knowledge education.

1.3  Realize the operative principles of every equipment and information sampling methods.

1.4  Have the capacity of reading English operation manual and technical report.


2.      Instruction of professional theory and practical experience

2.1  Have the basic theory and practical skills required for integrated circuit design and manufacture.

2.2  Have the basic theory and practical skills required for microelectronics and electro-optical engineering.

2.3  Have the basic theory and practical skills required for communication systems.


3.      Integrate and analyze the information

3.1  Have the ability to fully use the resources from Internet and library.

3.2  Have the facility of collection, arrangement, analysis, and study technical data.

3.3  Have the occupational acknowledge related to electronics industry.


4.      Independent thinking and team work

4.1  Have the capacity of experimental design and execution and be able to analyze and explain statistics.

4.2  Use multi-thinking methods to solve problem

4.3  Cooperation with educational teams and have the concept of career ethics.


5.      Social responsibility and national viewpoint

5.1  Have the high sense of responsibility and regionalism.

5.2  Own the work ethics and obey intellectual property rights.

5.3  Have the national viewpoint.



Core ability of NFU-DEE students


Students’ required core ability after graduation


One: Have professional acknowledge.

Two: Have practical techniques.

Three: Have the innovated potential.

Four: Train the spirit of team work.

Five: Have foresight of national viewpoint.

Six: Have the career ethics and social responsibility.



Researched directions of NFU-DEE


1.      Integrated circuit design and manufacture

2.      Microelectronics and electro-optical engineering

3.      Communication systems