愛媛大学工学部

Electrical and Electronic Engineering

進化し続けるエレクトロニクスの最先端を学ぶ。


Evolved life with IoT (Internet of Things)

IoTが織りなす近未来の暮らし

 

Recently, various things such as automobiles, home appliances, and facilities have begun to connect to the Internet. This situation is called the IoT (Internet of Things). How will our lives change with IoT? For example, it is possible to accumulate information such as when, where, how it happened on a server via the Internet. If you use the huge amount of accumulated information (big data) and analyze it with artificial intelligence (AI), you will be able to realize a slightly nifty service from now on. In the education program of Electrical and Electronic Engineering, you can learn a wide range of energy, electronic device, and communication technologies to realize new society well-organized by IoT.



特色

特色


Learn technologies that are useful in all fields

Technology related to electrical and electronic engineering that continues to develop and evolve remarkably. The latest technology is a basic that is indispensable to all industries. In this course, we conduct a wide range of education and research on electrical and electronic, information and communication, including the development of electrical energy, high-performance electronic devices, and advanced information and communication technology, from the basics to the cutting edge. By learning the educational program of this course in a well-balanced manner, you can advance to any field of electrical and electronic, information and communication engineering. We aim to provide all students abundant foresight and originality who can contribute widely to society.

 



カリキュラム

カリキュラム


 2nd year

Electrical and Electronic Engineering Experiment I, Electrical and Electronic Mathematics I / II, Electric circuit I / II, Electromagnetism I / II, Transient phenomenon, Analog electronic circuit, Programming practice, Information theory, Differential equation, Electronic characteristics

 

 3rd year

Electrical and Electronic Engineering Experiments II / III, Electrical and Electronic Engineering Exercise I / II, Electrical and electronic measurement, Control engineering, Electrical equipment I / II, Generation and transformation engineering, Power transmission and distribution engineering, Power electronics, Internship, Electromagnetic wave engineering, Career design,  High voltage plasma engineering, Semiconductor engineering, Digital communication, Analog communication, Electrical equipment design and drafting, Electrical regulations and equipment management, Radio and communication regulations,  Radio engineering

 

 4th year

Graduation research, Intellectual property rights, Corporate ethics, Industrial economic theory, Factory management

 

 

就職先・進路

 

The job openings-to-applicants ratio is the highest in the engineering department, and you can find a desired job

About 40% of 2017 graduates go on to graduate school, and the remaining 60% are employed in companies. Since the electrical energy and electronic circuit technology learned in this course are required in all industrial fields, they can be used in a wide range of industries such as chemical plants and medical equipment manufacturers as well as electric power companies and electrical equipment manufacturers inside and outside the prefecture. The number of job-offers for this course is large in the engineering department, and the ratio of job-offers to applicants is about 16 times in 2017, so there are plenty of choices for employment.

In addition, the employment of students who have entered graduate school will be expanded to the research and development departments of major companies that require specialized knowledge.

 

2017年度 進路状況(2018年5月1日現在)

Information on job placement and graduate school advancement in 2017 Career Status (as of May 1, 2018)

 



トピックス


トピックス


電気材料・電子材料の開発

Development of functional materials, that are not available in the world, through research on insulators and electrical and electronic materials

 

新しい半導体ナノ構造の作製

Semiconductor nanostructure fabrication that breaks existing performance


次世代HDDの信号処理

Simulation experiment for aiming to high-density signal processing of next-generation hard disk drives