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電機工程系以培育職涯知能並兼具設計、製作、研發及維修知識與技術的高級電機工程技術人才為主。本系發展規劃,以電機控制與應用、電能應用與管理及晶片實務與應用三大方向為主軸,涵蓋的領域有:微電腦介面控制系統、機電整合系統設計、電力品質監控及電力電子與電能應用、積體電路設計、晶片系統與應用、光電半導體技術、電子材料。 電機工程所秉持整合理論與實務的教育理念,致力於培養電機電子高科技產業之研發人才。課程的設計以研究理論與驗證實作並重,培育研究生有分析問題和實驗技巧的能力,成為可以支援產業界的優秀人才。 本系所積極爭取國科會、教育部及產學合作等各種專業的研究計劃,以提高學術研究及技術研發水準,並增加產業技術服務的機會,與產業界密切的相互結合,積極推動建教合作以增加學生就業能力。
The department is committed to the career intelligence and professional knowledge and technology. Students have the resources and guidance to become competent engineers who are capable of incorporating design, R&D, maintenance, manufacturing, and management into their professional settings. The development of the department includes micro-computer interface control systems, mechatronics system design, power quality control and power electronics and electric power applications, integrated circuit design, chip systems and applications, photoelectric semiconductor technology, electronic materials. The Graduate Institute of Electrical Engineering engages in integrating theory and practice. The goal of this Institute is to educate students to be professionals of engineering research and development in the future. Therefore, the curricula are to be R&D of high technology electrical and electronic industries. The department always positive strives for more research opportunities to improve the academic researches and enhance the skills and improve knowledge from national science council and ministry of education. In addition, enhance the opportunities of enterprises’ technological service and collaboration with enterprises closely. Besides, the department also offers cooperative opportunities with industries/factories to students to have work abilities. The department is committed to the academic success and professional development of each student. Department students have the resources and guidance to become competent engineers who are capable of incorporating design, R&D, maintenance, manufacturing, and management into their professional settings. Future development of the department will focus on electronic technologies, control systems, and electrical power systems. We also seek to improve the quality of our student's research skills and knowledge by providing more research opportunities. These will include integrated circuit design, chip systems and their applications, optical-electronic semi-conductor technologies, and electronic materials. In addition, PC-based control systems, mechanical-electrical integrated system designs, electrical power system quality monitoring, electrical power electronics and applications will be offered. Besides the regular curriculum, the department also offers students cooperative opportunities with local industries/factories, enabling students to gain hands on experience.


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日期題名作者
2009-03 Discrete-time neural predictive controller design Chi-Huang Lu
2004 Disorder effects on (Nd0.8-xPr0.2Cax)Ba2Cu3Oy W. S. Hu; H.-C.I. Kao; J. G. Lin; L. Hong; S. L. Young
2005 Dynamic Analysis of a Spinning Rayleigh Beam G. J. Sheu; S. M. Yang
2000 Dynamic modeling of gas pressure control system for gas-assisted injection molding process S.M. Chao; S.M.Wang; S.C.Chen
2007 Effect of annealing temperature on exchange coupling in NiFe/FeMn and FeMn/NiFe systems K. C. Chen; Y. H. Wu; K.M. Wu; J. C. Wu; Lance Horng; S. L. Young
2006 Effect of Bi4Ti3O12 Thin Films on ITO/Glass and Pt/Si Substrates Prepared by R.F. Sputtering and Rapid Thermal Annealing Method W. K. Chia; Y. C. Chen; C. F. Yang; S. L. Young; W. D. Jiang; Y. T. Tsa
2009-03 Effect of Microstructure Refinement on Magnetic Properties of Fe-Pt Thin Films C. Y. Shen; F. T. Yuan
2001 Effect of quantum diffusion on hopping transport C.-H. Lin; G. Y. Wu
2002 Effect of the substitutions of Ni+3, Co+3 and Fe+3 for Mn+3 on the ferromagnetic states of the La0.7Pb0.3MnO3 manganite S. L. Young; Y. C. Chen; H. Z. Chen; L. Horng; J. F. Hsueh
1999 Evaluation of gas pressure dynamics for gas-assisted injection molding process S.M. Chao; S.M.Wang; S.C.Chen; F.R.Gao
2001 Evolution of Magnetotransport Properties and Spin-Glass Behavior of the (La0.7-xNdx)Pb0.3MnO3 System S. L. Young; H. Z. Chen; Lance Horng; J. B. Shi; Y. C. Chen
2016-06-16 FePd 薄膜磁性之研究 李明育
1977 The Future Development of Electronic Materials S. –E. Sheu; W.-S. Liu
1998-09 Fuzzy Supervisory Predictive PID Control of a Plastics Extruder Barrel Ching-Chih Tsai; Chi-Huang Lu
2002-03 Game Theoretic Approach in the 3D Nonlinear Hoo-based Guidance Design Chi-Ching Yang; Hsin-Yuan Chen
1990-09 General and efficient timing models for CMOS AND-OR-INVERTER and OR-AND-INVERTER gates C. Y. Wu; M. C. Shiau
2006 Grain sizs effect on the colossal magnetoresistance in granular perovskite La0.7Pb0.3MnO3 S. L. Young; Lance Horng; K. M. Wu; Y. W. Ho; Y. T. Shih; H. Z. Chen; M. C. Kao
1980 The Growth YIG Crystal by High Temperature Solution Method W.-S. Liu
2003-12 Hierarchical Learning Architecture with Automatic Feature Selection for Multi-Class Protein Fold Classification Chuen-Der Huang; Chin-Teng Lin; Nikhil Ranjan Pal
2000-09 High-Speed Low-Power Low Voltage CMOS Level Converter Chien-Cheng Yu
2007 Hopping conduction behavior with the Coulomb effects in colossal magnetoresistance materials C. H. Lin; S. L. Young; H. Z. Chen; M. C. Kao; Lance Horng
2000 Hopping conduction in granular metals C.-H. Lin; G. Y. Wu
2006-09 Implementation of a Concise GPS_GSM Based Tracker Using Dual-MCU PIC18F452/PIC16F876A Devices Chih-Yeh King
2007 Influence of Grain Size of ZnO Nanocrystalline Films for Performance of Dye-Sensitized Solar Cells M. C. Kao; S. L. Young; H. Z. Chen; Y. C. Chen; P. T. Hsieh; S. Y. Wei
1994 The inhomogeneous ultrasonic field within an arbitrarily shaped scatterer C.Y. King; W.M. Keng

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