Semiconductor Device Physics: Textbook for Higher Education in Electronic Information

Author: Liu Shulin
Publisher:
Publish Date: 2005-02-01
Features: This book systematically introduces the working principles and characteristics of common semiconductor devices in a step-by-step manner. To facilitate self-study and reference, it first covers the fundamental knowledge of semiconductor materials and semiconductor physics necessary for learning semiconductor devices. Then, it focuses on discussing the performance parameters of PN junctions, bipolar transistors, MOS field-effect transistors, and junction field-effect transistors, as well as their relationships with semiconductor material parameters, process parameters, and device geometric structure parameters. Finally, it briefly explains the principles and applications of some common other semiconductor devices (such as power MOSFETs, IGBTs, and optoelectronic devices). This book can serve as a textbook or reference for undergraduate and graduate students in electronic information-related majors (especially microelectronics technology, microelectronics, and electronic science and technology), as well as for engineering professionals.
Author: Liu Shulin
Publisher:
Publish Date: 2005-02-01
Features: This book systematically introduces the working principles and characteristics of common semiconductor devices in a step-by-step manner. To facilitate self-study and reference, it first covers the fundamental knowledge of semiconductor materials and semiconductor physics necessary for learning semiconductor devices. Then, it focuses on discussing the performance parameters of PN junctions, bipolar transistors, MOS field-effect transistors, and junction field-effect transistors, as well as their relationships with semiconductor material parameters, process parameters, and device geometric structure parameters. Finally, it briefly explains the principles and applications of some common other semiconductor devices (such as power MOSFETs, IGBTs, and optoelectronic devices). This book can serve as a textbook or reference for undergraduate and graduate students in electronic information-related majors (especially microelectronics technology, microelectronics, and electronic science and technology), as well as for engineering professionals.

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