Holiday
DELTA台達215 W3W4F4
In order to understand the properties of these devices, one needs to understand 1. electronic properties of the semiconductor materials 2. affected by impurities (intentional and unintentional) and applied voltages 3. temperature and geometric effects 4. device structures and optical radiation Pseudo-Classical Mechanism Instead of Quantum Mechanism 1. classical formulas such as Newton's laws & Lorentz equation can be used 2. effective mass replacing true electron mass 3. infinite periodic structure instead of finite periodic structure with boundaries 4. 1-D simple structure to fit 3-D complicate structure
Course keywords: semiconductor physics, semiconductor Material & Energy States , Diodes , MOS Capacitor, Field Effect Transistors, Bipolar Junction Transistors Textbook Fundamentals of Semiconductor Devices by Betty L. Anderson & Richard L. Anderson (Mc GRAW.HILL) References Semiconductor Physics and Devices by Donald A. Neamen (Mc GRAW.HILL) Solid State Electronic Devices by Ben G. Streetman & Sanjay K. Banerjee (Pearson) Syllabus Week 1-3 Semiconductor Material & Energy States Week 4-6 Semiconductor Diodes Week 7-9 Semiconductor MOS Capacitor Week 10 Midterm Week 11-13 Field Effect Transistors Week 14-16 Bipolar Junction Transistors Week 17 Final
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平均GPA 3.69
標準差 0.59
平均百分制 89.68
標準差 8.65
平均百分制 84.45
標準差 9.95
電機系大學部3年級4年級,電資院學士班大學部3年級4年級優先,第3次選課起開放全校修習
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