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【課程資訊 】115學年度第1學期全英文微學分非同步線上系列課程

2026.06.16

115學年度第1學期全英文微學分非同步線上課程

Flexible Intensive Course │ English-taught │ Asynchronous online

NCKU AISSM has aimed to make the advanced knowledge of semiconductor technology and related areas available to the NCKU campus. A series of the Essentials of Semiconductor Technology will be rolled out in the upcoming fall semester of 2026. NCKU students from all levels are welcome to join. Please take a look at the courses information and follow the schedule of the course enrollment system to add these courses to your basket.

▌ Courses List

115-1 全英文微學分課程一覽
Course Title Hours Credit Format Lecturer Program
數位積體電路設計概論(I)
Fundamentals of digital IC design (I)
9 0.5 Online 郭致宏
Chih-Hung Kuo
IC Design
奈米材料與合成科技
Nanomaterial synthesis and techniques
9 0.5 Online 許蘇文
Su-Wen Hsu
Key Materials
半導體與光電材料的第一原理計算基礎
Fundamentals of First Principles Calculation
9 0.5 Online 李明憲
Ming-Hsien Lee
Packaging & Testing
半導體與光電材料的第一原理計算應用
Applications of First Principles Calculation
9 0.5 Online 李明憲
Ming-Hsien Lee
Sustainable Manufacturing
  • Students may enroll in the intensive course during the official enrollment period. Alternatively, enrollment may be arranged through the program office before the course begins. Any updates to the course schedule will be posted on NCKU Moodle.
  • The online learning will be done asynchronously.
  • Asynchronous online courses are categorized as Flexible (Intensive time) Courses (Micro Courses). Please refer to the specification of the withdrawal procedures on the course enrollment webpage: NCKU Course Enrollment — Withdrawal Procedures (opens in new tab) 

▌ Courses Description

數位積體電路設計概論(I)

    Fundamentals of digital IC design (I)

介紹基本數位邏輯系統設計概念:Introduction / Boolean algebra / Applications of Boolean algebra / From Boolean to circuits / Design of combinational circuits / Multiplexers and decoders / Registers and counters / Analysis of sequential circuits / Design of sequential circuits

Fundamental concepts for the design of digital logic circuits: Introduction / Boolean algebra / Applications of Boolean algebra / From Boolean to circuits / Design of combinational circuits / Multiplexers and decoders / Registers and counters / Analysis of sequential circuits / Design of sequential circuits

郭致宏 副教授 │ Assoc. Prof. Chih-Hung Kuo

PhD, Electrical Engineering, USC
Area: IC Design / Electrical Engineering

郭致宏副教授個人照
課程時程規劃表
日期 起迄時間 時數 進度說明
09/08(二) 19:00-20:00 1 Introduction
09/15(二) 19:00-20:00 1 Boolean algebra
09/22(二) 19:00-20:00 1 Applications of Boolean algebra
09/29(二) 19:00-20:00 1 Boolean to circuits
10/06(二) 19:00-20:00 1 Design of combinational circuits
10/13(二) 19:00-20:00 1 Multiplexers and decoders
10/20(二) 19:00-20:00 1 Flip-flop and registers
10/27(二) 19:00-20:00 1 Analysis of sequential circuits
11/03(二) 19:00-20:00 1 Design of sequential circuits
總計時數 9  

奈米材料與合成科技

    Nanomaterial synthesis and techniques

奈米材料科學與技術涉及奈米結構或奈米材料的設計、製造和應用,以及對物理性質或現象與材料尺寸之間關係的基本理解。 它涉及奈米材料或結構,是一個新領域或新的科學領域。 與量子力學類似,在奈米尺度上,材料或結構可能具有新的物理性質或表現出新的物理現象。 奈米材料具有極其廣泛的潛在應用,從奈米級電子學和光學到奈米生物系統和奈米醫學。 本課程將涵蓋以下主題:1.介紹 2.奈米材料的表徵 3.奈米材料的特性 4.奈米材料的表面化學 5.奈米材料的合成 6.奈米材料的應用

Nanomaterials Science and technology is concerned with the design, fabrication and application of nanostructures or nanomaterials, and the fundamental understanding of the relationships between physical properties or phenomena and material dimensions. It deals with materials or structures in nanometers and is a new field or a new scientific domain. Similar to quantum mechanics, on nanometer scale, materials or structures may possess new physical properties or exhibit new physical phenomena. Nanomaterials have an extremely broad range of potential applications from nanoscale electronics and optics, to nanobiological systems and nanomedicine. This course will cover the following topics:1.intoruction 2.characuerization of nanomaterials 3.charateristics of nanomaterials 4.surface chemistry of nanomaterials 5.synthesis of nanomaterials 6.application nanomaterials.

許蘇文 副教授 │ Assoc. Prof. Su-Wen Hsu

PhD, Materials Science and Engineering, UCSD
Area: Key Materials / Chemical Engineering

許蘇文副教授個人照
課程時程規劃表
上課日期 起迄時間 時數 課程進度說明
10/20 18:30~20:00 1.5 Introduction to Nanomaterials and Synthesis (I)
10/22 18:30~20:00 1.5 Introduction to Nanomaterials and Synthesis (II)
10/27 18:30~20:00 1.5 Synthesis of Nanomaterials: Methods and Techniques
10/29 18:30~20:00 1.5 Synthesis of Nanocomposite: Methods
11/3 18:30~20:00 1.5 Applications of Nanomaterials
11/5 18:30~20:00 1.5 Applications of Nanomaterials
總計時數 9  

半導體與光電材料的第一原理計算基礎 

First Principles Calculation of Semiconductor and Optoelectronic Materials: Fundamentals

資訊科技日新月異,電腦模擬不但是科學研究的工具,也成為找尋與設計新材料的一大利器。本課程要以每週一個獨立單元的明快進度,介紹計算材料科學的基本理論與應用方法,並結合先進材料模擬軟體進行實作教學。課程內容涵蓋原子尺度模型建構、三維結構視覺化及材料物理性質分析等主題,使學生能有效運用計算工具進行材料設計與性能評估。透過理論與實務並重的教學方式,本課程將協助學生建立從基礎物理原理到現代材料與半導體產業應用之間的連結,培養其解決實際材料科學問題的能力。

This fundamental course uses the most advanced theories and software available teach computational materials science. Graphical user interface with powerful atomistic model building, 3D visualization allow quick access to materials design tasks. Many kinds of physical properties can be analyzed. This course help students to bring closer the gap between fundamental physics and modern industrial applications.

李明憲 教授 │ Prof. Ming-Hsien Lee

PhD, Physics, University of Cambridge
Area: Packaging & Testing / Physics

李明憲教授個人照
上課時間表 (Schedule)
上課日期 起迄時間 時數 課程進度說明
115-09-09 18:00~21:00 3 軟體安裝示範,快速入門、圖形介面、3D 進階功能與建模
Software Installation Demo, Quick Intro, GUI, Advanced 3D functions and Model Building
115-09-16 18:00~21:00 3 量子力學複習、密度泛函理論,原子與分子
Review of Quantum Mechanics, Density Functional Theory, Atoms and Molecules
115-09-23 18:00~21:00 3 能帶理論、能帶結構與物性、磁性
Band Theory, Band Structural and Physical Properties, Magnetism
總計時數 9  

半導體與光電材料的第一原理計算應用

First Principles Calculation of Semiconductor and Optoelectronic Materials: Applications

資訊科技日新月異,電腦模擬不但是科學研究的工具,也成為找尋與設計新材料的一大利器。本課程要以每週一個獨立單元的明快進度,介紹計算材料科學的基本理論與應用方法,並結合先進材料模擬軟體進行實作教學。課程內容涵蓋原子尺度模型建構、三維結構視覺化及材料物理性質分析等主題,使學生能有效運用計算工具進行材料設計與性能評估。透過理論與實務並重的教學方式,本課程將協助學生建立從基礎物理原理到現代材料與半導體產業應用之間的連結,培養其解決實際材料科學問題的能力。

This application course uses the most advanced theories and software available teach computational materials science. Graphical user interface with powerful atomistic model building, 3D visualization allow quick access to materials design tasks. Many kinds of physical properties can be analyzed. This course help students to bring closer the gap between fundamental physics and modern industrial applications.

李明憲 教授 │ Prof. Ming-Hsien Lee

PhD, Physics, University of Cambridge
Area: Packaging & Testing / Physics

李明憲教授個人照
上課時間表 (Schedule)
上課日期 起迄時間 時數 課程進度說明
115-10-07 18:00~21:00 3 光學性質、芯電子能譜、紅外吸收、拉曼散射
Optical Properties, Core-level Spectroscopy, IR absorption, Raman Scattering
115-10-14 18:00~21:00 3 聲子譜、結構穩定性與熱力學性質、材料硬度
Phonon dispersion, structural stability and thermodynamic properties, hardness of materials
115-10-21 18:00~21:00 3 表面與接面、雜質與合金、擴散、化學反應
Surfaces and Junctions, Impurities and Alloys, Diffusion and Chemical Reaction
總計時數 9