| PRE-REQUISITE | UFUG 1501 OR UFUG 1503 |
|---|---|
| CROSS CAMPUS COURSE EQUIVALENCE | MECH 2410 |
| DESCRIPTION | Atomic bonding of materials; crystal structure and defects; mechanical properties of materials; phase diagrams and phase transformations; heat treatment of metals; processing and applications of metallic materials. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6526) | Tu 03:00PM - 05:50PM | Rm 233, W1 | YUE, Liang | 40 | 23 | 17 | 0 | |
| LA01 (6527) | TBA | TBA | YUE, Liang | 40 | 23 | 17 | 0 | > The specific arrangements for lab sessions will be announced by the instructor. |
| DESCRIPTION | CNC technology is generally considered a measure of a nation's manufacturing technology level. It is the integration of technologies of computers, control, machining, and so on, and often referred to as "The Flower of Industrial Technology". This course covers the contents of the principle and applications of CNC, like the general concepts and mechanisms of numerically controlled machines, element technologies of numerical control (including interpreter, interpolator, control of acceleration and deceleration, and position control system), and the characteristics and industrial applications of typical CNC controllers and CNC machine tool. Students interested to learn the fundamental theories and the industrial application of CNC systems are encouraged to enroll in this course. |
|---|
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6529) | TuTh 01:30PM - 02:50PM | Rm 201, E1 | HU, Pengcheng | 40 | 30 | 10 | 0 | |
| T01 (6530) | TBA | TBA | HU, Pengcheng | 40 | 30 | 10 | 0 | > The specific arrangements for lab and tutorial sessions will be announced by the instructor. |
| LA01 (6531) | TBA | TBA | HU, Pengcheng | 40 | 30 | 10 | 0 | > The specific arrangements for lab and tutorial sessions will be announced by the instructor. |
| PRE-REQUISITE | UFUG 2102 or UFUG 2103 or UFUG 2104 |
|---|---|
| DESCRIPTION | This course equips students with a basic understanding of fundamental data mining and analytics techniques to transform rich industrial data into intelligent decision-making. Students will be trained to model and solve real industrial problems scientifically with the aid of appropriate data analytics techniques. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6533) | Th 03:00PM - 05:50PM | Rm 202, E3 | DU, Juan | 40 | 31 | 9 | 0 |
| PRE-REQUISITE | UFUG 1502 AND UFUG 1103 |
|---|---|
| CROSS CAMPUS COURSE EQUIVALENCE | MECH 3030 |
| DESCRIPTION | Application of kinematics and dynamics in the analysis, design and synthesis of mechanisms. Type and dimensional design of linkages, cams and gears based on motion requirements and force transmission, in contrast to the strength requirements. Graphical, analytical and computer methods in analysis and design of mechanisms. Design considerations in mechanism synthesis. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6535) | Fr 09:00AM - 11:50AM | Rm 202, W4 | WANG, Wenyu | 20 | 22 | 0 | 0 | |
| T01 (6536) | 20-SEP-2026 - 26-SEP-2026 Mo 01:00PM - 02:50PM | Newton Lab(E3-231C) | WANG, Wenyu | 20 | 22 | 0 | 0 | |
| 18-OCT-2026 - 24-OCT-2026 Mo 02:30PM - 04:20PM | Newton Lab(E3-231C) | WANG, Wenyu | ||||||
| 08-NOV-2026 - 14-NOV-2026 Mo 01:00PM - 02:50PM | Newton Lab(E3-231C) | WANG, Wenyu | ||||||
| 29-NOV-2026 - 05-DEC-2026 Mo 01:00PM - 02:50PM | Newton Lab(E3-231C) | WANG, Wenyu |
| PRE-REQUISITE | UFUG 1501 or UFUG 1503 |
|---|---|
| DESCRIPTION | This is an introductory laboratory course to provide students with training in experimental techniques and laboratory procedures, data acquisition, analysis, and presentation. This course series aims at offering students an opportunity to face real problems in real manufacturing environments through the application of smart manufacturing methods to support the engineering and management of high-value-added products, the continuous innovation of products and processes, the sustainability of products and production systems along their lifecycle. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| LA01 (6540) | 01-SEP-2026 - 19-SEP-2026 Mo 09:00AM - 11:50AM | Rm 227, E1 | ZHANG, Kaihao | 36 | 33 | 3 | 0 | > The specific arrangements for lab sessions will be announced by the instructor. |
| 20-SEP-2026 - 07-NOV-2026 Mo 09:00AM - 11:50AM | TBA | ZHANG, Kaihao | ||||||
| 08-NOV-2026 - 21-NOV-2026 Mo 09:00AM - 11:50AM | Rm 227, E1 | ZHANG, Kaihao | ||||||
| 22-NOV-2026 - 07-DEC-2026 Mo 09:00AM - 11:50AM | TBA | ZHANG, Kaihao |
| PRE-REQUISITE | DSAA 1085 OR UFUG 2104 |
|---|---|
| DESCRIPTION | This course covers fundamental concepts and principles of integrated production systems. Topics to be covered include demand forecasting, inventory control, aggregate planning, production control, just-in-time, manufacturing resources planning, operation scheduling, and project scheduling. Upon completion of the course, students will be able to use quantitative techniques to address various problems in production and manufacturing systems. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6542) | We 12:00PM - 02:50PM | Rm 150, E1 | GUO, Daqiang | 40 | 16 | 24 | 0 |
| PRE-REQUISITE | DSAA 1085 OR UFUG 2104 |
|---|---|
| DESCRIPTION | Basic concepts and algorithm of discrete-event simulation, generation of random variates, modelling input distributions, statistical analysis of simulation outputs, verification and validation of simulation models, comparisons and optimization via simulation, simple spreadsheet simulation, intermediate modelling and analysis with a commercial simulation package. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6543) | We 03:30PM - 05:20PM | Rm 102, E1 | GUO, Daqiang | 40 | 16 | 24 | 0 | |
| T01 (6544) | We 05:30PM - 06:20PM | Rm 102, E1 | GUO, Daqiang | 40 | 16 | 24 | 0 |
| CROSS CAMPUS COURSE EQUIVALENCE | MECH 4720 |
|---|---|
| DESCRIPTION | Principles of precision design, precision machining, and precision measurement; mathematical definitions and theoretical studies of tolerances for one-, two-, and three-dimensional precision assemblies; applications and industrial practices. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6545) | Th 10:30AM - 01:20PM | Rm 102, E1 | CHEN, Mojun | 40 | 9 | 31 | 0 |
| CO-REQUISITE | DLED 4040 |
|---|---|
| EXCLUSION | SMMG 4901 |
| DESCRIPTION | A year-long final year project related to smart manufacturing, involving using artificial intelligent tools to facilitate the project. Under the supervision of a faculty member, students are required to produce a project proposal and a final report. Credit load will be spread over the year. For SMMG students in their fourth year of study only. Graded: Letter grade or PP. Instructor's approval is required for the enrollment of the course. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| T01 (6546) | TBA | TBA | TBA | 13 | 13 | 0 | 0 | > The specific arrangements will be announced by the supervisors. |
| EXCLUSION | MSSM 5012 |
|---|---|
| PREVIOUS CODE | SMMG 6000C |
| DESCRIPTION | Microelectromechanical Systems (MEMS) combine electrical and mechanical components on a single chip, enabling the sensing of phenomena such as temperature, pressure, movement, and acceleration, as well as emitting signals via light or sound. These systems are essential for modern technologies, including smartphones, AR/VR platforms, and wearable electronics, and they are foundational for innovations like micro-robots. This course covers the fundamentals of microfabrication for MEMS, including techniques from integrated circuit (IC) fabrication and methods tailored to MEMS-specific challenges. It provides a comprehensive toolbox for both research-level prototyping and mass production in the MEMS industry. The curriculum includes a review of crucial microfabrication methods and case studies on micro- and nano-scale devices, focusing on their fabrication processes. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6386) | MoWe 10:30AM - 11:50AM | Rm 105, E3 | WANG, Yunda | 20 | 18 | 2 | 0 |
| EXCLUSION | MSSM 5011 |
|---|---|
| PREVIOUS CODE | SMMG 6000G |
| DESCRIPTION | This course provides an in-depth exploration of the principles and applications of Computerized Numerical Control (CNC) technology, focusing on the fundamental concepts and mechanisms of numerically controlled machines. Key topics include the essential components of numerical control, such as interpreters, interpolators, acceleration and deceleration control, and position control systems, along with advancements in deep learning-enabled CNC technology. The course also examines the characteristics and industrial applications of various CNC controllers. The material is applicable to a diverse range of motion control equipment, including multi-axis machine tools, industrial robots, 3D printers, laser processing machines, and lithography systems. This course is ideal for students seeking to understand the foundational theories and practical applications of motion control and CNC systems in an industrial context. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6388) | Tu 06:30PM - 09:20PM | Rm 202, W2 | HU, Pengcheng | 20 | 8 | 12 | 0 |
| PREVIOUS CODE | SMMG 6000H |
|---|---|
| DESCRIPTION | Functional microdevices are tiny devices that are used to create functional and interactive components on a microscopic level. They are used in a variety of applications, such as microelectronics, flexible or wearable devices, drug delivery, and more. This course provides students with the latest knowledge about functional microscale devices fabrication techniques and the underlying physics, including flexible electronics fabrication and applications, transfer printing techniques, 3D printing, and micro/nanoscale mechanics. Students will gain practical knowledge of these topics and develop the ability to apply this knowledge in real-world multifunctional manufacturing applications. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6389) | Mo 06:00PM - 08:50PM | Rm 201, W2 | ZHANG, Kaihao | 30 | 21 | 9 | 0 |
| PREVIOUS CODE | SMMG 6000N |
|---|---|
| DESCRIPTION | The increasing human-machine interactions necessitate new format of electronics that can be seamlessly integrated with biological systems. Human-centric designs and manufacturing have been developed to bridge the domains of biology and electronics, underpinning future healthcare and brain-machine interfaces. This course will cover trending design and manufacturing techniques, along with applications of bioelectronics. Via case studies, students will appreciate the frontiers and challenges of this interdisciplinary field. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6392) | Tu 09:00AM - 11:50AM | Rm 201, W4 | WANG, Wenyu | 15 | 16 | 0 | 0 |
| PREVIOUS CODE | SMMG 6000O |
|---|---|
| DESCRIPTION | Students are introduced to the concepts and fundamentals of material behavior, which provide a foundation for understanding the behavior of the major types of engineering materials. It will teach the fundamental relationship between the internal structure, properties, and processing in engineering materials, covering everything from metals, ceramics, polymers, composites, to functional materials. It will provide comprehensive coverage spanning mechanical, thermal, electrical, magnetic, and other functionalities for smart materials. In addition to general engineering materials, special topics will also be provided on advanced manufacturing techniques. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6393) | Fr 01:30PM - 04:20PM | Rm 234, E1 | YUE, Liang | 40 | 14 | 26 | 0 |
| PREVIOUS CODE | SMMG 6000D |
|---|---|
| DESCRIPTION | This course introduces the basics of nanofabrication and nanocharacterization methods as well as typical applications of nanotechnology in commercial products. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6395) | Tu 03:00PM - 05:50PM | Rm 239, E1 | CHEN, Mojun | 40 | 40 | 0 | 0 |
| PREVIOUS CODE | SMMG 6000A |
|---|---|
| DESCRIPTION | This course provides knowledge and skills on how to develop, optimize, and implement different design strategies in additive manufacturing (AM). Through hands-on instructional activities and case studies, students will learn to select the appropriate AM technologies for specific design-manufacturing applications; explain challenges in design and manufacturing and provide solutions; identify and utilize proper software tools to analyze and evaluate designs; and design parts that fully leverage the strengths of AM. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6396) | We 01:30PM - 04:20PM | Rm 235, E1 | CAI, Yi | 30 | 13 | 17 | 0 |
| EXCLUSION | MSSM 5001 |
|---|---|
| PREVIOUS CODE | SMMG 6000E |
| DESCRIPTION | This course aims to introduce the fundamentals of various additive manufacturing techniques, including fused deposition modeling (FDM), two-photon lithography, stereolithography (SLA), etc. The additive manufacturing process (FDM or SLA as an example) will be illustrated by actual model design, system setup and fabrication of parts. |
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6400) | Mo 03:00PM - 05:50PM | Rm 101, W4 | CUI, Huachen | 30 | 12 | 18 | 0 |
| DESCRIPTION | This course delves into the cutting-edge world of materials science and electronic engineering. Students will explore the development and application of intelligent materials that respond dynamically to environmental changes, such as temperature, pressure, and light. The course covers flexible electronics, emphasizing their design, fabrication, and integration into wearable devices, sensors, and other innovative applications. Students will learn popular materials like graphene, conductive polymers, and shape-memory alloys, learning how these materials revolutionize industries from healthcare to consumer electronics. Through a combination of lectures and project-based learning, this course equips students with the skills and knowledge to innovate and excel in the rapidly evolving fields of smart materials and flexible electronics. |
|---|
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| L01 (6417) | Mo 01:30PM - 04:20PM | Rm 101, E4 | LIU, Shiyuan | 40 | 34 | 6 | 0 |
| DESCRIPTION | Selected topics in smart manufacturing studied under the supervision of a faculty member. |
|---|
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| R01 (6402) | TBA | TBA | TBA | 20 | 0 | 20 | 0 |
| DESCRIPTION | Seminar topics presented by students, faculty and guest speakers. Students are expected to attend regularly and demonstrate proficiency in presentation in accordance with the program requirements. Graded P or F. |
|---|
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| T01 (6408) | Fr 11:00AM - 11:50AM | Rm 101, W1 | QIU, Guoxiong | 100 Quota/Enrol/Avail SMMG students: 100/0/100 | 79 | 21 | 0 |
| DESCRIPTION | Master's thesis research supervised by co-advisors from different disciplines. A successful defense of the thesis leads to the grade Pass. No course credit is assigned. |
|---|
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| R01 (6403) | TBA | No room required | TBA | 50 | 9 | 41 | 0 |
| DESCRIPTION | Original and independent doctoral thesis research supervised by co-advisors from different disciplines. A successful defense of the thesis leads to the grade Pass. No course credit is assigned. |
|---|
| Section | Date & Time | Room | Instructor | Quota | Enrol | Avail | Wait | Remarks |
|---|---|---|---|---|---|---|---|---|
| R01 (6404) | TBA | No room required | TBA | 130 | 35 | 95 | 0 |