| 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 |
| 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 |