Multi-Scale System Design
Lecture Notes
Class sessions 1 through 18 are lectures. Notes for most of these sessions are provided in the following table.
SES # |
TOPICS |
SESSION CATEGORIES |
INSTRUCTORS |
LECTURE NOTES |
1 |
Introduction to MuSS and SPM Case Study |
Fundamental Principles |
Prof. Martin L. Culpepper |
(PDF) |
2 |
MuSS Design Fundamentals and Methods |
Fundamental Principles |
Prof. Sang-Gook Kim |
|
3 |
Macro/Meso-scales Components and Characteristics |
Fundamental Principles |
Prof. Martin L. Culpepper |
|
4 |
Micro-scale Components and Characteristics |
Fundamental Principles |
Prof. Martin L. Culpepper |
|
5 |
Nano-scale Components and Characteristics |
Fundamental Principles |
Prof. Martin L. Culpepper |
|
6 |
Scanning Probe Microscopy Project Introduction |
Case Study/Application |
Soohyung Kim, Course TA |
(PDF) |
7 |
Piezo MEMS: Materials |
Fundamental Principles |
Prof. Sang-Gook Kim |
|
8 |
Piezoelectric MEMS: Applications |
Case Study/Application |
Prof. Sang-Gook Kim |
|
9 |
Optical MEMS |
Fundamental Principles |
Prof. Sang-Gook Kim |
(PDF) |
10 |
Nominal and Statistical Error Budgets |
Design and Manufacturing |
Prof. Martin L. Culpepper |
(PDF) |
11 |
Presentations on Paper Critiques |
Students |
||
12 |
Mechanical Interfaces for Cross-scale Alignment |
Design and Manufacturing |
Prof. Martin L. Culpepper |
|
13 |
Mechanisms for Inter-scale Motion |
Design and Manufacturing |
Prof. Martin L. Culpepper |
(PDF) |
14 |
Carbon Nanotubes |
Design and Manufacturing |
Prof. Sang-Gook Kim |
|
15 |
Complexity of MuSS |
Design and Manufacturing |
Prof. Sang-Gook Kim |
|
16 |
Metrology |
Design and Manufacturing |
Guest Lecturer |
|
17 |
Telescopes and the Oil Industry |
Case Study/Application |
Guest Lecturer |
|
18 |
Data Acquisition, Sensors and Control |
Design and Manufacturing |
Guest Lecturer |
Problem Sets
Each problem set of the term project is a 1- 2 page of design summary of your important decisions/modeling/progress to date. We would expect to see detailed sketches, major equations and plots which demonstrate that you are on the right track. A short discussion of risks/mitigation plans and your group's schedule (constrained by the syllabus of course) would be important as well.
Problem Set 1: Macro to Micro Flexure Design Exercise (PDF)
Problem Set 2: MEMS Intuition Exercise (PDF)
Problem Set 3: Tunneling Current Sensitivity Exercise (PDF)
Problem Set 4: Homogeneous Transformation Matrix Exercise (PDF)
Problem Set 5: HTM-Kinematic Coupling Exercise (PDF)
Problem Set 6: Kinematic Coupling Stiffness Exercise (PDF)
Projects
Supporting Materials
- 1.a) Pre-amp electronics theory and spec sheets (PDF)
b) TI OPA627/637 spec sheet (PDF) - 2.Capacitance probe theory primer
- 3.Capacitance probe spec sheets
Manufacturer: Lion precision
Model number: C1-C - 4.dSpace data acquisition and control system
Manufacturer:dSpace
Model Number: DS1104 R&D Controller Board - 5.Piezo actuator primer
- 6.Z Axis Piezo actuator specs
Manufacturer: PI (Physik Instrumente)
Model number: P-882.11 - 7.X and Y Axis Piezo actuator specs
Manufacturer:Piezojena
Model number: PA 50/14 SG - 8.How to make DXF files (Waterjet accepts DXF files made from CAD program) (PDF)
- 9.Dynamic characteristics of environment (large table) (PDF)
- 10.Thermal characteristics of environment (small table) (JPG)
- 11.Shielded cables (where to buy and how to make)
Manufacturer:Alpha Wire
Type: Coaxial cables - seecatalogp. 287 - 12.Information on tips to be used
Supplier: Veeco Probes
Material: Pt-Ir (Platinum-Iridium), Mechanically cut
Dimensions: diameter (0.25mm), length (8mm) - 13.Information on samples to be used
Supplier: Veeco Probes
Material:HOPG (Highly Ordered Pyrolytic Graphite) - 14.Optical Tables. SeeTechnical Manufacturing CompanyWeb site