Summary 1. Research and selection of Project3D Model of all 2. 2. Mechanical parts 3. Market visit and cost Estimation 4. 3D printing of Prosthetic by using PLA Material 5. Simulation on software 6. Purchasing of Electronic parts (sensors, flex
grasping of fragile objects with prosthetic hand by using flux and FSR
Summary
1. Research and selection of Project3D Model of all 2. 2. Mechanical parts
3. Market visit and cost Estimation
4. 3D printing of Prosthetic by using PLA Material
5. Simulation on software
6. Purchasing of Electronic parts (sensors, flex sensors and Force Sensitive Resistors)
7. Calibration and Stimulate
8. Circuit designing and Programming.
9. Finishing and Marketing
Description:
Our project will be capable of grasping fragile objects. This will be obtained by using two different sensors. First one is the Flex sensor which is embedded on glove which will control servo motors of prosthetic wirelessly using IR sensor. Grasping power will control by FSR (Force sensitive Resistor) which is highly sensitive to use and give precise and continuous value of pressure. This sensor will be embedded on finger tips of the Prosthetic.
Complete Product with Data Sheet
The Project would be impelimented as the following
Special topic:
1. Biomedical Engineering.
2. Software and Mechanical Implementation.
3. DSP (Digital Signal Processing) and Control System.
4. Technical Instructions.
Machenical:
1. Complete Product.
2. Services.
Project will be done in the Supervision of Superviser and co Advisor. Complete Research with new infrastructure would be made. We would give Presentation to our research and all parts which are necessary to ship will be shipped according to the instructions. Final product will have specific title which will be impelimented only in Faculty.
Following Benefits could be achieved from this Project:
1. Engineering Report.
2. Project Proposal.
3. Design Drawings (3D Parts of Prosthetic Hand)
4. Design Documents.
5. Components change capability.
6. User guide/manuals.
7. Complete Product.
8. Technical Interpretation.
9. Site investigation.
10. Improvement of Product quality.
11. New equipment or tools Service.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Flex Sensors | Equipment | 6 | 2200 | 13200 |
| Arduino Uno | Equipment | 2 | 700 | 1400 |
| Arduino Nano | Equipment | 2 | 500 | 1000 |
| Servo Motors (Metal Gear) | Equipment | 7 | 800 | 5600 |
| RF Transmitter | Equipment | 2 | 1500 | 3000 |
| RF Receiver | Equipment | 2 | 1500 | 3000 |
| Vero Boards (Testing and Project) | Equipment | 8 | 60 | 480 |
| Battery | Equipment | 2 | 1200 | 2400 |
| 7805 Regulator | Equipment | 10 | 60 | 600 |
| 5V Power Supply | Equipment | 3 | 1002 | 3006 |
| Fish Wire | Equipment | 20 | 150 | 3000 |
| Force Senstive Sensors | Equipment | 2 | 7000 | 14000 |
| 3D Printing of Robotic Hand (By Weight) | Equipment | 32 | 600 | 19200 |
| Paper (Thesis Writing) | Miscellaneous | 1200 | 2 | 2400 |
| Wires | Miscellaneous | 10 | 100 | 1000 |
| Printing of Reports | Miscellaneous | 3 | 1500 | 4500 |
| Total in (Rs) | 77786 |
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