F19: Tower Defense in Space
Contents
Grading Criteria
- How well is Software & Hardware Design described?
- How well can this report be used to reproduce this project?
- Code Quality
- Overall Report Quality:
- Software Block Diagrams
- Hardware Block Diagrams
- Schematic Quality
- Quality of technical challenges and solutions adopted.
Project Title
Tower Defense ... In Space
ABSTRACT
My abstract goes here.
INTRODUCTION AND OBJECTIVES
PROJECT OBJECTIVES | ||||
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TEAM OBJECTIVES | ||||
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CORE MODULES OF TOWER DEFENSE | ||||
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PROJECT MANAGEMENT ADMINISTRATION ROLES | ||||
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TEAM MEMBERS & RESPONSIBILITIES | ||||
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Team Members |
Administrative Roles |
Technical Roles | ||
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SCHEDULE
TEAM MEETING DATES & DELIVERABLES | ||||
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Week# |
Date Assigned |
Deliverables |
Status | |
1 | 10/15/19 |
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2 | 10/22/19 |
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3 | 10/29/19 |
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4 | 11/5/19 |
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5 | 11/12/19 |
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6 | 11/19/19 |
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7 | 11/26/19 |
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8 | 12/3/19 |
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9 | 12/10/19 |
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BILL OF MATERIALS (GENERAL PARTS)
MAJOR COMPONENTS | ||||
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PART NAME |
PART MODEL & SOURCE |
QUANTITY |
COST PER UNIT (USD) | |
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HARDWARE INTEGRATION PCB
Hardware Design
The hardware integration PCB was designed with two goals:
1. Minimize the footprint of the onboard electronics
2. Minimize the chances of wires disconnecting, during drives
To accomplish these goals,
The board consisted of n layers:
layer name
Technical Challenges
Design
- Balancing priorities between HW design and getting a working prototype
Assembly
- Wireless antenna connector on master board not accounted for in footprint, it may have to be removed to avoid interference with one connector.
Bill Of Materials
HARDWARE INTEGRATION PCB | ||||
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PART NAME |
PART MODEL |
QUANTITY |
COST PER UNIT (USD) | |
TEST
In order
Hardware Design
During
We used
CONCLUSION
This pr