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Published byJacob Curtis Modified over 9 years ago
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Integrating Bluetooth onto LEGO Robots Andrew Jones Mike Krofcheck
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Project Purpose Project Solution and Goals Design Goals Results and Conclusions Acknowledgments Q & A Agenda
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Problem to be solved EECS 375 robot designs repeated often Limitations with wired communication – Difficult to download code – Robots don’t “talk” – Limited teamwork during competition
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Project Solution & Goals Design integrated Bluetooth communication board for use with serial devices Develop Bluetooth driver software for use with microcontroller Integrate communication board with EECS 375 robots
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Acquire parts for project Design high frequency RF antenna Design/Fabricate PCB for module Test and verify operation PCB Integrate PCB with host computer Integrate PCB with host microcontroller Design Steps
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Acquire BTM PCB/Antenna design Micro. development Verify PCB Integrate Andrew/Mike Mike Andrew Andrew/Mike
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Acquiring Bluetooth Found module for purchase in U.K. Windigo Systems BCM02C2XX-R All-in-one solution 68HC12 micro. development kit Acquired from “Frank” Feature set
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Integrated Inverted-F Antenna (IIFA) Compact size Integrated on to PCB Redundancy in antenna design Antenna Design
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High frequency concerns Decoupling capacitors Component placement Antenna & ground plane Test points PCB Design
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PCB Verification Visual inspection Trace continuity Initial RF output detection Interface w/ host via RS232
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RS232-to-UART converter Voltage conversion process Use of Max232 Signal connection scheme BTM Integration
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BTM<>HC 2 3 3 2 7 8 8 7 N/AGND<--5
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BTM Integration ConversionTxDRxD
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Generic BT communication board created that could interface with serial devices BT developer support limited Great deal learned during project Future work on project... Results & Conclusions
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Frank Merat Bob Leskovec Rob Barris Quinton S.Q. Yuan Acknowledgments
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Q & A
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