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Multidisciplinary Engineering Senior Design Project 06509 RFID Garage Door Entry System Preliminary Design Review 2.24.2006 Team Members: Kenneth Williams,

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Presentation on theme: "Multidisciplinary Engineering Senior Design Project 06509 RFID Garage Door Entry System Preliminary Design Review 2.24.2006 Team Members: Kenneth Williams,"— Presentation transcript:

1 Multidisciplinary Engineering Senior Design Project 06509 RFID Garage Door Entry System Preliminary Design Review 2.24.2006 Team Members: Kenneth Williams, Michael Cummins, Thomas Cervino, Michael Flannery Kate Gleason College of Engineering Rochester Institute of Technology

2 Design Process  Needs Assessment  Concept Development  Feasibility Assessment

3 Needs Assessment

4 Project Overview  RFID Background What is RFID? Types of RFID tags  Passive  Semi-Passive  Active Encoding Options  Garage Door Background Pushbuttons and Safety

5 Pushbutton Schematic

6 Concept Development

7 Key Requirements & Critical Parameters (Concept Development)  RFID Reader 433MHz Communication 120VAC 60Hz  RFID Tag 1 Year Battery Life  Communication Protocol Minimal Power Drain ASK

8 Devices (Concept Development)  rfPIC12F675F Transmitter ASK 14 mA transmit current draw.1 µA standby current draw  rfRXD0420 Receiver ASK 8.2 mA receive current draw <100 nA standby current draw

9 Detailed Software Design Flow Software Design The controller possesses two independent timer modules which will be used in software timing and to generate a standard timed interrupt to detect changes in the enable switch state.

10 Software Design Flow (Interrupts)

11 Transistor Relay Circuit

12 Transistor Relay Simulation Desired I c ≈ 30mA I c = β*I b β =205

13 Security  Phase 1 (Start signal) Reader -> Transmit Tag -> Receive  Phase 2 (ID) Reader -> Receive Tag -> Transmit  Phase 3 (Security Key) Reader -> Transmit Tag -> Receive  Phase 4 (Password) Reader -> Receive Tag -> Transmit

14 Security (continued)  Key Features ASK Tag ID Pseudo Random Key Security Function (Password Generation)

15 Feasibility Analysis  Power Equation Battery = 220 Milliamp Hours 365 minutes = 30 seconds transmit/receive x 2 times a day 8.2 mA receive draw, 14 mA transmit draw

16 Devices  rfPIC12F675F Transmitter 433 MHz, 4800 Baud 1024 x 14 Flash Program Memory 128 x 8 EPROM Data Memory 100,000 Write Flash Endurance 6 I/O Pins 2 Timers ASK 14 mA to.1 µA current draw  rfRXD0420 Receiver 433 MHz 8.2 mA to <100 nA current draw ASK

17 BOM & Costs Total Cost: $42.74 Digi-Key………………………$21.46 Capacitors Resistors Lithium Cell Battery Coin Cell Battery Holder Pushbutton Switches Relay 120V to 5V Transformer Square Headers and Right Angle Posts Microchip……………………$5.29 rfRXD0420 rfPIC12F675F Mouser…………………………$2.92 DC Power Jack IRC Resistor NPN Transistor RadioShack……………………$9.28 Project Enclosures Crystek…………………………$2.36 Crystals muRata…………………………$0.50 HF Ceramic Filter EPCOS…………………………$0.93 HF SAW Filter

18 Anticipated Design Challenges  Antenna Design Range Interference  Tag Power Output Power Consumption  Programming Complexity

19 SD II Project Plan  Build Prototype  Test Software  Determine Range  Test Complete Functionality

20 Questions

21 Backup Slides and References

22


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