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EE 43334: Doorbell Repeater

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Project Definition. Design Test and Build a working device which will repeat a Doorbell signal in ... Use a sound or light signal (for hearing impaired) Low ... – PowerPoint PPT presentation

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Title: EE 43334: Doorbell Repeater


1
EE 4333/4 Doorbell Repeater
  • Jacob Borgeson and Chris Del Rio
  • Advisor Dr. Trost
  • Instructor Dr. Zieher
  • Date Fall 2004

2
Project Definition
  • Design Test and Build a working device which will
    repeat a Doorbell signal in other rooms of
    building
  • Must be Wireless Battery Powered
  • Use a sound or light signal (for hearing
    impaired)
  • Low power consumption
  • High efficiency
  • At least 250 ft range

3
Initial Ideas
  • Attach onto existing doorbell system
  • Not feasible due to power problems
  • Portable Receiver
  • Vibrating device inside?
  • Sound and light output
  • Alternate power sources

4
Project Block Diagram
Vcc
DC Supply
RF Transmitter
Voltage Regulator
Light/Sound
RF Receiver
Del Rio
5
RH Antennas
Omni directional Helical antenna
6
Transmitter Schematic
Del Rio
7
Transmitter Layout
Del Rio
8
Transmitter
9
Transmitter Test
  • Vcc on Pin 2 and Pin 3 3.2V
  • Vpp 2V on Pin 24

Del Rio
10
Voltage Regulation
  • LM2671 3.3V switching regulator
  • 8 pin DIP
  • 5 external components

11
Receiver Schematic
Del Rio
12
Receiver Layout
13
Receiver
14
Results
  • Diode lights up and buzzer makes a faint sound
  • Need more current
  • Range of 120 ft inside (basement)
  • Range of 160 ft w/ transmitter in Lankford lab
    while we are in parking lot

Borgeson
15
Practical Results
  • Taken to my House
  • Left transmitter at Front Door
  • Worked across alley in my Neighbors house
    consistently
  • Only did not work a few times (bad perf board
    connections)

Borgeson
16
Data
Borgeson
17
Implementing the Speaker
  • Decided to use a speaker with actual doorbell
    sound instead of buzzer
  • Problem solved by sound module made by Radio Shack

Borgeson
18
Sound Module
Borgeson
19
Doorbell.wav
  • Left plot vs time (1.04s)
  • Right Normalized frequency plot
  • Fmax 4kHz

Borgeson
20
Speaker Problems
  • Output not loud enough
  • Larger impedance speaker
  • Move to Piezo speaker with 1 kO

21
Piezo Speaker
  • 102-1141 by CUI Inc.
  • 20 Vpp
  • 90 dB at maximum
  • 78 dB _at_ 9 Vpp
  • Not outputting correct intensity of sound
  • Does output correct sound

Borgeson
22
Amplification
  • Simple Audio band amplifier
  • Tried Several
  • Some too simple
  • Some too complicated
  • Have not perfected it as of yet
  • Based on a model from circuitos.tripod.cl

Borgeson
23
9V 1.5W Amplification
Borgeson
24
Amplification Simulation
Borgeson
25
Accomplishments
  • Successfully transmitted and received signal on
    test boards
  • Reliable signal at 160 ft.
  • Maximum transmission with test boards 195 ft.
  • Capable of sound and light output
  • Designed prototype circuit boards
  • Successful tests of transmitter boards

26
Parts Problems
27
Future Objectives
  • Receive, assemble and test receiver boards.
  • Re-engineer sound module
  • Use our own micro-controller
  • Get Amplification to perfect level and quality

28
Gannt Chart
Borgeson
29
Budget
Borgeson
30
Acknowledgements
  • Dr. Trost
  • www.linxtechnologies.com
  • www.rentron.com
  • www.lynxmotion.com
  • Dr. Nutter
  • http//circuitos.tripod.cl/schem/r73.gif

31
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