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Automobile Rain Response System

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Skye Surface Wetness Sensor. Applications: Primary use: Leaf Wetness Sensor ... Skye Surface Wetness Sensor Characteristics. Operating Temperature -20 to 70 C ... – PowerPoint PPT presentation

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Title: Automobile Rain Response System


1
Automobile Rain Response System
  • Jason Perry
  • Brian Russ
  • Michael Echols
  • Marcus Day
  • May 6, 2005

2
Skye Surface Wetness Sensor
  • Applications
  • Primary use Leaf Wetness Sensor
  • Automatically roll up windows when it starts to
    rain and they are left open
  • Close sun roofs when it starts to rain
  • Close convertible roof when it starts to rain.

3
Features
  • Waterproof to prevent corrosion
  • Epoxy Resin around sensor
  • Plastic Packaging
  • 5 year life expectancy
  • Mounting to minimize
  • vibration

4
Dimensions
  • Size
  • 57 mm Deep
  • 82 mm Long
  • 80 mm Wide
  • Mounting Holes
  • 4mm X 4mm dia
  • 57 X 35 mm rectangle

5
Sensor Placement
  • In the cowl panel of the car
  • Provides flat surface for quick detection

6
Leaf Wetness Sensors
  • Gold Plated Fingers
  • Condensation lowers resistivity between fingers

Campbell Scientific model 237
7
Why Gold?
  • Immune to effects of air, water and oxygen
  • Will not tarnish, rust or corrode
  • Among the most electrically conductive of all
    metals
  • Most ductile of all metals can be drawn into
    tiny wires or threads without breaking
  • Malleability is unparalleled can be shaped or
    extended into extraordinarily thin sheets

8
Controlling Resistivity of the Sensor
  • Increasing Resistivity
  • Small amount of silicone polish may be applied
  • Layer of clean cloth
  • Decreasing Resistivity
  • Often coated with flat latex paint
  • Paint absorbs moisture, lowers resistance between
    fingers making sensor more sensitive

9
Skye Surface Wetness Sensor Characteristics
  • Operating Temperature
  • -20 to 70C (-68 to 158F)
  • Supply Voltage
  • 5 15 volts at about 4mA
  • Sensitivity Control
  • Sets amount of water induced impedance change of
    the wetness grid
  • Minimum, Medium, Maximum
  • Output types
  • Voltage
  • Current

10
Output Voltage
  • Analog output
  • Dry (100 400mV)
  • Rises steadily depending on the amount of water
  • Maximum of 2.5 V
  • Switching output
  • Between -400mV and 400mV
  • Remains negative until half wet 1.25 V

11
Output Current
  • In the supply lead
  • Dry (approximately 5mA)
  • Rises abruptly to approximately 15mA when wet
  • Transition at the same points as switching
    voltage outputs

12
Board Controls and Outputs
  • Pin - function
  • 1 Pos. 5 - 15V supply
  • 2 Neg. 0V and Ground
  • 3 Cable Sheath and Analog Ground
  • 4 Pos./Neg. 400 mV Switching Output
  • 5 0 - 400 mV Analog Output
  • 6 0 - 2.5V Analog Output

13
Future Research and Development
  • Analog output voltage vs. switching output
    voltage
  • At what level of wetness does the voltage output
    reach 1.25 V?
  • Is the switching output a better option than the
    analog output?

14
Future Research and Development
  • Determine the analog voltage output vs. surface
    resistance

15
Sensor Benefits
  • Convenience Feature
  • Reduced Insurance Claims Due to Water Damage
  • Can Be Added at the Factory or Installed as an
    Aftermarket Accessory to Older Vehicles

16
Existing Products
  • No existing products dedicated to closure of
    automobile windows
  • Smart buildings
  • Automated Windshield Wipers

17
Costs and Profits
  • Sensor price 250
  • Manufacture 150
  • 600 Retail
  • If automobile companies offer as an option on new
    vehicles
  • Profits are unlimited.
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