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Published byDennis Newton Modified over 9 years ago
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In Order of Presentation: Ishaan Sandhu Danny Kang Anuar Tazabekov Arslan Qaiser Eric Otte How to Choose/Use Capacitive Sensors for Various Applications
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Background Three Main Types: Displacement Touch Sensor and iPod Click Wheel Accelerometer Automobile Suspension System, Air Bag System, ABS Pressure Tire Pressure
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Capacitance Electric Fringe Fields Dielectric differences
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Background (cont...) Advantages of Capacitive Sensor Higher accuracy Smaller size More reliable (compared to mechanical) No moving parts (more durable) No direct contact with the sensor Sealed from dirt Cheaper
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Water level sensor Metal electrode Ground vessel Dielectric change causes change in capacitance
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Water Level Sensor (cont...) Figure shows simplified view Typical Applications: Gas Tank Sensor Water Reservoir Production Vats Cheaper than similar sensors More Accurate
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Airbag System Required by Government law since 1999 model year Capacitive Pressure Sensor and Capacitive Accelerometer Sensor are used for passenger protection
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Sense a passenger. Capacitive Pressure Sensor Use a thin diaphragm Pressure is detected based on change in the capacitance between the diaphragm and the electrode Airbag System
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Sense a crash Capacitive Accelerometer Sensor A change in electrical capacitance with respect to acceleration Airbag System
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Electrical disturbance Two plate sensor Surface charge Overlay of 1-3mm
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Interaction with E-fields E-fields projects through material Responsive to conductive devices
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Change in capacitance Dielectric permittivity influence Common applications – Touch screens (ex. iPhone, Nexus1) – Track pads
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Used at road toll stations Current Inductive sensors Drawbacks: Covers large area Senses only metal Not very accurate Solution: Use a capacitive sensor
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11 Excitation and 30 detection electrodes B 0 (detection circuit and CtD) B 0 connects to B 1 -B 30 Capacitance between plates A and B
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Sensor embedded into a ramp Help slow the cars down Stray capacitance Structure (cont...)
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C x is very small C s1 and C s2 are large Measured C x : V 3 = 2fV c C x R f + V 1 -V 2 Detection of 0.001 pF Sensitivity 1V/pF Capacitance measuring circuit
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Utilizes high-performance, complex sensors Resolution down to less than one nanometer Thickness measurement: capacitive vs. inductive Ex: Measuring the thickness of silicon wafers
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Components: Probe: Device which emits the electric field Probe Guard: Shapes the electric field Circuitry: Measures very small changes in capacitance using complex algorithms
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Single channel: Only one sensor probe Non-flat surfaces produce error Dual channel: Uses two sensors placed on opposite sides of object to be measured Nulls out curved surface errors due to differential operation
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Typical Applications? Machining Manufacturing Precision thickness measurements
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Background Water Level Air Bag deployment systems Touch sensors Vehicle detection system Thickness Measurement Questions?
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