Published July 23, 2002 | Version v1
Patent Open

Ultrananocrystalline diamond cantilever wide dynamic range acceleration/vibration/pressure sensor

  • 1. Argonne National Laboratory
  • 2. University of Chicago

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Description

An ultrananocrystalline diamond (UNCD) element formed in a cantilever configuration is used in a highly sensitive, ultra-small sensor for measuring acceleration, shock, vibration and static pressure over a wide dynamic range. The cantilever UNCD element may be used in combination with a single anode, with measurements made either optically or by capacitance. In another embodiment, the cantilever UNCD element is disposed between two anodes, with DC voltages applied to the two anodes. With a small AC modulated voltage applied to the UNCD cantilever element and because of the symmetry of the applied voltage and the anode-cathode gap distance in the Fowler-Nordheim equation, any change in the anode voltage ratio V1/N2 required to maintain a specified current ratio precisely matches any displacement of the UNCD cantilever element from equilibrium. By measuring changes in the anode voltage ratio required to maintain a specified current ratio, the deflection of the UNCD cantilever can be precisely determined. By appropriately modulating the voltages applied between the UNCD cantilever and the two anodes, or limit electrodes, precise independent measurements of pressure, uniaxial acceleration, vibration and shock can be made. This invention also contemplates a method for fabricating the cantilever UNCD structure for the sensor.

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Additional details

Identifiers

Patent application number
US 54399200 A
Patent number
US 6422077 B1
Other
oai:uchicago.tind.io:8982

Dates

Patent filed
2000-04-06

UChicago Information

Division(s)
Physical Sciences Division
Department(s)
Physics