Claims
- 1. A system for electrostatically measuring the shape or pattern of objects comprising:
an array of sensor devices having the capability of responding, due to variable electrostatic coupling, to produce differentiated output signals when a sensor element forming part of each device is present and when it is not.
- 2. A system as defined in claim 1, wherein the location or position of all of those sensor devices, that have the sensor element present so as to form a part of the device, defines the shape or pattern of the objects being measured.
- 3. A system as defined in claim 1, wherein said array includes M rows and N columns of sensor devices, further comprising a source of drive pulses connected to the M rows.
- 4. A system as defined in claim 3, further comprising a detector for determining that a pulse has occurred on one of the M input rows, and a clock generator connected to the detector.
- 5. A system as defined in claim 4, further comprising sense amplifiers in the N columns for sensing the output signals from the sensor devices.
- 6. A system as defined in claim 5, further comprising an amplitude reference generator connected to the M rows for providing a reference voltage such that if the reference value is exceeded, the respective sense amplifier output is stored.
- 7. A system as defined in claim 6 wherein the reference voltage is substantially proportional to an amplitude of the drive pulse.
- 8. A system as defined in claim 7, further comprising latches connected to the respective sense amplifiers for storing the sense amplifier outputs from all the columns.
- 9. A system as defined in claim 3, further comprising grounded shield traces between the N columns.
- 10. An electrostatic sensor device comprising:
first and second sensor elements; a dielectric substrate material formed in two layers, with a conducting plane between the two layers; a sensing hole which penetrates the dielectric substrate material from its upper surface to its lower surface, the first sensor element being receivable on said sensing hole; a clearance hole in the conducting plane such that conducting plane does not obstruct the sensing hole; and a first and second conducting rings surrounding the sensing hole on the upper and lower surfaces, respectively, of the dielectric substrate for defining the second sensor element.
- 11. A device as defined in claim 10, further comprising a signal source connected to
the first conducting ring and a sensing circuit connected to the second conducting ring.
- 12. A device as defined in claim 11, wherein the first sensor element is a dielectric pin having a conductive region, such that when the pin is present in the sensing hole and a pulse is applied to the first conducting ring, a substantially large signal is transmitted by the sensing circuit connected to the second conducting ring.
- 13. A device as defined in claim 10, wherein the inner peripheries of the first and second conducting rings are not exposed on the interior surface of the sensing hole.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional No. 60/309,229 filed Aug. 01, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60309229 |
Aug 2001 |
US |