Claims
- 1. A method for balancing capacitance of a top plate associated with at least two capacitors to provide a common series capacitive circuit in a semiconductor-based sensor, comprising the steps of:
(a) providing a sensor having a series capacitive circuit including a common top plate for first and second capacitors, Cx1 and Cx2 respectively, Cx1 further comprising a first bottom plate and Cx2 further comprising an associated with second bottom plate, said common top plate, Cx1 and Cx2 being separated by a common dielectric material; (b) conducting capacitive measurement of said first and second capacitors by sampling signals rendered by said first and second capacitors while connected in series in a closed loop circuit to determine the capacitive values of Cx1 and Cx2 during said measuring cycle; and (c) adjusting the capacitive values of Cx1 and Cx2 by creating voids in said top plate to keep the values of Cx1 and Cx2 substantially equal.
- 2. The method of claim 1, wherein step (b) further comprises the steps of:
charging said series capacitive circuit to a fixed voltage; monitoring said closed loop circuit to detect capacitive value of Cx1 and Cx2 provided by the top plate and dielectric associated with Cx1 and Cx2.
- 3. The method of claim 1, further comprising the steps of:
(d) charging said series capacitive circuit to a fixed voltage; (e) monitoring said closed loop circuit to detect any change in capacitive value of Cx1 and Cx2 provided by said adjusting step.
- 4. The method of claim 3, repeating steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved.
- 5. The method of claim 4, said repeating of steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved is carried out while maintaining said fixed voltage charge over the series capacitive circuit.
- 6. The method of claim 3, repeating steps (d) and (e) while maintaining said fixed voltage charge over the series capacitive circuit until a desired capacitive value for at least one of Cx1 and Cx2 is achieved.
- 7. The method of claim 6 wherein said common dielectric material is sensitive to humidity an said sensor is a relative humidity sensor, wherein changes in humidity affect said humidity sensitive dielectric and thereby change the capacitive value of said series capacitive circuit.
- 8. The method of claim 7, said repeating of steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved is carried out while maintaining said fixed voltage charge over the series capacitive circuit and considering any affect of changes in said humidity sensitive dielectric over said capacitive value.
- 9. The method of claim 7, repeating steps (d) and (e) while maintaining said fixed voltage charge over the series capacitive circuit until a desired capacitive value for at least one of Cx1 and Cx2 is achieved is carried out while maintaining said fixed voltage charge over the series capacitive circuit and considering any affect of changes in said humidity sensitive dielectric over said capacitive value.
- 10. The method of claim 7, repeating steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved while said humidity sensitive dielectric is kept dry.
- 11. A method for balancing capacitance of a top plate associated with at least two capacitors to provide a common series capacitive circuit in a semiconductor-based relative humidity sensor, comprising the steps of:
(a) providing a sensor having a series capacitive circuit including a common top plate for first and second capacitors, Cx1 and Cx2 respectively, Cx1 further comprising a first bottom plate and Cx2 further comprising an associated with second bottom plate, said common top plate, Cx1 and Cx2 being separated by a common humidity sensitive dielectric material; (b) charging said series capacitive circuit to a fixed voltage; (c) sampling capacitive value of Cx1 and Cx2 provided by the top plate and dielectric associated with Cx1 and Cx2 while connected in series in a closed loop circuit to determine the capacitive values of Cx1 and Cx2; (d) adjusting the capacitive values of Cx1 and Cx2 by creating voids in said top plate to keep the values of Cx1 and Cx2 substantially equal; and (e) monitoring said closed loop circuit to detect changes in capacitive value of Cx1 and Cx2 provided by step (d).
- 12. The method of claim 11, repeating steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved.
- 13. The method of claim 11, repeating steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved is carried out while maintaining said fixed voltage charge over the series capacitive circuit.
- 14. The method of claim 11, repeating steps (d) and (e) while maintaining said fixed voltage charge over the series capacitive circuit until a desired capacitive value for at least one of Cx1 and Cx2 is achieved.
- 15. The method of claim 11 wherein changes in humidity affect said humidity sensitive dielectric and thereby change the capacitive value of said series capacitive circuit.
- 16. The method of claim 15, repeating steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved.
- 17. The method of claim 11, said repeating of steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved is carried out while maintaining said fixed voltage charge over the series capacitive circuit and while considering how any changes in said humidity sensitive dielectric can affect said capacitive value.
- 18. The method of claim 15, repeating steps (d) and (e) while maintaining said fixed voltage charge over the series capacitive circuit until a desired capacitive value for at least one of Cx1 and Cx2 is achieved is carried out while considering how humidity affecting changes in said humidity sensitive dielectric can affect said capacitive value.
- 19. The method of claim 11, repeating steps (d) and (e) until a desired capacitive value for at least one of Cx1 and Cx2 is achieved while said humidity sensitive dielectric is kept dry.
- 20. A system for balancing the capacitance of a common top plate associated with at least two capacitors, Cx1 and Cx2, of a common series capacitive circuit in a semiconductor-based sensor, wherein said common top plate, a first plate associated with Cx1, a second plate associated and Cx2, and a common dielectric material separating said top plate, said first plate and said second plate comprise said common series capacitive circuit, said system comprising:
a precise cutting instrument for creating voids within said common top plate, wherein; a measuring device for determining the capacitive value of at least one of said; said common capacitive circuit, Cx1 and Cx2; and a voltage source for providing a constant voltage to said series capacitive circuit.
PRIORITY TO RELATED APPLICATION
[0001] This present invention is a continuation-in-part (CIP) of U.S. patent application Ser. No. 10/192,451, filed Jul. 9, 2002, entitled, “Relative Humidity Sensor With Integrated Signal conditioning.”
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10192451 |
Jul 2002 |
US |
Child |
10322152 |
Dec 2002 |
US |