IP Library Granted Patent US 7,084,643
Granted Patent B2
US 7,084,643 · App. 11/338,744 · Granted Aug 1, 2006

Capacitive sensor for non-contacting gap and dielectric medium measurement

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Quick Facts
Patent No.
US 7,084,643
App. No.
11/338,744
Granted
Aug 1, 2006
Kind
B2
Abstract

A non-contact capacitive sensor including: a sensor plate configured to be displaced from a surface and to measure a capacitance of a gap between the surface and sensor plate; an active shield plate over the sensor plate and insulated from said sensor plate, wherein a high frequency input signal is applied to the active shield plate and sensor plate; an effective ground shield plate connected through a first resistor to a ground, over the active shield plate to sandwich the active shield plate between the ground shield plate and the sensor plate, and the ground shield plate is insulated from the active shield plate, and a second resistor connected between the ground shield plate and the active shield plate to provide a direct current (dc) path through the sensor.

Claims (24)

1. A non-contact capacitive sensor comprising:

a sensor plate configured to be displaced from a surface and to measure a capacitance of a gap between the surface and sensor plate;

an active shield plate over said sensor plate and insulated from said sensor plate, wherein a high frequency input signal is applied to the active shield plate and sensor plate;

an effective ground shield plate connected through a first resistor to a ground, arranged over said active shield plate to sandwich the active shield plate between the ground shield plate and the sensor plate, and insulated from the active shield plate, and

a second resistor connected between the ground shield plate and the active shield plate to provide a direct current (dc) path through the sensor.

2. The non-contact capacitive sensor of claim 1 wherein said plates are superimposed.

3. The non-contact capacitive sensor of claim 1 wherein said plates are laminated together with insulation between each plate.

4. The non-contact capacitive sensor of claim 1 further comprising a capacitance between the active plate and sensor plate, and a second capacitance between the active shield plate and the passive shield plate.

5. The non-contact capacitive sensor of claim 1 wherein said sensor plate has a planar surface facing the surface.

6. The non-contact capacitive sensor of claim 1 wherein the sensor plate and active shield plate further comprise connections to a sensor circuit.

7. A non-contact capacitive sensor and sensor circuit assembly comprising:

a sensor plate configured to be displaced from a surface and to measure a capacitance of a gap between the surface and sensor plate;

an active shield plate over said sensor plate and insulated from said sensor plate, wherein a high frequency input signal is applied to the active shield plate and sensor plate;

an effective ground shield plate connected through a first resistor to a ground, arranged over said active shield plate to sandwich the active shield plate between the ground shield plate and the sensor plate, and insulated from the active shield plate;

a second resistor connected between the ground shield plate and the active shield plate to provide a direct current (dc) path through the sensor, and

the sensor circuit receiving as an input a signal from of the sensor plate and generating an output indicative of the gap.

8. The non-contact capacitive sensor and sensor circuit assembly of claim 7 wherein the sensor circuit further comprises an amplifier sensing a difference between an output of the amplifier and the high frequency input signal.

9. The non-contact capacitive sensor and sensor circuit assembly of claim 7 wherein the sensor circuit further comprises an operational amplifier receiving as inputs a high frequency output of the sensor plate and receiving a feedback signal comprising an output of the operational amplifier.

10. The non-contact capacitive sensor and sensor circuit assembly of claim 9 wherein the sensor circuit assembly further comprises a difference amplifier receiving the output of the operational amplifier and a peak detector wherein the operational amplifier includes applying the output of the amplifier as feedback to the signal from the sensor plate.

11. The non-contact capacitive sensor and sensor circuit assembly of claim 7 wherein said plates are superimposed.

12. The non-contact capacitive sensor and sensor circuit assembly of claim 7 wherein said plates are laminated together with insulation between each plate.

13. The non-contact capacitive sensor and sensor circuit assembly of claim 7 further comprising a capacitance between the active plate and sensor plate, and a second capacitance between the active shield plate and the passive shield plate.

14. The non-contact capacitive sensor and sensor circuit assembly of claim 7 wherein said sensor plate has a planar surface facing the surface.

15. The non-contact capacitive sensor and sensor circuit assembly of claim 7 wherein the sensor plate and active shield plate further comprise connections to a sensor circuit.

Assignments (2)
CHANGE OF NAME Recorded Aug 15, 2024
From: BAKER HUGHES, A GE COMPANY, LLC
To: BAKER HUGHES HOLDINGS LLC
Reel/Frame 068656/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: GENERAL ELECTRIC COMPANY
To: BAKER HUGHES, A GE COMPANY, LLC
Reel/Frame 051623/0568 →