IP Library Granted Patent US 7,637,157
Granted Patent B2
US 7,637,157 · App. 11/845,055 · Granted Dec 29, 2009

Stemless hemispherical resonator gyroscope

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Quick Facts
Patent No.
US 7,637,157
App. No.
11/845,055
Granted
Dec 29, 2009
Kind
B2
Abstract

A vibrational gyroscope includes a piezoelectric ring having a central opening, and a hemispherical resonator having a central opening and mounted over the opening of the central opening of the piezoelectric ring. A plurality of electrodes delivers a voltage to the piezoelectric ring. A plurality of electrodes provides signal readout that corresponds to angular velocity. The hemispherical resonator can be glued to the piezoelectric ring. The hemispherical resonator preferably vibrates in the third vibration mode. A plurality of capacitive electrodes can be located at nodes and at antinodes of the vibration of the hemispherical resonator, and provide a signal readout that corresponds to the angular velocity. The piezoelectric ring is segmented, non-segmented, or includes an outer segmented portion and an inner non-segmented portion. The inner non-segmented portion can be used to excite the resonator into a vibration mode, and the outer segmented portion provides a readout signal and is used to adjust the vibration of the resonator. The piezoelectric ring includes a conductive coating used to conduct excitation voltage to the piezoelectric ring.

Claims (29)

1. A gyroscope comprising:

a non-segmented piezoelectric ring having a central opening;

a hemispherical resonator having a central opening and mounted over the central opening of the piezoelectric ring so that both central openings are aligned;

a plurality of electrodes delivering a voltage to the piezoelectric ring; and

a plurality of electrodes mounted on the piezoelectric ring and providing a signal readout that corresponds to angular velocity.

2. The gyroscope of claim 1 , wherein the central openings have substantially the same radii.

3. The gyroscope of claim 1 , wherein the plurality of electrodes on the piezoelectric ring are mounted on a side of the piezoelectric ring facing the hemispherical resonator.

4. The gyroscope of claim 1 , wherein the hemispherical resonator is glued to the piezoelectric ring.

5. The gyroscope of claim 1 , wherein the hemispherical resonator vibrates in a third vibration mode.

6. The gyroscope of claim 1 , further comprising a plurality of capacitive electrodes at nodes and at antinodes of the vibration of the hemispherical resonator.

7. The gyroscope of claim 6 , wherein the capacitive electrodes provide a signal readout that corresponds to the angular velocity.

8. The gyroscope of claim 1 , wherein the piezoelectric ring includes a conductive coating used to conduct excitation voltage to the piezoelectric ring.

9. A gyroscope comprising:

a sensing element comprising a hemispherical resonator coupled to a piezoelectric ring;

a plurality of electrodes delivering a voltage to the piezoelectric ring; and

a plurality of electrodes on the piezoelectric ring underneath the hemispherical resonator and on a side of the piezoelectric ring facing the hemispherical resonator, and providing a signal readout that corresponds to angular velocity,

wherein the hemispherical resonator has a central opening at a pole of the hemispherical resonator that is positioned over the central opening of the piezoelectric ring and substantially aligned with the central opening of the piezoelectric ring, and

wherein the piezoelectric ring includes an outer segmented portion and an inner non-segmented portion.

10. The gyroscope of claim 9 , wherein the inner non-segmented portion is used to excite the resonator into a vibration mode, and the outer segmented portion provides a readout signal and is used to adjust the vibration of the resonator.

11. The gyroscope of claim 9 , wherein the hemispherical resonator is glued to the piezoelectric ring.

12. The gyroscope of claim 9 , wherein the hemispherical resonator vibrates in a third vibration mode.

13. The gyroscope of claim 9 , wherein a coupling between the hemispherical resonator and the piezoelectric ring is substantially lossless.

14. The gyroscope of claim 9 , further comprising a plurality of capacitive electrodes at nodes and at antinodes of the vibration of the hemispherical resonator.

15. A gyroscope comprising:

a non-segmented piezoelectric ring having a central opening;

a hemispherical resonator having a central opening and mounted over the central opening of the piezoelectric ring so that both central openings are aligned, and

wherein a coupling between the hemispherical resonator and the piezoelectric ring is substantially lossless;

a plurality of electrodes delivering a voltage to the piezoelectric ring and mounted on a side of the piezoelectric ring facing the hemispherical resonator; and

a plurality of capacitive electrodes mounted at nodes and at antinodes of vibration of the hemispherical resonator, and providing a signal readout that corresponds to angular velocity.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2012
From: INNALABS HOLDING, INC.
To: INNALABS, LTD.
Reel/Frame 027532/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2012
From: INNALABS TECHNOLOGIES, INC.
To: INNALABS HOLDING, INC.
Reel/Frame 027531/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2011
From: INNALABS TECHNOLOGIES, INC.
To: INNALABS LIMITED
Reel/Frame 027444/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2007
From: CHIKOVANI, VALERY V.; YATZENKO, YURI A.; KOVALENKO, VLADIMIR A.; SCHERBAN, VLADIMIR I.
To: INNALABS TECHNOLOGIES, INC.
Reel/Frame 019745/0861 →