IP Library Granted Patent US 8,231,098
Granted Patent B2
US 8,231,098 · App. 11/293,439 · Granted Jul 31, 2012

Methods and devices for active vibration damping of an optical structure

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Quick Facts
Patent No.
US 8,231,098
App. No.
11/293,439
Filed
Dec 2, 2005
Granted
Jul 31, 2012
Kind
B2
Examiner
LE, TAN
Art Unit
3632
USPC
248/550
Abstract

A vibration damper assembly that may be attached and moved about a payload or optical mount surface of an optical structure such as an optical table. The vibration damper assembly may include a sensor and an actuator that may be disposed within a housing. In some embodiments, the vibration damper assembly or components thereof may be incorporated into an optical structure in the form of an optical component to be disposed or mounted on an optical mount surface of an optical structure such as an optical table. Embodiments of the vibration damper system may include a controller in communication with the damper assembly Embodiments of the controller may use adaptive tuning, auto-ranging selection of gain factors and other features in order to optimize damping performance.

Claims (20)

1. An optical table with active vibration damping, comprising:

a payload surface including at least one mounting feature; and

an active vibration damper system including,

a moveable active vibration damper assembly detachably coupled to the payload surface to allow an operator to detach and move the damper assembly to a different location of the payload surface to optimize the damping function of the assembly, the vibration damper assembly including a vibration sensor and an actuator, the actuator including an active element coupled to a mass and the mass being mechanically coupled by a flexure to the payload surface, and

a controller which is in communication with the vibration sensor and actuator, and which is configured to generate a drive signal to the actuator that is configured to convert the drive signal into vibration motion applied to the payload surface to offset vibration in the payload surface as measured by the vibration sensor.

2. The optical table of claim 1 wherein the vibration sensor and actuator of the vibration damper assembly are coupled directly to the payload surface and are disposed within a single housing.

3. A moveable vibration damper assembly with active vibration damping, comprising:

a housing,

a base secured to the housing and configured to be detachably mounted onto a top surface of on a payload surface of an optical table by way of at least one mounting feature of the payload surface to allow an operator to detach and move the damper assembly to a different location of a payload surface to optimize the damping function of the assembly, and

an actuator which is mechanically coupled to the housing, the actuator including an active element coupled to a mass and the mass being mechanically coupled by a flexure to the housing.

4. The assembly of claim 3 further comprising a vibration sensor mechanically coupled to the housing.

5. The assembly of claim 4 wherein the vibration sensor and actuator are disposed within a single housing.

6. The assembly of claim 4 further comprising a controller in communication with the actuator and the vibration sensor and configured to generate a drive signal to the actuator that converts the drive signal into vibration motion to offset vibration in the payload surface detachably mounted to the base as measured by the vibration sensor.

7. The assembly of claim 3 wherein the base comprises apertures configured to mate with threaded apertures of a mounting feature of a desired payload surface.

8. A moveable vibration damper assembly with active vibration damping, comprising:

a housing,

a base secured to the housing and configured to be detachably mounted onto a top surface of a payload surface of an optical table by way of at least one mounting feature of the payload surface to allow an operator to detach and move the damper assembly to a different location of a payload surface to optimize the damping function of the assembly, and

an active vibration damper assembly coupled to the housing including a vibration sensor and an actuator, the actuator including an active element coupled to a mass, the mass being mechanically coupled by a flexure to the housing.

9. The assembly of claim 8 wherein the vibration sensor and actuator are disposed within a single housing.

10. The assembly of claim 9 further comprising a controller in communication with the active damper assembly and configured to generate a drive signal to the actuator that converts the drive signal into vibration motion to offset vibration in a payload surface detachably mounted to the base as measured by the vibration sensor.