U.S. patents available from 1976 to present.
U.S. patent applications available from 2005 to present.

Scanning scene-based wavefront sensor having a linear image sensor array and a pupil sensor array

Patent 5300766 Issued on April 5, 1994. Estimated Expiration Date: Icon_subject April 13, 2013. Estimated Expiration Date is calculated based on simple USPTO term provisions. It does not account for terminal disclaimers, term adjustments, failure to pay maintenance fees, or other factors which might affect the term of a patent.

Patent References

3923400

Wave front sensor
Patent #: 4490039
Issued on: 12/25/1984
Inventor: Bruckler ,   et al.

Combined shearing interferometer and Hartmann wavefront sensor
Patent #: 4518854
Issued on: 05/21/1985
Inventor: Hutchin

Universal wavefront sensor apparatus
Patent #: 4667103
Issued on: 05/19/1987
Inventor: Watson ,   et al.

Laser wavefront measurement device utilizing crossed Ronchi gratings
Patent #: 4670646
Issued on: 06/02/1987
Inventor: Spivey

Dual shear wavefront sensor
Patent #: 4696573
Issued on: 09/29/1987
Inventor: Hutchin

Linear-scanned-array wavefront sensor
Patent #: 4712913
Issued on: 12/15/1987
Inventor: Bareket

Integrated adaptive optical wavefront sensing and compensating system
Patent #: 4737621
Issued on: 04/12/1988
Inventor: Gonsiorowski ,   et al.

Compact continuous wave wavefront sensor
Patent #: 4824243
Issued on: 04/25/1989
Inventor: Wheeler ,   et al.

Wavefront control system using optical coarse/fine gradient sensor
Patent #: 4950878
Issued on: 08/21/1990
Inventor: Ulich, et al.

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Inventors

Application

No. 046673 filed on 04/13/1993

US Classes:

250/201.9, Light beam wavefront phase adaptation356/121LAMP BEAM DIRECTION OR PATTERN

Examiners

Primary: Nelms, David C.
Assistant: Le, Que T.

Attorney, Agent or Firm

International Class

G01J 001/20

Abstract

A new scene-based wavefront sensor is useful in a device as, for example, a telescope or camera that provides information of aberrations (e.g., out-of-focus condition) directly from light received from a scene in object space being scanned by movement of either the wavefront sensor or elements in the scene. The wavefront sensor includes an imaging system defining a predetermined pupil, a light opaque material having a surface and defining a probe hole (pinhole) therethrough, a linear image sensor array, a relay lens, and a pupil sensor array including a plurality of light sensors. The probe hole and image sensor array are disposed at a focal plane of the imaging system while the pupil sensor array is disposed at a focal plane of the pupil of the imaging system. As the wavefront sensor is moved to scan a predetermined scene in a direction normal to the orientation of the image sensor array, output signals of light intensity versus time detected by each of the sensors of the image and pupil sensor arrays are transmitted to a controller. The controller uses such output signals for determining if, for example, aberrations exist in the scanned scene and for generating control signals to a user device for correcting for such aberrations.

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