IP Library Granted Patent US 10,795,112
Granted Patent B2
US 10,795,112 · App. 15/380,796 · Granted Oct 6, 2020

Focal plane shift measurement and adjustment in a lens assembly

Inventor: Bryan C. Asuncion (San Jose, CA)
Assignee: GoPro, Inc.
G02B7/028G02B7/08G02B13/16H04N5/217H04N5/2254H04N17/002
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Quick Facts
Patent No.
US 10,795,112
App. No.
15/380,796
Granted
Oct 6, 2020
Kind
B2
Abstract

To compensate for this change in focal length due to a temperature change, an integrated image sensor and lens assembly includes a shift measurement module to measure a shift between optical elements to which the shift measurement module is coupled. The measured shift between optical elements is used to determine a shift of the focal plane in reference to the image plane. Optical aberration resulting from the shift of the focal plane in reference to the image plane may further be compensated.

Claims (33)

1. An integrated sensor and lens assembly, comprising:

an image sensor;

a lens mount coupled to the image sensor;

a lens barrel secured by the lens mount, the lens barrel comprising one or more lenses along an optical axis substantially perpendicular to a focal plane; and

one or more strain gauges, a strain gauge of the one or more strain gauges coupled between a lens and the image sensor and structured to measure a shift in a direction along the optical axis between the lens and the image sensor.

2. The integrated sensor and lens assembly of claim 1 , wherein a second strain gauge of the one or more strain gauges is coupled between a first lens and a second lens of the one or more lenses and structured to measure a second shift in a direction along the optical axis between the first lens and second lens.

3. The integrated sensor and lens assembly of claim 1 , wherein an electrical resistance of the strain gauge changes responsive to the shift and the electrical resistance change is converted to the shift in a direction along the optical axis between the lens and the image sensor.

4. The integrated sensor and lens assembly of claim 1 , wherein the shift in the direction along the optical axis between the lens and the image sensor is used to determine a shift in a direction along the optical axis between the focal plane and an image plane.

5. An integrated image sensor and lens assembly comprising:

an image sensor substrate comprising an image sensor in an image plane;

a lens mount comprising a tube portion extending in a direction of an optical axis substantially perpendicular to the image plane, the tube portion having a channel;

a lens barrel having a first portion extending into the channel of the tube portion, and a second portion outside the channel of the tube portion, the second portion having a camera lens window; and

one or more strain gauges, a strain gauge of one or more strain gauges is coupled between the lens window and the image sensor and structured to measure a shift in a direction along the optical axis between the lens window and the image sensor.

6. The integrated image sensor and lens assembly of claim 5 , wherein the lens barrel comprises one or more lenses and wherein a second strain gauge of the one or more strain gauges is coupled between a first lens and a second lens of the one or more of lenses and configured to measure a second shift in a direction along the optical axis between the first lens and the second lens.

7. The integrated image sensor and lens assembly of claim 5 , wherein the lens barrel comprises one or more lenses and a second strain gauge of the one or more strain gauges is coupled between a lens and the lens window and configured to measure a second shift in a direction along the optical axis between the lens window and the lens.

8. The integrated image sensor and lens assembly of claim 5 , wherein the lens barrel comprises one or more lenses and a second strain gauge of the one or more strain gauges is coupled between a lens and the image sensor and configured to measure a second shift in a direction along the optical axis between the lens and the image sensor.

9. A camera comprising:

one or more strain gauges;

an integrated image sensor and lens assembly comprising:

an image sensor substrate comprising an image sensor in an image plane;

a lens mount comprising a tube portion extending in a direction of an optical axis substantially perpendicular to the image plane, the tube portion having a channel; and

a lens barrel having a first portion extending into the channel of the tube portion, and a second portion outside the channel of the tube portion, the second portion having a camera lens window;

wherein a strain gauge of the one or more strain gauges is coupled between the lens window and the image sensor and structured to measure a shift in a direction along the optical axis between the lens window and the image sensor.

10. The camera of claim 9 , wherein the lens barrel comprises one or more lenses and wherein a second strain gauge of the one or more strain gauges is coupled between a first lens and a second lens of the one or more of lenses and configured to measure a second shift in a direction along the optical axis between the first lens and the second lens.

11. The camera of claim 9 , wherein the lens barrel comprises one or more lenses and a second strain gauge of the one or more strain gauges is coupled between a lens and the lens window and configured to measure a second shift in a direction along the optical axis between the lens window and the lens.

12. The camera of claim 9 , wherein the lens barrel comprises one or more lenses and a second strain gauge of the one or more strain gauges is coupled between a lens and the image sensor and configured to measure a second shift in a direction along the optical axis between the lens and the image sensor.

13. A method, comprising:

measuring an electrical resistance change of a strain gauge coupled between a lens and an image sensor of a camera;

converting the measured electrical resistance to a shift between the lens and the image sensor of the camera;

determining a shift between an image plane and a focal plane of the camera based on the shift between the lens and the image sensor of the camera; and

correcting for optical aberration resulting from the determined shift between the image plane and the focal plane of the camera.

14. The method of claim 13 , wherein the step of determining the shift comprises looking up the shift between the lens and the image sensor of the camera in a table to determine the shift between the image plane and the focal plane of the camera.

15. The method of claim 13 , wherein the correcting for optical aberration comprises determining the optical aberration based on the determined shift and applying one or more image processing techniques to substantially minimize the determined optical aberration.

Assignments (4)
RELEASE OF PATENT SECURITY INTEREST Recorded Jan 25, 2021
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: GOPRO, INC.
Reel/Frame 055106/0434 →
CORRECTIVE ASSIGNMENT TO CORRECT THE SCHEDULE TO REMOVE APPLICATION 15387383 AND REPLACE WITH 15385383 PREVIOUSLY RECORDED ON REEL 042665 FRAME 0065. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTEREST. Recorded Oct 23, 2019
From: GOPRO, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050808/0824 →
SECURITY INTEREST Recorded Jun 1, 2017
From: GOPRO, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 042665/0065 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2016
From: ASUNCION, BRYAN C.
To: GOPRO, INC.
Reel/Frame 040638/0170 →